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  • ▶ 2008-2024年被中国情报信息研究所评价中心评为“中国科技核心期刊”
  • ▶ 2019-2024年连续三届被中国科学院文献情报中心中国科学引文数据库CSCD(核心库)收录
  • ▶ 2021、2023年入编北京大学图书馆《中文核心期刊要目总览》
  • ▶ 2020-2024连续四年入选《科技期刊世界影响力指数(WJCI)报告》
原 媛, 刘丝丝, 崔勇涛, 赖智龙, 廖德祥.生物酶用于河湖底泥脱水减量调理的对比研究水资源与水工程学报[J].,2025,36(1):154-162
生物酶用于河湖底泥脱水减量调理的对比研究
Comparative study on the application of biological enzymes to river and lake sediment dewatering
  
DOI:10.11705/j.issn.1672-643X.2025.01.17
中文关键词:  生物酶  脱水减量  含水率  污泥比阻  河湖底泥
英文关键词:biological enzyme  dewatering  moisture content  specific resistance of sludge  river and lake sediment
基金项目:中交上海航道勘察设计研究院有限公司科技项目(H20240163)
作者单位
原 媛1, 刘丝丝1, 崔勇涛2, 赖智龙1, 廖德祥1 (1.上海海事大学 海洋科学与工程学院 上海 201306 2.中交上海航道勘察设计研究院有限公司 上海 200120) 
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中文摘要:
      针对河湖底泥的脱水减量处理问题,分别采用常见的溶菌酶、α-淀粉酶及中性蛋白酶进行调理,考察了生物酶掺量、泥浆浓度和调理时间对底泥脱水性能的影响。通过测定抽滤后泥饼含水率、污泥比阻比较分析经生物酶调理后河湖底泥的脱水减量效果。结果表明:所选取的3种酶均能有效提高河湖底泥的脱水性能,其调理效果排序为α-淀粉酶>中性蛋白酶>溶菌酶;特别是当α-淀粉酶掺量为2 mg/g、泥浆浓度为11%且调理时间为0.5 h时,河湖底泥的含水率降低了31.72%,对应污泥比阻值降低了1.67×1011 cm/g;扫描电子显微镜观察泥饼的微观结构发现,经酶调理后底泥颗粒粒径变小、粒间孔隙增大且增多,从而使得泥浆中的过水通道显著增多,进而提高了底泥的脱水性能。
英文摘要:
      To address the problem of dewatering treatment of river and lake sediment, biological enzymes such as common lysozyme, α-amylase and neutral protease were used for conditioning. Correspondingly, the influence of biological enzyme content, mud concentration, and conditioning time on the dewatering performance of sediment were investigated. Furthermore, the moisture content of the mud cake and the specific resistance of the sludge after biological enzyme treatment were measured to investigate the dewatering effects of river and lake sediment. The results showed that the three selected enzymes could effectively improve the dewatering performance of river and lake sediment, and their conditioning effects were in the order of α-amylase> neutral protease>lysozyme. Notably, when the α-amylase content was 2 mg/g, the mud concentration was 11% and the conditioning time was 0.5 h, the moisture content of the sediment was reduced by 31.72%, and the corresponding specific resistance was reduced by 167×109 cm/g. Scanning electron microscopy (SEM) results showed that after the treatment the particle size of the sediment became smaller and the intergranular pores increased by size and number, which in turn significantly increased the water passages in the mud, thereby improving the dewatering performance of the sediment.
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