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首页> 外文期刊>Journal of Cleaner Production >Pilot-scale multi-purposes approach for volatile fatty acid production, hydrogen and methane from an automatic controlled anaerobic process
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Pilot-scale multi-purposes approach for volatile fatty acid production, hydrogen and methane from an automatic controlled anaerobic process

机译:来自自动控制厌氧工艺的挥发性脂肪酸生产,氢气和甲烷的试验规模多种用途

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摘要

A combined two-levels control method has been developed and tested on a long term operation of a two-phases pilot-scale anaerobic process for the concurrent production of volatile fatty acids, hydrogen and methane. The latter was designed for the treatment of food waste of urban origin (namely, the organic fraction of municipal solid waste). The optimized control method was set on the base of the inputs of three online probes: a pH-meter in the fermentation reactor, a pH-meter and a conductivity probe in the digestion reactor. The first control level managed the pH in the fermentation reactor while the second control level managed the ammonia concentration in the digestion reactor. This combination established the volume of the digestate to be recycled from the digestion to the fermentation reactor, optimizing the yield of volatile fatty acid (0.31-0.32 kg CODVFA/kg CODfed) and the specific hydrogen production (SHP; 0.070-0.074 m(3) H-2/kg TVSfed) in the fermentation reactor and the specific methane production (SMP; 0.48-0.55 m(3) CH4/kg TVSfed) in the digestion reactor.A new process configuration was also proposed and applied over the course of the long operation period. This configuration allowed to remove part of the volatile fatty acid-rich liquid stream from the fermenter effluent, maintaining the corresponding solid-rich effluent in the whole system (as feed for the digestion reactor) by using a solid/liquid separation unit. In this way, the concentration of volatile fatty acids in the digester was kept at a low level, even with high loading rates, so maintaining a satisfying efficiency of methane production and utilizing the excess volatile fatty acids (out of the system) as building blocks for other purposes.The optimized two-levels control method for the anaerobic treatment of food waste provides new perspectives for the valorisation of such waste stream; the production of building blocks namely volatile fatty acids supports new innovative bio-refinery platforms for the production of bio-products. (C) 2020 Elsevier Ltd. All rights reserved.
机译:已经开发了组合的两级控制方法,并在两阶段试验型厌氧工艺的长期运行中开发和测试,用于同时生产挥发性脂肪酸,氢气和甲烷。后者是为治疗城市起源的食物浪费(即城市固体废物的有机分数)。在三个在线探针输入的输入基础上设定了优化的控制方法:在发酵反应器中的pH-meter,pH-meter和消化反应器中的电导率探针。第一控制水平管理发酵反应器中的pH,而第二种控制水平管理消化反应器中的氨浓度。这种组合使消化物的体积从消化物中再循环到发酵反应器中,优化挥发性脂肪酸的产率(0.31-0.32 kg Codvfa / kg Codfed)和特定的氢气产生(SHP; 0.070-0.074 m(3 )在发酵反应器和特定甲烷的生产中的H-2 / kg TVSFED(SMP; 0.48-0.55M(3)CH4 / kg TVSFED)在消化反应器中。还提出了新的工艺配置并在过程中应用长期运行期。该构型允许通过使用固体/液体分离单元将其从发酵罐流出物中除去部分挥发性脂肪酸富含富含富含脂肪酸的液体流,并通过使用固体/液体分离单元在整个系统中(作为消化反应器的进料)保持相应的固体流出物。通过这种方式,即使具有高负荷率,消化酯中挥发性脂肪酸的浓度也保持低水平,因此保持满足甲烷生产的效率,并利用过量的挥发性脂肪酸(从系统中)作为构建块出于其他目的。用于食品废物的厌氧处理的优化两种控制方法为这种废物流的储存提供了新的视角;建筑物的生产即挥发性脂肪酸支持新的创新生物炼油厂,用于生产生物产品。 (c)2020 elestvier有限公司保留所有权利。

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