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A Novel Carbonized Polydopamine (C-PDA) Adsorbent with High CO2 Adsorption Capacity and Water Vapor Resistance

机译:新型的具有高CO2吸附能力和耐水蒸气性的碳化聚多巴胺(C-PDA)吸附剂

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Novel carbonized polydopamine adsorbents (C-PDAs) with high surface area, high CO2 adsorption capacity and superior moisture resistance performance were prepared by one-step synthesis method using polydopamine as carbon precursor at different KOH/C ratios, and then characterized. CO2 and water vapor adsorption performances of C-PDAs were examined separately by static adsorption and fixed-bed experiments. Results showed that BET area and pore volume of C-PDA-4 were up to 3342 m(2)/g and 2.01 cm(3)/g, respectively. Its CO2 adsorption capacity reached up to 30.5 mmol/g at 25 bar, much higher than many other adsorbents including metal-organic frameworks (MOFs). C-PDAs prepared with high KOH/C ratios had low surface element concentrations of O and N resulting in low surface hydrophilic property. H2O(g) isotherm of C-PDA was much lower than those on Mg-MOF-74, Cu-BTC, and MIL-101(Cr). Fixed-bed experiments showed that co-presence of water vapor in feed stream with 30% RH had negligible impact on CO2 working capacity of C-PDA. (C) 2016 American Institute of Chemical Engineers AIChE J, 62: 3730-3738, 2016-
机译:以聚多巴胺为碳前驱体,在不同的KOH / C比下,一步法合成了具有高比表面积,高CO2吸附能力和优异的耐湿性能的新型碳化聚多巴胺吸附剂(C-PDAs),并对其进行了表征。通过静态吸附和固定床实验分别检测了C-PDA的CO2和水蒸气吸附性能。结果表明,C-PDA-4的BET面积和孔体积分别高达3342 m(2)/ g和2.01 cm(3)/ g。它在25 bar下的CO2吸附容量达到30.5 mmol / g,远高于包括金属有机骨架(MOF)在内的许多其他吸附剂。以高KOH / C比制备的C-PDA具有较低的O和N表面元素浓度,导致较低的表面亲水性。 C-PDA的H2O(g)等温线远低于Mg-MOF-74,Cu-BTC和MIL-101(Cr)。固定床实验表明,进料流中水蒸气与相对湿度30%的共存对C-PDA的CO2工作能力的影响可忽略不计。 (C)2016美国化学工程师学会AIChE J,62:3730-3738,2016-

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