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相关概念视频

Chemical Reactions01:19

Chemical Reactions

A chemical reaction is a process by which the bonds in the atoms of substances are rearranged to generate new substances. Matter cannot be created or destroyed in a chemical reaction—the same type and number of atoms that make up the reactants are still present in the products. Merely, the rearrangement of chemical bonds produces new compounds.
Chemical Reactions Rearrange Atoms into New Substances
A chemical reaction takes starting materials—the reactants—and changes them into different...
Redox Reactions01:24

Redox Reactions

Oxidation-reduction or redox reactions involve the transfer of electrons from one molecule or atom to another. When an atom gains an electron, another atom must lose an electron, meaning oxidation and reduction must occur together. Since the redox occurs in pairs, the atom that gets oxidized is also called the reducing agent or reductant, and the atom that is reduced is also called the oxidizing agent or oxidant. A straightforward way to remember the definitions of oxidation and reduction is...
Chemical Reactions02:26

Chemical Reactions

A balanced chemical equation provides the information of chemical formulas of the reactants and products involved in the chemical change. A reaction’s stoichiometry helps predict how much of the reactant is needed to produce the desired amount of product, or in some cases, how much product will be formed from a specific amount of the reactant.
The relative amounts of reactants and products represented in a balanced chemical equation are often referred to as stoichiometric amounts. However, in...
Enthalpy and Heat of Reaction02:12

Enthalpy and Heat of Reaction

Combustion, commonly known as burning, is a reaction in which a substance reacts with an oxidizing agent, which in most cases is molecular oxygen, to liberate energy in the form of heat, light, or sound. The heat of combustion is also known as the enthalpy of combustion. The energy released when one mole of a substance undergoes complete combustion at constant pressure is called molar heat of combustion. Combustion reactions are exothermic; that is, they release energy, and their ΔH sign...
Introduction to Chemical Reactions01:23

Introduction to Chemical Reactions

All chemical reactions begin with a reactant, the general term for one or more substances entering the reaction. Sodium and chloride ions, for example, are the reactants in the production of table salt. One or more substances produced by a chemical reaction are called the product. Chemical reactions follow the law of conservation of mass, which means that matter cannot be created nor destroyed in a chemical reaction. The components of the reactants—the number of atoms and the elements—are all...
Redox Reactions01:27

Redox Reactions

Redox reactions are vital biochemical processes that underpin energy metabolism in cells. These reactions involve the transfer of electrons between molecules, occurring in tandem as oxidation and reduction. Oxidation refers to the loss of electrons, while reduction denotes their gain. This coupling ensures the seamless flow of electrons through metabolic pathways. For example, in bacterial metabolism, glucose undergoes oxidation to carbon dioxide, while oxygen is simultaneously reduced to...

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相关实验视频

Updated: Jul 7, 2026

Non-equilibrium Microwave Plasma for Efficient High Temperature Chemistry
07:17

Non-equilibrium Microwave Plasma for Efficient High Temperature Chemistry

Published on: August 1, 2017

在高压二氧化碳中引起的化反应.

M W A Kuijpers1, D van Eck, M F Kemmere

  • 1Process Development Group, Eindhoven University of Technology, Post Office Box 513, 5600 MB Eindhoven, Netherlands.

Science (New York, N.Y.)
|December 10, 2002
PubMed
概括

超声波可以在液态二氧化碳 (CO2) 中产生分子,用于聚合. 这证明了密集液体中的声化学反应,为有机溶剂提供了一个环保的替代品.

科学领域:

  • 绿色化学 绿色化学
  • 声化学 声化学 声化学
  • 聚合物科学 聚合物科学

背景情况:

  • 传统的有机溶剂对环境构成风险.
  • 密相二氧化碳 (CO2) 是一种对环境无害的替代溶剂.
  • 声化学利用超声波来启动化学反应.

研究的目的:

  • 为了证明液态二氧化碳中的超声波诱导的基质形成.
  • 探索使用二氧化碳作为溶剂用于声化学聚合物的潜力.
  • 评估用二氧化碳取代传统有机溶剂的可行性.

主要方法:

  • 在液态CO2中研究了超声波诱导的基质形成.
  • 利用动态泡模型来预测热点的形成.
  • 在二氧化碳中通过洞化诱导的基因对甲基甲酸盐进行了聚合.

主要成果:

  • 由于高CO2蒸汽压力,在低声强度的液态CO2中实现了基质形成.
  • 使用动态泡模型预测泡崩时的热点形成.
  • 合成高分子量聚合物通过二氧化碳中甲基甲酸盐的合成化学聚合.

结论:

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

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相关实验视频

Last Updated: Jul 7, 2026

Non-equilibrium Microwave Plasma for Efficient High Temperature Chemistry
07:17

Non-equilibrium Microwave Plasma for Efficient High Temperature Chemistry

Published on: August 1, 2017

Synthesis and Performance Characterizations of Transition Metal Single Atom Catalyst for Electrochemical CO2 Reduction
10:57

Synthesis and Performance Characterizations of Transition Metal Single Atom Catalyst for Electrochemical CO2 Reduction

Published on: April 10, 2018

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

  • 在像液态CO2这样的密相流体中,声化学反应是可行的.
  • 在各种反应系统中,对环境无害的二氧化碳可以取代危险的有机溶剂.
  • 这种方法为化学合成和聚合物生产提供了可持续的途径.