Department of Environmental Science & Engineering, Hunan Agricultural University, Changsha 410128, China.
Department of Environmental Science & Engineering, Hunan Agricultural University, Changsha 410128, China.
J Hazard Mater. 2023 Feb 5;443(Pt B):130314. doi: 10.1016/j.jhazmat.2022.130314. Epub 2022 Nov 2.
Acid mine drainage is harmful to the environment. Bioremediation based on biological soil crusts (BSCs) can be used as a new method to alleviate metal pollution in acid mine drainage. In this study, we found that BSCs can survive in a strongly acidic environment (pH = 3.28) and have a high metal(loid)s accumulation ability. The algae of genera Fragilaria, Klebsormidium, Cymbella, Melosira, Microcystacea, and Planctonema a're the main components of BSCs. These organisms in the BSCs regulated fatty acids and produced acid-resistant enzymes. The bioconcentration factors for As, Cd, Pb, Zn, and Cu were as high as 16,000, 200, 50, 26, and 400, respectively. The concentration of As and Cd in acid mine drainage decreased from 7.1 μg and 350 μg/L to 1.9 μg and 110 μg/L, respectively. In total, 56% of As, 73% of Cd, 88% of Pb, 85% of Zn, and 92% of Cu were present in BSCs as residual or mineral-bound forms. The XRD results (e.g., quarartz and phyllosilicates), SEM results (e.g., phylosilicates and diatom shells) and correlation results show that these metal(loid)s are immobilized by Cymbella (diatoms) during the deposition of silica in the acidic environment. Furthermore, adsorption and co-precipitation are other ways that metal(loid)s could have been bound. These findings provide new insights into the removal of metals (loid) in acidic water.
酸性矿山排水对环境有害。基于生物土壤结皮(BSCs)的生物修复可以作为一种新的方法来缓解酸性矿山排水中的金属污染。在本研究中,我们发现 BSCs 可以在强酸环境(pH = 3.28)中生存,并具有高金属(类)积累能力。藻类属 Fragilaria、Klebsormidium、Cymbella、Melosira、Microcystacea 和 Planctonema 是 BSCs 的主要组成部分。这些 BSCs 中的生物调节脂肪酸并产生耐酸酶。As、Cd、Pb、Zn 和 Cu 的生物浓缩因子分别高达 16,000、200、50、26 和 400。酸性矿山排水中的 As 和 Cd 浓度分别从 7.1μg 和 350μg/L 降至 1.9μg 和 110μg/L。总的来说,56%的 As、73%的 Cd、88%的 Pb、85%的 Zn 和 92%的 Cu 以残留或矿物结合的形式存在于 BSCs 中。XRD 结果(例如石英和层状硅酸盐)、SEM 结果(例如层状硅酸盐和硅藻壳)和相关结果表明,在酸性环境中硅沉积过程中,这些金属(类)被 Cymbella(硅藻)固定。此外,吸附和共沉淀是金属(类)结合的另一种方式。这些发现为酸性水中金属(类)的去除提供了新的见解。