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固体生物质废物(水)热处理过程中磷的转化:磷的回收和再利用的反应机制及影响。

Transformation of Phosphorus during (Hydro)thermal Treatments of Solid Biowastes: Reaction Mechanisms and Implications for P Reclamation and Recycling.

机构信息

School of Earth and Atmospheric Sciences, Georgia Institute of Technology , 311 Ferst Drive, Atlanta, Georgia 30332-0340, United States.

College of Resources and Environmental Sciences, China Agricultural University , Beijing 100193, China.

出版信息

Environ Sci Technol. 2017 Sep 19;51(18):10284-10298. doi: 10.1021/acs.est.7b02011. Epub 2017 Sep 6.

Abstract

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.

摘要

磷(P)是所有生物的必需营养物质,因此在食物-能源-水的关系中发挥着独特和关键的作用。人类活动中使用的大部分磷最终都会集中到各种固体生物废水中,如农作物生物量、动物粪便和污水污泥。因此,将有效的磷回收实践整合到固体生物废物管理中,不仅可以显著减少对有限地质磷资源的依赖,还可以减少与传统废物管理策略相关的磷径流和相关水污染问题。本研究综述了(热)水热技术在固体生物废物处理中的应用,除了减少废物体积、去污和能源回收外,还可以极大地促进磷的回收。研究表明,磷的形态(包括分子部分、络合状态和矿物学)在(热)水热处理过程中会发生显著变化,并受处理技术和条件的影响。磷形态和产品整体性质的变化会改变磷的迁移性和生物可利用性,以及处理产品的磷再回收和再利用效率。本综述总结了这一方向的最新进展,确定了挑战和知识空白,并为针对富含营养的生物废物的可持续管理的未来研究工作提供了基础。

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