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Biogas upgrading, CO_2 valorisation and economic revaluation of bioelectrochemical systems through anodic chlorine production in the framework of wastewater treatment plants

机译:沼气升级,CO_2通过阳极氯生产在废水处理厂骨架中的生物电化学系统的经济升值

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Biogas production in wastewater treatment plants (WWIPs) plays a decisive role in the reduction of CO2 emissions and energy needs in the context of the water-energy nexus. The biogas obtained from sewage sludge digestion can be converted into biomethane by the use of biogas upgrading technologies. In this regard, an innovative water scrubbing based technology, known as ABAD Bioenergy (R) is presented and considered in this work. The effluents resulting from this system consist of biomethane and treated wastewater with a high CO2 concentration. Therefore, the study explores the feasibility of using this CO2-containing effluent in the cathode of a bioelectrochemical system (DES) for the transformation of CO2 into methane. Techno-economic assessment of the process is presented, including the valorisation of anode reactions through the production of chlorine compounds. Finally, the potential impacts of applying this technology in a WWTP operated by FCC Aqualia are (i) increasing biomethane production by 17.4%. (ii) decreasing CO2 content by 42.8% and (iii) producing over 60 ppm of chlorine compounds to disinfect all the treated wastewater of the plant. (C) 2019 Elsevier B.V. All tights reserved.
机译:废水处理厂(WWIPS)的沼气生产在水能Nexus背景下减少二氧化碳排放和能量需求方面发挥着决定性作用。通过使用沼气升级技术可以将从污水污泥消化中获得的沼气层转化为生物甲烷。在这方面,在这项工作中提出并考虑了一种基于Abad生物能源(R)的创新的水擦洗技术。由该系统引起的污水由生物甲烷组成并用高CO 2浓度处理的废水。因此,该研究探讨了在生物电化学系统(DES)的阴极中使用含CO 2的流出物的可行性,用于将CO 2转化为甲烷。提出了对该过程的技术经济评估,包括通过生产氯化合物的阳极反应的储度。最后,在FCC Aqualia运营的WWTP中应用这项技术的潜在影响是(i)将生物甲烷产量增加17.4%。 (ii)将CO 2含量降低42.8%和(III),产生超过60ppm的氯化合物以消毒植物的所有处理过的废水。 (c)2019年Elsevier B.V.保留所有紧身裤。

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