School of Metallurgy and Environment, Central South University, 932 Lushan South Road, Changsha, Hunan, 410083, PR China.
School of Metallurgy and Environment, Central South University, 932 Lushan South Road, Changsha, Hunan, 410083, PR China.
J Hazard Mater. 2017 Feb 15;324(Pt B):382-390. doi: 10.1016/j.jhazmat.2016.10.073. Epub 2016 Nov 1.
Bauxite residue (BR) is a highly alkaline solid hazardous waste produced from bauxite processing for alumina production. Alkaline transformation appears to reduce the environmental risk of bauxite residue disposal areas (BRDAs) whilst potentially providing opportunities for the sustainable reuse and on-going management of BR. Mineral acids, a novel citric acid and a hybrid combination of acid-gypsum treatments were investigated for their potential to reduce residue pH and total alkalinity and transform the alkaline mineral phase. XRD results revealed that with the exception of andradite, the primary alkaline solid phases of cancrinite, grossular and calcite were transformed into discriminative products based on the transformation used. Supernatants separated from BR and transformed bauxite residue (TBR) displayed distinct changes in soluble Na, Ca and Al, and a reduction in pH and total alkalinity. SEM images suggest that mineral acid transformations promote macro-aggregate formation, and the positive promotion of citric acid, confirming the removal or reduction in soluble and exchangeable Na. NEXAFS analysis of Na K-edge revealed that the chemical speciation of Na in TBRs was consistent with BR. Three acid treatments and gypsum combination had no effect on Na speciation, which affects the distribution of Na revealed by sodium STXM imaging.
铝土矿残渣 (BR) 是一种高碱性固体危险废物,由氧化铝生产过程中的铝土矿加工产生。碱性转化似乎降低了铝土矿残渣处置区 (BRDA) 的环境风险,同时为 BR 的可持续再利用和持续管理提供了机会。研究了矿物酸、新型柠檬酸和酸石膏混合处理,以评估其降低残渣 pH 值和总碱度并转化碱性矿物相的潜力。XRD 结果表明,除钙铁榴石外,水钙铝榴石、钙铝榴石和方解石的主要碱性固相均转化为基于所用转化的鉴别产物。从 BR 和转化后的铝土矿残渣 (TBR) 中分离出的上清液显示出可溶性 Na、Ca 和 Al 的明显变化,以及 pH 值和总碱度的降低。SEM 图像表明,矿物酸转化促进了宏观团聚体的形成,柠檬酸的积极促进作用证实了可溶性和可交换性 Na 的去除或减少。Na K 边的 NEXAFS 分析表明,TBR 中 Na 的化学形态与 BR 一致。三种酸处理和石膏组合对 Na 形态没有影响,这影响了钠 STXM 成像所揭示的 Na 分布。