首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Phytoremediation of Heavy Metal-Contaminated Soil by Switchgrass: A Comparative Study Utilizing Different Composts and Coir Fiber on Pollution Remediation Plant Productivity and Nutrient Leaching
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Phytoremediation of Heavy Metal-Contaminated Soil by Switchgrass: A Comparative Study Utilizing Different Composts and Coir Fiber on Pollution Remediation Plant Productivity and Nutrient Leaching

机译:柳枝Switch对植物重金属污染土壤的修复:利用不同堆肥和椰壳纤维对污染修复植物生产力和养分淋洗的比较研究

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摘要

We investigated the effects of organic amendments (thermophilic compost, vermicompost, and coconut coir) on the bioavailability of trace heavy metals of Zn, Cd, Pb, Co, and Ni from heavy metal-spiked soils under laboratory conditions. To test switchgrass (Panicum virgatum) as a potential crop for phytoremediation of heavy metal from soil, we investigated whether the addition of organic amendments promoted switchgrass growth, and consequently, uptake of metals. Compost is a valuable soil amendment that supplies nutrients for plant establishment and growth, which is beneficial for phytoremediation. However, excess application of compost can result in nutrient leaching, which has adverse effects on water quality. We tested the nutrient leaching potential of the different organic amendments to identify trade-offs between phytoremediation and water quality. Results showed that the amendments decreased the amount of bioavailable metals in the soils. Organic amendments increased soil pH, electrical conductivity (EC), and soil nutrient status. Switchgrass shoot and root biomass was significantly greater in the amended soils compared to the non-amended control. Amended treatments showed detectable levels of heavy metal uptake in switchgrass shoots, while the control treatment did not produce enough switchgrass biomass to measure uptake. Switchgrass uptake of certain heavy metals, and concentrations of some leachate nutrients significantly differed among the amended treatments. By improving soil properties and plant productivity and reducing heavy metal solubility that can otherwise hamper plant survival, organic amendments can greatly enhance phytoremediation in heavy metal-contaminated soils.
机译:我们研究了在实验室条件下,有机改性剂(嗜热堆肥,com堆肥和椰子壳)对重金属加标土壤中痕量锌,镉,铅,钴和镍的重金属生物利用度的影响。为了测试柳枝((Panicum virgatum)作为土壤中重金属植物修复的潜在作物,我们调查了添加有机改良剂是否促进柳枝switch的生长,进而促进了金属的吸收。堆肥是一种有价值的土壤改良剂,可为植物的建立和生长提供营养,这对植物的修复有益。但是,过量使用堆肥会导致养分浸出,对水质产生不利影响。我们测试了不同有机改良剂的养分浸出潜力,以找出植物修复与水质之间的权衡取舍。结果表明,这些改良剂减少了土壤中生物有效性金属的含量。有机改良剂增加了土壤的pH值,电导率(EC)和土壤养分状况。与未改良的对照相比,改良土壤中的柳枝shoot枝和根生物量显着更大。改良的处理方法显示柳枝芽中可检测到的重金属吸收水平,而对照处理未产生足够的柳枝biomass生物量来测量其吸收。在修改后的处理方法之间,柳枝对某些重金属的吸收以及某些渗滤液养分的浓度显着不同。通过改善土壤特性和植物生产力并降低重金属溶解度(否则会影响植物生存),有机改良剂可以大大增强重金属污染土壤中的植物修复作用。

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