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CO2 absorption property of Li4SiO4 in the presence of water vapor at room temperature

机译:Li4SiO4在室温下存在水蒸气的CO2吸收性能

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摘要

Lithium orthosilicate (Li4SiO4) powders were synthesized by heating a mixture of LiNO3 and amorphous SiO2 at 800 °C for 5 h in air. The formed powders were applied to capture CO2 in the presence of water vapor at room temperature (RT). Thermogravimetric (TG) analysis showed that the CO2 absorption reaction of Li4SiO4 was promoted even at RT as the relative humidity increased, whereas little absorption occurred under a dry CO2 flow. X-ray diffraction measurements, Fourier transform infrared spectroscopy, and X-ray photoelectron spectroscopy clarified that an amorphous phase and Li2CO3 were produced on the Li4SiO4 surface after the CO2 reaction in the presence of water vapor. The adsorption of water vapor resulted in the formation of a basic solution on the surface of Li4SiO4 particles. This solution promoted CO2 absorption to Li4SiO4 even at RT. As a result, the CO2 absorption capacity of Li4SiO4 in the presence of water vapor at RT was greater than that of Li4SiO4 in the presence of dry CO2. Gas chromatography and TG revealed that the Li4SiO4 absorbed CO2 in the presence of water vapor and released CO2 over two temperature regions, namely a region below 500 "C and one above 600 °C. The single phase of Li4SiO4 was regenerated by heating the CO2-absorbed Li4SiO4 at 700 °C
机译:通过在空气中在800℃下加热LiNO 3和无定形SiO 2的混合物来合成锂外硅酸盐(Li4SiO4)粉末。将形成的粉末施加在室温(RT)的水蒸气存在下捕获CO 2。热重量(Tg)分析表明,随着相对湿度的增加,即使在室温下,均促进了Li4SiO 4的CO 2吸收反应,而在干CO 2流动下发生较少的吸收。 X射线衍射测量,傅里叶变换红外光谱和X射线光电子能谱阐明了在水蒸气存在下的CO 2反应后在Li4SiO 4表面上产生非晶相和Li 2 CO 3。水蒸气的吸附导致在Li4SiO 4颗粒表面上形成碱性溶液。该溶液即使在室温下也促进了对Li4SiO4的CO 2吸收。结果,在室温下水蒸气存在下Li4SiO4的CO 2吸收能力大于干CO 2存在下的Li4SiO4。气相色谱和Tg显示Li4SiO4在水蒸气存在下吸收CO 2并在两个温度区域释放CO 2,即低于500“C的区域和高于600℃。通过加热CO 2再生Li4SiO4的单相 - 在700°C时吸收Li4SiO4

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  • 来源
    《Chemical engineering journal》 |2018年第2018期|共10页
  • 作者单位

    Saitana University Faculty of Engineering Department of Applied Chemistry 255 Shimoohkubo Sakura-ku Saitama-shi Saitama 338-8570 Japan;

    Saitana University Faculty of Engineering Department of Applied Chemistry 255 Shimoohkubo Sakura-ku Saitama-shi Saitama 338-8570 Japan;

    Saitana University Faculty of Engineering Department of Applied Chemistry 255 Shimoohkubo Sakura-ku Saitama-shi Saitama 338-8570 Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    CO2; Lithium silicate; Water vapor; TG; XPS;

    机译:二氧化碳;硅酸锂;水蒸气;TG;XPS.;

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