Integrated urban water management by coupling iron salt production and application with biogas upgrading.

Hu, Zhetai; Li, Lanqing; Cen, Xiaotong; Zheng, Min; Hu, Shihu; Wang, Xiuheng; Song, Yarong; Xu, Kangning et al. · Nat Commun · 2023

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Abstract

Integrated urban water management is a well-accepted concept for managing urban water. It requires efficient and integrated technological solutions that enable system-wide gains via a whole-of-system approach. Here, we create a solid link between the manufacturing of an iron salt, its application in an urban water system, and high-quality bioenergy recovery from wastewater. An iron-oxidising electrochemical cell is used to remove CO<sub>2</sub> (also H<sub>2</sub>S and NH<sub>3</sub>) from biogas, thus achieving biogas upgrading, and simultaneously producing FeCO<sub>3</sub>. The subsequent dose of the electrochemically produced FeCO<sub>3</sub> to wastewater and sludge removes sulfide and phosphate, and enhances sludge settleability and dewaterability, with comparable or superior performance compared to the imported and hazardous iron salts it substitutes (FeCl<sub>2</sub>, and FeCl<sub>3</sub>). The process enables water utilities to establish a self-reliant and more secure supply chain to meet its demand for iron salts, at lower economic and environmental costs, and simultaneously achieve recovery of high-quality bioenergy.