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Development of mix design method based on statistical analysis of different factors for geopolymer concrete

Paramveer SINGH; Kanish KAPOOR

Frontiers of Structural and Civil Engineering 2022, Volume 16, Issue 10,   Pages 1315-1335 doi: 10.1007/s11709-022-0853-x

Abstract: The present study proposes the mix design method of Fly Ash (FA) based geopolymer concrete using Responsesilicate/sodium hydroxide), NH molarity, and water/solids ratio were considered for the mix design of geopolymerThe proposed mix design method of geopolymer concrete is divided into three categories based on curingThe proposed mix design method of geopolymer concrete was validated through experimentation of M30, M50the factor analysis revealed that the NS/NH ratio significantly affects the compressive strength of geopolymer

Keywords: geopolymer concrete     mix design     fly ash     response surface methodology     compressive strength     stress−    

Cleaner geopolymer prepared by co-activation of gasification coal fly ash and steel slag: durability

Frontiers of Environmental Science & Engineering 2023, Volume 17, Issue 12, doi: 10.1007/s11783-023-1750-9

Abstract:

● Better packing density and higher early strength of SS-rich geopolymer

Keywords: Geopolymer     Shell coal gasification fly ash     Steel slag     Heavy metal     Solidification/stabilization     Durability    

Parametric investigation on the novel and cost-effective nano fly ash impregnated geopolymer system for

Frontiers of Structural and Civil Engineering 2024, Volume 18, Issue 2,   Pages 170-183 doi: 10.1007/s11709-024-1010-5

Abstract: The development of geopolymer structures provides a way of producing 100% cement-free construction.The effect of adding the synthesized nano fly ash particles as a filler medium in geopolymer mortarsParameter optimization was done by using regression analysis on the geopolymer mortar and the impactonly as a filler but also as nano-sized precursors of the polymerization process, resulting in denser geopolymer

Keywords: geopolymer     nano fly ash     chloride ion penetration     durability     polymerization     fillers    

Assessment and prediction of the mechanical properties of ternary geopolymer concrete

Jinliang LIU; Wei ZHAO; Xincheng SU; Xuefeng XIE

Frontiers of Structural and Civil Engineering 2022, Volume 16, Issue 11,   Pages 1436-1452 doi: 10.1007/s11709-022-0889-y

Abstract: granulated blast furnace slag (GBFS), fly ash (FA), and zeolite powder (ZP) as the binders of ternary geopolymer

Keywords: Ternary Geopolymer Concrete (TGC)     alkaline activator modulus     alkali content     mechanical properties    

Printability and hardening performance of three-dimensionally-printed geopolymer based on lunar regolith

Frontiers of Structural and Civil Engineering 2023, Volume 17, Issue 10,   Pages 1535-1553 doi: 10.1007/s11709-023-0003-0

Abstract: This study aims to improve the printability of a geopolymer based on a BH-1 lunar regolith simulant,The mechanical properties of the hardening geopolymer with different filling paths and loading directionsThe printability of the BH-1 geopolymer can also be improved by adding 0.3% Attagel-50 and 0.5% polypropyleneAfter curing under a simulated lunar environment, the 72-h flexural and compressive strengths of the geopolymer

Keywords: geopolymer     lunar regolith simulant     3D printing     rheology     printability    

Influence of surface cracking, anchor head profile, and anchor head size on cast-in headed anchors in geopolymer

Frontiers of Structural and Civil Engineering 2023, Volume 17, Issue 8,   Pages 1163-1187 doi: 10.1007/s11709-023-0987-5

Abstract: concrete cone capacity, concrete cone angle, and load–displacement response of cast-in headed anchors in geopolymerThe tensile behavior of anchors in geopolymer concrete is compared with that in normal concrete as wellThe results show that the capacity of the anchors in geopolymer concrete is 30%–40% lower than that inThe results also indicate that the CCD model overestimates the capacity of the anchors in geopolymer

Keywords: cast-in anchor     concrete cone capacity     geopolymer concrete     head size     surface crack     anchor profile    

Resistance to acid degradation, sorptivity, and setting time of geopolymer mortars

Osama A MOHAMED; Rania AL-KHATTAB; Waddah AL-HAWAT

Frontiers of Structural and Civil Engineering 2022, Volume 16, Issue 6,   Pages 781-791 doi: 10.1007/s11709-022-0862-9

Abstract: After 7, 28, and 90 d of immersion in a 10% sulfuric acid solution, the resistance of a geopolymer matrixgeopolymerization products in the presence of curing water, which outweighed the degradation of the geopolymer

Keywords: alkali-activated materials     fly ash     sorptivity     durability of concrete     sodium hydroxide     sodium silicates     reduction in CO2 emissions     sulfuric acid    

Immobilization of Cu

Lei ZHENG,Wei WANG,Wei QIAO,Yunchun SHI,Xiao LIU

Frontiers of Environmental Science & Engineering 2015, Volume 9, Issue 4,   Pages 642-648 doi: 10.1007/s11783-014-0707-4

