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Trace Metals in Surface Soil Contaminated by Release of Phosphate Industry in the Surroundings of Sfax-Tunisia

机译:斯法克斯-突尼斯周边地区被磷酸盐工业释放污染的表层土壤中的痕量金属

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There is a worldwide growing concern about soil pollution caused by phosphate industry creating thus large amounts of phosphogypsum slurry. This slurry is piped from the processing facilities up into acidic wastewater ponds that sit atop the mountainous waste piles known as gypsum stacks. This issue is of special interest because of toxic metals threats to groundwater tables as well as to the surrounding environment.There is a worldwide growing concern about soil pollution caused by phosphate industry creating thus large amounts of phosphogypsum slurry. This slurry is piped from the processing facilities up into acidic wastewater ponds that sit atop the mountainous waste piles known as gypsum stacks. This issue is of special interest because of toxic metals threats to groundwater tables as well as to the surrounding environment.The aim of the present work is to assess the level of trace elements content in soil around stocked solid waste “a phosphogypsum” derived from a former phosphate fertilizers factory and to investigate their factors of variation. Twenty soil samples were collected at the depths of 20 cm and analyzed for their physicochemical properties, the content of their major elements (Ca, Mg, K, Na, Al, Fe, Mn), and some trace elements such as Zn, Pb, Cr, Cu, Co and Ni. Data were processed with multivariate statistical analysis in order to investigate relationships among the trace elements and the factors controlling their distribution in the phosphogypsum surrounding environment. Enrichment factors (EF) were calculated to assess either natural and/or anthropogenic origins. The results indicate moderate levels of contamination and big differences in variability among elements. The maximal and mean concentrations found in soil, except the soil sample S5.1, were 95.2 and 36.5 mg Kg-1 for Zn, 75.2 and 30.23 mg Kg-1 for Pb, 28.4 and 17.5 mg Kg-1 for Cr, 61.9 and 15.6 mg Kg-1 for Cu, 5.28 and 2.7 mg Kg-1 for Co, and 13.2 and 6.4 mg Kg-1 for Ni.? Most of the elements were positively correlated with pH and cation-exchange capacity, and no correlation with total organic carbon ?and electrical conductivity except for Cu, Zn and Pb was found. The EF values of the most trace metals were higher than 1.5 indicating that the phosphate fertilizer industry had an anthropogenic effect causing a negative impact on the environment. The relatively increased amount of toxic metals in the examined soils requires the area to be controlled since a variety of agricultural activities are conducted nearby moreover the surroundings are programmed to be residential zones.DOI: http://dx.doi.org/10.5755/j01.erem.65.3.4865
机译:全球范围内越来越关注由磷酸盐工业引起的土壤污染,从而产生大量的磷石膏浆料。该浆液从加工设施通过管道输送到酸性废水池,该废水池位于被称为石膏堆的山区废物堆之上。由于有毒金属对地下水位以及周围环境的威胁,这一问题引起了特别关注。全球范围内,人们日益关注由磷酸盐行业造成大量磷石膏浆产生的土壤污染。该浆液从加工设施通过管道输送到酸性废水池,该废水池位于被称为石膏堆的山区废物堆之上。由于有毒金属对地下水位和周围环境的威胁,这一问题引起了特别关注。本工作的目的是评估储存于垃圾中的固体磷“磷石膏”周围土壤中微量元素的含量。并向原磷肥厂调查其变异因素。在20 cm的深度处收集了20个土壤样品,并对其理化性质,主要元素(Ca,Mg,K,Na,Al,Fe,Mn)的含量以及一些微量元素(如Zn,Pb,铬,铜,钴和镍。为了研究微量元素与控制其在磷石膏周围环境中分布的因素之间的关系,对数据进行了多元统计分析。计算富集因子(EF)以评估自然和/或人为来源。结果表明中等程度的污染和元素之间变异性的巨大差异。除土壤样品S5.1外,土壤中的最大和平均浓度分别为:锌分别为95.2和36.5 mg Kg-1,铅为75.2和30.23 mg Kg-1,铬为28.4和17.5 mg Kg-1、61.9和71.9 Kg-1。铜为15.6 mg Kg-1,钴为5.28和2.7 mg Kg-1,镍为13.2和6.4 mg Kg-1。除Cu,Zn和Pb外,大多数元素与pH和阳离子交换能力呈正相关,与总有机碳和电导率无相关性。最痕量金属的EF值高于1.5,表明磷肥工业具有人为作用,对环境产生负面影响。被检查土壤中有毒金属的相对增加要求对该区域进行控制,因为附近进行了各种农业活动,而且周围环境被规划为居民区。DOI:http://dx.doi.org/10.5755/ j01.erem.65.3.4865

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