Research progress on mechanical properties of geopolymer recycled aggregate concrete
In the global construction industry, with the growth of population, two important construction problems have to be faced, namely, the excessive consumption of non-renewable resources and the massive accumulation of construction waste. In order to solve these problems, geopolymer recycled aggregate c...
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doaj-9aae4aa8d06840e08becb6b7f2f834492021-10-03T07:42:43ZengDe GruyterReviews on Advanced Materials Science1605-81272021-04-0160115817210.1515/rams-2021-0021Research progress on mechanical properties of geopolymer recycled aggregate concreteXu Zhong0Huang Zhenpu1Liu Changjiang2Deng Xiaowei3Hui David4Deng Shujin5College of Environmental and Civil Engineering, Chengdu University of Technology, Chengdu610059, ChinaCollege of Environmental and Civil Engineering, Chengdu University of Technology, Chengdu610059, ChinaSchool of Civil Engineering, Guangzhou University, Guangzhou510006, ChinaDepartment of Civil Engineering, The University of Hong Kong, Pokfulam, Hong Kong999077, ChinaDepartment of Mechanical Engineering, University of New Orleans, New Orleans, LA70148, United States of AmericaChongqing Nanjiang Engineering Survey and Design Group Co., Ltd, Chongqing 401120, ChinaIn the global construction industry, with the growth of population, two important construction problems have to be faced, namely, the excessive consumption of non-renewable resources and the massive accumulation of construction waste. In order to solve these problems, geopolymer recycled aggregate concrete (GRAC) arises at the historic moment. On the one hand, using geopolymers produced by industrial wastes to completely or partially replace cement can reduce cement consumption, thus reducing CO2 emissions. On the other hand, recycled concrete made of recycled aggregate can consume accumulated construction waste and save non-renewable materials and land resources. The combination of the two materials can protect the environment to the greatest extent and save resources. This article reviews the current research on the mechanical properties of GRAC, makes a systematic analysis of GRAC materials, reaction mechanisms, and evaluation indicators, and also discusses the application prospects of GRAC, and strives to make contributions to the field and industry.https://doi.org/10.1515/rams-2021-0021geopolymerrecycled aggregateconcretemechanical properties |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Xu Zhong Huang Zhenpu Liu Changjiang Deng Xiaowei Hui David Deng Shujin |
spellingShingle |
Xu Zhong Huang Zhenpu Liu Changjiang Deng Xiaowei Hui David Deng Shujin Research progress on mechanical properties of geopolymer recycled aggregate concrete Reviews on Advanced Materials Science geopolymer recycled aggregate concrete mechanical properties |
author_facet |
Xu Zhong Huang Zhenpu Liu Changjiang Deng Xiaowei Hui David Deng Shujin |
author_sort |
Xu Zhong |
title |
Research progress on mechanical properties of geopolymer recycled aggregate concrete |
title_short |
Research progress on mechanical properties of geopolymer recycled aggregate concrete |
title_full |
Research progress on mechanical properties of geopolymer recycled aggregate concrete |
title_fullStr |
Research progress on mechanical properties of geopolymer recycled aggregate concrete |
title_full_unstemmed |
Research progress on mechanical properties of geopolymer recycled aggregate concrete |
title_sort |
research progress on mechanical properties of geopolymer recycled aggregate concrete |
publisher |
De Gruyter |
series |
Reviews on Advanced Materials Science |
issn |
1605-8127 |
publishDate |
2021-04-01 |
description |
In the global construction industry, with the growth of population, two important construction problems have to be faced, namely, the excessive consumption of non-renewable resources and the massive accumulation of construction waste. In order to solve these problems, geopolymer recycled aggregate concrete (GRAC) arises at the historic moment. On the one hand, using geopolymers produced by industrial wastes to completely or partially replace cement can reduce cement consumption, thus reducing CO2 emissions. On the other hand, recycled concrete made of recycled aggregate can consume accumulated construction waste and save non-renewable materials and land resources. The combination of the two materials can protect the environment to the greatest extent and save resources. This article reviews the current research on the mechanical properties of GRAC, makes a systematic analysis of GRAC materials, reaction mechanisms, and evaluation indicators, and also discusses the application prospects of GRAC, and strives to make contributions to the field and industry. |
topic |
geopolymer recycled aggregate concrete mechanical properties |
url |
https://doi.org/10.1515/rams-2021-0021 |
work_keys_str_mv |
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