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Effect of coexisting Al(III) ions on Pb(II) sorption on biochars: Role of pH buffer and competition

机译:Al(III)离子共存对生物炭吸附Pb(II)的影响:pH缓冲液的作用和竞争

摘要

Biochar is being widely considered as a promising amendment agent for immobilizing heavy metals in contaminated acidic soils, where plenty of soluble Al(III) ions exist. In view of uncertain significance of the effects of coexisting Al(III) on Pb(II) sorption by biochars, this study used kenaf core biochar (KB550; high carbon, low ash) and sewage sludge biochar (SB550; low carbon, high ash) pyrolyzed at 550 °C to elucidate the influence of coexisting Al(III) species and biochars' mineral components on Pb(II) immobilization conducted in aqueous solution with initial pHs of 3.0-4.5. Results showed that Al(III) reduced Pb(II) sorption on KB550 primarily via pH buffering against biochar alkalinity, thus inhibiting lead carbonate formation. In contrast, the reduction on SB550 mainly resulted from direct competition for sorption sites, especially on Fe-rich phengite 2M1 and metakaolinite. Because of Pb-P precipitation and Pb-K interlayer exchange, the residual Pb(II) adsorption capacity resistant to coexisting Al(III) was 3-5 times higher on SB550 than on KB550. The Pb-K interlayer exchange was enhanced by lower pH and coexisting Al(III), while Pb-P precipitation was the dominant Pb(II) sorption mechanism on SB550 resistant to Al(III) buffering and competition at higher pH. Application of these two biochars as amendments confirmed that the mineral-rich SB550 was more suitable for Pb(II) immobilization in acidic soils with high levels of extractable Al(III).
机译:生物炭被广泛认为是一种有前途的改性剂,用于将重金属固定在存在大量可溶性Al(III)离子的受污染的酸性土壤中。鉴于并存的Al(III)对生物炭吸附Pb(II)的影响具有不确定的意义,本研究使用洋麻芯生物炭(KB550;高碳,低灰分)和污水污泥生物炭(SB550;低碳,高灰分) )在550°C的温度下进行热解以阐明共存的Al(III)物种和生物炭矿物质成分对在初始pH为3.0-4.5的水溶液中进行的Pb(II)固定化的影响。结果表明,Al(III)主要通过缓冲生物炭碱度的pH值来降低KB550上Pb(II)的吸附,从而抑制了碳酸铅的形成。相反,SB550的减少主要是由于对吸附位点的直接竞争,尤其是富铁的锂2M1和偏高岭石。由于Pb-P沉淀和Pb-K层间交换,SB550上对共存的Al(III)耐受的残留Pb(II)吸附能力是KB550的3-5倍。较低的pH值和共存的Al(III)增强了Pb-K层间交换,而Pb-P沉淀是SB550对Al(III)缓冲和在较高pH值下竞争的主要Pb(II)吸附机制。这两种生物炭的应用表明,富含矿物质的SB550更适合将Pb(II)固定在高含量可提取Al(III)的酸性土壤中。

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