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新型多壁碳纳米管/MIL-100(Fe)复合材料的合成、表征及吸水性能

Synthesis, characterization, and water adsorption properties of a novel multi-walled carbon nanotube/MIL-100(Fe) composite.

作者信息

Qadir Najam U, Said Syed A M, Mansour Rached B, Mezghani Khalid, Ul-Hamid Anwar

机构信息

Center of Research Excellence in Renewable Energy, King Fahd University of Petroleum and Minerals (KFUPM), Dhahran 31261, Kingdom of Saudi Arabia.

Center of Research Excellence in Renewable Energy, King Fahd University of Petroleum and Minerals (KFUPM), Dhahran 31261, Kingdom of Saudi Arabia and KACST-TIC Center of Carbon Capture and Sequestration, KFUPM, Dhahran 31261, Kingdom of Saudi Arabia.

出版信息

Dalton Trans. 2016 Oct 4;45(39):15621-15633. doi: 10.1039/c6dt02640k.

Abstract

Conventional small-scale adsorption chillers generally employ silica-gel/water or zeolite/water working pairs given the relatively high level of mesoporosity and water affinity in these adsorbent materials. However, the coefficient of performance (COP) and specific cooling power (SCP) evaluated for the adsorption chiller using these adsorbent/adsorbate pairs cannot be still considered practically feasible in the context of a commercial system. Metal organic frameworks (MOFs) are not only characterized by much higher water adsorption capacities than these materials, but also can be mass-produced using much simpler methods than the template-assisted synthesis routes of most zeolites. However, the low intrinsic thermal conductivity of these materials limits their use as adsorbents in commercial-scale adsorption chillers. In this study, a novel composite composed of multi-walled carbon nanotubes (MWCNTs) incorporated in a MIL-100(Fe) framework has been synthesized using a molecular-level mixing process. The resulting composite, with varying volume fraction of MWCNTs, has been characterized for microstructure, degree of crystallinity, thermal stability, water sorption kinetics and hydrothermal cyclic stability for potential use as an adsorbent in commercial adsorption chillers.

摘要

传统的小型吸附式制冷机通常采用硅胶/水或沸石/水工作对,因为这些吸附材料具有较高的介孔率和对水的亲和力。然而,对于使用这些吸附剂/吸附质对的吸附式制冷机所评估的性能系数(COP)和比制冷量(SCP),在商业系统的背景下仍不能被认为是切实可行的。金属有机框架材料(MOFs)不仅具有比这些材料高得多的水吸附容量,而且可以使用比大多数沸石的模板辅助合成路线简单得多的方法进行大规模生产。然而,这些材料的固有热导率低,限制了它们在商业规模吸附式制冷机中作为吸附剂的应用。在本研究中,通过分子水平混合过程合成了一种由掺入MIL-100(Fe)框架中的多壁碳纳米管(MWCNTs)组成的新型复合材料。所得的具有不同MWCNTs体积分数的复合材料,已针对其微观结构、结晶度、热稳定性、水吸附动力学和水热循环稳定性进行了表征,以作为商业吸附式制冷机中的吸附剂的潜在应用。

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