Estimation of redox-sensitive metals in Lafarge cement company’s area in Akamkpa Nigeria: Assessment of ecological health risk

V. Okpashi
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Abstract

Toxic compounds such as redox-sensitive metals usually contaminate the soil. They are implicated in the causation of oxidative stress, a precursor of human diseases and ecological extinction. Having uncontaminated soil serves as the link between plant and animal health quality, and a sustainable ecosystem. Geological accumulation and spatial distribution of redox-sensitive metals in agricultural land can significantly hinder soil fertility, ecological health, food safety, and food security. This study used the soil samples from farmlands near the Lafarge industrial area at Mfamosing, Akamkpa local government area of Cross River State, Nigeria, to assess eight redox-sensitive metals (Cadmium, Chromium, Copper, Nickel, Lead, Arsenic, Cobalt, and Zinc), their spatial distribution, and geo-accumulation. The redox-sensitive metals were screened with an atomic absorption spectrophotometer connected with mass spectroscopy. A geographic information system (GIS) and ArcMap version 10:8:2 was used to infer the risk of the industrial area regarding geo-accumulation, and spatial distribution of redox-sensitive metals in the farmlands. The result shows Cd, Cr, Cu, Ni, Pb, As, Co and Zn have different concentrations among the samples. Three samples - MS2, MS3, and MS8, had the highest arsenic concentration, while samples Ms1, Ms2, Ms5, and Ms8, had the second-highest concentrations of Cadmium, Lead, and Chromium, respectively. The polluted area was moderately contaminated and distributed with other metals - Cu, Ni, and Co, respectively. Comparing these results with those of non-industrial areas, one can infer that the Lafarge industrial area is more contaminated with redox-sensitive metal. To advance this investigation, some microorganisms within the area can be used to verify a metal-hazard impact on the ecosystem and monitor the rise in redox-sensitive metals to predict the risk.
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估算尼日利亚 Akamkpa 拉法基水泥公司地区的氧化还原敏感金属:生态健康风险评估
氧化还原敏感金属等有毒化合物通常会污染土壤。它们与氧化应激有关,氧化应激是人类疾病和生态灭绝的前兆。不受污染的土壤是植物和动物健康质量与可持续生态系统之间的纽带。农田中氧化还原敏感金属的地质累积和空间分布会严重影响土壤肥力、生态健康、食品安全和粮食安全。本研究利用尼日利亚克罗斯河州 Akamkpa 地方政府 Mfamosing 拉法基工业区附近农田的土壤样本,评估了八种氧化还原敏感金属(镉、铬、铜、镍、铅、砷、钴和锌)及其空间分布和地质累积情况。利用原子吸收分光光度计和质谱仪对氧化还原敏感金属进行了筛选。使用地理信息系统(GIS)和 ArcMap 10:8:2 版推断工业区的地质累积风险,以及农田中氧化还原敏感金属的空间分布。结果表明,镉、铬、铜、镍、铅、砷、钴和锌在不同样品中的浓度不同。MS2、MS3 和 MS8 这三个样本的砷浓度最高,而 Ms1、Ms2、Ms5 和 Ms8 这四个样本的镉、铅和铬浓度分别次之。污染区受到中度污染,其他金属(铜、镍和钴)也有分布。将这些结果与非工业区的结果进行比较,可以推断拉法基工业区受到的氧化还原敏感金属污染更严重。为了推进这项调查,可以利用该地区的一些微生物来验证金属危害对生态系统的影响,并监测氧化还原敏感金属的增加情况,以预测风险。
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