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Effects of mixture ratio on anaerobic co-digestion with fruit and vegetable waste and food waste of China

机译:混合比对中国果蔬废弃物和食品废弃物厌氧消化的影响

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The biochemical methane potentials for typical fruit and vegetable waste (FVW) and food waste (FW) from a northern China city were investigated, which were 0.30, 0.56 m~3 CH_4/kgVS (volatile solids) with biodegradabilities of 59.3% and 83.6%, respectively. Individual anaerobic digestion testes of FVW and FW were conducted at the organic loading rate (OLR) of 3 kg VS/(m~3·day) using a lab-scale continuous stirred-tank reactor at 35℃. FVW could be digested stably with the biogas production rate of 2.17 m~3/(m~3·day) and methane production yield of 0.42 m~3 CH_4/kg VS. However, anaerobic digestion process for FW was failed due to acids accumulation. The effects of FVW: FW ratio on co-digestion stability and performance were further investigated at the same OLR. At FVW and FW mixing ratios of 2:1 and 1:1, the performance and operation of the digester were maintained stable, with no accumulation of volatile fatty acids (VFA) and ammonia. Changing the feed to a higher FW content in a ratio of FVW to FW 1:2, resulted in an increase in VFAs concentration to 1100-1200 mg/L, and the methanogenesis was slightly inhibited. At the optimum mixture ratio 1:1 for co-digestion of FVW with FW, the methane production yield was 0.49 m~3 CH_4/kg VS, and the volatile solids and soluble chemical oxygen demand (sCOD) removal efficiencies were 74.9% and 96.1%, respectively.
机译:调查了中国北方城市的典型果蔬废物(FVW)和食品废物(FW)的生化甲烷潜力,分别为0.30、0.56 m〜3 CH_4 / kgVS(挥发性固体),生物降解率分别为59.3%和83.6%。 , 分别。 FVW和FW的厌氧消化试验分别在35℃的实验室规模连续搅拌釜反应器中以3 kg V​​S /(m〜3·day)的有机负荷速率(OLR)进行。 FVW可以稳定地消化,沼气产量为2.17 m〜3 /(m〜3·day),沼气产量为0.42 m〜3 CH_4 / kgVS。然而,由于酸的积累,FW的厌氧消化过程失败了。在同一OLR下,进一步研究了FVW:FW比对共消化稳定性和性能的影响。在FVW和FW混合比为2:1和1:1的情况下,蒸煮器的性能和操作保持稳定,并且没有挥发性脂肪酸(VFA)和氨的积累。将饲料以FVW与FW 1:2的比例更改为较高的FW含量,导致VFA浓度增加到1100-1200 mg / L,并且产甲烷作用受到轻微抑制。 FWW与FW共同消化的最佳混合比为1:1时,甲烷产量为0.49 m〜3 CH_4 / kg V​​S,挥发性固体和可溶性化学需氧量(sCOD)去除效率分别为74.9%和96.1。 %, 分别。

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