生物脫硫的運用能耗少、去除率高,但是生物脫硫也有自己的局限性,就是需給硫細菌營造一個適合的環境,才干確保其具有較高的生物活性,以到達一個好的脫硫效果。
The application of biological desulfurization has less energy consumption and high removal rate, but biological desulfurization also has its own limitations. It is necessary to create a suitable environment for sulfur bacteria to ensure their high biological activity in order to achieve a good desulfurization effect.
1、pH值的控制。將脫硫循環水的pH值維持在2~3之間,到達較好的脫硫效果,當pH值發生較大變化時,硫細菌的活性急劇降落以失去活性,如本工程中當pH值由2~3調整到5~7時,生物脫硫塔簡直完整失去了脫硫效果。所以在生物脫硫中,維持穩定的pH值是關重要的,它將直接影響脫硫效果的好壞。
1. Control of pH value. When the pH value of desulfurization circulating water is maintained between 2 and 3, a better desulfurization effect can be achieved. When the pH value changes greatly, the activity of sulfur bacteria drops sharply and even loses its activity. For example, when the pH value is adjusted from 2 to 3 to 5 to 7 in this project, the biological desulfurization tower almost completely loses its desulfurization effect. Therefore, in biological desulfurization, it is very important to maintain a stable pH value, which will directly affect the quality of desulfurization effect.
2、DO濃度的控制。氣箱中H2S和O2難以發作反響,生物脫硫反響過程主要發作在液相中,所以脫硫塔內循環噴淋水中的DO(溶解氧)濃度是影響生物脫硫的一個重要要素。
2. Control of DO concentration. The reactions of H2S and O2 in the gas tank are difficult to occur, and the reactions of biological desulfurization mainly occur in the liquid phase. Therefore, the concentration of DO (dissolved oxygen) in the circulating spray water in the desulfurization tower is an important factor affecting biological desulfurization.
3、H2S負荷的控制。實踐工程運轉發現,在硫細菌所能接受范圍內,H2S容積負荷越高,微生物脫硫反響越能堅持良好的運轉效果,且不易發作循環水急劇酸化的現象。
3. Control of H2S load. Practical engineering operation found that within the acceptable range of sulfur bacteria, the higher the volume load of H2S, the better the microbial desulfurization response can adhere to the good operation effect, and it is not easy to occur the phenomenon of rapid acidification of circulating water.
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