首页> 外文期刊>Waste Management >Facile synthesis of nano ZnO/ZnS modified biochar by directly pyrolyzing of zinc contaminated corn stover for Pb(Ⅱ), Cu(Ⅱ) and Cr(Ⅵ) removals
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Facile synthesis of nano ZnO/ZnS modified biochar by directly pyrolyzing of zinc contaminated corn stover for Pb(Ⅱ), Cu(Ⅱ) and Cr(Ⅵ) removals

机译:直接热解锌污染的玉米秸秆中的Pb(Ⅱ),Cu(Ⅱ)和Cr(Ⅵ)去除法轻松合成纳米ZnO / ZnS改性生物炭

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摘要

Nowadays, nano mineral modified biochars show a promising adsorption capacity for pollutants removals by combining the advantages of porous structure of biochar and unique property of nano minerals. In this work, nano ZnO/ZnS modified biochar was synthesized from slow pyrolysis of the zinc contaminated corn stover obtained from a biosorption process. The characterization results indicated that the zinc mineral modified biochar had a better porous structure (BET = 397.4 m(2) g(-1) and TPV = 0.43 cm(3) g(-1)) than the common biochar (BET = 102.9 m(2) g(-1) and TPV = 0.20 cm(3) g(-1)), and zinc minerals were evenly anchored on the biochar surface as nano ZnO/ZnS. Batch sorption experiments show that the obtained nano ZnO/ZnS modified biochar had strong sorption ability to Pb(II), Cu(II) and Cr(VI) with maximum sorption capacities of 135.8, 91.2 and 24.5 mg g(-1), respectively, which were significantly higher than the common biochar (63.29, 27.05 and 15.23 mg g(-1), respectively). The adsorption kinetics of heavy metal ions on nano ZnO/ZnS modified biochar were well described by the pseudo second-order model, and the adsorption behavior coincided with heterogeneous adsorption materials as reflected by well fitting the Freundlich model. The thermodynamic results indicated that the adsorption process was an endothermic and spontaneous process. Based on the comprehensive characterizations and adsorption performance, the enhancement of the metals removal by the nano ZnO/ZnS modified biochar were mainly attributed to the hydroxyl groups on the surface of nano ZnO/ZnS particles and well-developed porous structure catalyzed by zinc salt during pyrolysis process. These findings suggested that generation of nano mineral modified biochar from heavy metals polluted biomass could be an attractive approach to treating and utilizing the waste biomass with a highly technical and economic feasibility. (C) 2018 Elsevier Ltd. All rights reserved.
机译:如今,纳米矿物改性生物炭结合了生物炭多孔结构的优点和纳米矿物的独特性能,显示出有希望的吸附能力以去除污染物。在这项工作中,通过从生物吸附过程获得的受锌污染的玉米秸秆的缓慢热解,合成了纳米ZnO / ZnS改性生物炭。表征结果表明,锌矿物改性生物炭具有比普通生物炭更好的多孔结构(BET = 397.4 m(2)g(-1)和TPV = 0.43 cm(3)g(-1)) m(2)g(-1)和TPV = 0.20 cm(3)g(-1)),锌矿物质均匀地锚定在生物炭表面,为纳米ZnO / ZnS。批量吸附实验表明,所获得的纳米ZnO / ZnS改性生物炭对Pb(II),Cu(II)和Cr(VI)具有很强的吸附能力,最大吸附容量分别为135.8、91.2和24.5 mg g(-1)。 ,其含量明显高于普通生物炭(分别为63.29、27.05和15.23 mg g(-1))。拟二阶模型很好地描述了重金属离子在纳米ZnO / ZnS改性生物炭上的吸附动力学,并通过很好地拟合Freundlich模型反映出吸附行为与非均相吸附材料一致。热力学结果表明,吸附过程是吸热和自发过程。基于综合表征和吸附性能,纳米ZnO / ZnS改性生物炭对金属的去除率提高主要归因于纳米ZnO / ZnS颗粒表面的羟基和锌盐催化的发达的多孔结构。热解过程。这些发现表明,由重金属污染的生物质产生纳米矿物改性生物炭可能是一种具有高度技术和经济可行性的有吸引力的处理和利用废物生物质的方法。 (C)2018 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Waste Management》 |2018年第9期|625-637|共13页
  • 作者单位

    Dalian Univ Technol, Sch Environm Sci & Technol, Linggong Rd 2, Dalian 116024, Peoples R China;

    Dalian Univ Technol, Sch Environm Sci & Technol, Linggong Rd 2, Dalian 116024, Peoples R China;

    Dalian Univ Technol, Sch Environm Sci & Technol, Linggong Rd 2, Dalian 116024, Peoples R China;

    Dalian Univ Technol, Sch Environm Sci & Technol, Linggong Rd 2, Dalian 116024, Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biochar; Nano ZnO/ZnS particles; Contaminated biomass; Adsorption; Heavy metal;

    机译:生物炭;纳米ZnO / ZnS颗粒;生物质污染;吸附;重金属;

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