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首页> 外文期刊>Current Journal of Applied Science and Technology >Heavy Metal Pollution of In-situ andSurrounding Soils Profiles at Municipal SolidWaste Dumpsite
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Heavy Metal Pollution of In-situ andSurrounding Soils Profiles at Municipal SolidWaste Dumpsite

机译:城市固体垃圾场原位和周围土壤剖面的重金属污染

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Aims: To investigate the levels, variability and degree of heavy metal pollution in in-situ municipal solid waste dumpsite soil (WDS) compared to adjoining area (CS) at 100 – 120m from dumpsite as a contribution to global knowledge of pattern of pollution and data base at dumpsite.Study Design: Field-scale investigation of nine heavy metals (HM) at source pollution site and surrounding soil.Place and Duration of Study: Uyo municipal solid waste dumpsite in 2010.Methodology: Core sampling of soil at solid waste dumpsite and at 100 – 120m away, taken at 0-10cm and 10-20cm profile depths at 4 spatially different points. Acid digestion of HM in soil samples and determination of elemental HM concentration by flame AAS. HM pollution level was assessed using contamination factor, metal pollution index; ANOVA, and covariance for spatial variability.Results: Mean concentrations of nine heavy metals at municipal waste dumpsite soil were significantly (P < .01) higher than the un-dumped surrounding soil, and gave high mean metal pollution index of 5.21 for the overall soil profile. Toxicity was indicated for Fe, Ni, Pb, and B. Correlation between mean HMs at WDS and CS was very low (R = .488) but difference was significant (P = .05), indicating no lateral transfer to fringe area at 100 – 120m away.Conclusion: Heavy metal pollution in municipal solid waste dumpsite soil was higher at all profile depths than in control soil with contamination factors of 3-22 times the control soil values. Pollution was site-specific / anthropogenic (from waste deposition and leachate) rather than terrigenous. Fringe fields at 100-120m from dumpsite, except downslope, were buffered from dumpsite pollution. More research on deeper profile and minimum pollution - free buffer distance are recommended.
机译:目的:调查离垃圾场100-120m处的原地城市固体垃圾垃圾场土壤(WDS)与毗邻区域(CS)相比,重金属污染的水平,变化和程度,以帮助全球了解污染和研究设计:源污染点和周围土壤中的九种重金属的实地调查研究地点和持续时间:2010年Uyo城市固体垃圾场方法学:固体废物土壤的核心取样垃圾场,距离100 – 120m,在4个空间不同点的剖面深度为0-10cm和10-20cm处拍摄。用火焰原子吸收光谱法对土壤样品中的HM进行酸消化并测定元素HM的浓度。使用污染因子,金属污染指数评估重金属污染水平;结果:城市垃圾场土壤中九种重金属的平均浓度显着(P <.01)高于未倾倒的周围土壤,总体上平均金属污染指数为5.21土壤剖面。表明对Fe,Ni,Pb和B的毒性。WDS和CS处的平均HMs之间的相关性非常低(R = .488),但差异显着(P = .05),表明在100°C没有横向转移到边缘区域– 120m处。结论:城市固体废物堆放场土壤中的重金属污染在所有剖面深度上均高于对照土壤,其污染因子为对照土壤值的3-22倍。污染是针对特定地点的/人为的(来自废物沉积和渗滤液)而不是源于的。垃圾场边缘处(下坡除外)100-120m处的边缘田地受到了垃圾场污染的缓冲。建议进行更多有关更深轮廓和最小污染-无缓冲距离的研究。

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