<?xml version="1.0" encoding="UTF-8"?><!DOCTYPE article  PUBLIC "-//NLM//DTD Journal Publishing DTD v3.0 20080202//EN" "http://dtd.nlm.nih.gov/publishing/3.0/journalpublishing3.dtd"><article xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" dtd-version="3.0" xml:lang="en" article-type="research article"><front><journal-meta><journal-id journal-id-type="publisher-id">JWARP</journal-id><journal-title-group><journal-title>Journal of Water Resource and Protection</journal-title></journal-title-group><issn pub-type="epub">1945-3094</issn><publisher><publisher-name>Scientific Research Publishing</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="doi">10.4236/jwarp.2015.711069</article-id><article-id pub-id-type="publisher-id">JWARP-58198</article-id><article-categories><subj-group subj-group-type="heading"><subject>Articles</subject></subj-group><subj-group subj-group-type="Discipline-v2"><subject>Earth&amp;Environmental Sciences</subject></subj-group></article-categories><title-group><article-title>
 
 
  Spring Water Qualitative Assessment in Mountainous Areas, Case Study: Soreq Catchment/Ramallah/West Bank
 
</article-title></title-group><contrib-group><contrib contrib-type="author" xlink:type="simple"><name name-style="western"><surname>assan</surname><given-names>Jebreen</given-names></name><xref ref-type="aff" rid="aff1"><sup>1</sup></xref></contrib><contrib contrib-type="author" xlink:type="simple"><name name-style="western"><surname>Marwan</surname><given-names>Ghanem</given-names></name><xref ref-type="aff" rid="aff1"><sup>1</sup></xref><xref ref-type="corresp" rid="cor1"><sup>*</sup></xref></contrib></contrib-group><aff id="aff1"><addr-line>Birzeit University, Ramallah, Palestine</addr-line></aff><author-notes><corresp id="cor1">* E-mail:<email>mghanem@birzeit.edu(MG)</email>;</corresp></author-notes><pub-date pub-type="epub"><day>22</day><month>07</month><year>2015</year></pub-date><volume>07</volume><issue>11</issue><fpage>851</fpage><lpage>859</lpage><history><date date-type="received"><day>25</day>	<month>April</month>	<year>2015</year></date><date date-type="rev-recd"><day>accepted</day>	<month>19</month>	<year>July</year>	</date><date date-type="accepted"><day>22</day>	<month>July</month>	<year>2015</year></date></history><permissions><copyright-statement>&#169; Copyright  2014 by authors and Scientific Research Publishing Inc. </copyright-statement><copyright-year>2014</copyright-year><license><license-p>This work is licensed under the Creative Commons Attribution International License (CC BY). http://creativecommons.org/licenses/by/4.0/</license-p></license></permissions><abstract><p>
 
 
  The hydrochemical characteristics of spring waters in the Soreq-Catchment were determined to identify pollutants in the springs. The ion concentrations were within the allowable WHO limits except two springs located within the center of the populated areas. The water of most of the springs is contaminated with fecal coliform and total coliform. The concentration of nitrate shows moderate values below the WHO limits. The springs in the study area show higher concentrations of heavy metals (Zn, Cd, Mn, As, Co, Cu, Ni, Pb, Al, Fe, and V) exceeding the permissible standards set by WHO (2007). Most springs in the study area are of water type (Ca-Mg-HCO
  <sub>3</sub>
  <sup style="margin-left:-7px;">-</sup>). Piper’s classification ranges from normal earth alkaline water with prevailing bicarbonate and chloride in both seasons. Comparing the quality of spring water with standards for different uses proved that some springs are unsuitable for human drinking purposes.
 
</p></abstract><kwd-group><kwd>Hydrochemistry</kwd><kwd> Soreq</kwd><kwd> West Bank</kwd><kwd> Spring Water</kwd></kwd-group></article-meta></front><body><sec id="s1"><title>1. Introduction</title><p>Improving access to safe drinking-water is of major benefit to the human health and every effort should be made to achieve a drinking-water quality as safe as practicable [<xref ref-type="bibr" rid="scirp.58198-ref1">1</xref>] . Water resources in the West Bank are scarce, due to the fact that the West Bank is lying within an arid region. Groundwater is considered to be the main fresh water resource in the West Bank. This study is considered to be important as there is a lack of detailed information concerning water quality and related issues. This is in spite of the fact that these springs are the major source of water for both domestic and agricultural purposes. The sole source of groundwater in West Bank is in the Mountain Aquifer System, which is divided into three basins: Northeastern, Western and Eastern [<xref ref-type="bibr" rid="scirp.58198-ref2">2</xref>] . The chemical characteristic of the spring water is very important for municipal, agriculture, and drinking water supplies. The chemical composition of water is based on the minerals which have dissolved in it. In addition, the chemical composition of water is modified by ion-exchange equilibrium. There are some environmental conditions affecting the water chemistry such as type of rock, climate, relief, vegetation and time [<xref ref-type="bibr" rid="scirp.58198-ref1">1</xref>] . The growing demand of Palestinians, the lack of sewer systems, the wide distribution of cesspits and septic tanks, the common practice of wastewater disposal into gardens and road ditches, and the uncontrolled disposal of untreated municipal sewage into wadis will cause rapid contamination pollution of aquifer systems through karstic conduits in the area [<xref ref-type="bibr" rid="scirp.58198-ref3">3</xref>] . This study aims at studying the hydrochemical and microbiological parameters to the spring water in Soreq catchment/SW of Ramallah. Twenty two heavy metals are analyzed including Fe<sup>2+</sup>, Cd<sup>2+</sup>, Pb<sup>2+</sup>, Zn<sup>2+</sup>, Mn<sup>2+</sup>, B, As<sup>2+</sup>, Be, Se, Ba, Tl, Cr, Al, V, Co, Cu, Ni, Sr, Bi, Mo, Ag and Li. Chemical changes in spring water between dry and wet seasons were determined to locate possible sources of pollution and their impact on the spring water quality for domestic and agricultural uses.