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通过矿物碳酸化将二氧化碳封存于水泥窑灰中。

Carbon dioxide sequestration in cement kiln dust through mineral carbonation.

作者信息

Huntzinger Deborah N, Gierke John S, Kawatra S Komar, Eisele Timothy C, Sutter Lawrence L

机构信息

Department of Civil and Environmental Engineering, University of Michigan, 1351 Beal Avenue, Ann Arbor, Michigan 48109, USA.

出版信息

Environ Sci Technol. 2009 Mar 15;43(6):1986-92. doi: 10.1021/es802910z.

Abstract

Carbon sequestration through the formation of carbonates is a potential means to reduce CO2 emissions. Alkaline industrial solid wastes typically have high mass fractions of reactive oxides that may not require preprocessing, making them an attractive source material for mineral carbonation The degree of mineral carbonation achievable in cement kiln dust (CKD) underambienttemperatures and pressures was examined through a series of batch and column experiments. The overall extent and potential mechanisms and rate behavior of the carbonation process were assessed through a complementary set of analytical and empirical methods, including mass change, thermal analysis, and X-ray diffraction. The carbonation reactions were carried out primarily through the reaction of CO2 with Ca(OH)2, and CaCO3 was observed as the predominant carbonation product. A sequestration extent of over 60% was observed within 8 h of reaction without any modifications to the waste. Sequestration appears to follow unreacted core model theory where reaction kinetics are controlled by a first-order rate constant at early times; however, as carbonation progresses, the kinetics of the reaction are attenuated by the extent of the reaction due to diffusion control, with the extent of conversion never reaching completion.

摘要

通过形成碳酸盐来实现碳封存是减少二氧化碳排放的一种潜在手段。碱性工业固体废物通常具有高含量的活性氧化物,可能无需预处理,这使其成为矿物碳酸化的一种有吸引力的原料。通过一系列间歇式和柱式实验,研究了水泥窑灰(CKD)在环境温度和压力下可实现的矿物碳酸化程度。通过一套互补的分析和经验方法,包括质量变化、热分析和X射线衍射,评估了碳酸化过程的总体程度、潜在机制和速率行为。碳酸化反应主要通过二氧化碳与氢氧化钙的反应进行,并且观察到碳酸钙是主要的碳酸化产物。在未对废物进行任何改性的情况下,反应8小时内观察到封存率超过60%。封存似乎遵循未反应核模型理论,即反应动力学在早期由一级速率常数控制;然而,随着碳酸化的进行,由于扩散控制,反应动力学因反应程度而减弱,转化率从未达到完全。

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