Department of Biological Science and Technology, National Chiao Tung University, Hsinchu 300, Taiwan.
Chemosphere. 2013 Aug;92(10):1396-401. doi: 10.1016/j.chemosphere.2013.05.054. Epub 2013 Jun 19.
A chemical-biological process was performed to remove a high concentration of H2S in biogas. The high iron concentration tolerance (20gL(-1)) of Acidithiobacillus ferrooxidans CP9 provided sufficient ferric iron level for stable and efficient H2S elimination. A laboratory-scale apparatus was setup for a 45 d operation to analyze the optimal conditions. The results reveal that the H2S removal efficiency reached 98% for 1500ppm H2S. The optimal ferric iron concentration was kept between 9 and 11gL(-1) with a cell density of 10(8)CFUg(-1) granular activated carbon and a loading of 15gSm(-3)h(-1). In pilot-scale studies for biogas purification, the average inlet H2S concentration was 1645ppm with a removal efficiency of up to 97% for a 311d operation and an inlet loading 40.8gSm(-3)h(-1). When 0.1% glucose was added, the cell density increased twofold under the loading of 65.1gSm(-3)h(-1) with an H2S removal efficiency still above 96%. The analysis results of the distribution of microorganisms in the biological reactor by DGGE show that microorganism populations of 96.7% and 62.7% were identical to the original strain at day 200 and day 311, respectively. These results clearly demonstrate that ferric iron reduction by H2S and ferrous iron oxidation by A. ferrooxidans CP9 are feasible processes for the removal of H2S from biogas.
采用化学生物法去除沼气中的高浓度 H2S。嗜酸氧化亚铁硫杆菌 CP9 具有较高的铁浓度耐受能力(20gL(-1)),可为稳定高效的 H2S 去除提供充足的高铁水平。搭建了实验室规模的装置进行 45d 运行,以分析最佳条件。结果表明,对于 1500ppm 的 H2S,H2S 的去除效率达到 98%。最佳的铁浓度保持在 9-11gL(-1),细胞密度为 10(8)CFUg(-1)颗粒活性炭和 15gSm(-3)h(-1)的负荷。在沼气净化的中试研究中,平均入口 H2S 浓度为 1645ppm,在 311d 的运行和入口负荷 40.8gSm(-3)h(-1)下,去除效率高达 97%。当添加 0.1%葡萄糖时,在 65.1gSm(-3)h(-1)的负荷下,细胞密度增加了一倍,H2S 的去除效率仍高于 96%。DGGE 对生物反应器中微生物分布的分析结果表明,200 天和 311 天时,微生物种群的 96.7%和 62.7%与原始菌株相同。这些结果清楚地表明,H2S 还原铁和 CP9 氧化亚铁是从沼气中去除 H2S 的可行过程。