913
Views
49
CrossRef citations to date
0
Altmetric
Articles

Microstructure and durability of alkali-activated materials as key parameters for standardization

, , , , &
Pages 116-128 | Received 08 Jul 2014, Accepted 15 Oct 2014, Published online: 12 Nov 2014

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (11)

Salmabanu Luhar, Ismail Luhar & Rishi Gupta. (2022) Durability performance evaluation of green geopolymer concrete. European Journal of Environmental and Civil Engineering 26:10, pages 4297-4345.
Read now
Yanru Wang, Yubin Cao, Yuwei Ma, Shanshan Xiao, Jie Hu & Hao Wang. (2022) Fresh and hardened properties of alkali-activated fly ash/slag binders: effect of fly ash source, surface area, and additives. Journal of Sustainable Cement-Based Materials 11:4, pages 239-262.
Read now
Duc-Hien Le, Yeong-Nain Sheen & My Ngoc-Tra Lam. (2022) Potential utilization of sugarcane bagasse ash for developing alkali-activated materials. Journal of Sustainable Cement-Based Materials 11:3, pages 199-209.
Read now
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.
Read now
Wala’a Al Makhadmeh & Ahmed Soliman. (2021) Effect of activator nature on property development of alkali-activated slag binders. Journal of Sustainable Cement-Based Materials 10:4, pages 240-256.
Read now
Rafia Firdous & Dietmar Stephan. (2021) Impact of the mineralogical composition of natural pozzolan on properties of resultant geopolymers. Journal of Sustainable Cement-Based Materials 10:3, pages 149-164.
Read now
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.
Read now
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.
Read now
Mahmoud Khalifeh, Jelena Todorovic, Torbjørn Vrålstad, Arild Saasen & Helge Hodne. (2017) Long-term durability of rock-based geopolymers aged at downhole conditions for oil well cementing operations. Journal of Sustainable Cement-Based Materials 6:4, pages 217-230.
Read now
B. Walkley, J. L. Provis, R. San Nicolas, M.-A. Sani & J. S. J. van Deventer. (2015) Stoichiometrically controlled C–(A)–S–H/N–A–S–H gel blends via alkali-activation of synthetic precursors. Advances in Applied Ceramics 114:7, pages 372-377.
Read now
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.
Read now

Articles from other publishers (38)

