Department of Energy, Environmental and Chemical Engineering, Washington University in St. Louis, St. Louis, MO 63130, United States of America.
Institute of Graduate Studies and Research, Alexandria University, Alexandria 21526, Egypt.
Water Res. 2022 Jul 15;220:118667. doi: 10.1016/j.watres.2022.118667. Epub 2022 May 25.
Although ammonia recovery from wastewater can be environmentally friendly and energy efficient compared to the conventional Haber-Bosch process, there is a lack of research on the reuse of the recovered ammonia to exhibit a complete picture of resource recovery. In this study, a microbial electrochemical system (MES) was used to recover ammonia from a mixture of anaerobic digester (AD) centrate and food wastewater at a volume ratio of 3:1. More than 60% of ammonia nitrogen was recovered with energy consumption of 2.7 kWh kg N. The catholyte of the MES, which contained the recovered ammonia, was used to prepare fertilizers to support the growth of a model plant Arabidopsis thaliana. It was observed that A. thaliana grown on the MES generated fertilizer amended with extra potassium, phosphorus, and trace elements showed comparable sizes and an even lower death rate (0%) than the control group (24%) that was added with a commercial fertilizer. RNA-Seq analyses were used to examine A. thaliana genetic responses to the MES generated fertilizers or the commercial counterpart. The comparative study offered metabolic insights into A. thaliana physiologies subject to the recovered nitrogen fertilizers. The results of this study have demonstrated the potential application of using the recovered ammonia from AD centrate as a nitrogen source in fertilizer and identified the necessity of supplementing other nutrient elements.
虽然与传统的 Haber-Bosch 工艺相比,从废水中回收氨具有环境友好和节能的特点,但对于回收的氨的再利用以展示资源回收的全貌,研究还很缺乏。在这项研究中,使用微生物电化学系统(MES)从厌氧消化(AD)中肠液和食物废水的混合物以 3:1 的体积比回收氨。超过 60%的氨氮被回收,能耗为 2.7 kWh kg N。MES 的阴极液含有回收的氨,用于制备肥料来支持模式植物拟南芥的生长。结果表明,在 MES 生成的肥料中添加额外的钾、磷和微量元素后,生长的拟南芥与添加商业肥料的对照组(24%)相比,大小相当,死亡率甚至更低(0%)。使用 RNA-Seq 分析来检测拟南芥对 MES 生成的肥料或商业肥料的遗传反应。这项比较研究提供了对拟南芥生理机能的代谢见解,这些生理机能受到回收氮肥料的影响。这项研究的结果表明,使用 AD 中肠液中的回收氨作为肥料中的氮源具有潜在的应用前景,并确定了补充其他营养元素的必要性。