Improvement of alkaline electrochemical characteristics of bauxite residue amendment with organic acid and gypsum有机酸-石膏联合作用改善赤泥碱性电化学性能

被引:0
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作者
Xiang-feng Kong
Chu-xuan Li
Jun Jiang
Long-bin Huang
William Hartley
Chuan Wu
Sheng-guo Xue
机构
[1] Central South University,School of Metallurgy and Environment
[2] The University of Queensland,Centre for Mined Land Rehabilitation, Sustainable Minerals Institute
[3] Harper Adams University,Crop and Environment Sciences Department
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关键词
bauxite residue; alkalinity regulation; organic acid; gypsum; electrochemical characteristic; soil formation in bauxite residue; 赤泥; 碱性调控; 有机酸; 石膏; 电化学特性; 赤泥土壤化;
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摘要
Neutralization of alkaline properties of bauxite residue (BR) by using organic acid and gypsum additions may effectively improve electrochemical properties and alleviate physicochemical barriers to ecological rehabilitation. Mineral acids, citric acid and hybrid acid–gypsum additions were compared for their potential to transform and improve zeta potential, isoelectric point (IEP), surface protonation and active alkaline —OH groups, which are critical factors for further improvement of physicochemical and biological properties later. Isoelectric points of untransformed bauxite residue and six transformed derivatives were determined by using electroacoustic methods. Electrochemical characteristics were significantly improved by the amendments used, resulting in reduced IEP and —OH groups and decreased surface protonation for transformed residues. XRD results revealed that the primary alkaline minerals of cancrinite, calcite and grossular were transformed by the treatments. The treatments of citric acid and gypsum promoted the dissolution of cancrinite. From the SEM examination, citric acid and gypsum treatments contributed to the reduction in IEP and redistribution of —OH groups on particle surfaces. The collective evidence suggested that citric acid and gypsum amendments may be used firstly to rapidly amend bauxite residues for alleviating the caustic conditions prior to the consideration of soil formation in bauxite residue.
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页码:430 / 439
页数:9
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    [J]. Journal of Central South University, 2019, 26 (02) : 430 - 439
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    [J]. JOURNAL OF CENTRAL SOUTH UNIVERSITY, 2019, 26 (02) : 430 - 439
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