</p></sec><sec id="s2"><title>2. The Study Area</title><p>The area of the study is Soreq catchment which is situated in the western part of the West Bank. Its location is within the western catchments (<xref ref-type="fig" rid="fig1">Figure 1</xref>) and it has an area of 70 km<sup>2</sup>. The Soreq catchment borders are: Al Dilb catchment from the North, Quilt catchment from the East, Salman catchment from the West and Mukallak and Nar catchment from the South East. The Palestinian population of Soreq catchment was estimated to be about 125,000 [<xref ref-type="bibr" rid="scirp.58198-ref4">4</xref>] . The climate of the Soreq catchment ranges from arid to semi-arid. The monthly average temperature ranges from 7˚C - 10˚C in winter to 23˚C in the summer. The minimum temperature is −2˚C in January and the maximum is 40˚C in August [<xref ref-type="bibr" rid="scirp.58198-ref5">5</xref>] . Rainfall for Soreq catchment is limited to the winter and spring months, mostly between November and May; summer is completely dry. The rainy days are estimated between 40 - 70 days per year [<xref ref-type="bibr" rid="scirp.58198-ref6">6</xref>] . The average annual rainfall in the eastern part of the district varies from 200 to 450 mm. In the western part of the Soreq catchment, the average annual rainfall is higher than the eastern part; it varies from 350 to 550 mm. In the mountains the average annual rainfalls vary from 550 to 700 mm [<xref ref-type="bibr" rid="scirp.58198-ref7">7</xref>] .</p></sec><sec id="s3"><title>3. Geology of the Study Area</title><p>The geological formations of Soreq catchment range in age from lower Cenomanian to Albian. Soreq catchment is mainly covered by sedimentary carbonate rocks of the Cretaceous and Tertiary periods. Lithological composition of these formations consists mainly of limestone, dolomite, marl, chalk, chert and alluvium [<xref ref-type="bibr" rid="scirp.58198-ref8">8</xref>] . The Soreq catchment is underlain by the Western aquifer; many springs emerge in the study area (<xref ref-type="table" rid="table1">Table 1</xref>).</p><fig id="fig1"  position="float"><label><xref ref-type="fig" rid="fig1">Figure 1</xref></label><caption><title> Location map of the study area</title></caption><graphic mimetype="image"   position="float"  xlink:type="simple"  xlink:href="http://html.scirp.org/file/2-9402539x6.png"/></fig></sec><sec id="s4"><title>4. Methodology</title><p>The samples that were collected from springs, in a 1-Liter high density Polyethylene bottles, stabilized with ultrapure nitric acid (0.5% HNO<sub>3</sub>), preserved in a cool place (about 4˚C). Temperature, pH, electrical conductivity, total dissolved solids were measured in Onsite, using Hanna Field Multimode Meter. Major anions (NO<sub>3</sub>, SO<sub>4</sub>, and Cl) were analyzed using HP liquid chromatography. Concentrations of the major cations (Ca, Mg, Na, and K) were determined by ICP-MS. Alkalinity and HCO<sub>3</sub> analysis was measured onsite by titration. All chemical analyses were carried out at the Environmental Research Lab. at Al-Quds University―Abu Dis. For Total Coliform and Faecal Coliform tests were collected in sterile 100 ml, glass bottles, then cooling in an ice box and transferred to the laboratory on the same day for biological tests. The spring water samples were analyzed at the laboratory of Birzeit University in Ramallah.</p></sec><sec id="s5"><title>5. Result and Discussion</title><p>Results of the physical parameter analysis of spring water samples are represented in <xref ref-type="table" rid="table2">Table 2</xref>. The results of cations and anions are represented in (<xref ref-type="table" rid="table3">Table 3</xref>(a) and <xref ref-type="table" rid="table3">Table 3</xref>(b)).</p><table-wrap id="table1" ><label><xref ref-type="table" rid="table1">Table 1</xref></label><caption><title> Springs in the Soreq catchment</title></caption><table><tbody><thead><tr><th align="center" valign="middle" >Spring Name</th><th align="center" valign="middle" >Location (Village)</th><th align="center" valign="middle" >Emergent Formation</th><th align="center" valign="middle" >Formation</th><th align="center" valign="middle" >Water Use</th></tr></thead><tr><td align="center" valign="middle" >Ein Ajab</td><td align="center" valign="middle" >Beit Anan</td><td align="center" valign="middle" >Upper Beit Kahil</td><td align="center" valign="middle" >Albian</td><td align="center" valign="middle" >Agricultural</td></tr><tr><td align="center" valign="middle" >Ein Katana</td><td align="center" valign="middle" >Katana</td><td align="center" valign="middle" >Upper Beit Kahil</td><td align="center" valign="middle" >Albian</td><td align="center" valign="middle" >Agricultural and drinking</td></tr><tr><td align="center" valign="middle" >Ein Beit Soreq</td><td align="center" valign="middle" >Soreq</td><td align="center" valign="middle" >Upper Beit Kahil</td><td align="center" valign="middle" >Albian</td><td align="center" valign="middle" >Agricultural and drinking</td></tr><tr><td align="center" valign="middle" >Ein Alshami</td><td align="center" valign="middle" >Beit Iexa</td><td align="center" valign="middle" >Yatta</td><td