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CO2 capture systems based on saccharides and organic superbases

机译:基于糖和有机超碱的二氧化碳捕集系统

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In this report, novel systems, based on highly abundant saccharides, D-mannose, D-glucose, beta-cyclodextrin, alginic acid and mannitol, in combination with an organic superbase, tetramethylguanidine (TMG) or 1,8-diazabicyclo[5.4.0] undec-7-ene (DBU), are studied for carbon dioxide capture. With D-mannose and D-glucose, several ratios of equivalents of alcohol groups of saccharide : superbase were tested: 1, 0.625, 0.5 and 0.25. High wt% values of CO2 uptake were obtained with TMG-based systems. However, TMG itself can react directly with CO2, and, in the presence of D-mannose, competition between carbonate and carbamate based products was established. In order to circumvent this competition and obtain exclusively the carbonate-based product, DBU was used instead as an organic superbase. In the D-mannose series the highest result was obtained with a D-mannose : DBU ratio eq. = 0.625 (13.9% CO2 uptake, 3.3/5 alcohol groups converted into carbonates). A more effective stirring system, designed to overcome the high viscosity of the products, allowed the use of a D-glucose : DBU = 1 : 1 ratio with 11.5 wt% of CO2 uptake and 2.47/5 alcohol groups converted into carbonates. Additionally a DSC thermal study was performed in order to study the stability/reversibility of the CO2 loaded systems.
机译:在本报告中,基于高度丰富的糖类,D-甘露糖,D-葡萄糖,β-环糊精,藻酸和甘露醇的新系统与有机超强碱,四甲基胍(TMG)或1,8-二氮杂双环[5.4]结合使用。 [0]研究了十一碳-7-烯(DBU)的二氧化碳捕获。用D-甘露糖和D-葡萄糖,测试了糖:超碱的醇当量的几个比率:1、0.625、0.5和0.25。使用基于TMG的系统可获得高wt%的CO2吸收量。但是,TMG本身可以直接与CO2反应,并且在D-甘露糖存在下,碳酸盐和氨基甲酸酯基产品之间的竞争得以建立。为了规避这一竞争并仅获得基于碳酸盐的产品,DBU被用作有机超碱。在D-甘露糖系列中,以D-甘露糖∶DBU之比eq可获得最高结果。 = 0.625(13.9%的CO2吸收,3.3 / 5的醇基转化为碳酸盐)。设计用于克服产品的高粘度的更有效的搅拌系统,允许使用D-葡萄糖:DBU = 1:1的比例,并吸收11.5 wt%的CO2和2.47 / 5的醇基转化为碳酸酯。另外,进行了DSC热研究,以研究负载二氧化碳的系统的稳定性/可逆性。

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