Department of Food Science and Technology, Islamic Azad University, Damghan, Iran.
Department of Environmental Science, Faculty of Natural Resources, Tarbiat Modares University, Noor, Iran.
Water Environ Res. 2021 Sep;93(9):1589-1599. doi: 10.1002/wer.1540. Epub 2021 Mar 8.
Since heavy metals have been regarded as ubiquitous environmental pollutants, the exploitation of bacterial biosorption has been suggested as an applicable method for being employed for heavy metal depletion. The present study aimed to characterize the function of Lactobacillus paracasei in the presence of Pb (II) and Cd (II). The simultaneous effect of pH, initial metal concentration, and inoculum size demonstrated the Pb (II) removal of 85.77% at the lowest pH, while the inoculum size was enhanced to 45 CFU/100 ml. The maximum Cd (II) removal was obtained at a high level of pH and inoculum size, while the metal concentration was reduced to 30 ppb. The addition of Cd (II) concentration in access led to the 10% drop in Cd (II) removal efficiency attributed to the metal toxicity and pH. Additionally, the slight variation in the amount of inoculum size caused the decreasing trend in the Cd (II) removal. According to the obtained results, the benefit of L. paracasei in the biosorption of heavy metals was well-recognized, which could be suggested as an alternative candidate. PRACTITIONER POINTS: Strain of Lactobacillus paracasei as potential probiotics was tested for biosorption. A successful response surface method was proposed. L. paracasei showed a good efficiency for the lead and cadmium biosorption. Biosorption process was effective in removing low metal level from drinking water. The maximum biosorption was found to be 85.77% for Pb (II) obtained from the experiment.
由于重金属被视为无处不在的环境污染物,因此人们提出了利用细菌生物吸附来去除重金属的方法。本研究旨在研究副干酪乳杆菌在 Pb(II)和 Cd(II)存在下的功能特性。同时研究了 pH、初始金属浓度和接种量对 Pb(II)去除的影响,结果表明,在最低 pH 下,Pb(II)的去除率为 85.77%,而接种量增加到 45 CFU/100 ml。在高 pH 和接种量下,Cd(II)的去除率最高,而金属浓度降低到 30 ppb。Cd(II)浓度的增加导致 Cd(II)去除效率下降 10%,这归因于金属毒性和 pH 的影响。此外,接种量的微小变化导致 Cd(II)去除率呈下降趋势。根据实验结果,副干酪乳杆菌在重金属生物吸附方面具有良好的效果,可作为替代候选物。
测试了副干酪乳杆菌作为潜在益生菌的生物吸附能力。
提出了一种成功的响应面法。
副干酪乳杆菌对铅和镉的吸附具有良好的效果。
生物吸附过程可有效去除饮用水中的低浓度金属。
实验中获得的 Pb(II)最大吸附率为 85.77%。