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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Combined effects of thermal pretreatment and increasing organic loading by co-substrate addition for enhancing municipal sewage sludge anaerobic digestion and energy production
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Combined effects of thermal pretreatment and increasing organic loading by co-substrate addition for enhancing municipal sewage sludge anaerobic digestion and energy production

机译:热预处理的组合效应,增加有机载荷加强加强城市污水污泥厌氧消化与能源生产

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In this work, the thermal pretreatment of municipal sewage sludge (MSS) associated to its anaerobic co-digestion with the olive processing wastewater (OPW) was investigated for increasing complex organic matter disintegration and bio-conversion into energy. The hydrolysis of MSS (47%-49%) was performed at 120 degrees C during 30 min of pretreatment, which was confirmed by Fourier transform infrared (FTIR) spectroscopy. Results showed that increasing total solid (TS) from 0.58% to 3.2% has no effect on the suspended volatile solid (VS) disintegration. Anaerobic co-digestion of pretreated MSS (PMSS) mixed with OPW was investigated and the effect of increasing OPW proportion on the bio-methane potentials (BMP) was examined. The anaerobic digestion of better ratios of PMSS/OPW(80%/20% and 70%/30%) was also performed in sequencing batch reactors (ASBRs). The high biodegradation yields of VS and phenols (81% and 92%, respectively) were obtained at PMSS/OPW of 70%/30% corresponding to a methane yield of 0.441 L/gVSinlet. Therefore, thermal pre-treatment of MSS and OPW addition improved significantly methane yield (50%-160%) and wastes stability. Furthermore, they increased total energy production from 30.9 kW h/ton to 93.5 kWh/ton, which would provide 0.56 M(sic)/year net benefits only from the electric power, which is considered interesting. The excess thermal energy should be used for wastes pretreatment and digester heating. (C) 2018 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在这项工作中,研究了与其厌氧共消化与橄榄加工废水(OPW)相关的市政污水污泥(MSS)的热预处理,以增加复杂的有机物崩解和生物转化为能量。在30分钟的预处理期间在120℃下在120℃下进行MSS(47%-49%),通过傅里叶变换红外(FTIR)光谱证实。结果表明,将总固体(TS)从0.58%增加至3.2%对悬浮的挥发性固体(Vs)崩解没有影响。研究了与OPW混合的预处理MSS(PMS)的厌氧共消化,研究了对生物甲烷电位(BMP)上增加OPW比例的效果。在测序批量反应器(ASBR)中也进行了对PMS / OPW的更好比率(80%/ 20%和70%/ 30%)的厌氧消化。在对应于0.441L / gVsinlet的甲烷产率的70%/ 30%的PMS / OPW中获得VS和酚的高生物降解产率(分别为81%和92%)。因此,MSS和OPW添加的热预处理提高了甲烷产率(50%-160%)并储存稳定性。此外,它们从30.9千瓦H /吨增加到93.5千瓦时/吨的总能源产量增加,只能从电力提供0.56米(SIC)/年的净效益,这被认为是有趣的。过量的热能应用于废物预处理和蒸煮料。 (c)2018化学工程师机构。 elsevier b.v出版。保留所有权利。

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