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Articles

Influence and role of feedstock Si and Al content in Geopolymer synthesis

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Pages 129-139 | Received 01 Jun 2014, Accepted 13 Oct 2014, Published online: 17 Nov 2014

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Hilal El-Hassan, Ehab Shehab & Abdelrahman Al-Sallamin. (2021) Effect of curing regime on the performance and microstructure characteristics of alkali-activated slag-fly ash blended concrete. Journal of Sustainable Cement-Based Materials 10:5, pages 289-317.
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Nailia R. Rakhimova. (2020) A review of calcined clays and ceramic wastes as sources for alkali-activated materials. Geosystem Engineering 23:5, pages 287-298.
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Muhamed Khodr, David W. Law, Chamila Gunasekara, Sujeeva Setunge & Robert Brkljaca. (2020) Compressive strength and microstructure evolution of low calcium brown coal fly ash-based geopolymer. Journal of Sustainable Cement-Based Materials 9:1, pages 17-34.
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G. V. P. Bhagath Singh & Kolluru V. L. Subramaniam. (2019) Effect of active components on strength development in alkali-activated low calcium fly ash cements. Journal of Sustainable Cement-Based Materials 8:1, pages 1-19.
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Hilal El-Hassan & Najif Ismail. (2018) Effect of process parameters on the performance of fly ash/GGBS blended geopolymer composites. Journal of Sustainable Cement-Based Materials 7:2, pages 122-140.
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Govind Gaurav, Shreesh Chandra Kandpal, Deepika Mishra & Needhi Kotoky. A comprehensive review on fly ash-based geopolymer: a pathway for sustainable future. Journal of Sustainable Cement-Based Materials 0:0, pages 1-45.
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Articles from other publishers (20)

Xiuyu Zhu, Hao Qian, Hongxiao Wu, Quan Zhou, Huiping Feng, Qiang Zeng, Ye Tian, Shengqian Ruan, Yajun Zhang, Shikun Chen & Dongming Yan. (2022) Early-Stage Geopolymerization Process of Metakaolin-Based Geopolymer. Materials 15:17, pages 6125.
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Zipeng Zhang, Yat Choy Wong, Arul Arulrajah, Massoud Sofi & Ylias Sabri. (2022) Reaction mechanism of alkali-activated brick clay mill residues. Construction and Building Materials 341, pages 127817.
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Alexandre Rodrigue, Josée Duchesne, Benoit Fournier & Benoit Bissonnette. (2022) Frost Resistance of Alkali-Activated Combined Slag and Fly Ash Concrete Cured at Ambient Temperature. ACI Materials Journal.
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R.S. Krishna, Jyotirmoy Mishra, Marwa Zribi, Funmilayo Adeniyi, Suman Saha, Samir Baklouti, Faiz Uddin Ahmed Shaikh & H.S. Gökçe. (2021) A review on developments of environmentally friendly geopolymer technology. Materialia 20, pages 101212.
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Zhibo Chen, Xianglong Wan, Yanfeng Qian, Jiale Qiao, Jingxuan Jia, Lu Mo, Meiling Gao, Hao Cui, Yin Liu & Fanfei Min. (2021) The effect on the compressive strength of fly ash based geopolymer concrete with the generation of hydroxy sodalite. Construction and Building Materials 309, pages 125174.
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Olga Andriana Panitsa, Dimitrios Kioupis & Glykeria Kakali. (2021) One-Part Geopolymer Synthesis of Greek Fly Ash. Key Engineering Materials 894, pages 135-142.
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Wei-Ting Lin, Kae-Long Lin, Kinga Korniejenko & Lukáš Fiala. (2021) Comparative Analysis Between Fly Ash Geopolymer and Reactive Ultra-Fine Fly Ash Geopolymer. International Journal of Engineering and Technology Innovation 11:3, pages 161-170.
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Konstantinos Komnitsas, Georgios Bartzas, Vasiliki Karmali & Evangelos Petrakis. (2021) Factors Affecting Alkali Activation of Laterite Acid Leaching Residues. Environments 8:1, pages 4.
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Akm Samsur Rahman, Chirag Shah & Nikhil Gupta. (2020) Simultaneous effects of rice husk silica and silicon carbide whiskers on the mechanical properties and morphology of sodium geopolymer. Journal of Composite Materials 54:29, pages 4611-4620.
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Wrood H. Sachet & Wissam D. Salman. (2020) Compressive Strength Development of Slag-Based Geopolymer Paste Reinforced with Fibers Cured at Ambient Condition. IOP Conference Series: Materials Science and Engineering 928:2, pages 022117.
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Pedro Perez-Cortes & J. Ivan Escalante-Garcia. (2020) Gel composition and molecular structure of alkali-activated metakaolin-limestone cements. Cement and Concrete Research 137, pages 106211.
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Pedro Perez-Cortes & J.I. Escalante García. (2020) Design and optimization of alkaline binders of limestone-metakaolin – A comparison of strength, microstructure and sustainability with portland cement and geopolymers. Journal of Cleaner Production, pages 123118.
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Sathishraj Mani & Bulu Pradhan. (2020) Investigation on effect of fly ash content on strength and microstructure of geopolymer concrete in chloride-rich environment. Materials Today: Proceedings 32, pages 865-870.
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A. Naghizadeh & S. O. Ekolu. (2019) Behaviour of fly ash geopolymer binders under exposure to alkaline media. Asian Journal of Civil Engineering 20:6, pages 785-798.
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X. GaoQ. L. Yu, A. LazaroH. J. H. Brouwers. (2018) Evaluating an Eco-Olivine Nanosilica as an Alternative Silica Source in Alkali-Activated Composites. Journal of Materials in Civil Engineering 30:3.
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Chamila Gunasekera, David W. Law, Sujeeva Setunge, Iko Burgar & Robert Brkljaca. (2017) Effect of Element Distribution on Strength in Fly Ash Geopolymers. ACI Materials Journal 114:5.
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B.I. Djon Li Ndjock, Antoine Elimbi & Martin Cyr. (2017) Rational utilization of volcanic ashes based on factors affecting their alkaline activation. Journal of Non-Crystalline Solids 463, pages 31-39.
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Alireza MohammadiniaArul ArulrajahJay SanjayanMahdi M. DisfaniMyint Win BoStephen Darmawan. (2016) Strength Development and Microfabric Structure of Construction and Demolition Aggregates Stabilized with Fly Ash–Based Geopolymers. Journal of Materials in Civil Engineering 28:11.
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Samuel Adu-Amankwah, Jamal M. Khatib, David E. Searle & Leon Black. (2016) Effect of synthesis parameters on the performance of alkali-activated non-conformant EN 450 pulverised fuel ash. Construction and Building Materials 121, pages 453-459.
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Zipeng Zhang, Yat Choy Wong, Arul Arulrajah, Massoud Sofi & Ylias Sabri. (2022) Reaction Mechanism of Alkali-Activated Brick Clay Mill Residues. SSRN Electronic Journal.
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