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Microwave-Based Alkali Pretreatment of Switchgrass and Coastal Bermudagrass for Bioethanol Production

机译:微波法对柳枝and和沿海百慕大草进行生物碱生产的碱预处理

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Switchgrass and coastal bermudagrass are promising lignocellulosic feedstocks for bioethanol production. However, pretreatment of lignocelluloses is required to improve production of fermentable sugars from enzymatic hydrolysis. Microwave-based alkali pretreatment of switchgrass and coastal bermudagrass was investigated in this study. Pretreatments were carried out by immersing the biomass in dilute alkali reagents and exposing the slurry to microwave radiation at 250 W for residence times ranging from 5 to 20 min. Simons' stain method was used to quantify changes in biomass porosity as a result of the pretreatment. Pretreatments were evaluated based on yields of total reducing sugars, glucose, and xylose. An evaluation of different alkalis identified sodium hydroxide as the most effective alkali reagent for microwave-based pretreatment of switchgrass and coastal bermudagrass. 82% glucose and 63% xylose yields were achieved for switchgrass and 87% glucose and 59% xylose yields were achieved for coastal bermudagrass following enzymatic hydrolysis of biomass pretreated under optimal conditions. Dielectric properties for dilute sodium hydroxide solutions were measured and compared with solid losses, lignin reduction, and reducing sugar levels in hydrolyzates. Results indicate that dielectric loss tangent of alkali solutions is a potential indicator of the severity of microwave-based pretreatments.
机译:柳枝gra和沿海百慕大草是有前途的用于生物乙醇生产的木质纤维素原料。然而,需要木质纤维素的预处理以提高酶促水解产生可发酵糖的能力。本研究研究了柳枝switch和沿海百慕大草的微波基碱预处理方法。通过将生物质浸入稀碱试剂中并将浆液在250 W的微波辐射下停留5至20分钟,进行预处理。使用Simons染色法对由于预处理而产生的生物质孔隙度的变化进行量化。基于总还原糖,葡萄糖和木糖的产量评估预处理。对不同碱的评估表明,氢氧化钠是柳枝switch和沿海百慕大草基于微波的预处理中最有效的碱试剂。在最佳条件下预处理的生物质经过酶促水解后,柳枝switch的葡萄糖产率为82%,木糖的产率为63%,沿海百慕大草的葡萄糖产率为87%,木糖的产率为59%。测量了稀氢氧化钠溶液的介电性能,并将其与固体损失,木质素还原和水解产物中糖含量降低进行了比较。结果表明,碱溶液的介电损耗角正切是基于微波的预处理的严重性的潜在指标。

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