align="center" valign="middle" >Lower Cenomanian</td><td align="center" valign="middle" >Agricultural</td></tr><tr><td align="center" valign="middle" >Ein Salman</td><td align="center" valign="middle" >Beit Duqqo</td><td align="center" valign="middle" >Upper Beit Kahil</td><td align="center" valign="middle" >Albian</td><td align="center" valign="middle" >Agricultural and drinking</td></tr><tr><td align="center" valign="middle" >Ein Jefna</td><td align="center" valign="middle" >Beit Duqqo</td><td align="center" valign="middle" >Upper Beit Kahil</td><td align="center" valign="middle" >Albian</td><td align="center" valign="middle" >Agricultural</td></tr><tr><td align="center" valign="middle" >Ein Aziz</td><td align="center" valign="middle" >Aljeeb</td><td align="center" valign="middle" >Yatta</td><td align="center" valign="middle" >Lower Cenomanian</td><td align="center" valign="middle" >Agricultural</td></tr><tr><td align="center" valign="middle" >Ein Albalad</td><td align="center" valign="middle" >Aljeeb</td><td align="center" valign="middle" >Yatta</td><td align="center" valign="middle" >Lower Cenomanian</td><td align="center" valign="middle" >Agricultural</td></tr><tr><td align="center" valign="middle" >Ein Alqeblea</td><td align="center" valign="middle" >Aljeeb</td><td align="center" valign="middle" >Yatta</td><td align="center" valign="middle" >Lower Cenomanian</td><td align="center" valign="middle" >Agricultural</td></tr><tr><td align="center" valign="middle" >Ein Abu Zaher</td><td align="center" valign="middle" >Aljeeb</td><td align="center" valign="middle" >Yatta</td><td align="center" valign="middle" >Lower Cenomanian</td><td align="center" valign="middle" >Agricultural and drinking</td></tr></tbody></table></table-wrap><table-wrap id="table2" ><label><xref ref-type="table" rid="table2">Table 2</xref></label><caption><title> Physical parameters of spring water in Soreq catchment</title></caption><table><tbody><thead><tr><th align="center" valign="middle"  rowspan="2"  >Spring Name</th><th align="center" valign="middle"  colspan="5"  >Dry Season</th><th align="center" valign="middle"  colspan="5"  >Wet Season</th></tr></thead><tr><td align="center" valign="middle" >Date</td><td align="center" valign="middle" >pH</td><td align="center" valign="middle" >TDS</td><td align="center" valign="middle" >T [in ˚C]</td><td align="center" valign="middle" >EC</td><td align="center" valign="middle" >Date</td><td align="center" valign="middle" >pH</td><td align="center" valign="middle" >TDS</td><td align="center" valign="middle" >T [in ˚C]</td><td align="center" valign="middle" >EC</td></tr><tr><td align="center" valign="middle" >Ajab</td><td align="center" valign="middle" >01/11/2013</td><td align="center" valign="middle" >8</td><td align="center" valign="middle" >198</td><td align="center" valign="middle" >20.2</td><td align="center" valign="middle" >393</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >7.8</td><td align="center" valign="middle" >274</td><td align="center" valign="middle" >21</td><td align="center" valign="middle" >552</td></tr><tr><td align="center" valign="middle" >Katana</td><td align="center" valign="middle" >01/11/2013</td><td align="center" valign="middle" >7.5</td><td align="center" valign="middle" >185</td><td align="center" valign="middle" >20.3</td><td align="center" valign="middle" >370</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >7.1</td><td align="center" valign="middle" >510</td><td align="center" valign="middle" >22</td><td align="center" valign="middle" >1016</td></tr><tr><td align="center" valign="middle" >Biet Soreq</td><td align="center" valign="middle" >01/11/2013</td><td align="center" valign="middle" >7.6</td><td align="center" valign="middle" >561</td><td align="center" valign="middle" >19.7</td><td align="center" valign="middle" >1200</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >7.3</td><td align="center" valign="middle" >690</td><td align="center" valign="middle" >21.4</td><td align="center" valign="middle" >1385</td></tr><tr><td align="center" valign="middle" >Al-Shami</td><td align="center" valign="middle" >01/11/2013</td><td align="center" valign="middle" >7.8</td><td align="center" valign="middle" >397</td><td align="center" valign="middle" >23.4</td><td align="center" valign="middle" >792</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >7.6</td><td align="center" valign="middle" >340</td><td align="center" valign="middle" >19</td><td align="center" valign="middle" >680</td></tr><tr><td align="center" valign="middle" >Salman</td><td align="center" valign="middle" >01/11/2013</td><td align="center" valign="middle" >7.9</td><td align="center" valign="middle" >421</td><td align="center" valign="middle" >21.4</td><td align="center" valign="middle" >844</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >7.8</td><td align="center" valign="middle" >435</td><td align="center" valign="middle" >20.3</td><td align="center" valign="middle" >870</td></tr><tr><td align="center" valign="middle" >Jefna</td><td align="center" valign="middle" >02/11/2013</td><td align="center" valign="middle" >7.7</td><td align="center" valign="middle" >236</td><td align="center" valign="middle" >22.9</td><td align="center" valign="middle" >469</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >8</td><td align="center" valign="middle" >236</td><td align="center" valign="middle" >20</td><td align="center" valign="middle" >472</td></tr><tr><td align="center" valign="middle" >AL-Balad</td><td align="center" valign="middle" >02/11/2013</td><td align="center" valign="middle" >8</td><td align="center" valign="middle" >430</td><td