Evaluation of the Neutralization Performances of the Industrial Waste Products (IWPS) in Sulphide-Rich Environment of Cemented Paste Backfill

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Date

2020

Journal Title

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Volume Title

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Academic Press Ltd- Elsevier Science Ltd

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Green Open Access

No

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Abstract

The purpose of this research is to examine the neutralization performances of CaO-rich industrial waste products (IWPs) in the sulphide-rich environment of cemented paste backfill (CPB). A total of 205 CPB samples were prepared by using four different IWPs (type-C fly ash (C-FA), blast furnace slag (BFS), calcitic limestone (CL) and dolomitic limestone (DL)) as 5, 10 and 15 wt% substitute for sulphide-rich tailings. These CPB samples were cured and subjected to the acid (pH) and sulphate (SO42-) tests during 7-360 days of curing periods. MIP and XRD tests were also carried out to understand the generation of acid and sulphate and their effect on CPB stability at 28 and 180 days. The findings indicated that the utilisation of IWPs in CPB mixtures mitigated the acid (up to 58.9% higher pH values) and sulphate (up to 72.1% lower SO42- ion release) production, and enhanced the microstructure (12.43% lower total porosity) of CPBs owing to the neutralization potential, pore-filling effect, pozzolanic and partially binding characteristics of IWPs. It can be inferred from these findings that the IWPs can be suitably utilised as neutralization materials in CPB of sulphide-rich tailings. This in turn allows the mitigation of potential disposal/pollution problems associated with these IWPs.

Description

Yilmaz, Tekin/0000-0003-3288-5192;

Keywords

Acid Mine Drainage, Cao-Rich Industrial Waste Products, Acid Neutralization Potential, Sulphide Tailings, Cemented Paste Backfill, Construction Materials, Sulfates, Industrial Waste, Sulfides, Coal Ash

Fields of Science

0211 other engineering and technologies, 02 engineering and technology

Citation

WoS Q

Q1

Scopus Q

Q1
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OpenCitations Citation Count
44

Source

Journal of Environmental Management

Volume

258

Issue

Start Page

110037

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CrossRef : 45

Scopus : 45

PubMed : 2

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Mendeley Readers : 37

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45

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42

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3

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1

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12

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