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Kinetics of the Removal of Iron Pyrite from Coal by Microbial Catalysis

机译:微生物催化去除煤中黄铁矿的动力学

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Different strains of Thiobacillus ferrooxidans and Thiobacillus thiooxidans were used to catalyze the oxidative dissolution of iron pyrite, FeS2, in nine different coal samples. Kinetic variables and parametric factors that were determined to have a pronounced effect on the rate and extent of oxidative dissolution at a fixed Po2 were: the bacterial strain, the nitrogen/phosphorus molar ratio, the partial pressure of CO2, the coal source, and the total reactive surface area of FeS2. The overall rate of leaching, which exhibited a first-order dependence on the total surface area of FeS2, was analyzed mathematically in terms of the sum of a biochemical rate, ν1, and a chemical rate, ν2. Results of this study show that bacterial desulfurization (90 to 98%) of coal samples which are relatively high in pyritic sulfur can be achieved within a time-frame of 8 to 12 days when pulp densities are ≤20% and particle sizes are ≤74 μm. The most effective strains of T. ferrooxidans were those that were isolated from natural systems, and T. ferrooxidans ATCC 19859 was the most effective pure strain. The most effective nutrient media contained relatively low phosphate concentrations, with an optimal N/P molar ratio of 90:1. These results suggest that minimal nutrient additions may be required for a commercial desulfurization process.
机译:使用不同菌株的铁氧化硫杆菌和硫氧化硫杆菌催化九种不同煤样品中的黄铁矿FeS2的氧化溶解。在固定的Po2下确定对氧化溶解的速率和程度具有显着影响的动力学变量和参数因子为:细菌菌株,氮/磷摩尔比,CO2分压,煤源和FeS2的总反应表面积。从生化速率ν1和化学速率ν2的总和中,对与FeS2的总表面积呈一阶依赖关系的总浸出率进行了数学分析。这项研究的结果表明,当纸浆密度≤20%且颗粒尺寸小于20%时,可以在8至12天的时间内实现含硫黄铁矿含量较高的煤样品的细菌脱硫(90%至98%)。 ≤74微米最有效的T. ferrooxidans菌株是从自然系统中分离的菌株,而T. ferrooxidans ATCC 19859是最有效的纯菌株。最有效的营养培养基包含相对较低的磷酸盐浓度,最佳N / P摩尔比为90:1。这些结果表明,商业脱硫工艺可能需要最少的营养添加量。

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