Development of a Large-scale Thermogravimetry and Gas Analyzer for Determining Carbon in Concrete

Author:

Maruyama Ippei1,Noritake Koichiro2,Hosoi Yoshinobu3,Takahashi Haruka4

Affiliation:

1. Department of Architecture, The University of Tokyo, Tokyo, Japan.

2. Product Division, Strategic Business Unit - Thermal Analysis Group, Rigaku Corporation, Tokyo, Japan.

3. Application Laboratories, Rigaku Corporation, Tokyo, Japan.

4. Taiheiyo Consultants Corporation, Sakura City, Chiba, Japan.

Publisher

Japan Concrete Institute

Reference20 articles.

1. 1) ASTM, (2017). “Standard test methods for total and dissolved carbon dioxide in water (ASTM D-513).” West Conshohocken, Pennsylvania: ASTM International.

2. 2) ASTM, (2018). “Standard test methods for chemical analysis of hydraulic cement (ASTM C-114-18).” West Conshohocken, Pennsylvania: ASTM International.

3. 3) Boumaaza, M., Huet, B., Turcry, P. and Aït-Mokhtar, A., (2020). “The CO2-binding capacity of synthetic anhydrous and hydrates: Validation of a test method based on the instantaneous reaction rate.” Cement and Concrete Research, 135, 106113.

4. 4) BSI, (2021). “Building lime Part 2: Test methods (BS EN 459-2).” London: British Standards Institution.

5. 5) CEMBUREAU, (2020). “Cementing the European green deal - Reaching climate neutrality along the cement and concrete value chain by 2050.” Brussels: The European Cement Association (CEMBUREAU).

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