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A new approach using an open-source low cost system for monitoring and controlling biogas production from dairy wastewater

机译:使用开源低成本系统监视和控制奶牛废水沼气生产的新方法

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Biogas plants can effectively treat various sources of organic wastes and recover energy from biomass. However, anaerobic digestion (AD) is highly sensitive to process disturbances, which can affect the biogas production efficiency. Online process monitoring/controlling can be used to ensure efficient and stable biogas production, but automated instruments are still associated with high costs. Therefore, this study developed a low-cost system, using the open-source platform Arduino and its components, to monitor/control some AD variables. To test the developed system (DS), some AD variables of the dairy wastewater inoculated with sewage sludge digestion was monitored/controlled in the liquid phase (pH, temperature) and in the gas phase (pressure, methane yield, biogas volume). The batch experiment was conducted in mesophilic conditions (38 degrees C), with an inoculum/substrate ratio of 1:2 for 21 days, and it was also evaluated in terms of volatile solids (VS) and chemical oxygen demand (COD) removal. The DS maintained the desired pH and temperature conditions and informed an average cumulative biogas and methane concentration of 675.2 mL and 51.46%, respectively. The VS and COD removal rate obtained after the digestion was 45.35% and 80.1%, respectively. At the end of AD, an ecotoxicity test using Lactuca sativa seeds was performed and high digestate concentrations exhibited toxicity. Finally, the apparatus construction was feasible for the proposed work, indicating its economic potential viability. (C) 2019 Elsevier Ltd. All rights reserved.
机译:沼气厂可以有效地处理各种有机废物源并从生物质中回收能量。但是,厌氧消化(AD)对过程干扰非常敏感,该过程可能会影响沼气的生产效率。在线过程监控/控制可用于确保高效稳定地生产沼气,但是自动化仪器仍然需要较高的成本。因此,本研究使用开源平台Arduino及其组件开发了一种低成本系统,以监视/控制一些AD变量。为了测试开发的系统(DS),在液相(pH,温度)和气相(压力,甲烷产量,沼气量)中监测/控制了接种了污泥消化的乳制品废水的一些AD变量。批处理实验在中温条件下(38摄氏度),接种量/底物比例为1:2进行了21天,并根据挥发性固体(VS)和化学需氧量(COD)的去除进行了评估。 DS维持所需的pH和温度条件,并告知平均累积沼气和甲烷浓度分别为675.2 mL和51.46%。消化后的VS和COD去除率分别为45.35%和80.1%。在公元末,使用紫花苜蓿种子进行了生态毒性测试,高消化物浓度表现出毒性。最后,该装置的构造对于所提出的工作是可行的,表明其经济潜力。 (C)2019 Elsevier Ltd.保留所有权利。

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