He Yuhan, Liu Shiyu, Shen Gangqiang, Pan Muzhi, Cai Yanyan, Yu Jin
College of Civil Engineering, Huaqiao University, Xiamen, China.
Fujian Water Conservancy and Hydropower Engineering Bureau Company Limited, Quanzhou, China.
Front Bioeng Biotechnol. 2023 Jan 20;11:1109265. doi: 10.3389/fbioe.2023.1109265. eCollection 2023.
With societal development, the growing scale of engineering construction, and the increase in environmental protection requirements, the necessity of engineering waste mud disposal is becoming increasingly prominent. In this study, microbially induced struvite precipitation (MISP) was introduced to treat engineering waste mud. The study mainly focused on: i) the optimal mineralization scheme for microbially induced struvite precipitation, ii) the feasibility of the process and the effect of reaction parameters on treating engineering waste mud with microbially induced struvite precipitation, and iii) the mechanism of microbially induced struvite precipitation in treating engineering waste mud. The results showed that the waste mud could be well treated with bacteria, 10 mM urea, 20 mM phosphate buffer, and 25 mM at pH 7. The kaolin suspension could be effectively flocculated. The flocculation rate reached approximately 87.2% under the optimum mineralization conditions. The flocculation effect was mainly affected by the concentrations of reactants and heavy metals and the suspension pH. The X-ray diffraction (XRD) patterns showed a strong struvite (MAP) diffraction peak. Scanning electron microscopy (SEM) images indicated that under the optimal mineralization conditions, the crystals were large and showed prismatic shapes tilted at both ends with adhered kaolin particles. In summary, this manuscript provides an effective way to treat engineering waste mud, and the findings should have a positive effect on enhancing soil fertility and preventing secondary pollution.
随着社会发展、工程建设规模的不断扩大以及环境保护要求的提高,工程废泥处置的必要性日益凸显。本研究引入微生物诱导鸟粪石沉淀法(MISP)处理工程废泥。研究主要聚焦于:i)微生物诱导鸟粪石沉淀的最佳矿化方案;ii)该工艺的可行性以及反应参数对微生物诱导鸟粪石沉淀处理工程废泥的影响;iii)微生物诱导鸟粪石沉淀处理工程废泥的机理。结果表明,在pH值为7的条件下,利用细菌、10 mM尿素、20 mM磷酸盐缓冲液和25 mM 可以很好地处理废泥。高岭土悬浮液能够被有效絮凝。在最佳矿化条件下,絮凝率达到约87.2%。絮凝效果主要受反应物浓度、重金属浓度和悬浮液pH值的影响。X射线衍射(XRD)图谱显示出强烈的鸟粪石(MAP)衍射峰。扫描电子显微镜(SEM)图像表明,在最佳矿化条件下,晶体较大,呈两端倾斜的棱柱形状,且附着有高岭土颗粒。总之,本论文提供了一种处理工程废泥的有效方法,研究结果对提高土壤肥力和防止二次污染应具有积极作用。