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The choice of system boundaries for effective long-term management of phosphorus

机译:选择有效进行磷长期管理的系统边界

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Material flow analysis (MFA) is a well-established tool for supporting decisions on nutrient management. This paper shows the importance of the system boundary chosen when an MFA system is established. To reach this goal, data of existing regional and global phosphorous studies was investigated in view of phosphorous-flows (P-flows) and stocks within and outside the systems observed. Then, internal flows and stocks to be managed are juxtaposed with upstream flows and stocks beyond the system boundaries. The results show that narrow system boundaries yield useful findings to improve regional P management on the short term. If, however, regional and global P-availability is to be secured for longer time periods, system boundaries must include the use and losses of P in the so-called 'Hinterland', defined as "the total amount of P used and lost abroad for the production of all goods imported into a country". In some cases, these Hinterland flows appear to be dominant, jeopardizing measures to manage P in a cost effective, resource conserving, and environmentally sound regional way. Hence, the choice of system boundaries is crucial for MFA research. In particular, the huge losses of P in the global agriculture, as well as the magnitude of mining wastes must be considered for effective decisions regarding P management. Taking the Hinterland into account by linking global and regional P flows and stocks is mandatory if priorities for P management are defined.
机译:物质流分析(MFA)是一种完善的工具,可支持有关营养管理的决策。本文显示了建立MFA系统时选择系统边界的重要性。为了实现这一目标,鉴于观察到的系统内外的磷流(P流)和储量,对现有区域和全球磷研究的数据进行了调查。然后,将要管理的内部流量和库存与超出系统边界的上游流量和库存并列。结果表明,狭窄的系统边界产生了有益的发现,可在短期内改善区域磷管理。但是,如果要在更长的时间内确保区域和全球P的可用性,则系统边界必须包括所谓的“腹地”中P的使用和损失,即“国外使用和损失的P总量”生产进口到一个国家的所有商品”。在某些情况下,这些腹地流量似乎占主导地位,从而危害了以成本有效,节约资源和对环境无害的方式管理磷的措施。因此,系统边界的选择对于MFA研究至关重要。特别是,必须有效考虑全球农业中磷的巨大损失以及采矿废物的数量,才能有效地进行有关磷管理的决策。如果定义了磷管理的优先重点,则必须通过将全球和区域磷流量和库存联系起来来考虑腹地。

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