Experimental study on rapid disposal of high moisture content mud by composite flocculant CaCl2-APAM-PAC
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Affiliation:

1.College of Civil Engineering, Taiyuan University of Technology, Taiyuan 030024, P. R. China;2.ollege of Chemical Engineering and Technology, Taiyuan University of Technology, Taiyuan 030024, P. R. China;3.Shanxi Academy of Building Sciences Group Co., Ltd., Taiyuan 030001, P. R. China

Clc Number:

X799.1

Fund Project:

National Natural Science Foundation of China (No. 41807256); Shanxi Province Natural Science Foundation (Nos. 202203021211136, 20210302123139); National College Students Innovation and Entrepreneurship Training Program (No. 202210112025)

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    Abstract:

    In engineering construction, waste mud often contains an extremely high water content that can significantly impact the environment. Addressing the issue of dehydration is therefore a primary concern. To address the problem of high water content mud water separation, this study selected three types of flocculants CaCl2, anionic polyacrylamide (APAM) and poly aluminum chloride (PAC), and then designed a 3-factor and 4-level orthogonal experiment using the comprehensive balance method. Indicators such as the 48-hour dehydration amount and pH value of the supernatant were selected, and range analysis and variance analysis were conducted to find the optimal combination of composite flocculants. The flocculation mechanism was also discussed through orthogonal test results and SEM microanalysis. The experimental results showed that dividing the dehydration rate curve over time into high, medium, and low dehydration zones, as well as fast and slow dehydration stages, led to a decrease in the overall mud dehydration rate. However, the high dehydration zone group had a higher dehydration rate at 12 h, which met the requirements for fast dehydration. Additionally, the three flocculants showed some synergistic effect. Through range analysis of variance analysis orthogonal tests, the optimal combination of composite flocculants was found to be 0.25 g CaCl2 + 0.12 g APAM + 0.17 g PAC per 100 g total mass of slurry. Based on the mechanism analysis, the flocculation process of composite flocculants was divided into five stages: charge neutralization stage, bridging stage, adsorption agglomeration stage, network sedimentation stage, and solidification enhancement stage.

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马英建,方舟,程慧峰,苏彬,彭晓闯,聂小青,梁登钦,秦新皓,何斌.复合型絮凝剂CaCl2-APAM-PAC快速处置高含水率泥浆试验研究[J].土木与环境工程学报(中英文),2025,47(4):234~242

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History
  • Received:April 01,2023
  • Revised:
  • Adopted:
  • Online: July 17,2025
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