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纸浆污泥是制浆造纸工业主要的固体废弃物。由于纸浆污泥中含有至少约40%的纤维素,在污泥处理之前对其中的纤维素进行酶水解,并将葡萄糖转化为生物能源,将极具吸引力。本文详细研究了纸浆污泥纤维素酶水解的影响因素,发现纸浆污泥酶水解系统会促进细菌微生物的生长,消耗生成的葡萄糖,少量的氯胺-T可以消除细菌的负面影响;调节系统初始的pH值到约5.3并稳定之,反应过程的pH值变化都在纤维素酶适宜的范围内。应根据纤维长度来确定酶水解的温度,避免盲目升温到50℃反应而带来的不必要的能量消耗。系统中加入阳离子聚丙烯酰胺量达500mg/L时可以提高酶水解效率约40%。
Pulp sludge is the major solid waste in the pulp and paper industry. Because pulp sludge contains at least about 40% of cellulose, it is extremely attractive to enzymatically hydrolyze cellulose therein prior to sludge treatment and convert glucose to bioenergy. In this paper, the influencing factors of cellulase hydrolysis of pulp sludge were studied in detail. It was found that enzymatic hydrolysis system of pulp sludge could promote the growth of bacterial microorganisms, consume the produced glucose, and a small amount of chloramine-T can eliminate the negative effects of bacteria. The pH is about 5.3 and is stable, and the pH of the reaction varies within the appropriate range of cellulase. The temperature of the enzyme hydrolysis should be determined according to the length of the fiber to avoid unnecessary energy consumption caused by blindly warming up to 50 ° C. Adding cationic polyacrylamide to the system up to 500mg / L can improve the enzymatic hydrolysis efficiency about 40%.