Biography

Prof. Dar-Yuan Lee

Department of Agricultural Chemistry,

National Taiwan University, Chinese Taipei

Distinguished Professor


Email: [email protected]


Qualifications

1988  Ph.D., University of California, USA

1983  M.S., National Taiwan University, Chinese Taipei

1979  B.S., National Taiwan University, Chinese Taipei


Publications (Selected)

  1. Liao, Y. J., Cao, Y. R., & Lee, D. Y. (2024). Assessment of health risks associated with prediction of vegetable inorganic arsenic concentrations given different soil properties. Environmental Geochemistry and Health, 46(3), 71.
  2. Ke, Y. H., Syu, C. H., Liao, Y. J., & Lee, D. Y. (2022). Field experiments for evaluating the effects of water management and phosphate application on inorganic arsenic accumulation in water spinach (Ipomoea aquatica Forssk.). Science of The Total Environment, 844, 157232.
  3. Cheah, B. H., Liao, P. C., Lo, J. C., Wang, Y. T., Tang, I. C., Yeh, K. C., ... & Lin, Y. F. (2022). Insight into the mechanism of indium toxicity in rice. Journal of Hazardous Materials, 429, 128265.
  4. Liao, Y. J., Syu, C. H., & Lee, D. Y. (2021). Comparison of As accumulation and speciation in water spinach (Ipomoea aquatica Forssk.) grown in As-elevated soils under flooding versus upland conditions. Journal of Hazardous Materials, 415, 125711.
  5. Syu, C. H., Chen, L. Y., & Lee, D. Y. (2021). The growth and uptake of gallium (Ga) and indium (In) of wheat seedlings in Ga-and In-contaminated soils. Science of the total environment, 759, 143943.
  6. Syu, C. H., Yu, C. H., & Lee, D. Y. (2020). Effect of applying calcium peroxide on the accumulation of arsenic in rice plants grown in arsenic-elevated paddy soils. Environmental Pollution, 266, 115140.
  7. Syu, C. H., Wu, P. R., Lee, C. H., Juang, K. W., & Lee, D. Y. (2019). Arsenic phytotoxicity and accumulation in rice seedlings grown in arsenic‐contaminated soils as influenced by the characteristics of organic matter amendments and soils. Journal of Plant Nutrition and Soil Science, 182(1), 60-71.
  8. Chang, D. Y., & Lin, C. H. (2019). High-aspect ratio mechanical microdrilling process for a microhole array of nitride ceramics. The International Journal of Advanced Manufacturing Technology, 100, 2867-2883.
  9. Su, J. Y., Syu, C. H., & Lee, D. Y. (2018). Growth inhibition of rice (Oryza sativa L.) seedlings in Ga-and In-contaminated acidic soils is respectively caused by Al and Al+ In toxicity. Journal of Hazardous Materials, 344, 274-282.
  10. Lai, Y. C., Syu, C. H., Wang, P. J., Lee, D. Y., Fan, C., & Juang, K. W. (2018). Field experiment for determining lead accumulation in rice grains of different genotypes and correlation with iron oxides deposited on rhizosphere soil. Science of the Total Environment, 610, 845-853.
  11. Syu, C. H., Chien, P. H., Huang, C. C., Jiang, P. Y., Juang, K. W., & Lee, D. Y. (2017). The growth and uptake of Ga and In of rice (Oryza sative L.) seedlings as affected by Ga and In concentrations in hydroponic cultures. Ecotoxicology and Environmental Safety, 135, 32-39.
  12. Syu, C. H., Huang, C. C., Jiang, P. Y., Chien, P. H., Wang, H. Y., Su, J. Y., & Lee, D. Y. (2016). Effects of foliar and soil application of sodium silicate on arsenic toxicity and accumulation in rice (Oryza sativa L.) seedlings grown in As-contaminated paddy soils. Soil Science and Plant Nutrition, 62(4), 357-366.
  13. Lee, C. H., Wu, C. H., Syu, C. H., Jiang, P. Y., Huang, C. C., & Lee, D. Y. (2016). Effects of phosphorous application on arsenic toxicity to and uptake by rice seedlings in As-contaminated paddy soils. Geoderma, 270, 60-67.
  14. Syu, C. H., Huang, C. C., Jiang, P. Y., Lee, C. H., & Lee, D. Y. (2015). Arsenic accumulation and speciation in rice grains influenced by arsenic phytotoxicity and rice genotypes grown in arsenic-elevated paddy soils. Journal of Hazardous Materials, 286, 179-186.