align="center" valign="middle" >15.6</td><td align="center" valign="middle" >912</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >7.8</td><td align="center" valign="middle" >763</td><td align="center" valign="middle" >19.1</td><td align="center" valign="middle" >1530</td></tr><tr><td align="center" valign="middle" >Qebleya</td><td align="center" valign="middle" >02/11/2013</td><td align="center" valign="middle" >7.9</td><td align="center" valign="middle" >379</td><td align="center" valign="middle" >19.5</td><td align="center" valign="middle" >759</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >8</td><td align="center" valign="middle" >372</td><td align="center" valign="middle" >20</td><td align="center" valign="middle" >734</td></tr><tr><td align="center" valign="middle" >Abu Zaher</td><td align="center" valign="middle" >02/11/2013</td><td align="center" valign="middle" >8.2</td><td align="center" valign="middle" >224</td><td align="center" valign="middle" >19.8</td><td align="center" valign="middle" >446</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >8.4</td><td align="center" valign="middle" >210</td><td align="center" valign="middle" >20.2</td><td align="center" valign="middle" >421</td></tr><tr><td align="center" valign="middle" >Aziz</td><td align="center" valign="middle" >02/11/2013</td><td align="center" valign="middle" >7.5</td><td align="center" valign="middle" >415</td><td align="center" valign="middle" >20</td><td align="center" valign="middle" >832</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >7.5</td><td align="center" valign="middle" >310</td><td align="center" valign="middle" >20</td><td align="center" valign="middle" >623</td></tr></tbody></table></table-wrap><p>TDS is Total Dissolved Solids, T is Temperature, EC is Electric Conductivity.</p><table-wrap-group id="3"><label><xref ref-type="table" rid="table3">Table 3</xref></label><caption><title> (a) The anion and cation in ppm of the spring water in Soreq catchment in dry periods; (b) The anion and cation of the spring water in Soreq catchment in wet periods</title></caption><table-wrap id="3_1"><caption><title> (b)</title></caption><table><tbody><thead><tr><th align="center" valign="middle" >Spring Name</th><th align="center" valign="middle" >Date</th><th align="center" valign="middle" >Na</th><th align="center" valign="middle" >K</th><th align="center" valign="middle" >Mg</th><th align="center" valign="middle" >Ca</th><th align="center" valign="middle" >Cl</th><th align="center" valign="middle" >SO<sub>4</sub></th><th align="center" valign="middle" >HCO<sub>3</sub></th><th align="center" valign="middle" >NO<sub>3</sub></th></tr></thead><tr><td align="center" valign="middle" >Ajab</td><td align="center" valign="middle" >01/11/2013</td><td align="center" valign="middle" >15.62</td><td align="center" valign="middle" >0.34</td><td align="center" valign="middle" >20.17</td><td align="center" valign="middle" >79.06</td><td align="center" valign="middle" >31.91</td><td align="center" valign="middle" >18</td><td align="center" valign="middle" >244.08</td><td align="center" valign="middle" >18</td></tr><tr><td align="center" valign="middle" >Katana</td><td align="center" valign="middle" >01/11/2013</td><td align="center" valign="middle" >48.68</td><td align="center" valign="middle" >3.75</td><td align="center" valign="middle" >47.08</td><td align="center" valign="middle" >123.34</td><td align="center" valign="middle" >184.34</td><td align="center" valign="middle" >52</td><td align="center" valign="middle" >488.16</td><td align="center" valign="middle" >31</td></tr><tr><td align="center" valign="middle" >Biet Soreq</td><td align="center" valign="middle" >01/11/2013</td><td align="center" valign="middle" >44.58</td><td align="center" valign="middle" >23.48</td><td align="center" valign="middle" >57.48</td><td align="center" valign="middle" >145.61</td><td align="center" valign="middle" >95.72</td><td align="center" valign="middle" >98</td><td align="center" valign="middle" >366.12</td><td align="center" valign="middle" >44</td></tr><tr><td align="center" valign="middle" >Al-Shami</td><td align="center" valign="middle" >01/11/2013</td><td align="center" valign="middle" >46.67</td><td align="center" valign="middle" >0.98</td><td align="center" valign="middle" >41.75</td><td align="center" valign="middle" >112.16</td><td align="center" valign="middle" >127.62</td><td align="center" valign="middle" >88</td><td align="center" valign="middle" >305.1</td><td align="center" valign="middle" >36</td></tr><tr><td align="center" valign="middle" >Salman</td><td align="center" valign="middle" >01/11/2013</td><td align="center" valign="middle" >36.77</td><td align="center" valign="middle" >1.8</td><td align="center" valign="middle" >44.13</td><td align="center" valign="middle" >106.01</td><td align="center" valign="middle" >81.54</td><td align="center" valign="middle" >39</td><td align="center" valign="middle" >488.16</td><td align="center" valign="middle" >39</td></tr><tr><td align="center" valign="middle" >Jefna</td><td align="center" valign="middle" >02/11/2013</td><td align="center" valign="middle" >13.18</td><td align="center" valign="middle" >0.4</td><td align="center" valign="middle" >19.91</td><td align="center" valign="middle" >76.2</td><td align="center" valign="middle" >39</td><td align="center" valign="middle" >22</td><td align="center" valign="middle" >366.12</td><td align="center" valign="middle" >26</td></tr><tr><td align="center" valign="middle" >Al-Balad</td><td align="center" valign="middle" >02/11/2013</td><td align="center" valign="middle" >49.84</td><td align="center" valign="middle" >17.71</td><td