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In situ nitrogen enriched carbon for carbon dioxide capture

机译:用于二氧化碳捕获的原位富氮碳

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摘要

In situ nitrogen enriched carbon was synthesized from locally available low cost soybean as the proteinaceous source. The material was synthesized by chemical activation using zinc chloride followed by physical activation using CO2. The surface area of synthesized nitrogen enriched carbon was found to be 811 m~2/g which is comparable with commercially available activated carbon. The nitrogen enriched carbon was having a breakthrough adsorption capacity of 23 mg/g at 120 °C which was almost three times higher in comparison with the commercially available activated carbon for a gas mixture comprising 15 CO2 balanced with helium. This high adsorption capacity was attributed to the presence of nitrogen group within the carbon matrix, which was estimated to be about 0.64 as determined using the Kjeldahl's method. The presence of different nitrogen containing groups assisting the adsorption of CO2 in the synthesized sample was also confirmed by infrared analysis. For checking the consistent performance of the synthesized carbon, multi-cycle adsorption-desorption studies were carried out at 30 and 75 °C in binary mixture of CO2/N2.
机译:原位富氮碳以当地可利用的低成本大豆为蛋白质来源。该材料是用氯化锌化学活化合成的,然后用CO2物理活化合成的。合成的富氮炭比表面积为811 m~2/g,与市售活性炭相当。富氮碳在120°C时具有23 mg/g的突破性吸附能力,与市售活性炭相比,对于含有15%CO2与氦气平衡的气体混合物,富氮炭的吸附能力几乎是市售活性炭的三倍。这种高吸附能力归因于碳基质中氮基的存在,使用凯氏定氮法测定的氮基估计约为 0.64%。红外分析也证实了不同含氮基团的存在,这些基团有助于合成样品中CO2的吸附。为了检查合成碳的一致性,在30和75 °C的CO2/N2二元混合物中进行了多循环吸附-脱附研究。

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