基于季铵化接枝改性的秸秆纤维,用于调节污泥脱水性能。

IF 2.5 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Water Science and Technology Pub Date : 2024-07-01 Epub Date: 2024-07-02 DOI:10.2166/wst.2024.225
Qingfang Zhang, Yanbin Zhao, Qiyong Yang, Binjie Xu, Xinhua Zhang, Houfeng Xiong, Han Zhou, Ruimin Xiao
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引用次数: 0

摘要

胞外聚合物物质(EPS)是污泥脱水的关键影响因素。破坏这些 EPS 有助于释放污泥中的结合水,从而提高污泥脱水性能。本研究采用异构自由基接枝聚合法制备了对活性污泥中的 EPS 结构和成分具有破坏作用的季铵化秸秆纤维。秸秆纤维、二甲基二烯丙基氯化铵(DMDAAC)、过硫酸铵(APS)和丙烯酰胺(AM)分别作为基质、接枝单体、催化剂和交联剂。确定的基于 DMDAAC 的秸秆纤维季铵化和接枝改性的最佳加工条件如下:反应温度为 60 ℃,反应时间为 5 h,每克秸秆的催化剂 APS 用量为 0.100 g,每克秸秆的 DMDAAC 用量为 3.000 ml。在最佳加工条件下,每克秸秆可获得 1.335 克改性秸秆纤维,接枝率为 33.67%,季铵基团的取代率为 31.70%。毛细管抽吸时间(CST)从原始污泥的 243.3 ± 22.6 秒缩短至 134.5 ± 34.45 秒,过滤比阻(SRF)从原始污泥的 8.82 ± 0.51 × 1012 m/kg 降低至 4.59 ± 0.23 × 1012 m/kg。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quaternization-based graft modification of straw fibers for conditioning the sludge dewatering performance.

Extracellular polymeric substances (EPS) are a critical influencing factor in sludge dewatering. Disrupting such EPS contributes to the release of bound water in sludge, enhancing the sludge dewatering performance. In This study, quaternized straw fibers that are destructive to the EPS structure and components in active sludge were prepared useing heterogeneous free radical graft polymerization. Straw fibers, dimethyl diallyl ammonium chloride (DMDAAC), ammonium persulfate (APS), and acrylamide (AM) were taken as the substrate, grafting monomer, catalyst, and cross-linking agent, respectively.The optimal processing conditions determined for the DMDAAC-based quaternization and graft modification of straw fibers were as follows: reaction temperature of 60 °C, reaction time of 5 h, 0.100 g of catalyst APS dosage per gram of straw, and 3.000 ml of DMDAAC dosage per gram of straw. The optimal processing conditions yielded 1.335 g of modified straw fibers per gram of straw, 33.67% grafting rate, and 31.70% substitution of the quaternary ammonium groups. The capillary suction time (CST) was conditioned from 243.3 ± 22.6 s in the original sludge to 134.5 ± 34.45 s. The specific resistance to filtration (SRF) was reduced from 8.82 ± 0.51 × 1012 m/kg in the original sludge to 4.59 ± 0.23 × 1012 m/kg.

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来源期刊
Water Science and Technology
Water Science and Technology 环境科学-工程:环境
CiteScore
4.90
自引率
3.70%
发文量
366
审稿时长
4.4 months
期刊介绍: Water Science and Technology publishes peer-reviewed papers on all aspects of the science and technology of water and wastewater. Papers are selected by a rigorous peer review procedure with the aim of rapid and wide dissemination of research results, development and application of new techniques, and related managerial and policy issues. Scientists, engineers, consultants, managers and policy-makers will find this journal essential as a permanent record of progress of research activities and their practical applications.
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