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Energy upcycle in anaerobic treatment : ammonium, methane, and carbon dioxide reformation through a hybrid electrodeionization-solid oxide fuel cell system

机译:厌氧处理中的能量循环:通过混合电去离子-固体氧化物燃料电池系统进行铵,甲烷和二氧化碳重整

摘要

To create possibilities for a more sustainable wastewater management, a novel system consisting of electrodeionization (EDI) and solid oxide fuel cells (SOFCs) is proposed in this study. This system is integrated with anaerobic digestion/landfills to capture energy from carbonaceous and nitrogenous pollutants. Both EDI and SOFCs showed good performances. EDI removed 95% and 76% ammonium-nitrogen (NH4+-N) from diluted (0.025 M) to concentrated (0.5 M) synthetic ammonium wastewaters, respectively, accompanied by hydrogen production. SOFCs converted the recovered fuels, biogas mixtures of methane and carbon dioxide, to electricity. Under the optimal conditions of EDI (3.0 V applied voltage and 7.5 mm internal electrode distance (IED), and SOFCs (750 degrees C operating temperature), the system achieved 60% higher net energy output as compared to conventional systems. The estimated energy benefit of this proposed system showed that the net energy balance ratio is enhanced from 1.11 (existing system) to 1.75 (this study) for a local Hong Kong active landfill facility with 10.0 g L-1 chemical oxygen demand (COD) and 0.21 M NH4+-N. Additionally, an average of 80% inorganic ions (heavy metals and nutrient elements) can be removed from the raw landfill leachate by EDI cell. The results are successful demonstrations of the upgrades of anaerobic processes for energy extraction from wastewater streams.
机译:为了为更可持续的废水管理创造可能性,本研究提出了一种由电去离子(EDI)和固体氧化物燃料电池(SOFC)组成的新型系统。该系统与厌氧消化/垃圾填埋场集成在一起,可从碳和氮污染物中捕获能量。 EDI和SOFC均表现良好。 EDI分别从稀释(0.025 M)到浓缩(0.5 M)的合成铵废水中去除了95%和76%的铵氮(NH4 + -N),并伴随着氢气的产生。 SOFC将回收的燃料,甲烷和二氧化碳的沼气混合物转化为电能。与传统系统相比,在EDI(施加3.0 V电压和7.5 mm内部电极距离(IED),以及SOFC(750摄氏度工作温度))的最佳条件下,该系统的净能量输出提高了60%。该拟议系统的结果表明,对于香港本地活动的垃圾填埋场,其化学需氧量为10.0 g L-1(COD)为0.21 M NH4 +-,净能量平衡比从1.11(现有系统)提高到1.75(本研究)。此外,通过EDI池可以从垃圾填埋场渗滤液中平均去除80%的无机离子(重金属和营养元素),结果成功地证明了从废水流中提取能量的厌氧工艺的升级。

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