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Effects of ultrasonic vibration-assisted pelleting of cellulosic biomass on sugar yield for biofuel manufacturing

机译:超声振动纤维素生物质制粒对生物燃料制糖产量的影响

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Ultrasonic vibration-assisted (UV-A) pelleting can increase the bulk density of cellulosic biomass, thus reduce the feedstock transportation cost in cellulosic biofuel manufacturing. UV-A pelleting can also increase the biomass sugar yield in enzymatic hydrolysis. There are two major processes in the sugar conversion of cellulosic biomass: pretreatment and enzymatic hydrolysis. Sugar yield definition used in reported UV-A pelleting studies is enzymatic hydrolysis sugar yield. This definition is based on enzymatic hydrolysis this single process without considering the pretreatment process. In fact, converting cellulosic biomass into fermentable sugar (glucose) is the combined effort of pretreatment and enzymatic hydrolysis. There are no papers in the literature investigating whether UV-A pelleting could increase the total sugar yield when both pretreatment and enzymatic hydrolysis are considered. This paper reports the first study using total sugar yield to investigate the effects UV-A pelleting on biomass sugar yield. Experimental results show that, for all the four types of cellulosic biomass (wheat straw, corn stover, switchgrass, and sorghum stalk) used in this study, total sugar yield of biomass processed with UV-A pelleting was 30 to 43 % higher than that of biomass not processed with UV-A pelleting.
机译:超声振动辅助(UV-A)造粒可以增加纤维素生物质的堆积密度,从而降低纤维素生物燃料制造中的原料运输成本。 UV-A制粒还可在酶促水解中提高生物质糖的收率。纤维素生物质的糖转化有两个主要过程:预处理和酶促水解。在报道的UV-A制粒研究中使用的糖产量定义是酶促水解糖产量。该定义基于酶促水解这一单一过程,而不考虑预处理过程。实际上,将纤维素生物质转化为可发酵糖(葡萄糖)是预处理和酶水解的共同努力。没有文献调查当同时考虑预处理和酶促水解时,UV-A制粒是否可以提高总糖产量。本文报道了第一项使用总糖产量来研究UV-A制粒对生物质糖产量的影响的研究。实验结果表明,对于本研究中使用的所有四种纤维素生物质(小麦秸秆,玉米秸秆,柳枝switch和高粱秸秆),用UV-A制粒工艺处理的生物质的总糖产量比其高30%至43%。未经UV-A造粒处理的生物量。

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