土地复垦
环境科学
磷
废物管理
遗传算法
地表径流
城市固体废物
污水污泥
生物利用度
污水处理
环境化学
农业
能量回收
营养物
营养管理
资源回收
重新使用
污染
生物技术
废物处理
人类健康
环境工程
污水
污染
污染物
生化工程
可持续农业
物流分析
化学
作者
Rixiang Huang,Ci Fang,Xiaowei Lu,Rongfeng Jiang,Yuanzhi Tang
标识
DOI:10.1021/acs.est.7b02011
摘要
Phosphorus (P) is an essential nutrient for all organisms, thus playing unique and critical roles at the food-energy-water nexus. Most P utilized by human activities eventually converges into various solid biowastes, such as crop biomass, animal manures, and sewage sludges. Therefore, integration of efficient P recovery practices into solid biowaste management will not only significantly reduce the dependence on limited geological P resources but also reduce P runoff and related water contamination issues associated with traditional waste management strategies. This study reviews the applications of (hydro)thermal techniques for the treatment of solid biowastes, which can greatly facilitate P recovery in addition to waste volume reduction, decontamination, and energy recovery. Research showed that P speciation (including molecular moiety, complexation state, and mineralogy) can experience significant changes during (hydro)thermal treatments, and are impacted by treatment techniques and conditions. Changes in P speciation and overall properties of the products can alter the mobility and bioavailability of P, and subsequent P reclamation and recycling efficiency of the treatment products. This review summarizes recent progresses in this direction, identifies the challenges and knowledge gaps, and provides a foundation for future research efforts targeting at sustainable management of nutrient-rich biowastes.
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