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迈向全球磷安全:磷回收和再利用方案的系统框架。

Towards global phosphorus security: a systems framework for phosphorus recovery and reuse options.

机构信息

Institute for Sustainable Futures, University of Technology, Sydney, PO Box 123, Broadway, NSW 2007, Australia.

出版信息

Chemosphere. 2011 Aug;84(6):747-58. doi: 10.1016/j.chemosphere.2011.02.032. Epub 2011 Mar 16.

Abstract

Human intervention in the global phosphorus cycle has mobilised nearly half a billion tonnes of the element from phosphate rock into the hydrosphere over the past half century. The resultant water pollution concerns have been the main driver for sustainable phosphorus use (including phosphorus recovery). However the emerging global challenge of phosphorus scarcity with serious implications for future food security, means phosphorus will also need to be recovered for productive reuse as a fertilizer in food production to replace increasingly scarce and more expensive phosphate rock. Through an integrated and systems framework, this paper examines the full spectrum of sustainable phosphorus recovery and reuse options (from small-scale low-cost to large-scale high-tech), facilitates integrated decision-making and identifies future opportunities and challenges for achieving global phosphorus security. Case studies are provided rather than focusing on a specific technology or process. There is no single solution to achieving a phosphorus-secure future: in addition to increasing phosphorus use efficiency, phosphorus will need to be recovered and reused from all current waste streams throughout the food production and consumption system (from human and animal excreta to food and crop wastes). There is a need for new sustainable policies, partnerships and strategic frameworks to develop renewable phosphorus fertilizer systems for farmers. Further research is also required to determine the most sustainable means in a given context for recovering phosphorus from waste streams and converting the final products into effective fertilizers, accounting for life cycle costs, resource and energy consumption, availability, farmer accessibility and pollution.

摘要

人类干预全球磷循环,在过去半个世纪中,将近 5 亿吨磷元素从磷矿中转移到水圈中。由此产生的水污染问题一直是推动可持续磷利用(包括磷回收)的主要动力。然而,磷资源日益短缺,对未来粮食安全产生严重影响,这意味着磷也需要回收并作为肥料在粮食生产中进行生产性再利用,以替代日益稀缺且昂贵的磷矿。本文通过综合和系统的框架,全面探讨了可持续磷回收和再利用的各种选择(从小规模低成本到大规模高科技),为综合决策提供便利,并确定了实现全球磷安全的未来机遇和挑战。本文提供了案例研究,而不是侧重于特定的技术或工艺。实现磷安全未来没有单一的解决方案:除了提高磷的使用效率外,还需要从整个食品生产和消费系统(从人类和动物粪便到食物和作物废物)的所有当前废物流中回收和再利用磷。需要制定新的可持续政策、伙伴关系和战略框架,为农民开发可再生磷肥系统。还需要进一步研究,以确定在特定情况下从废物流中回收磷并将最终产品转化为有效肥料的最可持续方法,同时考虑生命周期成本、资源和能源消耗、可用性、农民可及性和污染问题。

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