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化学分离法分析大型纸浆发电厂废渣中生物质底灰和飞灰成分(英文)
作者姓名:RistoPOYKIO  HannuNURMESNIEMI  OlliDAHL  MikkoMAKELA
作者单位:[1] City of Kemi, Valtakatu26, FI-94100 Kemi, Finland [2] Stora Enso 0yj, Veitsiluoto Mill, FI-94800 Kemi, Finland [3] Department of Forest Products Technology, School of Chemical Technology, Aalto University, P. 0. Box 16300, FI-00076 Aalto, Finland [4] Division of Biomass Technology and Chemistry, Department of Forest Biomaterials and Technology, Swedish University of Agricultural Sciences, P.0. Box SLU, SE-90183 Ume?, Sweden
摘    要:采用三步分离法,其中第一步用水,第二步用乙酸铵,第三步用盐酸,提取纸浆发电厂生物质飞灰和底灰的组分,以评估这些残渣的浸出行为。除了Mo、S、Na以及那些浓度低于检测范围的元素外,在这两种灰份中,对于其他元素这三种浸出剂的浸出能力从弱到强的顺序为:水、乙酸铵和盐酸。采用三步分离法处理的废渣中元素浓度比前期用BCR连续提取法得到的低。

关 键 词:灰烬  提取  林业  垃圾填埋  浸出  重金属  废渣
收稿时间:23 May 2013

Chemical fractionation method for characterization of biomass-based bottom and fly ash fractions from large-sized power plant of an integrated pulp and paper mill complex
RistoPOYKIO,HannuNURMESNIEMI,OlliDAHL,MikkoMAKELA.Chemical fractionation method for characterization of biomass-based bottom and fly ash fractions from large-sized power plant of an integrated pulp and paper mill complex[J].Transactions of Nonferrous Metals Society of China,2014,24(2):588-596.
Authors:Risto POYKIO  Hannu NURMESNIEMI  Olli DAHL  Mikko MAKELA  City of Kemi  Valtakatu  FI-  Kemi  Finland;  Stora Enso Oyj  Veitsiluoto Mill  FI-  Kemi  Finland;  
Affiliation:City of Kemi, Valtakatu 26, FI-94100 Kemi, Finland; 2. Stora Enso Oyj, Veitsiluoto Mill, FI-94800 Kemi, Finland; 3. Department of Forest Products Technology, School of Chemical Technology, Aalto University, P. O. Box 16300, FI-00076 Aalto, Finland; 4. Division of Biomass Technology and Chemistry, Department of Forest Biomaterials and Technology, Swedish University of Agricultural Sciences, P.O. Box SLU, SE-90183 Umea, Sweden)
Abstract:The aim of this study was to extract the biomass-based bottom and fly ash fractions by a three-stage fractionation method for water-soluble (H2O), ammonium-acetate (CH3COONH4) and hydrochloric acid (HCl) fractions in order to access the leaching behaviour of these residues. Except for Mo, S, Na and elements whose concentrations were lower than the detection limits, the extractable element concentrations in both ash fractions followed the order H2O<CH3COONH4<HCl. The elements concentrations in this study were also lower than those in our previous studies, in which certain extraction stages followed the BCR extraction procedure.
Keywords:ash  extraction  forest industry  landfilling  leaching  heavy metals  waste
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