Saccharification of Sugarcane Bagasse Using an Enzymatic Extract Produced by Aspergillus fumigatus
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چکیده
منابع مشابه
Cellulosic Ethanol Production from Sugarcane Bagasse without Enzymatic Saccharification
Sugarcane processing generates a large volume of bagasse. Disposal of bagasse is critical for both agricultural profitability and environmental protection. Sugarcane bagasse is a renewable resource that can be used to produce ethanol and many other value-added products. In this study, we demonstrate that cane processed bagasse could be used to produce fuel grade ethanol without saccharification...
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Niege A. J. C. Furtado, Mônica T. Pupo, Ivone Carvalho, Vanessa L. Campo, Marta Cristina T. Duarte and Jairo K. Bastos* a Faculdade de Ciências Farmacêuticas de Ribeirão Preto, Universidade de São Paulo, Avenida do Café s/n, 14040-903 Ribeirão PretoSP, Brazil b Centro Pluridisciplinar de Pesquisas Químicas, Biológicas e Agrícolas, Universidade de Campinas, Avenida Alexandre Casellato, 999, Vila...
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To evaluate the biofuel potential of bagasse, an abundant co-product in sugarcane-based industries, the effect of steam explosion on the efficiency of enzymatic saccharification and anaerobic digestion was studied. Bagasse was steam exploded at four different severity levels, and the impact of pretreatment was evaluated by analyzing the release of glucose after enzymatic saccharification with C...
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In present research exploration, sugar cane bagasse an indigenous waste/by product carbon source was tested as substrate for optimum biosynthesis of xylanase by Aspergillus niger using the submerged fermentation technique. The for xylanase production, thee concentration levels (2.5, 3.0 and 3.5%) of sugar cane bagasse, four different fermentation temperatures (i.e. 25.0, 27.5, 30.0 and 32.5C) a...
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This work presents a kinetic study of the enzymatic hydrolysis of three cellulosic substrates: filter paper (FP), used as a low recalcitrance substrate model; steam exploded sugarcane bagasse (SB); and weak acid pretreated SB (1:20 dry bagasse:H2SO4 solution 1% w/w), the last two delignified with 4% NaOH (w/w). The influence of substrate concentration was assessed in hydrolysis experiments in a...
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ژورنال
عنوان ژورنال: Journal of Renewable Materials
سال: 2018
ISSN: 2164-6325
DOI: 10.7569/jrm.2017.634151