Baoping Zou, Yanbing Wang, Muhammad Nasir Amin, Bawar Iftikhar, Kaffayatullah Khan, Mujahid Ali & Fadi Althoey. (2023) Artificial intelligence-based optimized models for predicting the slump and compressive strength of sustainable alkali-derived concrete. Construction and Building Materials 409, pages 134092.
Crossref
Huy Hoàng Nguyễn, Phương Hoàng Nguyễn, Quang-Hiếu Lương, Weina Meng & Bang Yeon Lee. (2023) Mechanical and autogenous healing properties of high-strength and ultra-ductility engineered geopolymer composites reinforced by PE-PVA hybrid fibers. Cement and Concrete Composites 142, pages 105155.
Crossref
Arass Omer Mawlod & Dillshad Khidhir Hamad Amen Bzeni. (2023) Mechanical Performance of Fiber-Reinforced Slag-Based Geopolymer Composite. Practice Periodical on Structural Design and Construction 28:3.
Crossref
Renjuan Sun, Linglai Bu, Hongzhi Zhang, Yanhua Guan, Chuanyi Ma, Zhi Ge & Branko Šavija. (2023) Effect of white mud on properties of alkali activated slag. Construction and Building Materials 392, pages 131944.
Crossref
Xiaodi Dai, Serdar Aydin, Mert Yücel Yardimci, Yubo Sun & Geert De Schutter. (2023) Effect of temperature on the fresh and hardened state properties of alkali-activated slag/fly ash mixtures. Materials and Structures 56:5.
Crossref
Harshal Nikhade, Ram Rathan Lal Birali, Khalid Ansari, Mohammad Arsalan Khan, Hadee Mohammed Najm, S. M. Anas, Mohammad Mursaleen, Mohd Abul Hasan & Saiful Islam. (2023) Behavior of geomaterial composite using sugar cane bagasse ash under compressive and flexural loading. Frontiers in Materials 10.
Crossref
Xiwen Guan, Wenjie Luo, Shu Liu, Alvaro Garcia Hernandez, Hainam Do & Bo Li. (2023) Ultra-high early strength fly ash-based geopolymer paste cured by microwave radiation. Developments in the Built Environment, pages 100139.
Crossref
Arass Omer Mawlod & Dillshad Khidhir Hamad Amen Bzeni. (2023) Durability and fire-resistance performance of slag-based geopolymer composites. Proceedings of the Institution of Civil Engineers - Engineering Sustainability 176:1, pages 28-38.
Crossref
Hilal El-Hassan, Abdulkader El-Mir & Tamer El-Maaddawy. 2023. Advanced Fiber-Reinforced Alkali-Activated Composites. Advanced Fiber-Reinforced Alkali-Activated Composites 161 189 .
Adeyemi Adesina & Sreekanta Das. 2023. Proceedings of the Canadian Society of Civil Engineering Annual Conference 2021. Proceedings of the Canadian Society of Civil Engineering Annual Conference 2021 201 210 .
Bo Qu, A. Martin, J.Y. Pastor, A. Palomo & A. Fernández Jiménez. (2022) Effects of elevated temperatures on properties of hybrid alkaline-belite cement with high level of fly ash. Journal of Materials Research and Technology 21, pages 2455-2470.
Crossref
Ismail Luhar & Salmabanu Luhar. (2022) A Comprehensive Review on Fly Ash-Based Geopolymer. Journal of Composites Science 6:8, pages 219.
Crossref
Jie Ren, Lihai Zhang, Yingcan Zhu, Zhenming Li & Rackel San Nicolas. (2022) A Comparative Study on the Degradation of Alkali-Activated Slag/Fly Ash and Cement-Based Mortars in Phosphoric Acid. Frontiers in Materials 9.
Crossref
Nancy Hammad, Amr Maher ElNemr & Hossam El-Deen Hassan. (2022) Flexural performance of reinforced Alkali-activated concrete beams incorporating steel and structural Macro synthetic polypropylene fiber. Construction and Building Materials 324, pages 126634.
Crossref
Zhen Shyong Yap, Nur Hafizah A. Khalid, Zaiton Haron, Azman Mohamed, Mahmood Md Tahir, Saloma Hasyim & Anis Saggaff. (2021) Waste Mineral Wool and Its Opportunities—A Review. Materials 14:19, pages 5777.
Crossref
M.A. Gómez-Casero, L. Pérez-Villarejo, E. Castro & D. Eliche-Quesada. (2021) Effect of steel slag and curing temperature on the improvement in technological properties of biomass bottom ash based alkali-activated materials. Construction and Building Materials 302, pages 124205.
Crossref
Ehsan Negahban, Ali Bagheri & Jay Sanjayan. (2021) Pore gradation effect on Portland cement and geopolymer concretes. Cement and Concrete Composites 122, pages 104141.
Crossref
Hilal El-Hassan, Abdalla Hussein, Jamal Medljy & Tamer El-Maaddawy. (2021) Performance of Steel Fiber-Reinforced Alkali-Activated Slag-Fly Ash Blended Concrete Incorporating Recycled Concrete Aggregates and Dune Sand. Buildings 11:8, pages 327.
