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Water adsorption on nitrogen-doped carbons for adsorption heat pump/desiccant cooling: Experimental and density functional theory calculation studies

机译:用于吸附热泵/干燥剂冷却的氮掺杂碳上的水吸附:实验和密度泛函理论计算研究

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摘要

Nitrogen-doped porous carbons were prepared via chemical activation of chitosan using alkali-metal carbonates (Na2CO3, K2CO3, Rb2CO3, and Cs2CO3), and the water adsorption isotherms of prepared carbons were measured to estimate the performance of the carbons in adsorption heat pump/desiccant cooling. Pre-doping of an alkali carbonate activator into the chitosan precursor resulted in a highly developed micropore structure and the introduction of macropores. The macropore structure clearly depended on the alkali carbonate activator. Na2CO3 resulted in two-dimensional macropores because of the hard-template effect, whereas the other alkali carbonate activators resulted in three-dimensional macropores with different cell sizes. A density functional theory calculation study based on X-ray photoelectron spectroscopy analyses of nitrogen-doped activated carbons indicated that pyridinic (pyridine, pyridone, and pyridine N-oxide), amide, and quaternary N groups might be effective for low-pressure water adsorption. Although the water adsorption capacities of the prepared carbons at P/P-0 > 0.5 increased with increasing micropore volume, those at the low-pressure region (P/P-0 < 0.1) were dependent on the surface density of nitrogen or oxygen functional groups. In addition, the shape of water isotherms preferable for adsorption heat pump/desiccant cooling was observed for the carbons with an appropriate surface density of nitrogen functional groups.
机译:通过使用碱金属碳酸盐(Na2CO3,K2CO3,Rb2CO3和Cs2CO3)对壳聚糖进行化学活化来制备氮掺杂的多孔碳,并测量所制备碳的吸水等温线以估算碳在吸附热泵中的性能/干燥剂冷却。将碱金属碳酸盐活化剂预掺杂到壳聚糖前体中导致高度发达的微孔结构和大孔的引入。大孔结构显然取决于碱金属碳酸盐活化剂。由于硬模板效应,Na2CO3产生二维大孔,而其他碱金属碳酸盐活化剂导致细胞大小不同的三维大孔。基于氮掺杂活性炭的X射线光电子能谱分析的密度泛函理论计算研究表明,吡啶基(吡啶,吡啶酮和吡啶N-氧化物),酰胺和季N基团可能对低压水吸附有效。尽管制备的碳在P / P-0> 0.5时的吸水能力随微孔体积的增加而增加,但在低压区域(P / P-0 <0.1)的吸水能力取决于氮或氧官能团的表面密度组。另外,对于具有适当氮官能团的表面密度的碳,观察到对于吸附热泵/干燥剂冷却而言优选的水等温线的形状。

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