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Ecology and health in risk analysis of polluted soils

机译:污染土壤风险分析中的生态与健康

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Risk analysis can be used as a scientific tool for addressing the health of ecosystems. Here we describe a protocol for characterizing risks in the ecosystems of several polluted soil scenarios in the Madrid Community (Central Spain). Our starting hypothesis was that to recover the health of degraded ecosystems that could affect public health, an ecotoxicological diagnosis of each site is required. The sites we considered were industrial and urban solid waste landfills and abandoned mines. This diagnosis revealed many interacting processes that need to be assessed if we are to realistically address the issue of restoring impacts on ecosystems affected by soil pollution. These processes are:rn1) Geo-edaphic processes, requiring the analysis of geomorphologic factors;rn2) Chemical-physical processes occurring in the soils, such as the release of anions or cations ; 3) Erosion-pollution processes that require an understanding of the autoecology of plant species that could be used for remediation in scenarios with this dual problem; 4) Bioaccumulation-biodegradation processes, requiring the integration of microbiology and plant biology tools to assess any toxic effects on soil and plant subsystem populations; 5) Edaphic-bioavailability processes, since different ecotypes show a varying response to a given soil; 6) Population-ecopathology development processes, essential for both cultivated and native plant species comprising trophic networks; 7) Secondary-primary ecological succession processes, a commonly observed mechanism in old landfills sealed with soils from the surroundings-ecological knowledge of reference communities is essential for a good ecotoxicological diagnosis.; 8) Climate change-global warming processes, of utmost importance for revegetating polluted soils since success will depend both on the soil seed bank and on stochastic processes.
机译:风险分析可以用作解决生态系统健康的科学工具。在这里,我们描述了一种协议,用于描述马德里自治区(西班牙中部)几种污染土壤情景的生态系统中的风险。我们最初的假设是,要恢复可能影响公共健康的退化生态系统的健康,就需要对每个站点进行生态毒理学诊断。我们考虑的场所是工业和城市固体垃圾掩埋场和废弃矿山。该诊断揭示了许多相互作用的过程,如果我们要切实解决恢复对受土壤污染影响的生态系统的影响的问题,则需要对其进行评估。这些过程是:rn1)地化过程,需要分析地貌因素; rn2)土壤中发生的化学物理过程,例如阴离子或阳离子的释放; 3)侵蚀污染过程,需要了解可用于在存在双重问题的情况下进行补救的植物物种的自生态学; 4)生物蓄积-生物降解过程,需要结合微生物学和植物生物学工具来评估对土壤和植物子系统种群的任何毒性作用; 5)生态生物利用度过程,因为不同的生态类型对给定的土壤表现出不同的响应; 6)人口生态病理学发展过程,对于包括营养网络的栽培和本地植物物种都是必不可少的; 7)次生-原始生态演替过程是在周围环境中被土壤封存的旧垃圾填埋场中普遍观察到的机制-参考群落的生态知识对于良好的生态毒理学诊断至关重要。 8)气候变化-全球变暖过程,对于使受污染的土壤重新植被至关重要,因为成功取决于土壤种子库和随机过程。

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