School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing, 100083, China.
Ecotoxicol Environ Saf. 2020 Jan 30;188:109774. doi: 10.1016/j.ecoenv.2019.109774. Epub 2019 Nov 2.
Iron and steel production is one of the main anthropogenic sources of mercury (Hg) emission and release. Oxidized and particulate Hg discharged from iron and steel enterprises deposit into the surrounding soil, which accumulate and introduce environmental risks. Therefore, it is important to assess Hg pollution in the soil surrounding iron and steel enterprises. In this study, the Hg pollution, Hg distribution from steel plants and Hg fractionation in farmland soil around five typical steel plants were analysed in Tangshan of China. The Hg pollution indexes (Pi) of more than 90% soil samples were greater than 3 by the single factor pollution index method, which showed that most soil samples around the five steel plants were strongly contaminated by Hg. The Hg contents in soil increased first and then decreased, and the maximum content presented at 250-300 m away from the boundary of the steel plants. The order of Hg fraction proportion in the soil samples was extractable (35%-43%) > volatile (24%-36%) > residual (10%-26%) > reducible (0-15%) > oxidizable (0-12%). The distribution of Hg fraction in farmland soil had no regular trend with the distance from the steel plants. The volatile Hg and extractable Hg were dominant in farmland soil, and their combined proportion was greater than 60%. These two fractions of Hg are at risk of re-volatilization into the atmosphere or potential absorption by plants.
钢铁生产是人为汞(Hg)排放和释放的主要来源之一。钢铁企业排放的氧化态和颗粒态 Hg 会沉积到周围土壤中,从而在土壤中不断积累并带来环境风险。因此,评估钢铁企业周边土壤中的 Hg 污染情况十分重要。本研究对中国唐山的五家典型钢铁厂周边农田土壤中的 Hg 污染、钢厂 Hg 分布以及 Hg 形态进行了分析。采用单项污染指数法,超过 90%的土壤样品 Hg 污染指数(Pi)大于 3,表明这五家钢铁厂周边的大部分土壤样品受到了强烈的 Hg 污染。土壤中 Hg 含量先增加后减少,在距离钢铁厂边界 250-300 m 处达到最大值。土壤样品中 Hg 形态的比例顺序为可提取态(35%-43%)>易挥发态(24%-36%)>残渣态(10%-26%)>还原态(0-15%)>氧化态(0-12%)。农田土壤中 Hg 形态的分布与距钢铁厂的距离没有规律可循。易挥发态 Hg 和可提取态 Hg 是农田土壤中的主要形态,其组合比例大于 60%。这两种 Hg 形态具有再次挥发进入大气或被植物潜在吸收的风险。