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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Pb(II) and Cr(VI) sorption by biochars pyrolyzed from the municipal wastewater sludge under different heating conditions
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Pb(II) and Cr(VI) sorption by biochars pyrolyzed from the municipal wastewater sludge under different heating conditions

机译:在不同加热条件下,城市污水污泥热解后的生物炭对Pb(II)和Cr(VI)的吸附

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摘要

To optimize the pyrolysis process of municipal wastewater sludge for metal sorption, this study investigated the characteristics of the produced biochar under different heating conditions with particular interest in Pb(II) or Cr(VI) sorption. Results indicate that the biochar pyrolyzed at 400. °C for 2. h obtained the largest BET surface area and was rich of organic functional groups, owning the highest Pb(II) (at pH 5.0) and Cr(VI) (at pH 2.0) sorption capacity. The Pb sorption is dominated by the rate-limited chemical processes, and a longer residence during pyrolysis significantly reinforces its sorption bonds. The Cr(VI) sorption is highly pH-dependent, and the optimal occurs at pH 2, where the transformation of Cr(VI) to Cr(III) makes a significant contribution as confirmed by the XPS spectra. Similarly, a longer residence during pyrolysis also facilitates the Cr(VI) sorption in terms of capacity and affinity, likely due to the greater reducing potential of biochar.
机译:为了优化市政废水污泥的金属吸附热解工艺,本研究调查了在不同加热条件下产生的生物炭的特性,尤其是对Pb(II)或Cr(VI)的吸附。结果表明,在400°C下热解2 h的生物炭获得最大的BET表面积,并富含有机官能团,具有最高的Pb(II)(在pH 5.0下)和Cr(VI)(在pH 2.0下) )吸附能力。铅的吸附受速率限制的化学过程控制,热解过程中更长的停留时间显着增强了其吸附键。 Cr(VI)的吸附高度依赖于pH,并且最佳吸附发生在pH 2处,其中XPS光谱证实了Cr(VI)向Cr(III)的转化具有重要作用。同样,在热解过程中更长的停留时间也会促进Cr(VI)的吸附能力和亲和力,这可能是由于生物炭的还原潜力更大。

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