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首页> 外文期刊>Biomass & bioenergy >Overcoming yard waste recalcitrance through four different liquid hot water pretreatment techniques - Structural evolution, biogas production and energy balance
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Overcoming yard waste recalcitrance through four different liquid hot water pretreatment techniques - Structural evolution, biogas production and energy balance

机译:通过四种不同的液体热水预处理技术克服院子里的废物批量 - 结构演变,沼气生产和能量平衡

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摘要

Liquid hot water (LHW) pretreatment is considered as a key step in reducing biomass recalcitrance and improving its accessibility to microorganisms during anaerobic digestion. In the present study, a comprehensive comparison among hot air oven, hot water bath, autoclave and microwave (MW) pretreated yard waste (YW) was conducted. The effect of treatment temperature and duration for all the four LHW pretreatment techniques were optimized with respect to the organic matter solubilisation. The results showed that all four LHW pretreatment techniques have a positive effect on organic matter solubilisation. The highest organic matter solubilisation was found in case of MW pretreatment for a treatment duration of 100 s at a temperature of 140 degrees C. Therefore, batch biochemical methane potential (BMP) of untreated and MW pre-treated YW was carried out for this treatment condition. The BMP of MW pretreated YW resulted in an improvement in methane yield to 364.5 +/- 11 mL/g VS on 26th day of anaerobic digestion, which was 1.1 times higher than that of untreated (328.9 +/- 15 mL/g VS on 45th day of anaerobic digestion). The FTIR and XRD analysis confirmed that LHW pretreatment technique removed amorphous constituents due to the polymerization of polysaccharides present in YW. In addition, SEM analysis confirmed that the LHW pretreatment led irregular and distorted structure of biomass which improved cellulose accessibility to anaerobic bacteria. A positive energy balance confirmed the possible applicability of MW pretreatment in real life projects.
机译:液体热水(LHW)预处理被认为是降低生物量重批分性并在厌氧消化期间改善微生物可达性的关键步骤。在本研究中,进行热空气炉,热水浴,高压釜和微波(MW)预处理围场废物(YW)的全面比较。对所有四种LHW预处理技术的治疗温度和持续时间的影响是关于有机物质溶解的优化。结果表明,所有四种LHW预处理技术对有机物质溶解具有积极影响。在MW预处理的情况下,在140℃的温度为100s的处理持续时间的情况下发现了最高有机物质溶解。因此,对该处理进行了未处理和MW预处理的YW的分批生化甲烷电位(BMP)状况。 MW预处理Yw的BMP导致甲烷产率的提高至364.5 +/-11ml / g与厌氧消化的第26天,其比未处理的1.1倍(328.9 +/- 15ml / g vs第45天的厌氧消化)。 FTIR和XRD分析证实,由于在YW中存在的多糖聚合,LHW预处理技术除去了非晶组分。此外,SEM分析证实,LHW预处理LED的生物质的不规则和扭曲结构,可改善厌氧细菌的纤维素可用性。积极的能量平衡证实了MW预处理在现实生活中可能的适用性。

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