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Fly ash-derived MCM-41 as a low-cost silica support for polyethyleneimine in post-combustion CO2 capture

机译:粉煤灰衍生的MCM-41作为燃烧后二氧化碳捕集中聚乙烯亚胺的低成本二氧化硅载体

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摘要

The mesoporous silicate molecular sieve, MCM-41, has been synthesized from pulverized coal fly ash (PFA), where the silicate filtrate used is a by-product from hydrothermal zeolite production. Rice husk ash was also used for comparison but fusion with sodium hydroxide was used to prepare the silicate filtrate, along similar lines to earlier reports of using PFA as a precursor for MCM-41 synthesis. The MCM-41 samples are chemically and mineralogically similar to a commercially available sample, but with higher pore volumes dominated by mesopores (0.92–1.13 cf. 0.88 cm3 g−1). After polyethyleneimine (PEI) impregnation for CO2 capture, the ash derived MCM-41 samples displayed higher uptakes than the commercial sample with the maximum achievable PEI loading of 60 Wt.% PEI (dry basis) before particle agglomeration occurs, approximately 13 compared to 11 Wt.%, respectively, the latter being comparable to earlier reports in the literature. The PFA sample that displays the fastest kinetics to achieve 90% of the equilibrium uptake had the largest mesopore volume of 1.13 cm3 g−1. Given the PFA-derived MCM-41 uses a waste silicate solution for hydrothermal preparation and no prior preparation is needed, production costs are estimated to be considerable lower where silicate solutions need to be prepared by base treatment, even if ash is used, as for the RHA derived MCM-41 used here.
机译:介孔硅酸盐分子筛MCM-41是由粉煤灰(PFA)合成的,其中所用的硅酸盐滤液是水热沸石生产的副产品。稻壳灰也用于比较,但与氢氧化钠的熔融用于制备硅酸盐滤液,这与早期报道中使用PFA作为MCM-41合成前体的报道相似。 MCM-41样品在化学和矿物学上与市售样品相似,但孔体积以中孔为主(0.92-1.13 cf. 0.88 cm3 g-1)。在聚乙烯亚胺(PEI)浸渍以捕获CO2之后,灰分衍生的MCM-41样品显示出比市售样品更高的吸收,在颗粒团聚之前,最大可实现的PEI装载量为60 Wt。%PEI(干基),与11相比大约为13重量%,后者可与文献中较早的报告相比。显示最快的动力学以实现90%的平衡摄取的PFA样品的最​​大中孔体积为1.13 cm3 g-1。鉴于源自PFA的MCM-41使用废硅酸盐溶液进行水热制备,并且不需要事先制备,因此即使需要使用灰分,即使需要使用灰分,也需要通过碱处理制备硅酸盐溶液的情况下,生产成本估计要低得多。这里使用的是RHA衍生的MCM-41。

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