College of Civil Engineering, Liaoning Technical University, Fuxin, 123000, China.
Beijing Jingneng Geological Engineering Co., Ltd, Beijing, 102300, China.
Environ Geochem Health. 2024 Aug 21;46(10):380. doi: 10.1007/s10653-024-02167-0.
The development of an efficient and environmentally friendly dust suppressant is crucial to address the issue of dust pollution in limestone mines. Leveraging the synergistic microbial-induced calcium carbonate precipitation (MICP) technology involving NaHCO and dodecyl glucoside (APG), the optimal ratio of the dust suppressant was determined through single-factor and response surface tests. The dust suppression efficacy and mechanisms were analyzed through performance testing and microscopic imaging techniques, indicating that the optimal ratio of the new microbial dust suppressant was 20% mineralized bacteria cultured for 72 h, 0.647 mol L cementing solution, 3.142% NaHCO, and 0.149% APG. Under these conditions, the yield of calcium carbonate increased by 24.89% as compared to when no NaHCO was added. The dust suppressant demonstrated excellent wind, moisture, and rain resistance, as well as curing ability. More calcite was formed in the dust samples after treatment, and the stable form of the dust suppressant contributed to consolidating the limestone dust into a cohesive mass. These findings indicate that the synergistic effect of NaHCO and APG significantly enhanced the dust suppression capabilities of the designed microbial dust suppressant.
开发高效环保的抑尘剂对于解决石灰岩矿山的粉尘污染问题至关重要。利用涉及 NaHCO 和十二烷基葡萄糖苷(APG)的协同微生物诱导碳酸钙沉淀(MICP)技术,通过单因素和响应面试验确定了抑尘剂的最佳配比。通过性能测试和微观成像技术分析了抑尘效果和机理,表明新型微生物抑尘剂的最佳配比为:培养 72 h 的 20%矿化细菌、0.647 mol/L 的胶结溶液、3.142%的 NaHCO 和 0.149%的 APG。在这些条件下,与不添加 NaHCO 的情况相比,碳酸钙的产率增加了 24.89%。抑尘剂具有优异的防风、防潮和耐雨淋性能以及固化能力。处理后粉尘样品中形成了更多的方解石,抑尘剂的稳定形式有助于将石灰岩粉尘固结为粘性物质。这些发现表明,NaHCO 和 APG 的协同作用显著提高了设计的微生物抑尘剂的抑尘能力。