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首页> 外文期刊>Waste Disposal & Sustainable Energy >Preparation of sulfoaluminate cementitious material using harmful titanium gypsum: material properties and heavy metal immobilization characteristics
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Preparation of sulfoaluminate cementitious material using harmful titanium gypsum: material properties and heavy metal immobilization characteristics

机译:使用有害钛石膏制备硫净化水泥材料:材料特性和重金属固定特性

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摘要

The production of titanium dioxide (a necessary industrial color additive) can generate massive amount of titanium gypsum, a hard-to-treat solid waste. Diverse metallic impurities, heavy metals and reddish color in titanium gypsum make it difficult to be used in building materials like other by-product gypsums. As a result, most of titanium gypsum in China is just stored and has caused serious environmental issues. In this study, titanium gypsum, which contained high contents of impurities and heavy metals, was synergistically used with other three solid wastes to prepare sulfoaluminate cementitious material (SACM) for the first time. The mass proportion of titanium gypsum in the raw materials exceeded 25%. The chemical, mechanical and heavy metal leaching characteristics of this solid waste-based SACM were tested via XRD, XRF, ICP-OES, etc. The main components and metallic impurities of titanium gypsum could be transformed to the components of the main mineral of SACM, ye'elimite. The compressive strength of the prepared SACM reached 38.2, 59.7 and 95.8 MPa at 1-day, 3-day, and 28-day hydration, respectively, indicating the features of rapidly hardening and high strength. Importantly, the solid waste-based SACM could effectively solidify the heavy metals contained in titanium gypsum and other raw material during thje hydration process. The retention ratio of total Cr reached 97.5%, and other heavy metals were almost not detected in the leachate of SACM. This study provided a feasible approach to utilize titanium gypsum to produce high-performance, green building material, and might promote the massive utilization of this solid waste.
机译:二氧化钛(必要的工业颜色添加剂)的生产可以产生大量的钛石膏,这是一种难以处理的固体废物。钛石膏中的多种金属杂质,重金属和红色颜色使得很难在其他副产品石膏等建筑材料中使用。结果,中国的大多数石膏都已存储,并引起了严重的环境问题。在这项研究中,含有高杂质和重金属含量的钛,与其他三种固体废物协同使用,以制备硫铝酸盐胶结材料(SACM)。原材料中石膏的质量比例超过25%。通过XRD,XRF,ICP-OES等测试了该固体废物SACM的化学,机械和重金属浸出特性。可以将石膏的主要成分和金属杂质转换为SACM矿物质的主要成分,是的。制备的SACM的抗压强度分别在1天,3天和28天的水合下达到38.2、59.7和95.8 MPa,表明快速硬化和高强度的特征。重要的是,基于废物的SACM可以有效巩固在水合过程中石膏和其他原料中含有的重金属。总CR的保留率达到97.5%,在SACM的渗滤液中几乎没有检测到其他重金属。这项研究提供了一种可行的方法,可以利用石膏生产高性能,绿色建筑材料,并可能促进这种固体废物的大量利用。

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