标题: | 以CaO捕获废气中二氧化碳温室气体之吸附与再生效能研究 Adsorption and Regeneration of Carbon Dioxide from Waste Gas by CaO Chemical Adsorbent |
作者: | 黄钦铭 Chin-Ming Huang 白曛绫 Hsunling Bai 工学院永续环境科技学程 |
关键字: | 温室效应;吸附;二氧化碳捕获与封存;氧化钙;Greenhouse Effect;adsorption;CCS (carbon dioxide capture and storage);CaO |
公开日期: | 2006 |
摘要: | 本研究之主要目标是以台湾3个不同矿区所生产的石灰石进行CO2温室气体吸脱附特性研究。探讨之参数包括几个重要操作参数对CO2吸脱附之影响,本次测试之操作参数包括石灰石(CaCO3)的种类、石灰(CaO)补充率、再生循环次数、CO2体积分率、处理气体含水率等。 测试结果显示,实验所用的各种类石灰石经过锻烧产生之CaO,对CO2吸附量相差很小。当石灰石在700℃恒温进行CO2的吸脱附实验时,有较高的吸附量与较佳的反覆吸脱附再生性,但是其吸脱附速率较低;而在950℃脱附、650℃吸附时,则有较高的吸脱附速率,但其CO2吸附量较低。在石灰(CaO)补充率实验中,随着补充率增加,CO2吸附量亦随之提高,唯增加幅度不大。而于吸附时通入水气增湿,对于CO2的吸附有加强的效果。最后随着CO2体积分率的升高(10%增加至50% v/v),CaO对CO2的吸附速率显着提高,但吸附量会有略微下降的趋势。而反覆10次的吸脱附实验虽然CO2吸附量逐渐降低但还是维持0.2 gCO2/gCaO吸附量,而且衰减的速率的有越来越慢的趋势。 经由此次研究后,可知CaO的确具有相当高的CO2吸附量,但商用石灰石有再生率不佳的缺点,如何提升再生率,将是未来研究的课题。 The purpose of this study is to understand the CO2 adsorption characteristics and its regeneration by limestone from three different mining areas in Taiwan. The important operating parameters being researched are limestone type, limestone supplement volume, number of regeneration times, different CO2 concentration, and gas moisture content. The test result indicates that after calcination the difference between each limestone is very small in terms of their CO2 adsorbing amounts. As the adsorption and regeneration of CO2 was at constant temperature of 700℃, it has greater CO2 absorbing amount and regenerative ability, but its adsorption rate is lower. On the other hand, as regenerated at 950℃ and adsorbed at 650℃, the adsorption rate is faster whereas the adsorption amount is lower. In the experiment of limestone supplement volume, as the CO2 supplement rate increases the adsorption capacity is enhanced. The presence of moisture increases the adsorption capacity of CO2. Increasing the CO2 inlet concentration from 10% to 50% (v/v) leads to an increase of the CO2 adsorption rate, but the adsorption capacity is slightly smaller. Result on the 10 times of cyclic adsorption test shows that the CO2 adsorption capacity reduces gradually, but it still maintains at adsorptive capacity of around 0.2g CO2/gCaO. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009376515 http://hdl.handle.net/11536/80316 |
显示于类别: | Thesis |
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