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首页> 外文期刊>Chemical engineering journal >Facile fabrication of mesoporous CaO sorbents using simple salt as a pore template in a template-assisted and spray-drying synthesis method
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Facile fabrication of mesoporous CaO sorbents using simple salt as a pore template in a template-assisted and spray-drying synthesis method

机译:在模板辅助和喷雾干燥合成方法中以简单盐为孔模板轻松制备介孔CaO吸附剂

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A combined templating and spray-drying synthesis technique has been proposed to fabricate a mesoporous CaO sorbent for CO2 capture applications. A simple inorganic salt, NaCl, was used as an alternative pore template to conventional, expensive organic templates. The effects of different NaCl-to-calcium precursor ratios (w/w) on porosity characteristics and CO2 capture performance of the synthesized sorbents were investigated. Cyclic CO2 capture performances of the sorbents were studied under mild and severe calcination conditions and compared with CaO derived from commercial CaCO3 (99%, Sigma-Aldrich) as a benchmark. Subsequent to 20 cycles of carbonation and severe calcination, CaO sorbent synthesized using a NaCl-to-CG weight ratio of 0.3 (denoted as CaO-0.3) exhibited a capture performance of 0.225 +/- 0.005 g CO2/g sorbent whereas the benchmark sorbent exhibited a CO2 uptake of 0.082 +/- 0.002 g CO2/g sorbent. This corresponds to maximum improvement of 165% in CO2 uptake under severe conditions for CaO-0.3 sorbent. Furthermore, the highest pore volume and pore area were also observed for CaO-0.3 sorbent at 17.6 nm and 12.5 nm, respectively. A BET surface area of 23 +/- 1 m(2)/g and a total pore volume of 0.149 +/- 0.008 cc/g were measured for this sorbent, which compares favourably with that of commercial CaCO3. (C) 2016 Elsevier B.V. All rights reserved.
机译:已经提出了组合的模板和喷雾干燥合成技术来制造用于CO 2捕集应用的中孔CaO吸附剂。使用简单的无机盐NaCl作为常规昂贵有机模板的替代孔模板。研究了不同NaCl /钙前驱体比例(w / w)对合成吸附剂的孔隙率特性和CO2捕集性能的影响。在轻度和剧烈煅烧条件下研究了吸附剂的循环CO2捕集性能,并与以商业CaCO3(99%,Sigma-Aldrich)衍生的CaO进行了比较。经过20个碳化和严重煅烧的循环后,使用NaCl与CG重量比为0.3(表示为CaO-0.3)合成的CaO吸附剂的捕集性能为0.225 +/- 0.005 g CO2 / g吸附剂,而基准吸附剂吸收的二氧化碳量为0.082 +/- 0.002 g CO2 / g吸附剂。这对应于在苛刻条件下使用CaO-0.3吸附剂可最大程度提高165%的二氧化碳吸收率。此外,CaO-0.3吸附剂的最大孔体积和孔面积也分别在17.6 nm和12.5 nm处观察到。该吸附剂的BET表面积为23 +/- 1 m(2)/ g,总孔体积为0.149 +/- 0.008 cc / g,与商业CaCO3相比具有优势。 (C)2016 Elsevier B.V.保留所有权利。

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