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Sesbania aculeate biomass hydrolysis using magnetic nanobiocomposite of cellulase for bioethanol production

机译:利用纤维素酶磁性纳米生物复合材料水解Sesbania的生物质,以生产生物乙醇

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Cellulase bound magnetic nanoparticles was used as nanobiocatalyst for the hydrolysis of Sesbania aculeate biomass in the present study. The characteristic peak at 1624 cm(-1) in FT-IR spectrum confirmed the presence of cellulase on MNP. The particle size of the nanobiocatalyst was found in the range of 90 -100 nm and it was structurally found to be cubic in nature. The paramagnetic behavior of nanobiocatalyst was confirmed by VSM analysis. The optimal parameters are 1.5% (w/v) of nanobiocatalyst concentration, biomass concentration of 4% (w/v) and temperature at 30 degrees C. The maximum bioethanol yield of 5.31 g/l was obtained using Sesbania aculeate biomass hydrolysate under optimal conditions. The produced bioethanol was confirmed by GC-MS analysis. Reusability study was analyzed and proved that the nanobiocatalyst was efficient for the feasible production of bioethanol. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本研究中,纤维素酶结合的磁性纳米颗粒被用作纳米生物催化剂,用于水解Sesbania aculeate生物质。 FT-IR光谱中1624 cm(-1)处的特征峰证实了MNP上存在纤维素酶。发现纳米生物催化剂的粒度在90 -100 nm的范围内,并且在结构上发现其本质上是立方的。通过VSM分析证实了纳米生物催化剂的顺磁行为。最佳参数为纳米生物催化剂浓度的1.5%(w / v),生物质浓度为4%(w / v)和30摄氏度的温度。在最佳条件下,使用Sesbania aculeate生物质水解物获得的最大生物乙醇产量为5.31 g / l。条件。通过GC-MS分析确认了产生的生物乙醇。分析了可重用性研究,并证明该纳米生物催化剂对于可行的生物乙醇生产是有效的。 (C)2016 Elsevier Ltd.保留所有权利。

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