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Functionalization of palm shell based activated carbon with amine groups for carbon dioxide capture

机译:带有胺基的棕榈壳基活性炭用于二氧化碳捕集的功能化

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Surface of activated carbon can be functionalized with amine groups to enhance their capacity for CO2 adsorption. Amine functionalized solid sorbents were prepared by anchoring two types of amine compounds, namely ethylenediamine (EDA) and 2-chloroethylamine hydrochloric acid (CEA) on the surface of palm shell based activated carbon (PSAC). Samples of PSAC were first oxidized by nitric acid using three different available setups to ensure about creation of a significant amount of oxygen containing groups on the surface. At the second stage, the best oxidized sample was modified by anchoring EDA and CEA on the surface to produce a superior CO2 adsorbent. Several quantitative and qualitative methods were used to characterize the prepared samples: Nitrogen adsorption at 77K, proximate and ultimate analysis and temperature programmed desorption (TPD). Moreover, CO2 adsorption study was carried out using CO2 adsorption isothermal profile at 30°C and temperature-programmed (TP) CO2 adsorption test. All modified samples had a lower surface area than the virgin PSAC. The best modified sample presented an increase of 45% in CO2 capture capacity at 100°C. On the other hand, on the basis of unit surface area, CO2 capture capacity of amine modified samples was much higher, compared to the parent sample. Furthermore, the modified samples showed a less dependency of their CO2 capacity on temperature indicating chemisorption of the adsorbate on the PSAC surface.
机译:可以用胺基官能化活性炭的表面,以增强其对CO 2 的吸附能力。通过将两种类型的胺化合物(即乙二胺(EDA)和2-氯乙胺盐酸(CEA))固定在棕榈壳基活性炭(PSAC)的表面上来制备胺官能化的固体吸附剂。首先使用三种不同的可用设置将硝酸PSAC样品氧化,以确保在表面上产生大量的含氧基团。在第二阶段,通过将EDA和CEA锚定在表面上来修饰氧化效果最佳的样品,以产生优异的CO 2 吸附剂。几种定量和定性方法被用来表征所制备的样品:77K时的氮吸附,最近和最终分析以及程序升温脱附(TPD)。此外,利用CO 2 吸附等温线在30°C和程序升温(TP)CO 2 吸附条件下进行了CO 2 吸附的研究。测试。所有改性样品的表面积均低于原始PSAC。改性效果最好的样品在100°C时CO 2 捕获能力提高了45%。另一方面,基于单位表面积,与母体样品相比,胺改性样品的CO 2 捕获能力要高得多。此外,改性样品显示它们的CO 2 容量对温度的依赖性较小,表明吸附物在PSAC表面上的化学吸附。

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