There are many domestic organic waste gas treatment technologies, but as far as their working principles are concerned, they can be divided into the following eight types:
1. Adsorption: The use of an adsorbent to physically combine with a volatile organic compound or a chemical reaction to remove contaminated components.
2. Absorption: The organic waste gas and the washing liquid are brought into full contact to realize the transfer of pollution molecules, and then the organic waste gas molecules are completely removed by chemical agents.
3. Condensation: The exhaust gas is cooled to the "freezing point" of the organic exhaust gas molecules, which are condensed to a liquid state and then recovered.
4. Membrane separation: Use synthetic membrane to separate toxic substances in exhaust gas.
5. Biodegradation: Microbes digest and metabolize pollutants in waste gas, and convert the pollutants into harmless water, carbon dioxide and other inorganic salts.
6. Thermal incineration: Based on the characteristics of organic compounds in the exhaust gas that can be burned and oxidized, it is converted into harmless carbon dioxide and water.
7. Plasma: The plasma field is enriched with a large number of active species, such as ions, electrons, excited atoms, molecules, and free radicals; active species dissociate small molecules of pollutant molecules.
Plasma is mainly suitable for organic waste gas treatment with high concentration and relatively low temperature. It is generally suitable for the recovery and treatment of organic waste gas with high VOCs content and small gas content. Since most VOCs are flammable and explosive gases, subject to the limit of explosion, the VOCs content in the gas will not be too high, so it must be higher. The recovery rate needs to adopt very low-temperature condensing medium or high-pressure measures, which will inevitably increase equipment investment and processing costs. Therefore, this technology is generally used as a good processing technology and combined with other technologies.
8. Photooxycatalysis: Photocatalyst nanoparticles are stimulated to generate electron-hole pairs when irradiated with light of a certain wavelength. Water adsorbed on the surface of the hole-decomposition catalyst generates hydroxyl radicals OH, and the electrons reduce the surrounding oxygen to active ion oxygen. Therefore, it has a strong redox capacity and can destroy various pollutants on the surface of the photocatalyst.
| 亚洲av永久无码久久久久 | 亚洲毛多水多日本A片无码 欧美激情婬妇BBBwww | 最好看免费中文在线看电视剧 | 成人免费看A片WWW | 免费看的强伦轩一级A片在线观看 | av手机版最新资源站 | 精品少妇V888AV | 亚洲色噜噜噜网站在线观看 | 四川少妇XXX奶大XXX | 欧美激情亚洲无码 | 午夜成人120分钟A片 | 无码人妻丰满少妇又伦 | 精品人妻少妇嫩草 | 蜜乳AV少婦中年豐滿一区二区 | 四虎国产精品免费在线观看 | 亚洲精品成人无码 | 884aa四虎影成人精品一区 | 国产视频一视频二在线观看 | 夜夜草少妇B视频 | 99久久精品国产一区二区野战 | 欧美激情婬妇BBBwww | 日本一级大黄爱做片 | 在线碰红桃视频观看 | 色五月天综合亚洲婷婷 | 2019年中文字幕剧免费下载 | 婷婷五月天深深久久 | 精品人妻少妇嫩草一区二区无码 | 国产另类一二三区在线播放 | 四川少妇特级真人毛片免费 | 日本高清二本三本网站 | 亚洲精品鲁一鲁一区二区三区 | 亚洲中文无码视频 | 农民乡下一级毛片真人 | 又粗又大又长又爽视频 | 久久wwwwwww| 久久精品国产亚洲a | 亚洲无码国产精品 | 极品粉嫩小泬白浆Jk白丝 | 一区二区色情在线 | 亚洲日本三级片在线观看 |