align="center" valign="middle" >52.45</td><td align="center" valign="middle" >115.22</td><td align="center" valign="middle" >219.79</td><td align="center" valign="middle" >110</td><td align="center" valign="middle" >427.14</td><td align="center" valign="middle" >33</td></tr><tr><td align="center" valign="middle" >Qebleya</td><td align="center" valign="middle" >02/11/2013</td><td align="center" valign="middle" >34.33</td><td align="center" valign="middle" >30.01</td><td align="center" valign="middle" >34.45</td><td align="center" valign="middle" >81.07</td><td align="center" valign="middle" >120.53</td><td align="center" valign="middle" >32</td><td align="center" valign="middle" >366.12</td><td align="center" valign="middle" >48</td></tr><tr><td align="center" valign="middle" >Abu Zaher</td><td align="center" valign="middle" >02/11/2013</td><td align="center" valign="middle" >15.91</td><td align="center" valign="middle" >2.07</td><td align="center" valign="middle" >18.73</td><td align="center" valign="middle" >58.77</td><td align="center" valign="middle" >46.09</td><td align="center" valign="middle" >36</td><td align="center" valign="middle" >183.06</td><td align="center" valign="middle" >16</td></tr><tr><td align="center" valign="middle" >Aziz</td><td align="center" valign="middle" >02/11/2013</td><td align="center" valign="middle" >28.64</td><td align="center" valign="middle" >0.96</td><td align="center" valign="middle" >15.17</td><td align="center" valign="middle" >145.47</td><td align="center" valign="middle" >106.35</td><td align="center" valign="middle" >84</td><td align="center" valign="middle" >305.1</td><td align="center" valign="middle" >49</td></tr></tbody></table></table-wrap><table-wrap id="3_2"><caption><title></title></caption><table><tbody><thead><tr><th align="center" valign="middle" >Spring Name</th><th align="center" valign="middle" >Date</th><th align="center" valign="middle" >Na</th><th align="center" valign="middle" >K</th><th align="center" valign="middle" >Mg</th><th align="center" valign="middle" >Ca</th><th align="center" valign="middle" >Cl</th><th align="center" valign="middle" >SO<sub>4</sub></th><th align="center" valign="middle" >HCO<sub>3</sub></th><th align="center" valign="middle" >NO<sub>3</sub></th></tr></thead><tr><td align="center" valign="middle" >Ajab</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >12.4</td><td align="center" valign="middle" >0.29</td><td align="center" valign="middle" >19.8</td><td align="center" valign="middle" >82</td><td align="center" valign="middle" >88.63</td><td align="center" valign="middle" >18</td><td align="center" valign="middle" >251.95</td><td align="center" valign="middle" >8.85</td></tr><tr><td align="center" valign="middle" >Katana</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >43.6</td><td align="center" valign="middle" >5.5</td><td align="center" valign="middle" >48.1</td><td align="center" valign="middle" >132.6</td><td align="center" valign="middle" >106.35</td><td align="center" valign="middle" >78</td><td align="center" valign="middle" >430.15</td><td align="center" valign="middle" >20.87</td></tr><tr><td align="center" valign="middle" >Biet Soreq</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >57.9</td><td align="center" valign="middle" >51.8</td><td align="center" valign="middle" >59.3</td><td align="center" valign="middle" >148.1</td><td align="center" valign="middle" >230.43</td><td align="center" valign="middle" >112</td><td align="center" valign="middle" >497.75</td><td align="center" valign="middle" >39.51</td></tr><tr><td align="center" valign="middle" >Al-Shami</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >43.9</td><td align="center" valign="middle" >1.0</td><td align="center" valign="middle" >34.1</td><td align="center" valign="middle" >84.4</td><td align="center" valign="middle" >106.35</td><td align="center" valign="middle" >90</td><td align="center" valign="middle" >288.82</td><td align="center" valign="middle" >24.02</td></tr><tr><td align="center" valign="middle" >Salman</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >41.1</td><td align="center" valign="middle" >2.2</td><td align="center" valign="middle" >42.5</td><td align="center" valign="middle" >127.2</td><td align="center" valign="middle" >88.63</td><td align="center" valign="middle" >56</td><td align="center" valign="middle" >359.48</td><td align="center" valign="middle" >23.18</td></tr><tr><td align="center" valign="middle" >Jefna</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >11.6</td><td align="center" valign="middle" >0.3</td><td align="center" valign="middle" >18.3</td><td align="center" valign="middle" >79.5</td><td align="center" valign="middle" >88.63</td><td align="center" valign="middle" >35</td><td align="center" valign="middle" >245.8</td><td align="center" valign="middle" >2.52</td></tr><tr><td align="center" valign="middle" >Al-Balad</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >48.8</td><td align="center" valign="middle" >52.02</td><td align="center" valign="middle" >54.4</td><td align="center" valign="middle" >131</td><td align="center" valign="middle" >301.33</td><td align="center" valign="middle" >102</td><td align="center" valign="middle" >337.98</td><td align="center" valign="middle" >22.05</td></tr><tr><td align="center" valign="middle" >Qebleya</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >33.4</td><td align="center" valign="middle" >27.7</td><td align="center" valign="middle" >35.4</td><td align="center" valign="middle" >91.5</td><td align="center" valign="middle" >88.63</td><td align="center" valign="middle" >32</td><td