Characterization of calcium-containing phases in alkali-activated municipal solid waste incineration bottom ash binder through chemical extraction and deconvoluted Fourier transform infrared spectra

被引:83
|
作者
Zhu, Weiping [1 ]
Chen, Xu [2 ]
Struble, Leslie J. [2 ]
Yang, En-Hua [1 ]
机构
[1] Nanyang Technol Univ, Sch Civil & Environm Engn, Singapore 639798, Singapore
[2] Univ Illinois, Dept Civil & Environm Engn, Urbana, IL 61801 USA
基金
新加坡国家研究基金会;
关键词
Alkali activation; Municipal solid waste incineration bottom ash; Calcium silicate hydrate; Fourier transform infrared spectroscopy; Spectral subtraction; Deconvolution; C-S-H; FLY-ASH; HYDROTHERMAL SYNTHESIS; QUANTITATIVE-ANALYSIS; SODIUM-SILICATE; PART I; FTIR; GEOPOLYMERS; RATIO; CEMENT;
D O I
10.1016/j.jclepro.2018.05.049
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
It has been reported that municipal solid waste incineration bottom ash (IBA) can be a potential precursor for alkali-activated materials (AAM). This study investigates chemical composition and structure of calcium-containing phases in an alkali-activated IBA (AA-IBA) binder by a novel combination of selective chemical extraction and Fourier transform infrared (FTIR) spectral subtraction and deconvolution. Salicylic acid/methanol extraction is used to isolate the calcium-containing phases from the AA-IBA binder. X-ray powder diffraction and FTIR spectroscopy are used for sample characterization. Spectral subtraction is carried out to assign FFIR peaks of calcium-containing phases and deconvolution is used to discover various individual Si-O peaks hidden in the single broad FFIR peak. Results show that the AAIBA consists of about 20 wt.% calcium silicate hydrate (C-S-H) and pirssonite (Na2Ca(CO3)(2)center dot 2H(2)O). Chemical structure of the C-S-H in AA-IBA is found to be broadly similar to that in aged Portland cement paste, with possibly a higher degree of polymerization of the silicate chains. The methodology established in this study is significant and can greatly benefit the development of sustainable construction materials because many industry by-products and solid wastes are Si and/or Al rich, which could be potential AAM precursor. (C) 2018 Elsevier Ltd. All rights reserved.
引用
收藏
页码:782 / 789
页数:8
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