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Food waste co-digestion with slaughterhouse waste and sewage sludge: Digestate conditioning and supernatant quality

机译:餐厨垃圾与屠宰场垃圾和污水污泥的共消化:消化液处理和上清液质量

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In this study, the anaerobic mesophilic co-digestion of food waste (FW) with municipal sewage sludge (MSS) and slaughterhouse waste (SHW) was undertaken in 3-dm(3) laboratory reactors as well as in 50-dm(3) reactors operated in semi-continuous conditions. The highest methane yield of around 0.63 m(3) CH4/kgVS(fed) was achieved for the mixture of FW and SHW treated in the laboratory digester operated at solids retention time (SRT) of 30 days, whereas the co-digestion of FW with MSS under similar operating conditions produced 0.46 m(3) of methane from 1 kgVS(fed). No significant differences between methane yields from laboratory digesters and large-scale reactors were reported. The conditioning tests with the digestates from reactor experiments revealed the highest efficiency of inorganic coagulants among all investigated chemicals, which applied in a dose of 10 g/kg allowed to reduce capiliary suction time (CST) of the digestate below 20 s. The combined conditioning with coagulants and bentonite did not further reduce the CST value but improved the quality of the digestate supernatant. In particular, the concentrations of suspended solids, COD as well as metals in the supernatant were considerably lowered. (C) 2017 Published by Elsevier Ltd.
机译:在这项研究中,食物垃圾(FW)与市政污水污泥(MSS)和屠宰场垃圾(SHW)的厌氧共消化是在3-dm(3)实验室反应器以及50-dm(3)中进行的在半连续条件下运行的反应堆。在实验室消化器中处理的FW和SHW的混合物,在30天的固体保留时间(SRT)下,获得的最高甲烷产量约为0.63 m(3)CH4 / kgVS(fed)与MSS在相似的操作条件下,从1 kgVS(进料)中产生0.46 m(3)的甲烷。据报道,实验室蒸煮器和大型反应器的甲烷产量之间没有显着差异。用反应器实验中的消化液进行的条件测试表明,在所有研究的化学品中,无机混凝剂的效率最高,其用量为10 g / kg,可将消化液的毛细吸入时间(CST)降低至20 s以下。混凝剂和膨润土的组合调理不会进一步降低CST值,但改善了消化上清液的质量。特别是,上清液中悬浮固体,COD以及金属的浓度大大降低。 (C)2017由Elsevier Ltd.发布

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