align="center" valign="middle" >285.74</td><td align="center" valign="middle" >17.16</td></tr><tr><td align="center" valign="middle" >Abu Zaher</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >15.8</td><td align="center" valign="middle" >1.8</td><td align="center" valign="middle" >19.6</td><td align="center" valign="middle" >59.2</td><td align="center" valign="middle" >88.63</td><td align="center" valign="middle" >40</td><td align="center" valign="middle" >187.42</td><td align="center" valign="middle" >3.95</td></tr><tr><td align="center" valign="middle" >Aziz</td><td align="center" valign="middle" >11/03/2014</td><td align="center" valign="middle" >20.09</td><td align="center" valign="middle" >0.7</td><td align="center" valign="middle" >14.2</td><td align="center" valign="middle" >131.1</td><td align="center" valign="middle" >88.63</td><td align="center" valign="middle" >76</td><td align="center" valign="middle" >251.95</td><td align="center" valign="middle" >12.08</td></tr></tbody></table></table-wrap></table-wrap-group></sec><sec id="s6"><title>6. Hydrochemical Profiles</title><p>The spring water quality assessed through the analysis of physiochemical parameters (pH, EC, T, TDS) and major cations (Ca<sup>2+</sup>, K<sup>+</sup>, Na<sup>+</sup>, Mg<sup>2+</sup>), major anions (Cl<sup>−</sup>, <inline-formula><inline-graphic xlink:href="http://html.scirp.org/file/2-9402539x7.png" xlink:type="simple"/></inline-formula>, <inline-formula><inline-graphic xlink:href="http://html.scirp.org/file/2-9402539x8.png" xlink:type="simple"/></inline-formula>, NO<sub>3</sub>) and heavy metals (Zn<sup>2+</sup>, Mn<sup>2+</sup>, Pb<sup>2+</sup>, Cd<sup>2+</sup>, Fe<sup>2+</sup>, B<sup>2+</sup>, As<sup>2+</sup>, Be, Se, Ba, Ti, Cr, Al, V, Co, Cu, Ni, Sr, Bi, Mo, Ag, Li). The spring water in the study area is generally of low alkalinity with (pH) average ranging between 7.8 for dry period and 7.7 for the wet period. The maximum TDS value was 763 recorded in Ein Albalad in March and the minimum is 210 ppm recorded in Ein Abu Zaher, while the maximum TDS value is 561 ppm recorded in the November in Ein Biet Soreq and the minimum is 185 ppm recorded in Ein Katana. EC and TDS averages in wet period are higher than dry period due to dilution process. Depending on TDS values for both periods the spring water in the area is classified as fresh water. The relationship between EC and TDS in the groundwater of the study area is strong and the value of correlation coefficient (R) is close to one. The concentration of Ca<sup>2+</sup> is higher than the other major cations and <inline-formula><inline-graphic xlink:href="http://html.scirp.org/file/2-9402539x9.png" xlink:type="simple"/></inline-formula> concentration is higher than the other major anions in both seasons (<xref ref-type="fig" rid="fig2">Figure 2</xref>).</p><p>EC values are higher in the Ein Beiet Soreq as a result of effect of fertilizers uses in the recharge areas, in addition to agricultural and human activities. Concentrations of cations and anions in wet period are greater than dry period due to the dilution process except bicarbonate ion <inline-formula><inline-graphic xlink:href="http://html.scirp.org/file/2-9402539x10.png" xlink:type="simple"/></inline-formula> which is lower in the wet period due to</p><fig-group id="fig2"><label><xref ref-type="fig" rid="fig2">Figure 2</xref></label><caption><title> Variations of major element concentrations (mg/L) versus chloride (Cl mg/L) of spring water investigated in this study in two periods.</title></caption><fig id ="fig2_1"><label></label><graphic mimetype="image"   position="float"  xlink:type="simple"  xlink:href="http://html.scirp.org/file/2-9402539x12.png"/></fig><fig id ="fig2_2"><label></label><graphic mimetype="image"   position="float"  xlink:type="simple"  xlink:href="http://html.scirp.org/file/2-9402539x11.png"/></fig><fig id ="fig2_3"><label></label><graphic mimetype="image"   position="float"  xlink:type="simple"  xlink:href="http://html.scirp.org/file/2-9402539x14.png"/></fig><fig id ="fig2_4"><label></label><graphic mimetype="image"   position="float"  xlink:type="simple"  xlink:href="http://html.scirp.org/file/2-9402539x13.png"/></fig></fig-group><p>the recharge process, where the carbonate is associated with water converted to <inline-formula><inline-graphic xlink:href="http://html.scirp.org/file/2-9402539x15.png" xlink:type="simple"/></inline-formula> (<xref ref-type="table" rid="table3">Table 3</xref>(a) &amp; <xref ref-type="table" rid="table3">Table 3</xref>(b)). The <inline-formula><inline-graphic xlink:href="http://html.scirp.org/file/2-9402539x16.png" xlink:type="simple"/></inline-formula> has a mean of 32 mg/L for the samples; nitrate concentration in dry period is greater due to agricultural activities and sewage effect.</p><p>The analysis of heavy elements in the groundwater of the study area confirm that springs water contains higher values of trace element about WHO like Co, Ni, Cd, Pb, As, Zn, Cr, V, Mn, B, Se, Al, Ti, and Ba (<xref ref-type="fig" rid="fig3">Figure 3</xref>) because their concentrations are higher than the permissible limits according to WHO [<xref ref-type="bibr" rid="scirp.58198-ref9">9</xref>] and PWA [<xref ref-type="bibr" rid="scirp.58198-ref10">10</xref>] standard as a result of weathering and solution action, in addition to the effect of the fertilizers and human activities.