Crossref
Renjuan Sun, Chen Fang, Hongzhi Zhang, Yifeng Ling, Jingjing Feng, Hui Qi & Zhi Ge. (2021) Chemo-mechanical properties of alkali-activated slag/fly ash paste incorporating white mud. Construction and Building Materials 291, pages 123312.
Crossref
Keyu Chen, Dazhi Wu, Linling Xia, Qimao Cai & Zhenying Zhang. (2021) Geopolymer concrete durability subjected to aggressive environments – A review of influence factors and comparison with ordinary Portland cement. Construction and Building Materials 279, pages 122496.
Crossref
Oleksandr Kovalchuk & Victoriya Zozulynets. (2021) Study of influence of alkaline component type on pH value and properties of alkali activated concretes containing basalt rock. E3S Web of Conferences 280, pages 07001.
Crossref
Varvara Kleshchevnikova, Svetlana Belyaeva & Aleksey Baranov. 2021. Proceedings of EECE 2020. Proceedings of EECE 2020 151 160 .
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.
Crossref
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.
Crossref
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.
Crossref
André Henrique Campos Teixeira, Paulo Roberto Ribeiro Soares Junior, Thiago Henrique Silva, Richard Rodrigues Barreto & Augusto Cesar da Silva Bezerra. (2020) Low-Carbon Concrete Based on Binary Biomass Ash–Silica Fume Binder to Produce Eco-Friendly Paving Blocks. Materials 13:7, pages 1534.
Crossref
Guohao Fang & Mingzhong Zhang. (2020) The evolution of interfacial transition zone in alkali-activated fly ash-slag concrete. Cement and Concrete Research 129, pages 105963.
Crossref
Abeer M. Humad, John L. Provis & Andrzej Cwirzen. (2019) Effects of Curing Conditions on Shrinkage of Alkali-Activated High-MgO Swedish Slag Concrete. Frontiers in Materials 6.
Crossref
Hilal El-Hassan & Said Elkholy. (2019) Performance Evaluation and Microstructure Characterization of Steel Fiber–Reinforced Alkali-Activated Slag Concrete Incorporating Fly Ash. Journal of Materials in Civil Engineering 31:10.
Crossref
Abdelrahman Brakat & Yamei Zhang. (2019) Shrinkage mitigation of alkali-activated slag with natural cellulose fibres. Advances in Cement Research 31:2, pages 47-57.
Crossref
Dali Bondar, Qianmin Ma, Marios Soutsos, Muhammed Basheer, John L. Provis & Sreejith Nanukuttan. (2018) Alkali activated slag concretes designed for a desired slump, strength and chloride diffusivity. Construction and Building Materials 190, pages 191-199.
Crossref
Brant Walkley, Alireza Kashani, Marc-Antoine Sani, Tuan D. Ngo & Priyan Mendis. (2018) Examination of alkali-activated material nanostructure during thermal treatment. Journal of Materials Science 53:13, pages 9486-9503.
Crossref
Sajjad Yousefi Oderji, Bing Chen & Syed Taseer Abbas Jaffar. (2017) Effects of relative humidity on the properties of fly ash-based geopolymers. Construction and Building Materials 153, pages 268-273.
Crossref
Jian Zhang, Caijun Shi, Zuhua Zhang & Zhihua Ou. (2017) Durability of alkali-activated materials in aggressive environments: A review on recent studies. Construction and Building Materials 152, pages 598-613.
Crossref
Brant Walkley, Rackel San Nicolas, Marc-Antoine Sani, Susan A. Bernal, Jannie S.J. van Deventer & John L. Provis. (2017) Structural evolution of synthetic alkali-activated CaO-MgO-Na 2 O-Al 2 O 3 -SiO 2 materials is influenced by Mg content. Cement and Concrete Research 99, pages 155-171.
Crossref
M. Castaldi, J. van Deventer, J. M. Lavoie, J. Legrand, A. Nzihou, Y. Pontikes, X. Py, C. Vandecasteele, P. T. Vasudevan & W. Verstraete. (2017) Progress and Prospects in the Field of Biomass and Waste to Energy and Added-Value Materials. Waste and Biomass Valorization 8:6, pages 1875-1884.
Crossref
Sattar Sattary & David Thorpe. (2016) Potential carbon emission reductions in australian construction systems through bioclimatic principles. Sustainable Cities and Society 23, pages 105-113.
Crossref
Caijun Shi, Zhenguo Shi, Xiang Hu, Rui Zhao & Linlin Chong. (2015) A review on alkali-aggregate reactions in alkali-activated mortars/concretes made with alkali-reactive aggregates. Materials and Structures 48:3, pages 621-628.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.