chemosorption的音标为:[,kemə"sɔːmən] ,基本翻译为“化学吸附”,速记技巧为:化学吸附是物理吸附的一种,发生在固体表面。
Chemosorption这个词的词源可以追溯到两个部分:chem(化学)和sorption(吸附)。因此,这个词的含义是化学吸附。
变化形式:无
相关单词:
1. Chemisorption - 化学吸附,与chemosorption意义相近,但更强调化学反应在吸附过程中的作用。
2. Desorption - 脱附,与sorption意义相反,指的是吸附物从吸附剂上分离的过程。
3. Adsorption isotherm - 吸附等温线,描述了吸附剂和吸附质的吸附关系曲线,是化学工程中常用的工具。
4. Adsorbate - 吸附剂,被吸附物质。
5. Adsorbent - 吸附剂,可以用于吸附的物质。
6. Desorption - 解吸,与adsorption意义相反,指的是将吸附在吸附剂上的物质重新变为气态或液态的过程。
7. Sorption capacity - 吸附能力,描述了吸附剂能够吸附的物质的最大量。
8. Sorption behavior - 吸附行为,描述了物质在吸附剂上的吸附行为和机制。
9. Surface chemistry - 表面化学,研究固体表面与气体或液体之间的相互作用,包括吸附过程。
10. Adsorption process - 吸附过程,包括chemosorption, chemisorption等一系列的吸附过程。
常用短语:
1. chemoadsorption
2. chemoadsorptive
3. chemical adsorption
4. chemical absorption
5. chemisorption
6. adsorbate
7. adsorbent
双语例句:
1. The process of chemoadsorption is widely used in industrial applications.
2. The adsorbent material used in chemoadsorption processes is typically a porous solid.
3. Chemical absorption is a process that involves the absorption of a gas or liquid by a solid or liquid adsorbent.
4. Chemisorption occurs when a chemical bond is formed between a gas or liquid and a solid surface.
5. Adsorbate molecules are tightly bound to the surface of an adsorbent material.
6. The efficiency of an adsorbent material can be improved by optimizing its surface area and pore size.
7. Chemoadsorption processes are commonly used in gas separation and purification applications.
英文小作文:
Chemosorption is a process that involves the absorption or binding of substances by materials based on their chemical properties. It is widely used in industrial applications such as gas separation and purification, water treatment, and environmental monitoring. Chemosorption processes can be highly efficient and selective, making them an attractive alternative to other separation techniques. The key to successful chemoadsorption is selecting an appropriate adsorbent material with a high surface area and specific pore size that can selectively bind the desired substance. In addition, optimizing the process conditions, such as temperature, pressure, and contact time between the adsorbent and the substance to be adsorbed, can further improve the efficiency of chemoadsorption processes. As chemoadsorption continues to be developed and improved, it is expected to play an increasingly important role in various industrial fields.