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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Adsorption of carbon dioxide on hydrotalcite-like compounds of different compositions
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Adsorption of carbon dioxide on hydrotalcite-like compounds of different compositions

机译:二氧化碳在不同组成的类水滑石化合物上的吸附

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摘要

The adsorption of carbon dioxide on hydrotalcite-like compounds was investigated. Two different powdered hydro-talcites were used containing the cations nickel and iron. The powdered materials were screened for carbon dioxide adsorption using a thermogravimetric method and it was found that NiMgAl (Sample 1) hydrotalcite has the largest capacity for CO2, adsorbing 1.58 mmol g~(-1) at 20 °C, and highest rate of adsorption of up to 0.17 mmol g~(-1) min~(-1). This represented an increase of 53% in adsorption capacity, compared with NiMgAlFe (Sample 2). In order to improve the rheological behaviour of hydrotalcite paste for extrusion, hydrotalcite powders were combined with boehmite alumina (70:30 and 50:50 ratios of hydrotalcite:boehmite) before extrusion into pellets suitable for use in a fixed bed adsorber. These pellets were then re-crushed and further tested by thermogravimetric methods. The effects of temperature, composition and pre-treatment of the hydrotalcites on the adsorption of carbon dioxide and nitrogen are reported. At 20 °C, the amount of carbon dioxide adsorbed was between 2.0 and 2.5 mmol g~(-1) for all the hydro-talcite/alumina samples in this study, although this decayed rapidly with increasing temperature. The results are compared with silica gel as a common sorbent reference, and with literature values. Hydrotalcite/alumina samples have thermal stability and a high adsorption capacity for carbon dioxide over a wide range of temperatures. The composition of the hydrotalcite/alumina pellets investigated in this study has less effect upon the adsorption behaviour compared with the non-calcined hydrotalcite powder, thus allowing a wide choice of pellet compositions to be used.
机译:研究了二氧化碳在类水滑石化合物上的吸附。使用了两种不同的粉末状水滑石,其中含有阳离子镍和铁。用热重法筛选了粉末状材料对二氧化碳的吸附,发现NiMgAl(样品1)水滑石的CO2容量最大,在20°C时的吸附量为1.58 mmol g〜(-1),吸附速率最高。最高可达0.17 mmol g〜(-1)min〜(-1)。与NiMgAlFe(样品2)相比,它的吸附容量增加了53%。为了改善用于挤出的水滑石浆料的流变行为,将水滑石粉末与勃姆石氧化铝(水滑石:勃姆石的比例为70:30和50:50)混合,然后挤出成适合用于固定床吸附器的粒料。然后将这些颗粒重新粉碎,并通过热重法进一步测试。报道了水滑石的温度,组成和预处理对二氧化碳和氮的吸附的影响。在此研究中,所有水滑石/氧化铝样品在20°C时的二氧化碳吸附量在2.0至2.5 mmol g〜(-1)之间,尽管随着温度的升高它会迅速衰减。将结果与作为常见吸附剂参考的硅胶进行比较,并与文献值进行比较。水滑石/氧化铝样品在很宽的温度范围内具有热稳定性和对二氧化碳的高吸附能力。与未煅烧的水滑石粉末相比,本研究中研究的水滑石/氧化铝颗粒的组成对吸附性能的影响较小,因此可以使用多种颗粒组成。

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