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首页> 外文期刊>International Journal of Phytoremediation >Effect of Organic Manures on the Growth of Cymbopogon citratus and Chrysopogon zizanioides for the Phytoremediation of Chromite-Asbestos Mine Waste: A Pot Scale Experiment
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Effect of Organic Manures on the Growth of Cymbopogon citratus and Chrysopogon zizanioides for the Phytoremediation of Chromite-Asbestos Mine Waste: A Pot Scale Experiment

机译:有机肥对Cymbogon Citratus和Chrysopogon Zizanioids对铬铁矿 - 石棉矿山泥土植物的生长:盆栽规模实验

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摘要

The abandoned chromite-asbestos mines are located in the Roro hills, West Singhbhum, Jharkhand, India, where mining operation ceased in 1983, and since then these mines are causing environmental pollution. The present study was planned to phytoremediate these metalloid and metal contaminated mine waste by using two aromatic grasses, Cymbopogon citratus and Chrysopogon zizanioides by applying different proportions of amendments (chicken manure, farmyard manure and garden soil). Mine waste has neutral pH, low electrical conductivity and organic carbon with higher concentration of total metals (Cr and Ni) as compared to soil. Application of manures resulted significant improvements of mine waste characteristics and plant growth, reduction in the availability of total extractable toxic metals (Cr, Ni) and increase in Mn, Zn and Cu concentration in the substrate. The maximum growth and biomass production for C. citratus and C. zizanioides were found in T-IV combination comprising of mine waste (90%), chicken manure (2.5%), farmyard manure (2.5%) and garden soil (5%). Addition of T-IV combination also resulted in low Cr and Ni accumulation in roots and reduction in translocation to shoots. Study indicates that C. citratus and C. zizanioides can be used for phytostabilization of abandoned chromite-asbestos mine waste with amendments.
机译:废弃的铬铁矿石棉地雷位于印度的罗罗山,西辛格布姆,贾坎普兰,1983年停止的采矿业务,从那时起,这些地雷正在造成环境污染。通过应用不同比例的修正案(鸡粪,麦田粪便和花园土壤),计划通过使用两种芳香族草,Cymbogon Citratus和Chrysopogon Zizanioides来植入这些金属和金属污染的矿井废物。与土壤相比,矿井废物具有中性pH,低导电性和有机碳,具有较高浓度的总金属(Cr和Ni)。植物的应用导致矿井废物特征和植物生长的显着改善,降低了总可提取的有毒金属(Cr,Ni)的可用性,并在基材中增加Mn,Zn和Cu浓度。 C.Citratus和C. Zizanioides的最大生长和生物质生产在T-IV组合中,包括矿井废物(90%),鸡粪(2.5%),养牛器(2.5%)和花园土壤(5%) 。添加T-IV组合也导致ROOTS的低CR和Ni积聚,并减少易位。研究表明C.Citratus和C. Zizanioides可用于富含废弃的铬铁矿石棉矿废物的植物化。

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