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1
The enhancement effect of pre-reduction using zero-valent iron on the solidification of chromite ore processing residue by blast furnace slag and calcium hydroxide
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The enhancement effect of pre-reduction using zero-valent iron on the solidification of chromite ore processing residue by blast furnace slag and calcium hydroxide

Li, Jinchunzi ; Chen, Zhonglin ; Shen, Jimin ; Wang, Binyuan ; Fan, Leitao

Chemosphere (Oxford), 2015-09, Vol.134, p.159-165 [Periódico revisado por pares]

England: Elsevier Ltd

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Recycling and utilization assessment of waste fired clay bricks (Grog) with granulated blast-furnace slag for geopolymer production
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Recycling and utilization assessment of waste fired clay bricks (Grog) with granulated blast-furnace slag for geopolymer production

Zawrah, M.F. ; Gado, R.A. ; Feltin, N. ; Ducourtieux, S. ; Devoille, L.

Process safety and environmental protection, 2016-09, Vol.103, p.237-251 [Periódico revisado por pares]

Rugby: Elsevier B.V

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3
Environmental impact analysis of blast furnace slag applied to ordinary Portland cement production
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Environmental impact analysis of blast furnace slag applied to ordinary Portland cement production

Li, Yao ; Liu, Yu ; Gong, Xianzheng ; Nie, Zuoren ; Cui, Suping ; Wang, Zhihong ; Chen, Wenjuan

Journal of cleaner production, 2016-05, Vol.120, p.221-230 [Periódico revisado por pares]

Elsevier Ltd

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4
Autogenous healing of sea-water exposed mortar: Quantification through a simple and rapid permeability test
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Autogenous healing of sea-water exposed mortar: Quantification through a simple and rapid permeability test

Palin, D. ; Jonkers, H.M. ; Wiktor, V.

Cement and concrete research, 2016-06, Vol.84, p.1-7 [Periódico revisado por pares]

United States: Elsevier Ltd

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5
Energy–environment–economy evaluations of commercial scale systems for blast furnace slag treatment: Dry slag granulation vs. water quenching
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Energy–environment–economy evaluations of commercial scale systems for blast furnace slag treatment: Dry slag granulation vs. water quenching

Wang, Hong ; Wu, Jun-Jun ; Zhu, Xun ; Liao, Qiang ; Zhao, Liang

Applied energy, 2016-06, Vol.171, p.314-324 [Periódico revisado por pares]

Elsevier Ltd

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6
Centrifugal granulation performance of liquid with various viscosities for heat recovery of blast furnace slag
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Centrifugal granulation performance of liquid with various viscosities for heat recovery of blast furnace slag

Wu, Jun-Jun ; Wang, Hong ; Zhu, Xun ; Liao, Qiang ; Ding, Bin

Applied thermal engineering, 2015-10, Vol.89, p.494-504 [Periódico revisado por pares]

Elsevier Ltd

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7
Preparation of ceramic wall tiling derived from blast furnace slag
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Preparation of ceramic wall tiling derived from blast furnace slag

Bayer Ozturk, Zahide ; Eren Gultekin, Elif

Ceramics international, 2015-11, Vol.41 (9), p.12020-12026 [Periódico revisado por pares]

Elsevier Ltd

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8
Crystallization properties of molten blast furnace slag at different cooling rates
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Crystallization properties of molten blast furnace slag at different cooling rates

Lin, Bin ; Wang, Hong ; Zhu, Xun ; Liao, Qiang ; Ding, Bin

Applied thermal engineering, 2016-03, Vol.96, p.432-440 [Periódico revisado por pares]

Elsevier Ltd

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9
Experimental study on steam gasification of coal using molten blast furnace slag as heat carrier for producing hydrogen-enriched syngas
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Experimental study on steam gasification of coal using molten blast furnace slag as heat carrier for producing hydrogen-enriched syngas

Duan, Wenjun ; Yu, Qingbo ; Wu, Tianwei ; Yang, Fan ; Qin, Qin

Energy conversion and management, 2016-06, Vol.117, p.513-519 [Periódico revisado por pares]

Elsevier Ltd

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10
Strength and durability properties of geopolymer concrete made with Ground Granulated Blast Furnace Slag and Black Rice Husk Ash
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Strength and durability properties of geopolymer concrete made with Ground Granulated Blast Furnace Slag and Black Rice Husk Ash

Venkatesan, R. Prasanna ; Pazhani, K. C.

KSCE Journal of Civil Engineering, 2016, 20(6), , pp.2384-2391 [Periódico revisado por pares]

Seoul: Korean Society of Civil Engineers

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