Quaternization-based graft modification of straw fibers for conditioning the sludge dewatering performance

Author:

Zhang Qingfang1,Zhao Yanbin12,Yang Qiyong23ORCID,Xu Binjie23,Zhang Xinhua23,Xiong Houfeng23,Zhou Han2,Xiao Ruimin2

Affiliation:

1. a College of Petrochemical Engineering, Lanzhou University of Technology, Lanzhou, Gansu 730050, China

2. b College of Resources & Environment, Jiujiang University, Jiujiang, Jiangxi 332005, China

3. c Key Laboratory of Watershed Ecological Process and Information of Jiangxi Province, Jiujiang, Jiangxi 332005, China

Abstract

ABSTRACT 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.

Funder

National Natural Science Foundation of China

2023 College Students' Innovative Entrepreneurial Training Plan Program of China

Publisher

IWA Publishing

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