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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Feasibility of enhancing hydrogen production from cornstalk hydrolysate anaerobic fermentation by RCPH-biochar
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Feasibility of enhancing hydrogen production from cornstalk hydrolysate anaerobic fermentation by RCPH-biochar

机译:通过RCPH-Biochar加强玉米烷烃水解厌氧发酵的可行性

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This study presents a novel approach based on addition of biochar generated from residue of cornstalk left after pretreatment and hydrolysis (RCPH-biochar) to improve hydrogen production from cornstalk hydrolysate. RCPH-biochar at concentration of 15 g L-1 substantially enhanced hydrogen generation during batch tests, with the highest cumulative hydrogen volume (3990 mL L-1) being 1.7 times that without RCPH-biochar. Then, continuous hydrogen production performance demonstrated that RCPH-biochar was capable of retaining biomass in the reactor, at 6 h hydraulic retention time, hydrogen production rate (22.8 mmol H-2 L-1 h(-1)) was tripled compared to the control, meanwhile, glucose and xylose utilization reached to 82.3% and 54.6%, respectively. Overall material balance indicates continuous hydrogen production with RCPH-biochar enabled 63.4% higher cornstalk transfer to H-2 and 53.3% more cornstalk utilization. The findings reported is a closed-loop process and is economically and environmentally attractive, which might support comprehensive cornstalk utilization with less energy input in the future.
机译:本研究提出了一种基于在预处理和水解(RCPH-BioChar)之后留下的玉米秸秆残留物产生的生物炭的新方法,以改善玉米烷烃水解产物的氢气产生。在批量试验期间浓度为15g L-1的浓度为15g L-1的Rcph-Biochar,最高累积氢气体积(3990ml L-1)为1.7倍,没有rcph-biochar。然后,连续的氢气生产性能证明了RCPH-Biochar能够在反应器中保留生物量,在6小时液压保留时间,氢气产生速率(22.8mmol H-2 L-1 H(-1))增加到与此相比同时,对照,葡萄糖和木糖利用率分别达到82.3%和54.6%。总体材料平衡表明,连续氢气产生RCPH-Biochar使63.4%较高的玉米载体转移到H-2和53.3%的玉米展开利用率。报告的调查结果是闭环过程,在经济和环保上具有环保性,可能在未来的能源投入较少的情况下支持全面的玉米展。

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