Chan Wu-Chung, Su Mei-Qi
Civil Engineering Department, Chung-Hua University, Hsinchu 30067, Taiwan, ROC.
Bioresour Technol. 2008 Nov;99(17):8016-21. doi: 10.1016/j.biortech.2008.03.045. Epub 2008 Apr 28.
Biodegradation kinetic behaviors of ethyl acetate and amyl acetate in a composite bead biofilter were investigated. The composite bead was the spherical PVA/peat/KNO3/GAC composite bead which was prepared in our previous works. Both microbial growth rate and biochemical reaction rate were inhibited at higher inlet concentration. For the microbial growth process, the microbial growth rate of ethyl acetate was greater than that of amyl acetate in the inlet concentration range of 100-400ppm. The degree of inhibitive effect was almost the same for ethyl acetate and amyl acetate in this concentration range. The half-saturation constant Ks values of ethyl acetate and amyl acetate were 16.26 and 12.65ppm, respectively. The maximum reaction rate Vm values of ethyl acetate and amyl acetate were 4.08 and 3.53gCh(-1)kg(-1) packed material, respectively. Zero-order kinetic with the diffusion limitation could be regarded as the most adequate biochemical reaction model. For the biochemical reaction process, the biochemical reaction rate of ethyl acetate was greater than that of amyl acetate in the inlet concentration range of 100-400ppm. The inhibitive effect for ethyl acetate was more pronounced than that for AA in this concentration range. The maximum elimination capacity of ethyl acetate and amyl acetate were 82.3 and 37.93gCh(-1)m(-3) bed volume, respectively. Ethyl acetate degraded by microbial was easier than amyl acetate did.
研究了复合珠生物滤池中乙酸乙酯和乙酸戊酯的生物降解动力学行为。复合珠为球形PVA/泥炭/KNO3/活性炭复合珠,是我们之前工作中制备的。在较高的进口浓度下,微生物生长速率和生化反应速率均受到抑制。对于微生物生长过程,在100 - 400ppm的进口浓度范围内,乙酸乙酯的微生物生长速率大于乙酸戊酯。在此浓度范围内,乙酸乙酯和乙酸戊酯的抑制效果程度几乎相同。乙酸乙酯和乙酸戊酯的半饱和常数Ks值分别为16.26和12.65ppm。乙酸乙酯和乙酸戊酯的最大反应速率Vm值分别为4.08和3.53gCh(-1)kg(-1)填充材料。具有扩散限制的零级动力学可被视为最适合的生化反应模型。对于生化反应过程,在100 - 400ppm的进口浓度范围内,乙酸乙酯的生化反应速率大于乙酸戊酯。在此浓度范围内,乙酸乙酯的抑制作用比乙酸戊酯更明显。乙酸乙酯和乙酸戊酯的最大去除能力分别为82.3和37.93gCh(-1)m(-3)床体积。微生物降解乙酸乙酯比降解乙酸戊酯更容易。