Choi Hanna, Jeong Seung-Woo, Chung Youn-Jin
Suwon Development Institute, Ajou University, Suwon 443-749, Korea.
Bioresour Technol. 2006 Jan;97(2):198-203. doi: 10.1016/j.biortech.2005.02.023. Epub 2005 Apr 9.
An electric pulse-power reactor consisting of one coaxial electrode and multiple ring electrodes was developed to solubilize waste activated sludge (WAS) prior to anaerobic digestion. By pretreatment of WAS, the soluble chemical oxygen demand (SCOD)/total chemical oxygen demand (TCOD) ratio and exocelluar polymers (ECP) content of WAS increased 4.5 times and 6.5 times, respectively. SEM images clearly showed that pulse-power pretreatment of WAS was found to result in destruction of sludge cells. Batch-anaerobic digestion of pulse-power treated sludge showed 2.5 times higher gas production than that of untreated sludge. Solubilized sludge cells by pulse-power pretreatment would be readily utilized for anaerobic microorganisms to produce anaerobically-digested gas. Slow or lagged gas production in the initial anaerobic digestion stage of pulse-power pretreated sludge implied that the methane-forming stage of anaerobic digestion would be the rate-limiting step for anaerobic digestion of pulse-power pretreated sludge.
开发了一种由一个同轴电极和多个环形电极组成的电脉冲功率反应器,用于在厌氧消化之前溶解废弃活性污泥(WAS)。通过对WAS进行预处理,WAS的可溶性化学需氧量(SCOD)/总化学需氧量(TCOD)比值和胞外聚合物(ECP)含量分别提高了4.5倍和6.5倍。扫描电子显微镜(SEM)图像清楚地表明,WAS的脉冲功率预处理导致污泥细胞被破坏。脉冲功率处理后的污泥进行批次厌氧消化,其产气量比未处理的污泥高2.5倍。通过脉冲功率预处理溶解的污泥细胞将很容易被厌氧微生物利用来产生厌氧消化气。脉冲功率预处理污泥在厌氧消化初始阶段产气缓慢或滞后,这意味着厌氧消化的产甲烷阶段将是脉冲功率预处理污泥厌氧消化的限速步骤。