Abstract: alkaline activator dosage and type on the heavy metal ion immobilization efficiency of metakaolinte-based geopolymerA geopolymer with the highest heavy metal immobilization efficiency was identified to occur at an intermediate

Keywords: geopolymer     heavy metal     immobilization     solidification    

Preparation and Characterization of High-Strength Geopolymer Based on BH-1 Lunar Soil Simulant with Low Article

Siqi Zhou, Chenghong Lu, Xingyi Zhu, Feng Li

Engineering 2021, Volume 7, Issue 11,   Pages 1631-1645 doi: 10.1016/j.eng.2020.10.016

Abstract: This research also synthesized a geopolymer based on BH-1 cured at simulated lunar atmospheric conditionsWe also investigated the effect of supplementing aluminum (Al) sources on the enhancement of geopolymerThe results showed that the 28-day compressive strength of the BH-1 geopolymer was improved by up toMicroscopic analyses showed that the mechanism to improve the mechanical properties of the BH-1 geopolymer

Keywords: Space exploration     Lunar base     Geopolymer     Lunar soil simulant     Rheology    

Effects of seeding nucleation agent on geopolymerization process of fly-ash geopolymer

Lapyote PRASITTISOPIN, Issara SEREEWATTHANAWUT

Frontiers of Structural and Civil Engineering 2018, Volume 12, Issue 1,   Pages 16-25 doi: 10.1007/s11709-016-0373-7

Abstract: Geopolymer, an inorganic aluminosilicate material activated by alkaline medium solution, can performThe geopolymer technology has a viability to substitute traditional concrete made of portland cementAlthough fly ash geopolymer stimulates sustainability, it is slow geopolymerization reaction poses aThe development of increasing geopolymerization reaction rate of the geopolymer is needed. ?accelerate polymerization reactions such that the geopolymer can be widely used in the construction

Keywords: fly ash     geopolymer     nucleation agent     portland cement replacement    

The Durability of Alkali-Activated Materials in Comparison with Ordinary Portland Cements and Concretes: A Review Review

Aiguo Wang, Yi Zheng, Zuhua Zhang, Kaiwei Liu, Yan Li, Liang Shi, Daosheng Sun

Engineering 2020, Volume 6, Issue 6,   Pages 695-706 doi: 10.1016/j.eng.2019.08.019

Abstract:

China is the largest producer and user of ordinary Portland cement (OPC), and the rapid growth of infrastructure development demands more sustainable building materials for concrete structures. Alkaliactivated materials (AAMs) are a new type of energy-saving and environmentally friendly building material with a wide range of potential applications. This paper compares the durability of AAMs and OPCbased materials under sulfate attack, acid corrosion, carbonation, and chloride penetration. Different AAMs have shown distinct durability properties due to different compositions being formed when different raw materials are used. According to the calcium (Ca) concentration of the raw materials, this paper interprets the deterioration mechanisms of three categories of AAMs: calcium-free, low-calcium, and calcium-rich. Conflicts found in the most recent research are highlighted, as they raise concerns regarding the consistence and long-term properties of AAMs. Nevertheless, AAMs show better durability performances than OPC-based materials in general.

Keywords: Alkali-activated materials     Geopolymer     Durability     Ordinary Portland cement     Deterioration mechanism    

Title Author Date Type Operation

Development of mix design method based on statistical analysis of different factors for geopolymer concrete

Paramveer SINGH; Kanish KAPOOR

Journal Article

Cleaner geopolymer prepared by co-activation of gasification coal fly ash and steel slag: durability

Journal Article

Parametric investigation on the novel and cost-effective nano fly ash impregnated geopolymer system for

Journal Article

Assessment and prediction of the mechanical properties of ternary geopolymer concrete

Jinliang LIU; Wei ZHAO; Xincheng SU; Xuefeng XIE

Journal Article

Printability and hardening performance of three-dimensionally-printed geopolymer based on lunar regolith

Journal Article

Influence of surface cracking, anchor head profile, and anchor head size on cast-in headed anchors in geopolymer

Journal Article

Resistance to acid degradation, sorptivity, and setting time of geopolymer mortars

Osama A MOHAMED; Rania AL-KHATTAB; Waddah AL-HAWAT

Journal Article

Immobilization of Cu

Lei ZHENG,Wei WANG,Wei QIAO,Yunchun SHI,Xiao LIU

Journal Article

Preparation and Characterization of High-Strength Geopolymer Based on BH-1 Lunar Soil Simulant with Low

Siqi Zhou, Chenghong Lu, Xingyi Zhu, Feng Li

Journal Article

Effects of seeding nucleation agent on geopolymerization process of fly-ash geopolymer

Lapyote PRASITTISOPIN, Issara SEREEWATTHANAWUT

Journal Article

The Durability of Alkali-Activated Materials in Comparison with Ordinary Portland Cements and Concretes: A Review

Aiguo Wang, Yi Zheng, Zuhua Zhang, Kaiwei Liu, Yan Li, Liang Shi, Daosheng Sun

Journal Article