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Evaluation of Integrated Anaerobic Digestion and Hydrothermal Carbonization for Bioenergy Production

机译:综合厌氧消化和水热碳化生物能源生产的评价。

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摘要

Lignocellulosic biomass is one of the most abundant yet underutilized renewable energy resources. Both anaerobic digestion (AD) and hydrothermal carbonization (HTC) are promising technologies for bioenergy production from biomass in terms of biogas and HTC biochar, respectively. In this study, the combination of AD and HTC is proposed to increase overall bioenergy production. Wheat straw was anaerobically digested in a novel upflow anaerobic solid state reactor (UASS) in both mesophilic (37 °C) and thermophilic (55 °C) conditions. Wet digested from thermophilic AD was hydrothermally carbonized at 230 °C for 6 hr for HTC biochar production. At thermophilic temperature, the UASS system yields an average of 165 LCH4/kgVS (VS: volatile solids) and 121 L CH4/kgVS at mesophilic AD over the continuous operation of 200 days. Meanwhile, 43.4 g of HTC biochar with 29.6 MJ/kgdry_biochar was obtained from HTC of 1 kg digestate (dry basis) from mesophilic AD. The combination of AD and HTC, in this particular set of experiment yield 13.2 MJ of energy per 1 kg of dry wheat straw, which is at least 20% higher than HTC alone and 60.2% higher than AD only.
机译:木质纤维素生物质是最丰富但未充分利用的可再生能源之一。厌氧消化(AD)和水热碳化(HTC)都是有前途的技术,分别从沼气和HTC生物炭方面利用生物质生产生物能源。在这项研究中,建议将AD和HTC结合使用以增加总体生物能源产量。小麦秸秆在中温(37°C)和嗜热(55°C)条件下在新型上流厌氧固态反应器(UASS)中进行厌氧消化。从嗜热性AD中消化的湿液在230°C的温度下水热碳化6小时,以生产HTC生物炭。在嗜热温度下,连续200天连续运行中温AD时,UASS系统平均产生165 LCH4 / kgVS(VS:挥发性固体)和121 L CH4 / kgVS。同时,从得自嗜温性AD的1kg消化物(干基)的HTC获得43.4g具有29.6MJ / kgdry_biochar的HTC生物炭。在这组特定的实验中,AD和HTC的组合产生的能量为每1千克干麦草13.2 MJ,比单独的HTC高至少20%,比仅AD高60.2%。

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