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用凹凸棒石联合碱渣固化含铬污泥。

Solidification of chromium-containing sludge with attapulgite combined alkali slag.

机构信息

State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, Chongqing, 400044, China.

College of Resource and Safety Engineering, Chongqing University, Chongqing, 400044, China.

出版信息

Environ Sci Pollut Res Int. 2022 Feb;29(9):13580-13591. doi: 10.1007/s11356-021-16193-3. Epub 2021 Sep 30.

Abstract

To solve the harm caused by hazardous chromium-containing sludge (CCS, chromium-containing sludge) waste to humans and the environment, this study used attapulgite to strengthen alkali slag to prepare cementitious materials to solidify/stabilize CCS. Single-factor and orthogonal experiments were used to optimize the preparation parameters of alkali slag cementitious materials. The compressive strength, heavy metal leaching toxicity, and microscopic characterization of a CCS solidified body were tested to investigate the solidification effect and mechanism of CCS formation. The best attapulgite content was 4%; the solidified body after the treatment of chromium-containing sludge had a good performance of heavy metal leaching and mechanical properties. The addition of attapulgite enhanced the compressive strength. Compared with the original CCS, the leaching concentration of heavy metals in the solidified body was significantly reduced. Among them, the solidified efficiency of chromium is stable above 90%. The changes in the results of XRD and FTIR for each component were studied. It indicated that the solidified body may solidify/stabilize heavy metals through physical encapsulation of the amorphous form and chemical immobilization. This research recognized the use of waste to treat waste, realized the combined effect of solidification/adsorption, and indicated the possibility of application of attapulgite and its solidified products in construction.

摘要

为了解决含铬危险废物(CCS,含铬污泥)对人类和环境造成的危害,本研究利用凹凸棒石增强碱渣制备胶凝材料固化/稳定化 CCS。采用单因素和正交实验优化了碱渣胶凝材料的制备参数。测试了 CCS 固化体的抗压强度、重金属浸出毒性和微观特性,以研究 CCS 形成的固化效果和机理。最佳凹凸棒石含量为 4%;经处理后的含铬污泥固化体具有良好的重金属浸出和力学性能。添加凹凸棒石增强了抗压强度。与原始 CCS 相比,固化体中重金属的浸出浓度显著降低。其中,铬的固化效率稳定在 90%以上。研究了各组分的 XRD 和 FTIR 结果的变化。表明固化体可能通过无定形形式的物理包裹和化学固定化来固化/稳定重金属。本研究认识到了利用废物处理废物,实现了固化/吸附的协同作用,并表明了凹凸棒石及其固化产物在建筑中的应用可能性。

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