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Fertilizer amendment for improving the phytoextraction of cadmium by a hyperaccumulator Rorippa globosa (Turcz.) Thell

机译:肥料改良剂,可通过超富集Rorippa globosa(Turcz。)Thell改善镉的植物提取

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摘要

Purpose Two main pathways of phytoremediation of heavy metal-contaminated soils are phytostabilization and phytoextraction. Some soil amendments can strengthen phytostabilization or phytoextraction through either reducing heavy metal bioavailability in soil or increasing the heavy metal accumulation capacity of the hyperaccumulator (enhancing heavy metal concentration or shoot biomass of the hyperaccumulator). Urea and chicken manure are often used as fertilizers. This research will explore their effects on a newly found hyperaccumulator, Rorippa globosa (Turcz.) Thell., phytoremediating cadmium (Cd). Materials and methods Pot culture experiment was conducted to study the accumulation characteristics of R. globosa at different Cd contamination concentrations under one fertilizer level (1 g kg~(-1) for urea and 100 g kg~(-1) for chicken manure), as well as the same Cd dose (20 mg kg~(-1)) under different fertilizer doses. Cd was artificially spiked at 2.5, 5, 10, and 20 mg kg~(-1). Urea was amended at 0.5, 1, and 2 g kg~(-1), while chicken manure was supplemented at 50, 100, and 200 g kg~(-1). The heavy metal concentration in soil and plant samples was determined using an atomic absorption spectrophotometer. pH, N, P, K, and so on in soil samples were determined by normal method. Results and discussion The results showed that urea application did not affect the Cd concentrations in root, stem, leaf, inflorescence, and shoot of R. globosa, but chicken manure significantly decreased (p<0.05) them by 28.4%, 29.3%, 30.8%, 24.9%, and 28.3%, respectively, owing to decreased extractable Cd in soil. Thus, strengthening the capacity (Cd accumulation in plant shoot, micro-grams per pot) of urea was higher than that of chicken manure, though both shoot biomasses increased by one to threefold. Furthermore, the addition of urea and chicken manure increased the organic material, nitrogen, phosphorus and potassium, the microorganism count, urease, and the phosphatase activities of soil, indicating their eco-friendly function. Urea is ideal for optimizing phytoextraction of Cd using R. globosa, while chicken manure is appropriate for phytostabilization. Conclusions Although chicken manure addition significantly increased (p<0.05) Cd extraction capacity (micro-grams per pot) of R. globosa, extractable Cd concentration in soil was significantly decreased (p<0.05). In contrast, urea addition had no impact on soil extractable Cd and significantly increased Cd extraction capacity (micrograms per pot) of R. globosa by growth stimulation. Thus, this study demonstrates the effect of fertilizer amendment in enhancing phytoextraction using a Cd hyperaccumulator, R. globosa, only by increased plant biomasses. Furthermore, chicken manure can strengthen phytostabilization because it decreased extractable Cd in soil.
机译:目的进行重金属污染土壤的植物修复的两个主要途径是植物稳定化和植物提取。一些土壤改良剂可通过降低土壤中的重金属生物利用度或增加超蓄积物中重金属的积累能力(增强超蓄积物中重金属的浓度或枝条生物量)来增强植物的稳定或植物提取作用。尿素和鸡粪经常被用作肥料。这项研究将探讨它们对新发现的超级修复剂Rorippa globosa(Turcz。)Thell。的植物修复镉(Cd)的影响。材料与方法通过盆栽试验研究了在一种肥料水平(尿素为1 g kg〜(-1),鸡粪为100 g kg〜(-1))下不同Cd污染浓度下球墨的积累特性。 ,以及不同肥料剂量下相同的镉剂量(20 mg kg〜(-1))。以2.5、5、10和20 mg kg〜(-1)人工添加Cd。尿素修正为0.5、1和2 g kg〜(-1),而鸡粪补充量为50、100和200 g kg〜(-1)。使用原子吸收分光光度计测定土壤和植物样品中的重金属浓度。用常规方法测定土壤样品中的pH,N,P,K等。结果与讨论结果表明,尿素的施用并不影响球根红壤的根,茎,叶,花序和枝条中的Cd浓度,但是鸡粪中的Cd浓度显着降低(p <0.05),分别降低28.4%,29.3%,30.8由于土壤中可提取的Cd减少,分别为%,24.9%和28.3%。因此,尽管两种芽的生物量都增加了一到三倍,但尿素的增强能力(植物芽中的镉积累,每盆微克)高于鸡粪。此外,尿素和鸡粪的添加增加了有机物质,氮,磷和钾,微生物数量,尿素酶和土壤中的磷酸酶活性,表明它们具有生态友好的功能。尿素是使用球形红球菌(R. globosa)优化镉的植物提取的理想选择,而鸡粪则适合植物的稳定化。结论尽管鸡粪添加量显着提高了球形红球藻Cd的提取能力(每盆微克)(p <0.05),但土壤中可提取Cd的浓度却明显降低(p <0.05)。相反,添加尿素对土壤可提取的Cd没有影响,并且通过生长刺激显着提高了球形红球菌Cd的提取能力(每盆微克)。因此,这项研究证明了仅使用增加的植物生物量,就可以使用镉超富集球菌(R. globosa)来改良肥料,以增强植物的提取能力。此外,鸡粪可以减少土壤中可萃取的Cd,因此可以增强植物的稳定性。

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  • 来源
    《Journal of soil & sediments》 |2011年第6期|p.915-922|共8页
  • 作者单位

    Key Laboratory of Pollution Ecology and Environment Engineering, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, People's Republic of China;

    Graduate School of Chinese Academy of Sciences, Beijing 100039, People's Republic of China;

    Key Laboratory of Pollution Ecology and Environment Engineering, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, People's Republic of China;

    Institute of Liaoning Basic Medicine, Shenyang 110101, People's Republic of China;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    cd; phytoremediation; rorippa globosa (turcz.) thell; soil amendment;

    机译:光盘;植物修复;rorippa globosa(turcz。)thell;土壤改良剂;

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