Ecole Nationale Polytechnique d'Alger, 10 Avenue Hassen Badi BP 182 El Harrach, 16200, Alger, Algeria.
Department of Microbiology, Faculty of Biology and Environmental Protection, University of Silesia in Katowice, Jagiellońska 28, 40-034, Katowice, Poland.
Sci Rep. 2019 Sep 10;9(1):12929. doi: 10.1038/s41598-019-49406-4.
Chemical reagents used in traditional mineral processing can be toxic and hazardous for the environment. Therefore, the use of biotechnological methods is becoming increasingly important. Great hopes are being placed in the use of microorganisms for bio-beneficiation of raw materials. However, assessment of adhesion abilities of bacteria onto minerals surface as well as biosorption of metals are essential steps before designing final process of each ore beneficiation. The main aim of this work was an investigation of biosorption of Cd and Mg, as well as adhesion abilities of five microorganism species with minerals included in the natural mixture of phosphate ore form Djebel Onk, Algeria. The ore, due to its unique composition, created conditions for adhesion of all five tested microbial strains onto apatite surface during incubation at pH 3. Moreover, Rhodococcus erythropolis CD 130, Pseudomonas fluorescens and Escherichia coli adhered distinctly onto apatite surface during incubation at pH 7. Incubation lasting 20 min at pH 4-6 created the most favorable conditions for biosorption of metals by B. subtilis and adhesion of cells. In case of C. albicans, biosorption of metals as well as adhesion of cells onto the mineral surface were more effective after longer time and in a wider pH range.
在传统矿物加工中使用的化学试剂可能对环境有毒有害。因此,生物技术方法的应用变得越来越重要。人们对利用微生物进行原材料的生物选矿寄予厚望。然而,在设计每种矿石选矿的最终工艺之前,评估细菌对矿物表面的黏附能力以及金属的生物吸附是必不可少的步骤。本工作的主要目的是研究在 pH 值为 3 时,在阿尔及利亚 Djebel Onk 磷矿自然混合体中包括的矿物上,五种微生物对 Cd 和 Mg 的生物吸附以及黏附能力。由于矿石独特的成分,在孵育期间,所有五种测试的微生物菌株都能黏附在磷灰石表面上,从而创造了条件。此外,在 pH 值为 7 时,红色糖多孢菌 CD 130、荧光假单胞菌和大肠杆菌明显黏附在磷灰石表面上。在 pH 值为 4-6 时孵育 20 分钟,为枯草芽孢杆菌和细胞黏附创造了最有利于金属生物吸附的条件。对于白色念珠菌,在更长的时间和更宽的 pH 范围内,金属的生物吸附以及细胞对矿物表面的黏附更为有效。