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author:

Yao Lu (Yao Lu.) [1] | Ming Huang (Ming Huang.) [2] | Chengzhao Zhang (Chengzhao Zhang.) [3] | Bingnan Wang (Bingnan Wang.) [4] | Liqian Peng (Liqian Peng.) [5] | Wei Wei (Wei Wei.) [6]

Abstract:

In situ recycling is one of the most effective methods to dispose of earth pressure balance(EPB)shield waste muck with residual foaming agents with high moisture content.In this context,response surface methodology(RSM)was employed to quantify the effects of independent variables,including flocculant dosage,defoamer dosage,and muck drying mass(MDM)and their interactions on defoaming-flocculation-dewatering indices.The polymeric aluminum chloride(PACL)and hydroxy silicone oil-glycerol polypropylene ether(H-G)were selected as the flocculant and defoamer.The contents of sur-factants and foam stabilizers in residual foaming agents were determined using the proposed empirical equation.The defoaming ratio,antifoaming ratio,turbidity,moisture content,filtration loss ratio,and fall cone penetration depth were considered as dependent variables.The accuracy of developed RSM models was verified by the analysis results of variance,residuals,and paired t-test.Combined with the desir-ability approach,an optimal mixing ratio of 0.078 wt%PACL,0.016 wt%H-G,and 27.882 wt%MDM was recommended,leading to a defoaming ratio of 98.34 vol%for residual foams and a moisture content of 56.72 wt%for pressure-filtration cakes.Our findings were demonstrated to be able to provide useful guidance for prediction and optimization of the in situ recycling indicators of EPB shield waste muck in metro tunnel construction sites.

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  • [ 1 ] [Chengzhao Zhang]福州大学
  • [ 2 ] [Ming Huang]福州大学
  • [ 3 ] [Wei Wei]China Railway 18th Bureau Group First Engineering Co.,Ltd.,Baoding,072700,China
  • [ 4 ] [Yao Lu]福州大学
  • [ 5 ] [Bingnan Wang]福州大学
  • [ 6 ] [Liqian Peng]China Railway 18th Bureau Group First Engineering Co.,Ltd.,Baoding,072700,China

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Source :

岩石力学与岩土工程学报(英文版)

ISSN: 1674-7755

Year: 2025

Issue: 2

Volume: 17

Page: 1134-1148

9 . 4 0 0

JCR@2023

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ESI Highly Cited Papers on the List: 0 Unfold All

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Chinese Cited Count:

30 Days PV: 3

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