4.6 Article

Temperature-Induced Chemical Changes in Soundless Chemical Demolition Agents

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出版社

ASCE-AMER SOC CIVIL ENGINEERS
DOI: 10.1061/(ASCE)MT.1943-5533.0002653

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Soundless chemical demolition agents; Hydration; Ettringite; Calcium hydroxide; Temperature; X-ray diffraction; Thermogravimetry analysis

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  1. Science Foundation Ireland [12/ERC/12534]

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This paper explored the relationship between ambient temperature, calcium oxide (CaO) hydration, and calcium carbonate (CaCO3) generation in cold and moderate ambient temperatures (2 degrees C-19 degrees C). A total of 22 samples from 2 commercial soundless chemical demolition agents (SCDAs) were tested in 36-mm-diameterx170-mm-long steel pipes. The raw powder and materials resulting from hydration were subjected to X-ray diffraction analysis, derivative thermogravimetric analysis, and thermogravimetry analysis. Raw and hydrated specimens proved chemically distinctive. Experimental results showed that (1) the unconfined portions of hydrated specimens contained more CaCO3 due to carbonation of Ca(OH)2, and confined portions had higher Ca(OH)2 concentrations; (2) all materials tested at 19 degrees C ambient temperature had Ca(OH)2 concentrations nearly 10% greater than those tested at 2 degrees C; and (3) the higher Ca(OH)2 concentrations formed at 19 degrees C generated 350% greater expansive pressure than did those that formed at 2 degrees C. (C) 2019 American Society of Civil Engineers.

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