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関連する概念動画

Phase Diagrams02:39

Phase Diagrams

A phase diagram combines plots of pressure versus temperature for the liquid-gas, solid-liquid, and solid-gas phase-transition equilibria of a substance. These diagrams indicate the physical states that exist under specific conditions of pressure and temperature and also provide the pressure dependence of the phase-transition temperatures (melting points, sublimation points, boiling points). Regions or areas labeled solid, liquid, and gas represent single phases, while lines or curves represent...
Turbulent Flow: Problem Solving01:09

Turbulent Flow: Problem Solving

Carbonation is a process used to dissolve carbon dioxide gas in a liquid, commonly used in the production of carbonated beverages. Achieving efficient carbonation requires careful control of temperature, pressure, and flow conditions. By adjusting these parameters, carbonation efficiency can be maximized, producing a higher concentration of CO2 in the liquid.
Temperature is a key factor in CO2 solubility. In this case, the CO2 gas and the liquid are cooled to 20°C. Lower temperatures enhance...
Van der Waals Equation01:10

Van der Waals Equation

The ideal gas law is an approximation that works well at high temperatures and low pressures. The van der Waals equation of state (named after the Dutch physicist Johannes van der Waals, 1837−1923) improves it by considering two factors.
First, the attractive forces between molecules, which are stronger at higher densities and reduce the pressure, are considered by adding to the pressure a term equal to the square of the molar density multiplied by a positive coefficient a. Second, the volume...
Carbonation Shrinkage01:24

Carbonation Shrinkage

Atmospheric CO2 penetrates the concrete's pores and, in the presence of moisture, forms carbonic acid, which then reacts with calcium hydroxide in the hydrated cement, forming calcium carbonate. This process reduces the concrete's volume and is termed carbonation shrinkage.
The concrete's permeability is slightly reduced as calcium carbonate produced during the reaction fills its pores. Furthermore, its strength is slightly enhanced as the water released during the reaction facilitates the...
Carbon Dioxide Transport in the Blood01:19

Carbon Dioxide Transport in the Blood

Carbon dioxide (CO2) transport in the blood is critical to human physiology. On average, our body cells produce around 200 mL of CO2 per minute, precisely the quantity expelled by the lungs. This process involves the transportation of CO2 from the tissue cells to the lungs in three primary forms.
Forms of CO2 Transport
1. Dissolved in plasma: A small percentage (7-10%) of CO2 is transported and dissolved directly in the plasma.
2. Carbaminohemoglobin: Just over 20% of CO2 is chemically bound to...
Phase Diagram01:19

Phase Diagram

The phase of a given substance depends on the pressure and temperature. Thus, plots of pressure versus temperature showing the phase in each region provide considerable insights into the thermal properties of substances. Such plots are known as phase diagrams. For instance, in the phase diagram for water (Figure 1), the solid curve boundaries between the phases indicate phase transitions (i.e., temperatures and pressures at which the phases coexist).

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関連する実験動画

Updated: May 8, 2026

A Uniaxial Compression Experiment with CO2-Bearing Coal Using a Visualized and Constant-Volume Gas-Solid Coupling Test System
10:27

A Uniaxial Compression Experiment with CO2-Bearing Coal Using a Visualized and Constant-Volume Gas-Solid Coupling Test System

Published on: June 12, 2019

高圧下における二酸化炭素の構造的進化

Cheng Lu1, Maosheng Miao, Yanming Ma

  • 1State Key Laboratory of Superhard Materials, Jilin University , Changchun 130012, People's Republic of China.

Journal of the American Chemical Society
|September 6, 2013
PubMed
まとめ

固体二酸化炭素 (CO2) は高値構造に抵抗しますが,極端な圧力下でも安定した6倍調整ネットワークを形成できます. これは,炭素に関する洞察を明らかにします.

科学分野:

  • 材料科学 材料科学とは
  • コンピューティング・ケミストリー
  • 高圧物理 高圧物理

背景:

  • 特に非金属を用いた高価炭素の安定化は,重要な科学的課題である.
  • 以前の研究は,高炭素配合数を持つ有機分子を合成することに焦点を当てていた.

研究 の 目的:

  • 高圧下における固体二酸化炭素 (CO2) の構造的進化を調査する.
  • CO2の新しい高圧相を特定し,炭素の調整限界を理解する.

主な方法:

  • 粒子群の最適化アルゴリズムを利用した効率的な構造検索を採用しました.
  • 安定したCO2構造を予測するために,高圧条件をシミュレートします.

主要な成果:

  • 固体CO2 (PbcnとPa3の対称性) の2つの新しい6倍調整構造を特定し,1TPa近く安定した.
  • CO2は4倍以上の協調性に対する抵抗を示しているが,C-O八面体ネットワークを形成することが観察された.
  • 4倍から6倍の移行状態でのC-O結合の長さは,S(N) 2反応の移行状態の長さに近い.

結論:

  • 極度の圧力下での固体CO2で6倍の高価炭素を達成する可能性を実証した.

さらに関連する動画

Achieving Moderate Pressures in Sealed Vessels Using Dry Ice As a Solid CO2 Source
06:26

Achieving Moderate Pressures in Sealed Vessels Using Dry Ice As a Solid CO2 Source

Published on: August 17, 2018

High-pressure Sapphire Cell for Phase Equilibria Measurements of CO2/Organic/Water Systems
05:46

High-pressure Sapphire Cell for Phase Equilibria Measurements of CO2/Organic/Water Systems

Published on: January 24, 2014

関連する実験動画

Last Updated: May 8, 2026

A Uniaxial Compression Experiment with CO2-Bearing Coal Using a Visualized and Constant-Volume Gas-Solid Coupling Test System
10:27

A Uniaxial Compression Experiment with CO2-Bearing Coal Using a Visualized and Constant-Volume Gas-Solid Coupling Test System

Published on: June 12, 2019

Achieving Moderate Pressures in Sealed Vessels Using Dry Ice As a Solid CO2 Source
06:26

Achieving Moderate Pressures in Sealed Vessels Using Dry Ice As a Solid CO2 Source

Published on: August 17, 2018

High-pressure Sapphire Cell for Phase Equilibria Measurements of CO2/Organic/Water Systems
05:46

High-pressure Sapphire Cell for Phase Equilibria Measurements of CO2/Organic/Water Systems

Published on: January 24, 2014

  • 非金属との高価性に対する炭素の抵抗性についての洞察を提供した.
  • ハイパーバレンツ構成のC-O結合を含む反応のエネルギー障壁を強調した.