Key Laboratory of Bio-Resource and Eco-Environment of Ministry of Education, College of Life Sciences, Sichuan University, Chengdu 610065, Sichuan, PR China.
State Key Laboratory of Hydraulics and Mountain River Engineering, College of Water Resources and Hydropower, Sichuan University, Chengdu 610065, Sichuan, PR China.
J Hazard Mater. 2021 Jun 15;412:125156. doi: 10.1016/j.jhazmat.2021.125156. Epub 2021 Jan 14.
Microbially induced phosphate precipitation (MIPP) is an advanced bioremediation technology to immobilize heavy metals. An indigenous bacterium QY14 with the function of mineralization isolated from Cd contaminated farmland soil was identified as Burkholderia ambifaria. The minimum inhibitory concentration value for QY14 was 550 mg/L for soluble Cd concentration. This study found that the addition of 10 mM Ca during MIPP process could significantly increase the removal ratio of Cd, and the maximum removal ratio of Cd with 10 mM Ca and without Ca in solution was 99.97% and 76.14%, respectively. The increase of acid phosphatase activity and the formation of precipitate containing calcium caused by 10 mM Ca addition contributed the increase of Cd removal efficiency. The results of SEM-EDS, FTIR and XRD showed that Cd was removed by forming Cd containing hydroxyapatite (Cd-HAP). In addition, the dissolution experiment showed the Cd release ratio of Cd-HAP (0.01‰ at initial pH 3.0 of solution) was lower than Cd-absorbed HAP, indicating that Cd was more likely removed by the formation of CaCd(PO)(OH) solid solution. Our findings revealed MIPP-based bioremediation supplied with 10 mM Ca could increase the Cd removal and could potentially be applied for Cd remediation.
微生物诱导磷酸盐沉淀(MIPP)是一种固定重金属的高级生物修复技术。从 Cd 污染农田土壤中分离到的具有矿化功能的土著菌 QY14 被鉴定为 Burkholderia ambifaria。QY14 的最小抑制浓度值为 550 mg/L 的可溶性 Cd 浓度。本研究发现,在 MIPP 过程中添加 10 mM Ca 可以显著提高 Cd 的去除率,添加 10 mM Ca 和溶液中无 Ca 时 Cd 的最大去除率分别为 99.97%和 76.14%。10 mM Ca 的添加增加了酸磷酸酶活性和含 Ca 沉淀的形成,从而提高了 Cd 的去除效率。SEM-EDS、FTIR 和 XRD 的结果表明,Cd 通过形成含羟磷灰石(Cd-HAP)被去除。此外,溶解实验表明,Cd-HAP 的 Cd 释放率(溶液初始 pH 值为 3.0 时为 0.01‰)低于 Cd 吸附的 HAP,表明 Cd 更有可能通过形成 CaCd(PO)(OH)固溶体而被去除。我们的研究结果表明,基于 MIPP 的生物修复技术补充 10 mM Ca 可以提高 Cd 的去除率,有望应用于 Cd 修复。