加纳 Sunyani 市住宅区和农田表层土壤的污染状况

Benjamin Darko Asamoah, Paul Danyi, Bernice Araba Otoo, D. Adusu, Bright Ankudze
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引用次数: 0

摘要

重金属暴露对人类健康和生态环境构成严重威胁,尤其是在发展中国家,生态风险评估和补救措施往往被忽视。虽然许多研究报告了在人类活动日益频繁、城市化迅速发展的城市中重金属的毒性,但有关苏尼扬尼市土壤中金属毒性及其生态风险的信息却十分有限。从居民区和农田表层土壤中采集了表层土壤样本,分析了苏亚尼市九种重金属的浓度和潜在风险。除砷和锰外,与能源与自然资源大学植物园的原始土壤样本相比,这两个研究地点的所有金属含量普遍偏高。不过,住宅表层土壤中的铬、铜、铅和锌含量略高于农田。土壤污染因子和地质累积指数均显示,这两个研究地点存在中度砷、汞和锰污染。此外,土壤富集因子显示,居民区土壤中砷的富集程度显著,镉的富集程度适中,而农田土壤中砷、汞和锰的富集程度适中。潜在生态风险指数也显示,两个研究地点都存在相当大的风险,而污染负荷指数显示,与农田表层土壤(PLI = 0.40)相比,居民区的累积污染量更高(PLI = 0.48)。因此,该研究建议对人类活动和可能成为金属污染源的化学品的使用进行监管,以保持土壤中的金属基线水平,减少其对健康和环境的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Contamination Status of Residential and Farmland Surface Soils Within the Sunyani Municipality of Ghana
Exposure to heavy metals poses serious human health and ecological threats, especially in developing countries where ecological risk assessment and remediation are often ignored. While many studies have reported heavy metal toxicities in rapidly urbanizing cities with increased anthropogenic activities, limited information exists on metal toxicities and their ecological risks in soils within the Sunyani Municipality. Top soils were sampled from residential and farmland surface soils and analyzed for the concentration and potential risks for nine heavy metals within Sunyani Municipality. Apart from As and Mn, the two study sites generally recorded elevated levels of all metals than the pristine soil samples from the University of Energy and Natural Resources botanical garden. Levels of chromium, copper, lead, and zinc were however marginally higher in residential surface soils than in the farmlands. The soil contamination factor and geoaccumulation index both revealed moderate As, Hg, and Mn contamination at the two study locations. Furthermore, the soil enrichment factor showed significant enrichment for arsenic and moderate enrichment for cadmium in residential soils, while the farmland soils revealed moderate enrichment of As, Hg, and Mn. The potential ecological risk indices also showed considerable risk at both study locations, while the pollution load index revealed higher cumulative pollution in residential areas (PLI = 0.48) compared to the farmland surface soil (PLI = 0.40). The study therefore recommends the regulation of human activities and the use of chemicals that are possible sources of metal contamination to maintain the metals’ baseline levels in the soil, and reduce their health and environmental impacts.
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