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首页> 外文期刊>Chemical engineering journal >Aerosol processing of low-cost mesoporous silica spherical particles from photonic industrial waste powder for CO_2 capture
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Aerosol processing of low-cost mesoporous silica spherical particles from photonic industrial waste powder for CO_2 capture

机译:从光子工业废粉中气溶胶法处理低成本介孔二氧化硅球形颗粒以捕获CO_2

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摘要

A novel mesoporous silica spherical particle, MSP (AS) was facilely prepared using photonic industrial waste powder as the silica source via salt-templated aerosol spray approach. As an alternative to expensive mesoporous silica materials in prior works, the obtained MSP (AS) possesses advantages of simple and rapid synthesis with low manufacturing costs. The characteristics of the MSP (AS) material were investigated by the XRD, N_2 adsorption-desorption measurement, SEM, TEM and TG/DTG analyses. The results clearly demonstrated the presence of mesoporous siliceous material with high specific surface area (585 m~2/g), mesopore size (9.1 nm) as well as large pore volume (1.24cm~3/g). Furthermore, the MSP (AS) is evaluated as the support of adsorbent in terms of CO_2 adsorption. It is observed that the amine-functionalized MSP (AS) adsorbent (TEPA-MSP (AS)) which possessed larger pore diameter and pore volume tends to have a higher adsorption capacity of 127 mg CO_2/g adsorbent. This is superior to those of TEPA-SBA-15 (117 mgCO_2/gadsorbent), TEPA-MCM-41 (112 mgCO_2/gadsorbent) and TEPA-NaY (96 mg CO_2/g adsorbent) under the same test condition. The results clearly suggest that the MSP (AS) synthesized using photonic industrial solid wastes via salt-templated aerosol route can be a potential and cost-effective adsorbent for CO_2 capture.
机译:以盐为模板的气溶胶喷雾法,以光子工业废粉为二氧化硅源,简便地制备了新型介孔二氧化硅球形颗粒MSP(AS)。作为在先的工作中昂贵的介孔二氧化硅材料的替代品,所获得的MSP(AS)具有简单快速合成且制造成本低的优点。通过XRD,N_2吸附-脱附测量,SEM,TEM和TG / DTG分析研究了MSP(AS)材料的特性。结果清楚地表明存在具有高比表面积(585m 2 / g),中孔尺寸(9.1nm)以及大孔体积(1.24cm 3 / g)的介孔硅质材料。此外,就CO_2吸附而言,MSP(AS)被评估为吸附剂的载体。观察到具有较大孔径和孔体积的胺官能化的MSP(AS)吸附剂(TEPA-MSP(AS))倾向于具有较高的吸附能力,为127mg CO 2 / g吸附剂。在相同的测试条件下,它优于TEPA-SBA-15(117 mgCO_2 /吸附剂),TEPA-MCM-41(112 mgCO_2 /吸附剂)和TEPA-NaY(96 mg CO_2 / g吸附剂)。结果清楚地表明,使用光子工业固体废物通过盐模板气溶胶途径合成的MSP(AS)可能是捕获CO_2的潜在且经济高效的吸附剂。

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