Study on static and dynamic flocculation settlement characteristics of fine tailings slurry and influence of flocculant on strength of fine tailings backfill

In order to study the static and dynamic flocculation settlement characteristics of fine total tailings and the influence law of flocculant on the mechanical properties of fine tailings backfill, the experimental research on the flocculation settlement and mechanical properties of fine total tailing...

Full description

Bibliographic Details
Main Authors: Shenghua Yin, Yongqiang Hou, Shixing Yang, Xin Chen
Format: Article
Language:English
Published: Elsevier 2022-12-01
Series:Case Studies in Construction Materials
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S221450952200657X
_version_ 1798020628330053632
author Shenghua Yin
Yongqiang Hou
Shixing Yang
Xin Chen
author_facet Shenghua Yin
Yongqiang Hou
Shixing Yang
Xin Chen
author_sort Shenghua Yin
collection DOAJ
description In order to study the static and dynamic flocculation settlement characteristics of fine total tailings and the influence law of flocculant on the mechanical properties of fine tailings backfill, the experimental research on the flocculation settlement and mechanical properties of fine total tailings was carried out in the laboratory. The static flocculation settlement test of fine total tailings was carried out by orthogonal test scheme, and the influence law of the full-tail mortar concentration (FTMC), flocculant unit consumption (FUC) and flocculant solution concentration (FSC) on the concentration of underflow and sedimentation rate was analyzed, and the best static flocculation settlement parameters were obtained. Secondly, the dynamic flocculation test was carried out on the basis of static flocculation settlement parameters to reveal the influence law of dynamic flocculation settlement on underflow concentration. Finally, the compressive strength of fine tailings backfill under different flocculant unit consumption were tested, and the microscopic evolution of backfill was investigated by scanning electron microscopy. The results show that: Anionic flocculant has better flocculation effect than non-ionic flocculant, so anionic flocculant can be preferred as flocculant for flocculation settlement of fine full tailings. The flocculation settlement process of fine tailings slurry can be divided into four regions: clarification region, settlement region, transition region and compression region. The influence degree of the three factors on settling velocity and underflow concentration is full-tail mortar concentration > flocculant unit consumption > flocculant solution concentration, and full-tail mortar concentration and flocculant unit consumption are significant influencing factors on settling velocity and underflow concentration. The flocculation settlement parameters of fine full tailings slurry are not only affected by single factor, but also by the interaction between factors. The optimal static flocculation sedimentation parameters are as follows: the full tailings slurry concentration is 20 %, the flocculant unit consumption is 10 g/t and the flocculant solution concentration is 0.3 %. The dynamic flocculation settlement can greatly increase the underflow concentration, and the underflow concentration increases with the residence time, but there is no significant change in the underflow concentration when the residence time exceeds 5 h. The compressive strength of fine tailings backfill decreases with the increase of flocculant unit consumption, and the microscopic test results show that the increase of flocculant unit consumption will weaken the compactness of the microstructure of the backfill, which leads to the decrease of the compressive strength of the backfill.
first_indexed 2024-04-11T17:00:34Z
format Article
id doaj.art-d807306487e9499b9502ecbe91d7e241
institution Directory Open Access Journal
issn 2214-5095
language English
last_indexed 2024-04-11T17:00:34Z
publishDate 2022-12-01
publisher Elsevier
record_format Article
series Case Studies in Construction Materials
spelling doaj.art-d807306487e9499b9502ecbe91d7e2412022-12-22T04:13:10ZengElsevierCase Studies in Construction Materials2214-50952022-12-0117e01525Study on static and dynamic flocculation settlement characteristics of fine tailings slurry and influence of flocculant on strength of fine tailings backfillShenghua Yin0Yongqiang Hou1Shixing Yang2Xin Chen3School of Civil and Resource Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaSchool of Civil and Resource Engineering, University of Science and Technology Beijing, Beijing 100083, China; Corresponding author.School of Civil and Resource Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaNational Key Laboratory of Nickel and Cobalt Resources Comprehensive Utilization, Jinchuan Group Co Ltd, Jinchang, Gansu 737100, ChinaIn order to study the static and dynamic flocculation settlement characteristics of fine total tailings and the influence law of flocculant on the mechanical properties of