Advances in Bioscience and Biotechnology

Advances in Bioscience and Biotechnology

ISSN Print: 2156-8456
ISSN Online: 2156-8502
www.scirp.net/journal/abb
E-mail: [email protected]
"Biotechnological Transformation of Lignocellulosic Biomass in to Industrial Products: An Overview"
written by Amit Kumar, Archana Gautam, Dharm Dutt,
published by Advances in Bioscience and Biotechnology, Vol.7 No.3, 2016
has been cited by the following article(s):
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[2] Advancements in lignocellulosic biomass: A critical appraisal of fourth-generation biofuels and value-added bioproduct
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[9] Effect of alkaline and steam pre-treatment on saccharification of corn cob and production of cellullase from fungal consortium
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[10] State-of-the-Art Technologies for Production of Biochemicals from Lignocellulosic Biomass
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[12] Laccase Production from Local Biomass Using Solid State Fermentation. Fermentation 2023, 9, x
lid, F Afzal, M Refai, 2023
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[16] Pengaruh penambahan variasi jumlah ragi roti Saccharomyces cerevisiae dan lama fermentasi terhadap kadar etanol dari alga hijau Spirogyra sp.
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[44] Development of a xylose-utilizing Saccharomyces cerevisiae cell factory for the production of muconic acid and protocatechuic acid
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[45] New bacteria genera associated with rice (Oryza sativa L.) in Cuba promote the crop growth.
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[49] Lytic polysaccharide monooxygenases (LPMOs) producing microbes: A novel approach for rapid recycling of agricultural wastes
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[52] Pyrolytic lignin: a promising biorefinery feedstock for the production of fuels and valuable chemicals
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[54] A Review on Nanocellulose and Superhydrophobic Features for Advanced Water Treatment
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[57] Global Environmental Issues and the Role of Nanobiotechnology for the Sustainable Environment
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[58] Municipal Solid Waste Management: A Review of Waste to Energy (WtE) Approaches.
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[61] Lignocellulosic biomass wastes to bioenergy: role of microbial enzymes for second generation biofuels
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[62] Cellulolytic Bacillus species isolated from the gut of the desert locust Schistocerca gregaria
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[63] Potential of nanocellulose for wastewater treatment
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[64] Bioaugmentation with Ruminiclostridium thermocellum M3 to enhance thermophilic hydrogen production from agricultural solid waste
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[65] Efficient constitutive expression of cellulolytic enzymes in Penicillium oxalicum for improved efficiency of lignocellulose degradation
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[66] Ethanol from lignocellulosic biomass: An in-depth analysis of pre-treatment methods, fermentation approaches and detoxification processes
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[67] Bioplastic production from renewable lignocellulosic feedstocks: a review
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[68] Characterization of a new bifunctional endo-1, 4-β-xylanase/esterase found in the rumen metagenome
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[69] Optimized Bioconversion of Xylose Derived from Pre-Treated Crop Residues into Xylitol by Using Candida boidinii. Agronomy 2021, 11, 79
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[71] Analysis of Pretreatment Methods for Bio-based Plastic Production Based on Enzymatic Hydrolysis and Microbial Fermentation
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[72] Microbial utilization and bioconversion of lignocellulosic hydrolysates
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[73] Panorama Geral da Utilização de Líquidos Iônicos para Fracionamento e Transformação da Biomassa Lignocelulósica
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[76] Электронно-пучковые плазменные системы-новые возможности для технологий переработкилигноцеллюлозной биомассы
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[80] Different facets of lignocellulosic biomass including pectin and its perspectives
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[81] Electron-Beam Plasma for Biomass Modification
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