Department of Biogeosciences, Scientific Research Center (SRC), Soran University, Soran, Erbil, Iraq.
Environ Monit Assess. 2023 Jun 7;195(7):811. doi: 10.1007/s10661-023-11352-0.
Environmental pollution is a serious issue all around the world, especially when it is caused by metal(oid)s and pathogenic microorganisms. This study reports here for the first time on the contamination of soil and water with metal(oid)s and pathogenic bacteria directly resulting from the Soran Landfill Site. Soran landfill is a level 2 solid waste disposal site that lacks leachate collection infrastructure. The site is potentially an environmental and public hazard caused by metal(oid)s content and significantly dangerous pathogenic microorganisms through leachate release into the soil and nearby river. This study reports on the levels of the metal(oid)s content of As, Cd, Co, Cr, Cu, Mn, Mo, Pb, Zn, and Ni obtained by inductively coupled plasma mass spectrometer in soil, leachate stream mud, and leachate samples. Five pollution indices are used to assess potential environmental risks. According to the indices, Cd and Pb contamination is significant, whereas As, Cu, Mn, Mo, and Zn pollution is moderate. A total of 32 isolates of bacteria were defined from soil, leachate stream mud, and liquid leachate samples: 18, 9, and 5, respectively. Moreover, 16 s rRNA analysis suggested that the isolates belong to three enteric bacterial phyla of Proteobacteria, Actinobacteria, and Firmicutes. The closest GenBank matches of 16S rDNA sequences indicated the presence of the genera: Pseudomonas, Bacillus, Lysinibacillus, Exiguobacterium, Trichococcus, Providencia, Enterococcus, Macrococcus, Serratia, Salinicoccus, Proteus, Rhodococcus, Brevibacterium, Shigella, Micrococcus, Morganella, Corynebacterium, Escherichia, and Acinetobacter. The identity percentage was mostly between 95%-100%. The results of this study show the levels of microbiological and geochemical contamination of soils, surface and potentially ground water with harmful microorganisms and toxic metal(oid)s originating specifically from Soran landfill leachate which subsequently incorporated into the surrounding environment, creating thus a considerable health and environmental risk.
环境污染是一个全球性的严重问题,尤其是当它是由金属(类)和致病微生物引起的时候。本研究首次报道了索兰垃圾填埋场直接导致的土壤和水中金属(类)和致病细菌的污染。索兰垃圾填埋场是一个二级固体废物处置场,缺乏渗滤液收集基础设施。该场地可能是由于金属(类)含量和通过渗滤液释放到土壤和附近河流中的显著危险致病微生物而造成的环境和公共危害。本研究报告了通过电感耦合等离子体质谱仪在土壤、渗滤液流泥和渗滤液样本中获得的 As、Cd、Co、Cr、Cu、Mn、Mo、Pb、Zn 和 Ni 的金属(类)含量水平。使用五个污染指数来评估潜在的环境风险。根据这些指数,Cd 和 Pb 的污染是显著的,而 As、Cu、Mn、Mo 和 Zn 的污染是中度的。从土壤、渗滤液流泥和液态渗滤液样本中总共定义了 32 株细菌:分别为 18、9 和 5。此外,16s rRNA 分析表明,这些分离株属于变形菌门、放线菌门和厚壁菌门三个肠杆菌细菌门。16S rDNA 序列的最接近 GenBank 匹配表明存在以下属:假单胞菌、芽孢杆菌、Lysinibacillus、极端嗜热菌、栖热菌、普罗维登斯菌、肠球菌、巨球菌、沙雷氏菌、盐球菌、变形菌、节杆菌、短小杆菌、志贺氏菌、微球菌、摩根氏菌、棒状杆菌、大肠杆菌和不动杆菌。身份百分比大多在 95%-100%之间。本研究结果表明,土壤、地表水和潜在地下水受到了来自索兰垃圾渗滤液的有害微生物和有毒金属(类)的微生物学和地球化学污染,这些污染物随后融入了周围环境,从而造成了相当大的健康和环境风险。