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Continuous two-step anaerobic digestion (TSAD) of organic market waste: rationalising process parameters

机译:有机市场废物的连续两步厌氧消化(TSAD):合理化工艺参数

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Experimental tests on continuous two-stage anaerobic digestion (TSAD) were conducted, to assess its energetic performance, using organic market waste as a substrate. The systems were tested to ascertain the effects of external stressors, which allow the separation into two different microorganism consortia, that is, hydrogen-producing bacteria and hydrogen-consuming bacteria, to be maintained. Two bioreactors were run in series under different operational conditions, including pH, mixing rate, and initial inoculum, and three different decreasing hydraulic retention times were considered, with a fixed ratio of 1:10 in volume between the first bioreactor (hydrogen) and the second one (methane). The performance of the whole system was assessed over?>?140?days to monitor the stability of the process, in terms of the reduction of the volatile solids and the energy productivity for each step. Each tested condition was scored using two parameters: efficiency and efficacy. The first corresponds to the fraction of recovered energy of the available ( η ) and the second ( ξ ) was used to compare the energy produced by the TSAD with that of one-step anaerobic digestion. The efficiency resulted to be (24–32)%, while the efficacy proved to be around 1.20. The share of energy, under the form of hydrogen, compared to the total energy recovery, was in the (8–12) % range. Finally, the oscillation behaviour of the quasi-steady-state condition was analysed in terms of the Fano factor to establish the most stable conditions.
机译:进行了连续两阶段厌氧消化(TSAD)的实验测试,以有机市集废弃物为底物评估其能量性能。对系统进行了测试,以确定外部压力源的作用,该作用源可以保持分离为两个不同的微生物群落,即产氢细菌和耗氢细菌。两个生物反应器在不同的操作条件(包括pH,混合速率和初始接种物)下串联运行,并考虑了三个不同的降低的水力停留时间,第一个生物反应器(氢气)与反应器之间的体积比固定为1:10第二个(甲烷)。整个系统的性能在≥140天的时间内进行了评估,以监控过程的稳定性,包括减少每个步骤中的挥发性固体和提高能源生产率。使用两个参数对每种测试条件进行评分:效率和功效。第一个对应于可用能量的回收能量分数(η),第二个对应于(ξ)来比较TSAD产生的能量和一步式厌氧消化的能量。效率为(24–32)%,而效率证明为1.20左右。与氢的总能量回收相比,氢形式的能量份额在(8-12)%范围内。最后,根据Fano因子分析准稳态条件的振荡行为,以建立最稳定的条件。

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