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Ecological risk assessment of organic waste amendments using the species sensitivity distribution from a soil organisms test battery

机译:利用土壤有机物测试电池的物种敏感性分布对有机废物修正案进行生态风险评估

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Safe amendment rates (the predicted no-effect concentration or PNEC) of seven organic wastes were estimated from the species sensitivity distribution of a battery of soil biota tests and compared with different realistic amendment scenarios (different predicted environmental concentrations or PEC). None of the wastes was expected to exert noxious effects on soil biota if applied according either to the usual maximum amendment rates in Europe or phosphorus demands of crops (below 2 tonnes DM ha~(-1)). However, some of the wastes might be problematic if applied according to nitrogen demands of crops (above 2 tonnes DM ha~(-1)). Ammonium content and organic matter stability of the studied wastes are the most influential determinants of the maximum amendment rates derived in this study, but not pollutant burden. This finding indicates the need to stabilize wastes prior to their reuse in soils in order to avoid short-term impacts on soil communities.
机译:根据一系列土壤生物测试的物种敏感性分布估算了七种有机废物的安全修正率(预测的无效应浓度或PNEC),并将其与不同的现实修正方案(不同的预测环境浓度或PEC)进行了比较。如果按照欧洲通常的最大修正率或作物对磷的需求(低于2吨DM ha〜(-1))施用,这些废物均不会对土壤生物区系产生有害影响。但是,如果根据作物对氮的需求(高于2吨DM ha〜(-1))施用某些废物,可能会造成问题。研究废物的铵含量和有机物稳定性是本研究得出的最大修正率的最有影响力的决定因素,但不是污染物负担。这一发现表明,有必要在将废物重新用于土壤之前对其进行稳定处理,以避免对土壤群落的短期影响。

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