Effect of Synergistic Aging on Bauxite Residue Dust Reduction Performance via the Application of Colloids, an Orthogonal Design-Based Study

The application of polymer colloids is a promising approach for bauxite residue dust pollution control. However, due to the existence of synergistic aging, the efficiency of colloid dynamic viscosity to predict the dust control performance of bauxite residue is unclear. Previous studies were also ra...

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Main Authors: Xuhan Ding, Guang Xu, Dengfei Wang, Zhenmin Luo, Tao Wang
Format: Article
Language:English
Published: MDPI AG 2021-06-01
Series:Polymers
Subjects:
Online Access:https://www.mdpi.com/2073-4360/13/12/1986
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spelling doaj-c78ed80e5fc44eafb73b9803b619c59c2021-07-01T00:25:25ZengMDPI AGPolymers2073-43602021-06-01131986198610.3390/polym13121986Effect of Synergistic Aging on Bauxite Residue Dust Reduction Performance via the Application of Colloids, an Orthogonal Design-Based StudyXuhan Ding0Guang Xu1Dengfei Wang2Zhenmin Luo3Tao Wang4College of Safety Science and Engineering, Xi’an University of Science and Technology, Xi’an 710054, ChinaDepartment of Mining Engineering, Missouri University of Science and Technology, Rolla, MO 65409, USACollege of Safety Science and Engineering, Xi’an University of Science and Technology, Xi’an 710054, ChinaCollege of Safety Science and Engineering, Xi’an University of Science and Technology, Xi’an 710054, ChinaCollege of Safety Science and Engineering, Xi’an University of Science and Technology, Xi’an 710054, ChinaThe application of polymer colloids is a promising approach for bauxite residue dust pollution control. However, due to the existence of synergistic aging, the efficiency of colloid dynamic viscosity to predict the dust control performance of bauxite residue is unclear. Previous studies were also rarely performed under synergistic aging conditions. Thus, this paper investigates the relationship between colloids’ viscosity and dust control performance under synergistic aging modes. Results illustrated that the binary colloid achieved better dust control performance than unitary colloid for their higher viscosity and penetration resistance. For both unitary and binary colloid, higher viscosity results in better crust strength. A logarithmic relationship was found for viscosity and dust erosion resistance under unitary aging. However, Only the dynamic viscosity of colloids in solid-liquid two-phase conditions, rather than dissolved in deionized water, can effectively predict the dust control performance under synergistic aging conditions.https://www.mdpi.com/2073-4360/13/12/1986predictordust control performancesynergistic agingorthogonal designdynamic viscositypenetration resistance
collection DOAJ
language English
format Article
sources DOAJ
author Xuhan Ding
Guang Xu
Dengfei Wang
Zhenmin Luo
Tao Wang
spellingShingle Xuhan Ding
Guang Xu
Dengfei Wang
Zhenmin Luo
Tao Wang
Effect of Synergistic Aging on Bauxite Residue Dust Reduction Performance via the Application of Colloids, an Orthogonal Design-Based Study
Polymers
predictor
dust control performance
synergistic aging
orthogonal design
dynamic viscosity
penetration resistance
author_facet Xuhan Ding
Guang Xu
Dengfei Wang
Zhenmin Luo
Tao Wang
author_sort Xuhan Ding
title Effect of Synergistic Aging on Bauxite Residue Dust Reduction Performance via the Application of Colloids, an Orthogonal Design-Based Study
title_short Effect of Synergistic Aging on Bauxite Residue Dust Reduction Performance via the Application of Colloids, an Orthogonal Design-Based Study
title_full Effect of Synergistic Aging on Bauxite Residue Dust Reduction Performance via the Application of Colloids, an Orthogonal Design-Based Study
title_fullStr Effect of Synergistic Aging on Bauxite Residue Dust Reduction Performance via the Application of Colloids, an Orthogonal Design-Based Study
title_full_unstemmed Effect of Synergistic Aging on Bauxite Residue Dust Reduction Performance via the Application of Colloids, an Orthogonal Design-Based Study
title_sort effect of synergistic aging on bauxite residue dust reduction performance via the application of colloids, an orthogonal design-based study
publisher MDPI AG
series Polymers
issn 2073-4360
publishDate 2021-06-01
description The application of polymer colloids is a promising approach for bauxite residue dust pollution control. However, due to the existence of synergistic aging, the efficiency of colloid dynamic viscosity to predict the dust control performance of bauxite residue is unclear. Previous studies were also rarely performed under synergistic aging conditions. Thus, this paper investigates the relationship between colloids’ viscosity and dust control performance under synergistic aging modes. Results illustrated that the binary colloid achieved better dust control performance than unitary colloid for their higher viscosity and penetration resistance. For both unitary and binary colloid, higher viscosity results in better crust strength. A logarithmic relationship was found for viscosity and dust erosion resistance under unitary aging. However, Only the dynamic viscosity of colloids in solid-liquid two-phase conditions, rather than dissolved in deionized water, can effectively predict the dust control performance under synergistic aging conditions.
topic predictor
dust control performance
synergistic aging
orthogonal design
dynamic viscosity
penetration resistance
url https://www.mdpi.com/2073-4360/13/12/1986
work_keys_str_mv AT xuhanding effectofsynergisticagingonbauxiteresiduedustreductionperformanceviatheapplicationofcolloidsanorthogonaldesignbasedstudy
AT guangxu effectofsynergisticagingonbauxiteresiduedustreductionperformanceviatheapplicationofcolloidsanorthogonaldesignbasedstudy
AT dengfeiwang effectofsynergisticagingonbauxiteresiduedustreductionperformanceviatheapplicationofcolloidsanorthogonaldesignbasedstudy
AT zhenminluo effectofsynergisticagingonbauxiteresiduedustreductionperformanceviatheapplicationofcolloidsanorthogonaldesignbasedstudy
AT taowang effectofsynergisticagingonbauxiteresiduedustreductionperformanceviatheapplicationofcolloidsanorthogonaldesignbasedstudy
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