</p><p>Hydrochemical formula shows that most springs of study area have water type of Ca-Mg-HCO<sub>3</sub>, and the other springs range between Ca-HCO<sub>3</sub> for the two periods. However, both spring water types reflect dolomite bearing rock from Albian and sometimes the deeper Cenomanian formations. The spatial distribution of water quality in the study area for both dry and wet periods shows difference in water quality between both periods as a result of recharge and dilution processes in the wet period. The major cations and anions concentrations of the spring water from the sampled springs in the study area are plotted on a piper diagram (<xref ref-type="fig" rid="fig4">Figure 4</xref>). The type of spring water in the study area for both periods is “located between the areas of normal earth alkaline water with prevailing bicarbonate and chloride” for the two periods.</p><fig id="fig3"  position="float"><label><xref ref-type="fig" rid="fig3">Figure 3</xref></label><caption><title> The average concentration of heavy metals in spring in &#181;g/L</title></caption><graphic mimetype="image"   position="float"  xlink:type="simple"  xlink:href="http://html.scirp.org/file/2-9402539x17.png"/></fig><fig id="fig4"  position="float"><label><xref ref-type="fig" rid="fig4">Figure 4</xref></label><caption><title> Piper diagram showing the water types with proportions in the Soreq catchment</title></caption><graphic mimetype="image"   position="float"  xlink:type="simple"  xlink:href="http://html.scirp.org/file/2-9402539x18.png"/></fig></sec><sec id="s7"><title>7. Water Quality Parameter (Salinity)</title><p>According to the classification in (<xref ref-type="fig" rid="fig5">Figure 5</xref>), the spring water samples are plotting in the Wilcox diagram, which representing SAR against the Conductivity and show most samples falling within the field of S1, C2. This means that they are in the zones of medium salinity to low SAR, which is good for agriculture, but the other springs falling within the field of S1, C3. This means that they are in the zones of high salinity to low SAR, which is permissible for agriculture. According to EC and Na% values for the spring water, the springs are good for irrigation in two periods.</p></sec><sec id="s8"><title>8. Total Hardness (TH)</title><p>The hardness of water is defined as its content of divalent metallic ions which react with sodium soaps to produce</p><fig id="fig5"  position="float"><label><xref ref-type="fig" rid="fig5">Figure 5</xref></label><caption><title> Wilcox classification of the water samples</title></caption><graphic mimetype="image"   position="float"  xlink:type="simple"  xlink:href="http://html.scirp.org/file/2-9402539x19.png"/></fig><p>solid soaps or scummy residue and which react with negative ions when the water is heated in boilers to produce solid boiler scales [<xref ref-type="bibr" rid="scirp.58198-ref11">11</xref>] . In the study area, the lowest value of TH recorded was 223.7 mg/L for Ein Abu Zaher, and the highest value was 599.8 mg/L for Ein Biet Soreq spring in dry season. Water types according to the average TH in the study area range from hard to very hard water with prevailing very hard water in 80% of the samples.</p></sec><sec id="s9"><title>9. Sodium Adsorption Ratio (SAR)</title><p>The sodium adsorption ratio (SAR) indicates sodium concentration in water; (SAR) is considered an important parameter for the evaluation of water suitability for irrigation [<xref ref-type="bibr" rid="scirp.58198-ref11">11</xref>] . Acceptable SAR values for irrigation water depend on the particular water and soil characteristics. According to Winner classification [<xref ref-type="bibr" rid="scirp.58198-ref12">12</xref>] (<xref ref-type="fig" rid="fig6">Figure 6</xref>), most of spring water samples in study area fall in the zone of excellent water type for irrigation in both seasons.</p></sec><sec id="s10"><title>10. Soluble Sodium Percentage (SSP) or %Na</title><p>Water quality for agricultural purposes in the Soreq catchment shows variation between excellent to good based on Todd classification [<xref ref-type="bibr" rid="scirp.58198-ref11">11</xref>] of soluble sodium percentage (SSP) values, which is defined as:</p><p><inline-formula><inline-graphic xlink:href="http://html.scirp.org/file/2-9402539x20.png" xlink:type="simple"/></inline-formula>[<xref ref-type="bibr" rid="scirp.58198-ref12">12</xref>] .</p><p>where all concentrations are in meq/l. According to EC values for the spring water, the EC of 6 springs (55%) between 750 and 1200 μs/cm, therefore those springs are permissible for irrigation for both seasons while other water springs samples are good for irrigation for both seasons. Depending on Na%, Ein Katana, Ein Beit Soreq, Alsami, Ein Salman, Ein Albalad and Al-Qebleya water springs for both seasons are good for irrigation, while the Ajab, Jefna, Abu Zaher and Aziz spring water is excellent for irrigation.</p></sec><sec id="s11"><title>11. Microbiological Analysis</title><p>Water is a good media for microorganism. Groundwater and surface water may contain bacteria, viruses, fungus and algae, which makes water objectionable for domestic purposes and health threatening [<xref ref-type="bibr" rid="scirp.58198-ref9">9</xref>] . In this study, were tested for FC and TC (<xref ref-type="table" rid="table4">Table 4</xref>). The results obtained from microbiological analysis shown that Ein Al-Balad, Ein Ajab, Ein Biet Soreq and Ein Salman contain uncountable colonies of FC and TC, which reveals contamination from wastewater from sewerage system near Ein Al-Balad and cesspits near Ein Ajab, Ein Biet Soreq and Ein Salman. For Ein Katana, Ein Abu Zaher and Ein Al-Shami spring show uncountable TC, this is referred to sheep herds and manure piles near the spring outlet, especially katana spring, located under farms for cows belonging to the cow farms. It could be concluded that all the springs are contaminated with coliform bacteria; therefore they are not suitable for drinking unless being treated. Boiling, sun disinfection, or chlorination of the water is possible treatment techniques.