  15. Chen, C.P., K.W. Juang, T.H. Lin, and D.Y. Lee. (2010) Assessing the phytotoxicity of chromium in Cr(VI)-spiked soils by Cr speciation using XANES and resin extractable Cr(III) and Cr(VI). Plant and Soil 334:299-309.
  16. Chen, W.T., S.B. Ho, and D.Y. Lee. (2009) Effect of pH on boron adsorption-desorption hysteresis of soils. Soil Sci. 174:330-338.
  17. Chiu, C.C., C.J. Cheng, T.H. Lin, K.W. Juang, and D.Y. Lee. (2009) The effectiveness of four organic matter amendments for decreasing resin-extractable Cr(VI) in Cr(VI)-contaminated soils. J Hazardous Materials 161:1239-1244.
  18. Juang, K.W., W.J. Liao, T.L. Liu, L. Tsui, and D.Y. Lee. (2008) Additional sampling based on regulation threshold and kriging variance to reduce the probability of false delineation in a contaminated site. Sci. Total Environ. 389:20-28.
  19. Liu,T.L., K.W. Juang, and D.Y. Lee. (2006) Improving Kriging Interpolation of Soil Properties for Site-specific Management by Using Ancillary Categorical Information of Soil Maps. Soil Sci. Soc. Am. J. 70:1200-1209.
  20. Lee, D.Y., J.C. Huang, K.W. Juang, and L. Tsui. (2005) Assessment of phytotoxicity of chromium in paddy fields using selective ion exchange resins embedded in soils. Plant and Soil 277:91-105.
  21. Juang, K. W., D.Y. Lee, and Y. L. Teng. (2005) Adaptive sampling based on cumulative distribution function of order statistics to delineate heavy-metal contaminated soils using kriging. Environmental Pollution 138:268-277.
  22. Juang, K.W., Y.S. Chen, and D.Y. Lee. (2004) Using sequential indicator simulation to assess the uncertainty of delineating heavy-metal contaminated soils. Environmental Pollution 127:229-238.
  23. Juang, K.W., D. C. Liou, and D.Y. Lee. (2002) Site-specific phosphorus application based on the kriging fertilizer-P availability index of soils. J. Environ. Qual. 31:1248-1255.
  24. Juang, K.W., D.Y. Lee, and T.R. Ellsworth. (2001) Using rank order geostatistics for spatial interpolation of highly skewed data in a heavy metal contaminated site. J. Environ. Qual. 30:894-903.
  25. Hsiao, C.K., K.W. Juang, and D.Y. Lee. (2000) Estimating the second-stage sample size and the most probable number of hot spots from a first-stage sample of heavy-metal contaminated soils. Geoderma 95:73-88.
  26. Junag, K.W. and D.Y. Lee. (2000) Comparison of three nonparametric kriging methods for delineating heavy-metal contaminated soils. J. Environ. Qual. 29:197-205.
  27. Juang, K.W. and D.Y. Lee. (1998) A comparison of three kriging methods using auxiliary variables in heavy-metal contaminated soils. J. Environ. Qual. 27:355-363.
  28. Houng, K.H. and D.Y. Lee. (1998) Comparison of linear and nonlinear Langmuir and Freundlich curve-fit in the study of Cu, Cd, and Pb adsorption on Taiwan soils. Soil Sci. 163:115-121.
  29. Juang, K.W. and D.Y. Lee. (1998) Simple indicator kriging for estimating the probability of incorrectly delineating hazardous areas in a contaminated site. Environ. Sci. Technol. 32:2487-2493.
  30. Chien, Y.J., D.Y. Lee, H.Y. Guo, and K.H. Houng. (1997), Geostatistical analysis of soil properties of mid-west Taiwan soils. Soil Sci. 162:291-298.
  31. Lee, D.Y., P.H. Chiang, and K.H. Houng. (1996) Determination of bioavailable cadmium in paddy fields by chelating resin membrane embedded in soils. Plant and Soil 181:233-239.
  32. Hsia, T.H, S.L. Lo, C.F. Lin, and D.Y. Lee. (1993) Chemical and spectroscopic evidence for specific adsorption of chromate on hydrous iron oxide. Chemosphere 26:1897-1904.


Profile Details

https://www.ac.ntu.edu.tw/en/members/Full_Time/Dar-Yuan-LEE-38022203
https://orcid.org/0000-0002-6915-6543
https://www.researchgate.net/scientific-contributions/Dar-Yuan-Lee-33809105

SCIRP Newsletter
Copyright © 2006-2026 Scientific Research Publishing Inc. All Rights Reserved.
Top