College of Resources and Environment, Shanxi Agricultural University, Taiyuan 030031, China.
Shanxi Province Key Laboratory of Soil Environment and Nutrient Resources, Taiyuan 030031, China.
Molecules. 2024 Jan 31;29(3):660. doi: 10.3390/molecules29030660.
Most research on immobilized microorganisms employs biomass charcoal as a carrier, but limited studies explore coal-based resources for microbial immobilization. Herein, lead-resistant functional strains were immobilized using weathered coal as a carrier, resulting in the development of a weathered coal-immobilized microbial material (JK-BW) exhibiting high efficiency in lead removal from solutions. A quadratic polynomial model for the adsorption capacity and adsorption rate of JK-BW on Pb was developed using the Box-Behnken method to determine the optimal adsorption conditions. The Pb adsorption mechanism of JK-BW was studied through batch adsorption and desorption experiments along with SEM-EDS, BET, FT-IR, and XPS analyses. Findings indicated that optimal conditions were identified at 306 K temperature, 0.36 g/L adsorbent dosage, and 300 mg/L initial solution concentration, achieving a peak adsorption performance of 338.9 mg/g (308 K) for the immobilized material, surpassing free cell adsorption by 3.8 times. Even after four cycles of repeated use, the material maintained its high adsorption capacity. Pb adsorption by JK-BW involved monolayer chemisorption with ion exchange, complexation, precipitation, physical adsorption, and microbial intracellular phagocytosis. Ion exchange accounted for 22-42% and complexation accounted for 39-57% of the total adsorption mechanisms, notably involving exchanges with K, Ca, Na, and Mg ions as well as complexation with -OH, -COOH, CO-OH, -COOH, CO-, NH, and the β-ring of pyridine for Pb adsorption.
大多数固定化微生物的研究都采用生物炭作为载体,但有限的研究探索了煤基资源在微生物固定化中的应用。本文采用风化煤作为载体固定耐铅功能菌,开发了一种高效去除溶液中铅的风化煤固定化微生物材料(JK-BW)。采用 Box-Behnken 方法建立了 JK-BW 对 Pb 的吸附容量和吸附速率的二次多项式模型,以确定最佳吸附条件。通过批式吸附和解吸实验以及 SEM-EDS、BET、FT-IR 和 XPS 分析研究了 JK-BW 的 Pb 吸附机制。结果表明,在 306 K 温度、0.36 g/L 吸附剂用量和 300 mg/L 初始溶液浓度下,JK-BW 的最佳吸附条件下达到了 338.9 mg/g(308 K)的峰值吸附性能,是游离细胞吸附的 3.8 倍。即使经过四次重复使用,该材料仍保持高吸附能力。JK-BW 对 Pb 的吸附涉及到离子交换、络合、沉淀、物理吸附和微生物细胞内吞噬作用的单层化学吸附。离子交换占总吸附机制的 22-42%,络合占总吸附机制的 39-57%,涉及与 K、Ca、Na 和 Mg 离子的交换以及与-OH、-COOH、CO-OH、-COOH、CO-、NH 和吡啶β-环的络合用于 Pb 吸附。