School of Energy and Environmental Engineering, University of Science and Technology Beijing, Beijing, 100083, China; Beijing Key Laboratory on Resource-oriented Treatment of Industrial Pollutants, Beijing, 100083, China.
School of Energy and Environmental Engineering, University of Science and Technology Beijing, Beijing, 100083, China; Beijing Key Laboratory on Resource-oriented Treatment of Industrial Pollutants, Beijing, 100083, China.
J Environ Manage. 2022 Aug 15;316:115304. doi: 10.1016/j.jenvman.2022.115304. Epub 2022 May 16.
Due to the technological limitations associated with beneficiation technology, large amounts of flotation reagents and heavy metals remain in mineral processing wastewater. Unfortunately, however, no treatment methods are available to mitigate the resulting pollution by them. In this study, a bacterial consortium SDMC (simultaneously degrade butyl xanthate and biomineralize cadmium) was constructed in an effort to simultaneously degrade butyl xanthate (BX) and biomineralize cadmium (Cd) by screening and domesticating two different bacterial species including Hypomicrobium and Sporosarcina. SDMC is efficient in removing the combined pollution due to BX and Cd with a 100% degradation rate for BX and 99% biomineralization rate for Cd within 4 h. Besides, SDMC can tolerate high concentrations of Fe(III) (0-40 mg/L). It has an excellent ability to utilize Fe(III) for enhanced removal of the combined pollutants. SDMC can effectively remove pollutants with a pH range of 6-9. Further, we discussed pathways for potential degradation and biomineralization: Cd(BX)-Cd, BX; BX-CS, butyl perxanthate (BPX); Cd-(Ca0.67,Cd0.33)CO. The removal of the combined pollutants primarily entails decomposition, degradation, and biomineralization, C-O bond cleavage, and microbially induced carbonate precipitation (MICP). SDMC is a simple, efficient, and eco-friendly bifunctional bacterial consortium for effective treatment of BX-Cd combined pollution in mineral processing wastewater.
由于选矿技术的技术限制,大量浮选药剂和重金属残留在矿物加工废水中。然而,不幸的是,没有处理方法可以减轻它们造成的污染。在本研究中,通过筛选和驯化两种不同的细菌,即 Hypomicrobium 和 Sporosarcina,构建了一个能够同时降解丁基黄药(BX)和生物矿化镉(Cd)的细菌联合体 SDMC。SDMC 能够有效地去除 BX 和 Cd 联合污染,在 4 小时内 BX 的降解率达到 100%,Cd 的生物矿化率达到 99%。此外,SDMC 能够耐受高浓度的 Fe(III)(0-40mg/L)。它具有利用 Fe(III)增强去除联合污染物的优异能力。SDMC 能够在 pH 值为 6-9 的范围内有效地去除污染物。此外,我们讨论了潜在的降解和生物矿化途径:Cd(BX)-Cd,BX;BX-CS,丁基过氧黄药(BPX);Cd-(Ca0.67,Cd0.33)CO。联合污染物的去除主要包括分解、降解和生物矿化、C-O 键断裂和微生物诱导的碳酸沉淀(MICP)。SDMC 是一种简单、高效、环保的双功能细菌联合体,可有效处理矿物加工废水中的 BX-Cd 联合污染。