State Key Laboratory of Pollution Control and Resources Reuse, School of Environmental Science and Engineering, Tongji University, 1239 Siping Road, Shanghai 200092, China.
Bioresour Technol. 2012 Jun;114:349-56. doi: 10.1016/j.biortech.2012.03.052. Epub 2012 Mar 29.
The effects of carbohydrate/protein ratio (CH/Pr) and pH on hydrogen production from waste activated sludge (WAS) were investigated. Firstly, the optimal pH value for hydrogen production was influenced by the CH/Pr ratio, which was pH 10, 9, 8, 8, 8 and 6 at the CH/Pr ratio (COD based) of 0.2 (sole sludge), 1, 2.4, 3.8, 5 and 6.6, respectively. The maximal hydrogen production (100.6 mL/g-COD) was achieved at CH/Pr of 5 and pH 8, which was due to the synergistic effect of carbohydrate addition on hydrogen production, the enhancement of sludge protein degradation and protease and amylase activities, and the suitable fermentation pathway for hydrogen production. As hydrogen consumption was observed at pH 8, in order to further increase hydrogen production a two-step pH control strategy (pH 8+pH 10) was developed and the hydrogen production was further improved by 17.6%.
研究了碳水化合物/蛋白质比(CH/Pr)和 pH 值对废活性污泥(WAS)产氢的影响。首先,产氢的最佳 pH 值受到 CH/Pr 比的影响,在 CH/Pr 比(基于 COD)分别为 0.2(单一污泥)、1、2.4、3.8、5 和 6.6 时,最佳 pH 值分别为 10、9、8、8、8 和 6。在 CH/Pr 为 5 和 pH 8 时,最大产氢量(100.6 mL/g-COD)达到,这是由于碳水化合物添加对产氢的协同作用,污泥蛋白降解以及蛋白酶和淀粉酶活性的增强,以及适合产氢的发酵途径。由于在 pH 8 时观察到氢气消耗,为了进一步提高产氢量,开发了两步 pH 控制策略(pH 8+pH 10),产氢进一步提高了 17.6%。