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磷石膏-粉煤灰-赤泥复合胶结充填料在应用及环境效应方面的研究。

Study on application and environmental effect of phosphogypsum-fly ash-red mud composite cemented paste backfill.

机构信息

College of Chemistry and Chemical Engineering, Guizhou University, Guiyang, 550025, China.

出版信息

Environ Sci Pollut Res Int. 2023 Oct;30(50):108832-108845. doi: 10.1007/s11356-023-29832-8. Epub 2023 Sep 27.

Abstract

Phosphogypsum (PG) cementitious paste backfill (CPB) was prepared by using PG and fly ash (FA) as the main raw materials, red mud (RM) as the alkaline activator, Portland cement (OPC) as the binder, and silica fume (SF) as the additive, and its properties were investigated to achieve the objective of "treating harm with waste." The results showed that the addition of OPC facilitated the flowability of the slurry, while the addition of RM and SF had the opposite effect. The slurry presented ideal flowability when the water/binder ratio was 0.2 and the superplasticizer (SP) content was 0.7%. The mechanical properties and water resistance were improved significantly with increasing OPC, RM, and SF doping. The strength of the CPB material exceeded 22 MPa after curing at room temperature for 28 days, which met the mine filling requirements. Changes in the ion concentrations of the solution were first monitored during immersion. The dissolution rules of Ca and SO at different immersion ages confirmed that RM promoted the continuous hydration of CPB, which was the key to improve water resistance. Microstructural analysis showed that the main hydration products were AFt and C-S-H, which played an important role in the strength development of the material. The leaching results demonstrated that the metal ion content satisfied the requirements of the III categories of Chinese environmental standards (GB/T 14848-2017), indicating that the technology is a reliable and environmentally friendly technology for PG, FA, and RM recovery that can simultaneously support safe mining.

摘要

磷石膏(PG)胶结充填料(CPB)是以 PG 和粉煤灰(FA)为主要原料,赤泥(RM)为碱性激发剂,普通硅酸盐水泥(OPC)为胶凝材料,硅灰(SF)为外加剂制备的。研究了其性能,旨在实现“以废治废”的目标。结果表明,OPC 的添加有利于浆液的流动性,而 RM 和 SF 的添加则有相反的效果。当水胶比为 0.2,外加剂掺量为 0.7%时,浆液表现出理想的流动性。随着 OPC、RM 和 SF 掺杂量的增加,力学性能和耐水性显著提高。CPB 材料在室温下养护 28 天后强度超过 22 MPa,满足矿山充填要求。首先监测了浸泡过程中溶液中离子浓度的变化。不同浸泡龄期 Ca 和 SO 的溶解规律证实 RM 促进了 CPB 的持续水化,这是提高耐水性的关键。微观结构分析表明,主要水化产物为 AFt 和 C-S-H,它们在材料强度发展中起重要作用。浸出结果表明,金属离子含量满足中国环境标准(GB/T 14848-2017)三类的要求,表明该技术是一种可靠的、环保的 PG、FA 和 RM 回收技术,可同时支持安全采矿。

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