</p></sec><sec id="s12"><title>12. Conclusion</title><p>A hydrochemical study of the spring water in Soreq catchment was conducted to define water types in the study</p><fig id="fig6"  position="float"><label><xref ref-type="fig" rid="fig6">Figure 6</xref></label><caption><title> Values of (SAR) for water samples of the study area</title></caption><graphic mimetype="image"   position="float"  xlink:type="simple"  xlink:href="http://html.scirp.org/file/2-9402539x21.png"/></fig><table-wrap id="table4" ><label><xref ref-type="table" rid="table4">Table 4</xref></label><caption><title> The fecal and total coliforms of spring water samples of the studied area</title></caption><table><tbody><thead><tr><th align="center" valign="middle"  rowspan="2"  >Name of the spring</th><th align="center" valign="middle"  colspan="2"  >Dry season</th><th align="center" valign="middle"  colspan="2"  >Wet season</th></tr></thead><tr><td align="center" valign="middle" >T.C Cfu/100ml</td><td align="center" valign="middle" >F.C-Cfu/100ml</td><td align="center" valign="middle" >T.C Cfu/100ml</td><td align="center" valign="middle" >F.C-Cfu/100ml</td></tr><tr><td align="center" valign="middle" >Jefna</td><td align="center" valign="middle" >62</td><td align="center" valign="middle" >Nil</td><td align="center" valign="middle" >42</td><td align="center" valign="middle" >Nil</td></tr><tr><td align="center" valign="middle" >Ajab</td><td align="center" valign="middle" >40,000</td><td align="center" valign="middle" >32</td><td align="center" valign="middle" >7</td><td align="center" valign="middle" >Nil</td></tr><tr><td align="center" valign="middle" >Ein Katana</td><td align="center" valign="middle" >11,000</td><td align="center" valign="middle" >Nil</td><td align="center" valign="middle" >500</td><td align="center" valign="middle" >3</td></tr><tr><td align="center" valign="middle" >Ein Abu Zaher</td><td align="center" valign="middle" >3590</td><td align="center" valign="middle" >Nil</td><td align="center" valign="middle" >5401</td><td align="center" valign="middle" >Nil</td></tr><tr><td align="center" valign="middle" >Ein Albalad</td><td align="center" valign="middle" >56,000</td><td align="center" valign="middle" >1175</td><td align="center" valign="middle" >18,900</td><td align="center" valign="middle" >Nil</td></tr><tr><td align="center" valign="middle" >Ein Biet Soreq</td><td align="center" valign="middle" >1290</td><td align="center" valign="middle" >8</td><td align="center" valign="middle" >350</td><td align="center" valign="middle" >2</td></tr><tr><td align="center" valign="middle" >Ein Alshami</td><td align="center" valign="middle" >3490</td><td align="center" valign="middle" >Nil</td><td align="center" valign="middle" >312</td><td align="center" valign="middle" >Nil</td></tr><tr><td align="center" valign="middle" >Ein Aziz</td><td align="center" valign="middle" >2200</td><td align="center" valign="middle" >Nil</td><td align="center" valign="middle" >70</td><td align="center" valign="middle" >Nil</td></tr></tbody></table></table-wrap><p>area and to determine hydrochemical parameters of the aquifer system. Water samples were analyzed within two water sampling campaigns (before and after recharge period), covering all springs in the area. These springs are located close to populated areas and have agricultural activities nearby. The physical properties (temperature and EC) and chemical properties (pH, TDS, major ions, and trace elements) were determined. From the results of this study, the concentrations of most metal, ions and anions are within permissible limits except the few cases discussed. The spring water quality is generally low. Springs are suitable to be used as agricultural and irrigation water source, except some samples which are poor due to high salinity. EC and TDS averages in wet period are higher than those in dry period due to dilution process. Depending on TDS values for both periods the spring water in the area is classified as fresh water. The relationship between EC and TDS in the spring water of the study area is strong and the value of correlation coefficient (R) is close to one by equations (TDS = 0.46 EC + 20.2 with R<sup>2</sup> = 0.99). The water of the area is between highly mineralized and excessively mineralized. EC values are higher in Ein Beiet Soreq as a result of the applications of fertilizers uses in the recharge areas, in addition to human activities.</p></sec><sec id="s13"><title>Cite this paper</title><p>HassanJebreen,MarwanGhanem, (2015) Spring Water Qualitative Assessment in Mountainous Areas, Case Study: Soreq Catchment/Ramallah/West Bank. Journal of Water Resource and Protection,07,851-859. doi: 10.4236/jwarp.2015.711069</p></sec></body><back><ref-list><title>References</title><ref id="scirp.58198-ref1"><label>1</label><mixed-citation publication-type="other" xlink:type="simple">World Health Organization (WHO) (2006) Guidelines for Drinking-Water Quality [Electronic Resource]: Incorporating First Addendum. Vol. 1, Recommendations. 3rd Edition, World Health Organization, Geneva. http://www.who.int</mixed-citation></ref><ref id="scirp.58198-ref2"><label>2</label><mixed-citation publication-type="other" xlink:type="simple">Avisar, D., Rosenthala, E., Flexera, A., Shulmana, Ben-Avrahama, Z. and Guttman, J. (2002) Salinity Sources of Kefar Uriya Wells in the Judea Group Aquifer of Israel. Part 1-Conceptual Hydrogeological Model. 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