fine tailings backfill, the experimental research on the flocculation settlement and mechanical properties of fine total tailings was carried out in the laboratory. The static flocculation settlement test of fine total tailings was carried out by orthogonal test scheme, and the influence law of the full-tail mortar concentration (FTMC), flocculant unit consumption (FUC) and flocculant solution concentration (FSC) on the concentration of underflow and sedimentation rate was analyzed, and the best static flocculation settlement parameters were obtained. Secondly, the dynamic flocculation test was carried out on the basis of static flocculation settlement parameters to reveal the influence law of dynamic flocculation settlement on underflow concentration. Finally, the compressive strength of fine tailings backfill under different flocculant unit consumption were tested, and the microscopic evolution of backfill was investigated by scanning electron microscopy. The results show that: Anionic flocculant has better flocculation effect than non-ionic flocculant, so anionic flocculant can be preferred as flocculant for flocculation settlement of fine full tailings. The flocculation settlement process of fine tailings slurry can be divided into four regions: clarification region, settlement region, transition region and compression region. The influence degree of the three factors on settling velocity and underflow concentration is full-tail mortar concentration > flocculant unit consumption > flocculant solution concentration, and full-tail mortar concentration and flocculant unit consumption are significant influencing factors on settling velocity and underflow concentration. The flocculation settlement parameters of fine full tailings slurry are not only affected by single factor, but also by the interaction between factors. The optimal static flocculation sedimentation parameters are as follows: the full tailings slurry concentration is 20 %, the flocculant unit consumption is 10 g/t and the flocculant solution concentration is 0.3 %. The dynamic flocculation settlement can greatly increase the underflow concentration, and the underflow concentration increases with the residence time, but there is no significant change in the underflow concentration when the residence time exceeds 5 h. The compressive strength of fine tailings backfill decreases with the increase of flocculant unit consumption, and the microscopic test results show that the increase of flocculant unit consumption will weaken the compactness of the microstructure of the backfill, which leads to the decrease of the compressive strength of the backfill.http://www.sciencedirect.com/science/article/pii/S221450952200657XFine tailingsFlocculation sedimentationParameter optimizationCompressive strengthMicrostructureOrthogonal test
spellingShingle Shenghua Yin
Yongqiang Hou
Shixing Yang
Xin Chen
Study on static and dynamic flocculation settlement characteristics of fine tailings slurry and influence of flocculant on strength of fine tailings backfill
Case Studies in Construction Materials
Fine tailings
Flocculation sedimentation
Parameter optimization
Compressive strength
Microstructure
Orthogonal test
title Study on static and dynamic flocculation settlement characteristics of fine tailings slurry and influence of flocculant on strength of fine tailings backfill
title_full Study on static and dynamic flocculation settlement characteristics of fine tailings slurry and influence of flocculant on strength of fine tailings backfill
title_fullStr Study on static and dynamic flocculation settlement characteristics of fine tailings slurry and influence of flocculant on strength of fine tailings backfill
title_full_unstemmed Study on static and dynamic flocculation settlement characteristics of fine tailings slurry and influence of flocculant on strength of fine tailings backfill
title_short Study on static and dynamic flocculation settlement characteristics of fine tailings slurry and influence of flocculant on strength of fine tailings backfill
title_sort study on static and dynamic flocculation settlement characteristics of fine tailings slurry and influence of flocculant on strength of fine tailings backfill
topic Fine tailings
Flocculation sedimentation
Parameter optimization
Compressive strength
Microstructure
Orthogonal test
url http://www.sciencedirect.com/science/article/pii/S221450952200657X
work_keys_str_mv AT shenghuayin studyonstaticanddynamicflocculationsettlementcharacteristicsoffinetailingsslurryandinfluenceofflocculantonstrengthoffinetailingsbackfill
AT yongqianghou studyonstaticanddynamicflocculationsettlementcharacteristicsoffinetailingsslurryandinfluenceofflocculantonstrengthoffinetailingsbackfill
AT shixingyang studyonstaticanddynamicflocculationsettlementcharacteristicsoffinetailingsslurryandinfluenceofflocculantonstrengthoffinetailingsbackfill
AT xinchen studyonstaticanddynamicflocculationsettlementcharacteristicsoffinetailingsslurryandinfluenceofflocculantonstrengthoffinetailingsbackfill