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Anaerobic co-digestion of spent coconut copra with cow urine for enhanced biogas production

机译:厌氧共消化用牛尿的Coconut Copra,用于增强沼气生产

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Laboratory-scale bioreactors were used to co-digest spent coconut copra (SCC) and cow urine (CU) as a co-substrate (SCC + CU) in a batch mode under thermophilic condition (45 ± 2°C) in order to enhance biogas production. The effect of CU pretreatment on the performance indicators (biogas and biomethane yields, total solids (TS), and volatile solids (VS) reduction, pH and volatile fatty acids (VFAs) concentrations) were also examined. This was compared with mono-digestion of SCC. The experiment was performed with different mixing ratios in reactors labelled as follows: A = 75 g SCC + 5 ml CU; B = 70 g SCC + 10 ml CU; C = 65gSCC+15ml CU; and D (control) = 80 g SCC at a hydraulic retention time of 42 days. Co-digestion (SCC + CU) significantly improved anaerobic digestion (AD) performance resulting in a threefold and fivefold increase in biogas and biomethane production, respectively, with concomitant TS (44.9-57.7%) and VS (55.4-60.3%) removal efficiencies. But for mono-digestion (control experiment), all CU treated and co-digestion assays showed pH stability ranging between 6.6 and 7.4 and VFAs' concentrations ranging from 15-330 mgl~(-1). By acting as a buffer, CU effectively enhanced the AD performance of SCC as demonstrated in this study.
机译:实验室级生物反应器用于在嗜热条件下以批料模式(45±2°C)在批量模式下将花椰子COPRA(SCC)和牛尿(CU)作为共生成的椰子(SCC + Cu)。为了增强沼气生产。还研究了Cu预处理的影响(沼气和生物甲烷产率,总固体(TS)和挥发性固体(Vs)还原,pH和挥发性脂肪酸(VFA)浓度)。将其与SCC的单声道进行比较。用标记的反应器中的不同混合比进行实验,如下:a = 75g scc + 5ml Cu; B = 70克SCC + 10mL CU; C = 65GSCC + 15ml Cu; D(控制)= 80g SCC在液压保留时间为42天。共消化(SCC + Cu)显着改善了厌氧消化(AD)性能,分别产生了三倍,沼气和生物甲烷的增加,伴随的TS(44.9-57.7%)和VS(55.4-60.3%)去除效率。但对于单消解(对照实验),所有Cu处理和共消化测定的均在6.6和7.4和VFAS的浓度之间的稳定性范围为15-330mgL〜(-1)。通过作为缓冲液,CU有效增强了SCC的广告性能,如本研究所示。

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