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Effect of biochar from peanut shell on speciation and availability of lead and zinc in an acidic paddy soil

机译:花生壳生物炭对酸性水稻土形态和铅锌有效性的影响

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摘要

Biochar has been used to reduce the mobility and availability of heavy metals in contaminated paddy soils. A pot experiment was carried out to analyze the effects of peanut shell biochar (PBC) on the speciation and phytoavailability of Pb and Zn in contaminated acidic paddy soil using rice (Oryza saliva L.) as an indicator plant. Peanut shell biochar was applied to an acidic paddy soil contaminated with Pb and Zn at four rates (0%, 1%, 2%, and 5% w/w), and rice plants were grown in this soil. The soil pH, cation exchange capacity (CEC), water-soluble SO42-, dissolved organic carbon (DOC), CaCl2-extractable heavy metals, and speciation of heavy metals were determined. Additionally, biomass and concentrations of heavy metals in rice tissues were determined. The application of PBC significantly increased the pH, CEC, water-soluble SO42-, and DOC in the paddy soil, but decreased the content of CaCl2-extractable Pb and Zn. The CaCl2-extractable Pb and Zn showed significant negative correlations with the pH, CEC, water-soluble SO42-, and DOC (p 0.05). Following the application of biochar to the contaminated paddy soil, the Pb and Zn concentrations in the CaCl2 extracts were reduced by 41.04-98.66% and 17.78-96.87% (p 0.05), respectively. Sequential chemical extractions showed a reduction in the acid-soluble Pb and Zn fraction and an increase in the reducible fraction following the addition of biochars. PBC obviously inhibited the uptake and accumulation of Pb and Zn in the rice plants. The Pb concentrations in the rice grain were significantly reduced by 60.32%, with the addition of 5% PBC. Neither of the biochars significantly changed the Zn concentrations in the rice grain. The influence of biochar on Pb and Zn phytoavailability varied not only with the application rate of biochar, but also with the kind of metals. Overall, the use of peanut shell biochar at a high application rate is more effective in immobilizing Pb and Zn in the acidic paddy soil contaminated with heavy metals, especially in reducing the phytoavailability of Pb to the rice plants.
机译:生物炭已被用于减少受污染的稻田土壤中重金属的迁移和利用。进行了盆栽试验,以水稻(Oryza saliva L.)为指示植物,分析了花生壳生物炭(PBC)对受污染的酸性水稻土中铅和锌的形态和植物有效性的影响。将花生壳生物炭以四种比率(0%,1%,2%和5%w / w)施用到被Pb和Zn污染的酸性水稻土上,并在该土壤中种植水稻。测定了土壤的pH值,阳离子交换容量(CEC),水溶性SO42-,溶解的有机碳(DOC),CaCl2可萃取的重金属和重金属的形态。此外,测定了稻米组织中的生物量和重金属浓度。 PBC的施用显着提高了稻田土壤的pH值,CEC,水溶性SO42-和DOC,但降低了CaCl2可提取的Pb和Zn的含量。 CaCl2可萃取的Pb和Zn与pH,CEC,水溶性SO42-和DOC呈显着负相关(p <0.05)。在受污染的水稻土上施用生物炭后,CaCl2提取物中的铅和锌浓度分别降低了41.04-98.66%和17.78-96.87%(p <0.05)。顺序化学萃取显示,添加生物炭后,酸溶性Pb和Zn组分减少,可还原组分增加。 PBC明显抑制了水稻中Pb和Zn的吸收和积累。添加5%的PBC后,大米中的Pb浓度显着降低了60.32%。两种生物炭均未显着改变稻米中锌的浓度。生物炭对铅和锌植物有效性的影响不仅随生物炭施用量的变化,还随金属种类的变化而变化。总体而言,以高施用量使用花生壳生物炭可更有效地将Pb和Zn固定在被重金属污染的酸性稻田中,特别是在降低Pb对水稻植物的植物利用率方面。

著录项

  • 来源
    《Ecotoxicology and Environmental Safety 》 |2018年第11期| 554-561| 共8页
  • 作者单位

    Chinese Acad Sci, Inst Subtrop Agr, Key Lab Agroecol Proc Subtrop Reg, Changsha 410125, Hunan, Peoples R China;

    Chinese Acad Sci, Res Ctr Ecoenvironm Sci, Beijing 10085, Peoples R China;

    Chinese Acad Sci, Inst Subtrop Agr, Key Lab Agroecol Proc Subtrop Reg, Changsha 410125, Hunan, Peoples R China;

    Chinese Acad Sci, Inst Subtrop Agr, Key Lab Agroecol Proc Subtrop Reg, Changsha 410125, Hunan, Peoples R China;

    Chinese Acad Sci, Inst Subtrop Agr, Key Lab Agroecol Proc Subtrop Reg, Changsha 410125, Hunan, Peoples R China;

    Chinese Acad Sci, Inst Subtrop Agr, Key Lab Agroecol Proc Subtrop Reg, Changsha 410125, Hunan, Peoples R China;

    Hunan Agr Univ, Coll Resources & Environm, Changsha 410128, Hunan, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Contaminated paddy soil; Biochar; Heavy metals; Phytoavailability; Rice;

    机译:污染的水稻土;生物炭;重金属;植物有效性;水稻;

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