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Anthropogenic Effects on Metal Content in Urban Soil From Different Parent Materials and Geographical Locations: A Vancouver, British Columbia, Canada, Study

机译:人为因素对不同母体材料和地理位置对城市土壤金属含量的影响:加拿大不列颠哥伦比亚省温哥华市的一项研究

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摘要

Growing safe food crops in urban settings requires soil condition assessment because many sites may be metal contaminated. Of particular concern are trace metals found at urban sites as a result of litter, construction materials, industrial development, and traffic patterns. Although all soils contain trace metals inherited from the parent material, anthropogenic influences can influence and increase metals' plant availability. Different urban activities located on soils derived from three parent materials, marine, glacial marine, and glacial till, were selected in Metro Vancouver to assess tracemetal concentrations in the urban soils. Estimates of total (aqua regia) and available (dilute HCl) trace metals (Cu, Mn, Ni and Pb) were compared among the sites and between the surface soil and the underlying parent material to assess potential environmental risks associated with location of the urban sites. Comparisons were made to metal concentration standards in published government guidelines. Although urban activities do affect metal amounts, parent materials must be considered when assessing anthropogenic effects of trace metals in soils because metal contents vary among different parent materials. Results indicate that surface soil metal concentrations are influenced by geographical location within the urban setting and soil management practices. For a rapid and reproducible determination of potential trace metal concentrations, the use of 0.1 M HCl provides a useful initial assessment.
机译:在城市环境中种植安全的粮食作物需要评估土壤状况,因为许多地点可能被金属污染。特别令人关注的是,由于垃圾,建筑材料,工业发展和交通方式而在城市现场发现的痕量金属。尽管所有土壤都含有从母体物质中继承的微量金属,但人为影响会影响并增加金属的植物利用率。在大温哥华地区选择了三种海洋,冰川海洋和冰川耕地的母体土壤上不同的城市活动,以评估城市土壤中的痕量金属浓度。比较地点之间以及地表土壤和底层母体材料之间的总(王水)和有效(稀盐酸)痕量金属(铜,锰,镍和铅)的估计值,以评估与城市所在地相关的潜在环境风险网站。在已发布的政府指南中与金属浓度标准进行了比较。尽管城市活动确实会影响金属含量,但是在评估土壤中痕量金属的人为影响时必须考虑母体材料,因为金属含量在母体材料中会有所不同。结果表明,地表土壤金属浓度受城市环境和土壤管理实践中地理位置的影响。为了快速,可重复地测定潜在的痕量金属浓度,使用0.1 M HCl可提供有用的初步评估。

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