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首页> 外文期刊>Journal of Environmental Management >Evidence-based logic chains demonstrate multiple impacts of trace metals on ecosystem services
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Evidence-based logic chains demonstrate multiple impacts of trace metals on ecosystem services

机译:基于证据的逻辑链证明了痕量金属对生态系统服务的多重影响

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Trace metals can have far-reaching ecosystem impacts. In this study, we develop consistent and evidence-based logic chains to demonstrate the wider effects of trace metal contamination on a suite of ecosystem services. They demonstrate knock-on effects from an initial receptor that is sensitive to metal toxicity, along a cascade of impact, to final ecosystem services via alterations to multiple ecosystem processes. We developed logic chains to highlight two aspects of metal toxicity: for impacts of copper pollution in soil ecosystems, and for impacts of mercury in freshwaters. Each link of the chains is supported by published evidence, with an indication of the strength of the supporting science. Copper pollution to soils (134 unique chains) showed a complex network of pathways originating from direct effects on a range of invertebrate and microbial taxa and plants. In contrast, mercury pollution on freshwaters (63 unique chains) shows pathways that broadly follow the food web of this habitat, reflecting the potential for mercury bioaccumulation. Despite different pathways, there is considerable overlap in the final ecosystem services impacted by both of these metals and in both ecosystems. These included reduced human-use impacts (food, fishing), reduced human non-use impacts (amenity value) and positive or negative alterations to climate regulation (impacts on carbon sequestration). Other final ecosystem goods impacted include reduced crop production, animal production, flood regulation, drinking water quality and soil purification. Taking an ecosystem services approach demonstrates that consideration of only the direct effects of metal contamination of soils and water will considerably underestimate the total impacts of these pollutants. Construction of logic chains, evidenced by published literature, allows a robust assessment of potential impacts indicating primary, secondary and tertiary effects.
机译:痕量金属会对生态系统产生深远的影响。在这项研究中,我们建立了一致且基于证据的逻辑链,以证明痕量金属污染对一系列生态系统服务的广泛影响。他们证明了对金属毒性敏感的初始受体(通过一系列影响)对最终生态系统服务(通过改变多个生态系统过程而产生的连锁反应)的影响。我们开发了逻辑链来突出金属毒性的两个方面:铜污染对土壤生态系统的影响以及汞对淡水的影响。链条的每个环节均得到公开证据的支持,并表明了支持科学的力量。铜对土壤的污染(134条独特的链)显示出一系列复杂的途径网络,这些途径直接源于对一系列无脊椎动物和微生物类群以及植物的直接影响。相反,淡水中的汞污染(63条独特的链)显示出广泛遵循该栖息地食物网的途径,反映了汞生物富集的潜力。尽管途径不同,但受这两种金属和两种生态系统影响的最终生态系统服务仍存在大量重叠。这些措施包括减少人类使用的影响(食物,捕鱼),减少人类的非使用影响(便利价值)以及气候调节的正或负变化(对碳固存的影响)。受影响的其他最终生态系统产品包括减产,畜牧生产,防洪,饮用水质量和土壤净化。采用生态系统服务方法表明,仅考虑土壤和水金属污染的直接影响将大大低估这些污染物的总体影响。逻辑链的构建(已发表的文献证明)可以对表明主要,次要和第三级影响的潜在影响进行有力的评估。

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