Institute of Process Engineering, Chinese Academy of Sciences, Beijing, China.
Water Sci Technol. 2013;67(9):2042-9. doi: 10.2166/wst.2013.088.
For amine-based carbon dioxide capture, nitrogen oxides and sulfur oxides were the main pollutants that had a negative effect on the regeneration of solvent. Before carbon dioxide capture, the sulfur oxides in flue gas should be removed by the method of calcium salt, and then washed by alkaline solution to eliminate the residual nitrogen oxides and sulfur oxides. The washing wastewater containing sulfate and nitrate needs to be treated. In this study, a novel anaerobic-anoxic process was built up for the treatment of this washing wastewater. Nitrate was reduced to nitrogen by denitrifying bacteria. Sulfate was firstly reduced to sulfide by sulfate reducing bacteria, and then selectively oxidized to element sulfur by sulfide oxidizing bacteria. The treated liquid could be reused as absorption after the adjustment of pH value. The performances of this bioprocess were investigated under various pH values and S/N ratios. It was found that the optimal pH value of influent was 6.0, the percentages of denitrification and sulfate reducing could reach 90 and 89%, respectively. Seventy-six percent of sulfate was transformed into element sulfur. Nitrate significantly had a negative effect on sulfate reduction above 10 mM. As 20 mM nitrate, the sulfate reducing percentage would drop to 67%. These results showed that the anaerobic-anoxic process was feasible for the treatment of flue gas washing wastewater. It would be prospectively applied to other wastewater with the higher ratio of SO4(2-)/NO3(-).
对于胺基二氧化碳捕集,氮氧化物和硫氧化物是对溶剂再生有负面影响的主要污染物。在进行二氧化碳捕集之前,应通过钙盐法去除烟道气中的硫氧化物,然后用碱性溶液洗涤以消除残留的氮氧化物和硫氧化物。含有硫酸盐和硝酸盐的洗涤废水需要进行处理。在本研究中,建立了一种新型的厌氧-缺氧工艺来处理这种洗涤废水。硝酸盐被反硝化细菌还原为氮气。硫酸盐首先被硫酸盐还原菌还原为硫化物,然后被硫化物氧化菌选择性地氧化为元素硫。处理后的液体可以在调节 pH 值后再用作吸收剂。在不同的 pH 值和 S/N 比下研究了该生物过程的性能。结果发现,进水的最佳 pH 值为 6.0,反硝化和硫酸盐还原的百分比分别可达 90%和 89%。76%的硫酸盐转化为元素硫。硝酸盐在 10mM 以上时对硫酸盐还原有显著的负面影响。当硝酸盐浓度为 20mM 时,硫酸盐还原率将降至 67%。这些结果表明,厌氧-缺氧工艺可用于处理烟道气洗涤废水。它有望应用于其他硫酸盐/硝酸盐比例较高的废水。