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Cellulase Production Using Biomass Feed Stock And Its Application In Lignocellulose Saccharification For Bio-ethanol Production

机译:利用生物质原料生产纤维素酶及其在木质纤维素糖化生产生物乙醇中的应用

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摘要

A major constraint in the enzymatic saccharification of biomass for ethanol production is the cost of cellulase enzymes. Production cost of cellulases may be brought down by multifaceted approaches which include the use of cheap lignocellulosic substrates for fermentation production of the enzyme, and the use of cost efficient fermentation strategies like solid state fermentation (SSF). In the present study, cellulolytic enzymes for biomass hydrolysis were produced using solid state fermentation on wheat bran as substrate. Crude cellulase and a relatively glucose tolerant BGL were produced using fungi Trichoderma reesei RUT C30 and Aspergillus niger MTCC 7956, respectively. Saccharification of three different feed stock, i.e. sugar cane bagasse, rice straw and water hyacinth biomass was studied using the enzymes. Saccharification was performed with 50 FPU of cellulase and 10 U of β-glucosidase per gram of pretreated biomass. Highest yield of reducing sugars (26.3 g/L) was obtained from rice straw followed by sugar cane bagasse (17.79 g/L). The enzymatic hydrolysate of rice straw was used as substrate for ethanol production by Saccharomyces cerevisiae. The yield of ethanol was 0.093 g per gram of pretreated rice straw.
机译:用于乙醇生产的生物质的酶促糖化的主要限制因素是纤维素酶的成本。纤维素酶的生产成本可以通过多方面的方法降低,包括使用廉价的木质纤维素底物进行酶的发酵生产,以及使用诸如固态发酵(SSF)之类的具有成本效益的发酵策略。在本研究中,以麦麸为底物的固态发酵生产了用于生物质水解的纤维素分解酶。分别使用里氏木霉RUT C30和黑曲霉MTCC 7956生产粗纤维素酶和相对耐葡萄糖的BGL。使用这些酶研究了三种不同原料的糖化,即甘蔗渣,稻草和水葫芦生物质。每克预处理的生物质用50 FPU的纤维素酶和10 U的β-葡萄糖苷酶进行糖化。从稻草获得最高的还原糖产量(26.3 g / L),其次是甘蔗渣(17.79 g / L)。稻草的酶水解物用作酿酒酵母生产乙醇的底物。每克预处理的稻草的乙醇产量为0.093 g。

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