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首页> 外文期刊>Biofuel Research Journal >Enzymatic hydrolysis of biologically pretreated sorghum husk for bioethanol production
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Enzymatic hydrolysis of biologically pretreated sorghum husk for bioethanol production

机译:生物预处理高粱壳的酶促水解以生产生物乙醇

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Biological pretreatment of lignocellulosic biomass is considered to be energy-efficient and cost-effective. In the present study, sorghum husk was biologically pretreated with a white-rot fungus Phanerochaete chrysosporium (MTCC 4955) under submerged static condition. Ligninolytic enzymes like lignin peroxidase (0.843 U/mL) and manganese peroxidase (0.389 U/mL) played an important role in the biological pretreatment of sorghum husk. Activities of different hydrolytic enzymes such as endoglucanase (57.25 U/mL), exoglucanase (4.76 U/mL), filter paperase (0.580 U/mL), glucoamylase (153.38 U/mL), and xylanase (88.14 U/mL) during biological pretreatment of sorghum husk by P. chrysosporium were evaluated. Enzymatic hydrolysis of untreated sorghum husk and biologically pretreated sorghum husk produced 20.07 and 103.0 mg/g reducing sugars, respectively. This result showed a significant increase in reducing sugar production in the biologically pretreated sorghum husk as compared to its untreated counterpart. Biologically pretreated sorghum husk hydrolysate was further fermented for 48 h using Saccharomyces cerevisiae (KCTC 7296), Pachysolen tannophilus (MTCC 1077), and their co-culture resulting in ethanol yields of 2.113, 1.095, and 2.348%, respectively. The surface characteristics of the substrate were evaluated after the delignification and hydrolysis, using FTIR, XRD, and SEM, confirming the effectiveness of the biological pretreatment process.
机译:木质纤维素生物质的生物预处理被认为是节能和经济的。在本研究中,在淹没的静态条件下,用白腐真菌Phanerochaete chrysosporium(MTCC 4955)对高粱壳进行了生物预处理。木质素分解酶如木质素过氧化物酶(0.843 U / mL)和锰过氧化物酶(0.389 U / mL)在高粱壳的生物预处理中起着重要作用。生物过程中不同水解酶的活性,例如内切葡聚糖酶(57.25 U / mL),外切葡聚糖酶(4.76 U / mL),滤纸酶(0.580 U / mL),葡糖淀粉酶(153.38 U / mL)和木聚糖酶(88.14 U / mL)评价了P. chrysosporium对高粱壳的预处理。未经处理的高粱壳和经过生物预处理的高粱壳的酶促水解分别产生20.07和103.0 mg / g的还原糖。该结果表明,与未经处理的高粱壳相比,经过生物预处理的高粱壳的糖产量降低显着增加。使用啤酒酵母(KCTC 7296),丹参(Pachysolen tannophilus)(MTCC 1077)对其进行生物预处理的高粱果壳水解产物进一步发酵48小时,它们的共培养分别产生2.113%,1.095和2.348%的乙醇。脱木素和水解后,使用FTIR,XRD和SEM对基材的表面特性进行了评估,从而证实了生物预处理工艺的有效性。

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