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関連する概念動画

Adsorption of Gases on Solids01:28

Adsorption of Gases on Solids

172
Adsorption is a process where molecules, known as the adsorbates, accumulate on a surface, which is referred to as the adsorbent or substrate. Occurring at the solid-gas interface, this phenomenon is crucial in various scientific and industrial contexts. The reverse of adsorption is desorption.Two types of adsorptions exist: physical (physisorption) and chemical (chemisorption). Physisorption involves gas molecules held to the solid's surface by relatively weak intermolecular van der Waals...
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Adsorption Isotherms II01:25

Adsorption Isotherms II

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Brunauer, Emmett, and Teller (BET) introduced a theory in 1938 that modified Langmuir's assumptions to explain multilayer physical adsorption. This theory is applicable to Type II isotherms and provides a more realistic picture of adsorption processes. The BET theory assumes a uniform solid surface with localized adsorption sites, where adsorption at one site doesn't affect adsorption at neighboring sites. This theory also allows for the possibility of additional molecules being adsorbed on top...
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Adsorption Isotherms I01:29

Adsorption Isotherms I

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Adsorption isotherms are mathematical models that describe how molecules in a gas or liquid phase interact with surfaces. Two of the most common isotherm models are the Langmuir and Freundlich isotherms, which relate to Type I monolayer chemisorption. The Langmuir model is based on four key assumptions:• Adsorption cannot exceed monolayer coverage.• All surface sites are equivalent.• Molecules adsorb only at vacant sites.• There are no interactions between adsorbed...
115
The Joule and Joule–Thomson Experiments01:23

The Joule and Joule–Thomson Experiments

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Consider an adiabatic system composed of two chambers, A and B, designed such that no heat flows into or out of the system. Initially, chamber A is filled with a gas at a fixed temperature T1, pressure p1, and volume V1, while chamber B is evacuated. The gas is then gradually forced through a rigid, porous barrier to chamber B, ultimately reaching temperature T2, pressure p2, and volume V2. A piston on the right side maintains a constant pressure (p2), which is lower than p1. The significant...
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The pV diagram, which is a graph of pressure versus volume of the gas under study, is helpful in describing certain aspects of the substance. When the substance behaves like an ideal gas, the ideal gas equation describes the relationship between its pressure and volume. On a pV diagram, it is common to plot an isotherm, which is a curve showing p as a function of V with the number of molecules and the temperature fixed. Then, for an ideal gas, the product of the pressure of the gas and its...
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When an ideal gas is compressed adiabatically, that is, without adding heat, work is done on it, and its temperature increases. In an adiabatic expansion, the gas does work, and its temperature drops. Adiabatic compressions actually occur in the cylinders of a car, where the compressions of the gas-air mixture take place so quickly that there is no time for the mixture to exchange heat with its environment. Nevertheless, because work is done on the mixture during the compression, its...
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負のガスの吸着変数を持つ圧力増強枠材

Simon Krause1, Volodymyr Bon1, Irena Senkovska1

  • 1Department of Inorganic Chemistry, Technische Universität Dresden, Bergstrasse 66, 01062 Dresden, Germany.

Nature
|April 7, 2016
PubMed
まとめ

研究者らは金属有機フレームワーク (MOF) を発見し,圧力が上昇するとメタンとn-ブータンが放出され,ネガティブガスの吸収を示した. この直感に反する現象は,MOF内の構造的変化によって引き起こされています.

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科学分野:

  • 材料科学
  • 化学について
  • 物理学

背景:

  • 吸収プロセスは,ガス分離と冷却システムにとって非常に重要です.
  • メタル・オーガニック・フレームワーク (MOF) は,アドソルプションアプリケーションにチューニング可能な性質を提供します.
  • 典型的には,同熱吸収の圧力によってガスの吸収が増加します.

研究 の 目的:

  • MOFの異常な吸収行動を調査する.
  • MOFでネガティブガスの吸着が発見されたことを報告する.
  • この現象の根本的なメカニズムを理解するために

主な方法:

  • ガスの吸収実験
  • インサイト粉末X線微分
  • コンピューター・シミュレーション

主要な成果:

  • MOF (DUT-49) は,メタンとn-ブタンのための負のガス吸収を示すことが判明しました.
  • 特定の範囲内で圧力が増加すると,自発的なガス脱吸収が発生した.
  • この行動はヒステリックな構造的変形と 毛穴の収縮に関連しています

結論:

  • 観測された負のガスの吸収は,ゲスト分子に対するMOFの構造的反応による.
  • この発見は,圧力の増幅のための新しい技術につながる可能性があります.
  • ネガティブガスの吸い込みは,材料科学における新しい直感に反する現象を表しています.