Effect of Flocculants Residue on Rheological Properties of Ultra-Fine Argillaceous Backfilling Slurry

Tailings concentration is indispensable for backfilling. Additionally, the residual flocculants in the concentration process affect the rheological properties of ultra-fine argillaceous backfilling slurry (e.g., viscosity and yield stress), resulting in a great effect on the fluidity and resistance...

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Main Authors: Shuai Li, Zheng Yu, Boyi Hu, Haoxuan Yu, Xinmin Wang
Format: Article
Language:English
Published: MDPI AG 2022-09-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/15/18/6485
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author Shuai Li
Zheng Yu
Boyi Hu
Haoxuan Yu
Xinmin Wang
author_facet Shuai Li
Zheng Yu
Boyi Hu
Haoxuan Yu
Xinmin Wang
author_sort Shuai Li
collection DOAJ
description Tailings concentration is indispensable for backfilling. Additionally, the residual flocculants in the concentration process affect the rheological properties of ultra-fine argillaceous backfilling slurry (e.g., viscosity and yield stress), resulting in a great effect on the fluidity and resistance of pipeline transportation. In this study, to explore the effect of flocculants residue on the rheological properties of the slurry, a series of rheological tests (constant shear rate test and variable shear rate test) were performed by changing the type, dosage, stirring time, temperature of flocculants addition and the amount of binder added. The results showed that the addition of flocculants increased the viscosity and yield stress of slurry. At a certain amount of flocculants additive, the flocculant network structure reached the best development state, which had a positive effect on increasing slurry viscosity and yield stress. As the stirring time increased, the scale of damage to the flocculant network structure became larger, which had a negative effect on increasing slurry viscosity and yield stress. Low temperature weakened the adsorption and bridging effect of polymeric chains, resulting in a poorly developed flocculant network structure, which had a negative effect on increasing slurry viscosity and yield stress. Caused by hydration products, the viscosity and yield stress of slurry with binder further increased. This study is significant for an in-depth study of the rheological and pipeline transport characteristics of ultra-fine argillaceous backfilling slurry, optimising the selection of flocculants for ultrafine particles, guiding backfill parameters and improving the reliability of pipeline transport.
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spelling doaj.art-221ac1852c5c4968a15b8023cf36217a2023-11-23T17:34:26ZengMDPI AGMaterials1996-19442022-09-011518648510.3390/ma15186485Effect of Flocculants Residue on Rheological Properties of Ultra-Fine Argillaceous Backfilling SlurryShuai Li0Zheng Yu1Boyi Hu2Haoxuan Yu3Xinmin Wang4School of Resources and Safety Engineering, Central South University, Changsha 410083, ChinaSchool of Resources and Safety Engineering, Central South University, Changsha 410083, ChinaSchool of Resources and Safety Engineering, Central South University, Changsha 410083, ChinaSchool of Resources and Safety Engineering, Central South University, Changsha 410083, ChinaSchool of Resources and Safety Engineering, Central South University, Changsha 410083, ChinaTailings concentration is indispensable for backfilling. Additionally, the residual flocculants in the concentration process affect the rheological properties of ultra-fine argillaceous backfilling slurry (e.g., viscosity and yield stress), resulting in a great effect on the fluidity and resistance of pipeline transportation. In this study, to explore the effect of flocculants residue on the rheological properties of the slurry, a series of rheological tests (constant shear rate test and variable shear rate test) were performed by changing the type, dosage, stirring time, temperature of flocculants addition and the amount of binder added. The results showed that the addition of flocculants increased the viscosity and yield stress of slurry. At a certain amount of flocculants additive, the flocculant network structure reached the best development state, which had a positive effect on increasing slurry viscosity and yield stress. As the stirring time increased, the scale of damage to the flocculant network structure became larger, which had a negative effect on increasing slurry viscosity and yield stress. Low temperature weakened the adsorption and bridging effect of polymeric chains, resulting in a poorly developed flocculant network structure, which had a negative effect on increasing slurry viscosity and yield stress. Caused by hydration products, the viscosity and yield stress of slurry with binder further increased. This study is significant for an in-depth study of the rheological and pipeline transport characteristics of ultra-fine argillaceous backfilling slurry, optimising the selection of flocculants for ultrafine particles, guiding backfill parameters and improving the reliability of pipeline transport.https://www.mdpi.com/1996-1944/15/18/6485ultra-fine argillaceous backfilling slurryrheological propertiesflocculation residueslurry pipeline transportationflocculant network structure
spellingShingle Shuai Li
Zheng Yu
Boyi Hu
Haoxuan Yu
Xinmin Wang
Effect of Flocculants Residue on Rheological Properties of Ultra-Fine Argillaceous Backfilling Slurry
Materials
ultra-fine argillaceous backfilling slurry
rheological properties
flocculation residue
slurry pipeline transportation
flocculant network structure
title Effect of Flocculants Residue on Rheological Properties of Ultra-Fine Argillaceous Backfilling Slurry
title_full Effect of Flocculants Residue on Rheological Properties of Ultra-Fine Argillaceous Backfilling Slurry
title_fullStr Effect of Flocculants Residue on Rheological Properties of Ultra-Fine Argillaceous Backfilling Slurry
title_full_unstemmed Effect of Flocculants Residue on Rheological Properties of Ultra-Fine Argillaceous Backfilling Slurry
title_short Effect of Flocculants Residue on Rheological Properties of Ultra-Fine Argillaceous Backfilling Slurry
title_sort effect of flocculants residue on rheological properties of ultra fine argillaceous backfilling slurry
topic ultra-fine argillaceous backfilling slurry
rheological properties
flocculation residue
slurry pipeline transportation
flocculant network structure
url https://www.mdpi.com/1996-1944/15/18/6485
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AT boyihu effectofflocculantsresidueonrheologicalpropertiesofultrafineargillaceousbackfillingslurry
AT haoxuanyu effectofflocculantsresidueonrheologicalpropertiesofultrafineargillaceousbackfillingslurry
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