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PHYTOSTABILISATION OF METAL-CONTAMINATED SITES

机译:金属污染部位的植物稳定化

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The oldest field experiments confirm that phytostabilisation is an unobtrusively and cost-effective technique for treating metal-contaminated soils. University research teams having relatively few means have mostly established trials, but lack funds to deliver crucial long-term assessments. Soil amendments can initiate a healthy and diverse ecosystem at a contaminated site. Inputs of soil amendment are usually economically reasonable and environmentally benign. Selection of additives in batch experiments is necessary and can avoid increasing contaminant toxicity to living organisms, but may not forecast some long-term effects. Materials found to be promising under batch experiment and/or glasshouse conditions can be less effective in the field. Decline of effectiveness can occur over time. Failures and side effects such as induced deficiencies can arise and tend to be site specific. To avoid failures, a thorough evaluation of materials must be conducted, in particular in field lysimeters and/or in plots for each site, in combination with or without the choice of biological material.
机译:最古老的田间实验证实,植物稳定技术是一种处理金属污染土壤的简便且经济高效的技术。资金相对较少的大学研究团队大多已建立了试验,但缺乏进行关键的长期评估的资金。土壤改良剂可以在受污染的地点启动健康多样的生态系统。土壤改良剂的投入通常在经济上是合理的,并且在环境上是无害的。在批处理实验中选择添加剂是必要的,可以避免增加污染物对活生物体的毒性,但可能无法预测某些长期影响。在分批实验和/或温室条件下发现有前途的材料在该领域可能不太有效。随着时间的流逝,有效性会下降。可能会出现故障和副作用,例如诱发缺陷,并且往往是针对特定地点的。为避免故障,必须结合或不选择生物材料,对材料进行全面评估,尤其是在现场溶渗仪和/或每个位置的地块中。

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