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INFLUENCE OF AGING ON COPPER BIOAVAILABILITY IN SOILS

机译:老化对土壤铜生物有效性的影响

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摘要

Because of long-term chemical processes, metal bioavailability in field soils decreases with time. Metal toxicity may, therefore, be overestimated if toxicity data with freshly spiked soils are used to derive soil quality criteria, a current practice. In the present study, effects of the long-term processes, called aging, on copper partitioning and ecotoxicity are investigated. Twenty-five Held soils contaminated by copper runoff from bronze statues and 25 uncontaminated control soils sampled at 5-m distance from these statues were collected in Flanders (Belgium). The soils were selected so that parameters affecting copper bioavailability (pH, cation-exchange capacity, organic matter content, etc.) varied considerably. To assess the effect of aging on copper toxicity, control soils were spiked at total copper concentrations comparable to those of historically contaminated soils. Pore-water copper concentrations and 0.01 M CaCl_2―extracted copper concentrations were significantly higher in freshly spiked soils compared to contaminated field soils. However, this could be a pH effect, because pH decreased after spiking. Acute toxicity to Enchytraeus albidus (14 d) as well as chronic toxicity to Folsomia Candida (28-d reproduction) and Trifolium prateme (14-d growth) indicated a dose―response relationship between copper toxicity and pore-water copper concentration or the CaCl_2-extracted copper fraction.
机译:由于长期的化学过程,田间土壤中的金属生物利用度随时间降低。因此,如果使用当前加标土壤的毒性数据得出土壤质量标准,则金属毒性可能被高估。在本研究中,研究了称为老化的长期过程对铜分配和生态毒性的影响。在比利时佛兰德地区收集了25处被铜质径流污染的青铜雕像污染的土壤和25处距这些雕像5 m处采样的未污染的对照土壤。选择土壤时,影响铜生物利用度的参数(pH,阳离子交换能力,有机物含量等)会有很大变化。为了评估老化对铜毒性的影响,在对照土壤中添加了总铜浓度,使其与历史上受污染的土壤相当。与污染的田间土壤相比,新鲜加标土壤中的孔隙水铜浓度和0.01 M CaCl_2-萃取的铜浓度显着更高。但是,这可能是pH值的影响,因为加标后pH值降低了。急性中毒对Enchytraeus albidus(14 d)以及对念珠菌Folsomia Candida(28 d繁殖)和Trifolium prateme(14 d生长)的慢性毒性表明铜毒性与孔隙水铜浓度或CaCl_2之间存在剂量-反应关系提取的铜馏分。

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