Retraction Note: Durability studies on conventional concrete and slag-based geopolymer concrete in aggressive sulphate environment

Atul Garg , Parveen Jangra , Dhirendra Singhal , Thong M. Pham , Deepankar Kumar Ashish

Energy, Ecology and Environment ›› : 1 -1.

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Energy, Ecology and Environment ›› : 1 -1. DOI: 10.1007/s40974-025-00368-6
Retraction Note

Retraction Note: Durability studies on conventional concrete and slag-based geopolymer concrete in aggressive sulphate environment

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Atul Garg, Parveen Jangra, Dhirendra Singhal, Thong M. Pham, Deepankar Kumar Ashish. Retraction Note: Durability studies on conventional concrete and slag-based geopolymer concrete in aggressive sulphate environment. Energy, Ecology and Environment 1-1 DOI:10.1007/s40974-025-00368-6

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References

[1]

Jo B-W, Chakraborty S, Kim K, Heon, Lee Y, Sung (2014) Effectiveness of the Top-Down Nanotechnology in the Production of Ultrafine Cement (~ 220 nm), Journal of Nanomaterials, 131627, 9 pages, 2014. https://doi.org/10.1155/2014/131627

[2]

Adam A, Molyneaux T, Patnaikuni I, Law D (2010) Strength, sorptivity and carbonation in blended OPC-GGBS, alkali activated slag, and fly ash based geopolymer concrete. RMIT University. Conference contribution. https://hdl.handle.net/10779/rmit.27370506.v1

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The Joint Center on Global Change and Earth System Science of the University of Maryland and Beijing Normal University

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