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      沸石吸附濃縮轉輪+催化燃燒(CO)處理工藝詳細

      發布人:武漢潤華環保設備有限公司 發表時間:2024-08-01

      與活性炭吸附濃縮+催化燃燒(CO)一樣,沸石濃縮轉輪+催化燃燒(CO)設備原理也是先經過濃縮后高溫處理。吸附劑、脫附溫度、凈化效果、CO燃燒爐能耗、適用范圍、占地面積、安全穩定等多方面優勢使得沸石濃縮轉輪+CO這一工藝得到廣泛的應用,彌補了部分活性炭吸附濃縮+CO處理工藝無法處理的場合。

      Like activated carbon adsorption concentration+catalytic combustion (CO), the principle of zeolite concentration wheel+catalytic combustion (CO) equipment is also to first undergo concentration and then high-temperature treatment. The advantages of adsorbent, desorption temperature, purification effect, CO combustion furnace energy consumption, applicable range, footprint, safety and stability make the zeolite concentration wheel+CO process widely used, which makes up for the situation that some activated carbon adsorption concentration+CO treatment processes cannot handle.

      沸石濃縮轉輪+CO催化燃燒廢氣處理工藝流程:

      Zeolite concentration wheel+CO catalytic combustion exhaust gas treatment process flow:

      VOCs氣體收集→干式/濕式過濾→沸石轉輪吸附濃縮→CO催化燃燒→風機+煙囪(達標排放)。

      VOCs gas collection → dry/wet filtration → zeolite rotary adsorption concentration → CO catalytic combustion → fan+chimney (compliant emissions).

      沸石濃縮轉輪+CO催化燃燒廢氣處理工藝工作原理:

      20230921055222956.jpg

      Working principle of zeolite concentration wheel+CO catalytic combustion exhaust gas treatment process:

      大風量低濃度的VOCs,經過沸石轉輪后,由于分子之間的范德華力,VOCs被沸石微孔所吸附,凈化后的氣體可直接排到排氣筒。被吸附在沸石轉輪上的有機物再通過180℃~200℃的溫度的氣體進行脫附。脫附出來的高濃度廢氣再送入CO催化燃燒設備進行催化燃燒處理。

      VOCs with high air volume and low concentration, after passing through the zeolite impeller, are adsorbed by the zeolite micropores due to van der Waals forces between molecules. The purified gas can be directly discharged into the exhaust pipe. The organic matter adsorbed on the zeolite wheel is desorbed by gas at a temperature of 180 ℃ to 200 ℃. The high concentration exhaust gas desorbed is then sent to the CO catalytic combustion equipment for catalytic combustion treatment.

      催化燃燒是典型的氣—固相催化反應,它在催化劑的作用下降低反應的活化能,使其在較低的起燃溫度250~350℃下進行無焰燃燒,在固體催化劑表面有機物質發生氧化,同時產生CO2和H2O,并放出大量的熱量,因其氧化反應溫度低,所以大大地控制了空氣中的N2形成高溫NOx。而且由于催化劑有選擇性催化作用,有可能限制燃料中含氮化合物的氧化過程,使其多數形成分子氮,從而降低了末端處理設備的負荷,降低了運行能耗。

      Catalytic combustion is a typical gas-solid catalytic reaction, which reduces the activation energy of the reaction under the action of the catalyst, allowing it to undergo flameless combustion at a lower ignition temperature of 250-350 ℃. Organic matter on the surface of the solid catalyst oxidizes, producing CO2 and H2O, and releasing a large amount of heat. Due to its low oxidation reaction temperature, it greatly controls the formation of high-temperature NOx from N2 in the air. Moreover, due to the selective catalytic effect of the catalyst, it is possible to limit the oxidation process of nitrogen-containing compounds in the fuel, causing most of them to form molecular nitrogen, thereby reducing the load on the end treatment equipment and lowering operational energy consumption.

      沸石濃縮轉輪+CO催化燃燒工藝的優勢:

      Advantages of zeolite concentration wheel+CO catalytic combustion process:

      1、沸石為無機物,具有不可燃性,脫附再生時較活性炭的安全性更高;

      1. Zeolite is an inorganic substance with non flammability, and its safety during desorption and regeneration is higher than that of activated carbon;

      2、系統配備阻火器、泄爆片、消防噴淋、氮氣保護、自動停機等多項安全保護措施;

      2. The system is equipped with multiple safety protection measures such as flame arresters, explosion relief devices, fire sprinklers, nitrogen protection, and automatic shutdown;

      3、凈化效果高;可達到90%以上。由于分子篩孔徑均一,且脫附溫度高,脫附更為徹底。因此分子篩轉輪吸附性能得以保持高效的狀態,保證廢氣持續達標排放;

      3. High purification effect; It can reach over 90%. Due to the uniform pore size of the molecular sieve and high desorption temperature, desorption is more thorough. Therefore, the adsorption performance of the molecular sieve wheel can be maintained in an efficient state, ensuring that the exhaust gas continues to meet the emission standards;

      4、全智能化管理操作,PLC/人機界面+智能手機APP遠程管控系統;可在人機界面或者手機上設定運行參數,實現遠程實時智能控制。

      4. Fully intelligent management operation, PLC/human-machine interface+smartphone APP remote control system; Operating parameters can be set on the human-machine interface or mobile phone to achieve remote real-time intelligent control.

      本文由沸石轉輪+CO友情奉獻.更多有關的知識請點擊:http://m.chanyezixun.com真誠的態度.為您提供為全面的服務.更多有關的知識我們將會陸續向大家奉獻.敬請期待.

      This article is contributed by the zeolite wheel and CO friendship. For more related knowledge, please click: http://m.chanyezixun.com Sincere attitude. We provide you with comprehensive services. We will gradually contribute more relevant knowledge to everyone. Please stay tuned

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