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    催化燃燒設備技術原理特點介紹

    發布人:武漢潤華環保設備有限公司 發表時間:2023-11-06
    含有有機物的廢氣在風機的作用下通過活性炭吸附層,有機物被活性炭獨特的作用力攔截,清潔氣體排出;一段時間后,當活性炭達到飽和時,吸附停止,有機物已經濃縮在活性炭中。
    The exhaust gas containing organic matter passes through the activated carbon adsorption layer under the action of the fan, and the organic matter is intercepted by the unique force of the activated carbon, resulting in the discharge of clean gas; After a period of time, when the activated carbon reaches saturation, adsorption stops and the organic matter has been concentrated in the activated carbon.
    催化凈化裝置內設有加熱室,加熱裝置開始進入內循環。當熱脫附氣體進入活性炭箱,活性炭層溫度上升到有機物沸點時,有機物從活性炭中跑出,進入催化室催化分解成CO2和H2O,同時釋放能量。釋放的能量用于進入吸附床進行脫附。此時,加熱裝置完全停止工作,有機廢氣在催化燃燒室中保持自燃,尾氣再生循環,直至有機物與活性炭完全分離并在催化室中分解。活性炭再生,有機物催化分解處理。
    The catalytic purification device is equipped with a heating chamber, and the heating device begins to enter the internal circulation. When the thermal desorption gas enters the activated carbon box and the temperature of the activated carbon layer rises to the boiling point of the organic matter, the organic matter escapes from the activated carbon and enters the catalytic chamber for catalytic decomposition into CO2 and H2O, while releasing energy. The released energy is used to enter the adsorption bed for desorption. At this point, the heating device completely stops working, and the organic waste gas maintains spontaneous combustion in the catalytic combustion chamber. The exhaust gas is regenerated and circulated until the organic matter is completely separated from the activated carbon and decomposed in the catalytic chamber. Activated carbon regeneration, organic matter catalytic decomposition treatment.
    3.技術性能和特點:
    3. Technical performance and characteristics:
    a、該設備設計原理先進,材料獨特,性能穩定,操作簡單,安全可靠,無二次污染。該設備占地面積小,重量輕。吸附床采用切磚結構,便于裝載,易于更換。
    催化燃燒設備
    a. The equipment has advanced design principles, unique materials, stable performance, simple operation, safety and reliability, and no secondary pollution. This device occupies a small area and is lightweight. The adsorption bed adopts a brick cutting structure, which is easy to load and replace.
    b、采用高效蜂窩狀活性炭,具有熱力學性能優越、阻力低、消耗低、吸附率高等特點。與粒狀(棒狀)相比,非常適合在大風量下使用。
    b. Adopting high-efficiency honeycomb activated carbon, it has the characteristics of superior thermodynamic performance, low resistance, low consumption, and high adsorption rate. Compared to granular (rod-shaped), it is very suitable for use in high air volume.
    c、催化燃燒室采用陶瓷蜂窩體貴金屬催化劑,阻力小,配低壓風機能正常運行,不僅耗電少,而且噪音低。
    c. The catalytic combustion chamber adopts a ceramic honeycomb precious metal catalyst with low resistance, and can operate normally with a low-pressure fan. It not only consumes less electricity but also has low noise.
    d、催化燃燒裝置的風量約為廢氣源風量的十分之一(具體根據濃度計算),加熱功率維持2小時左右,節約能源。
    d. The air volume of the catalytic combustion device is about one tenth of the air volume of the waste gas source (calculated based on concentration), and the heating power is maintained for about 2 hours to save energy.
    e、吸附有機廢氣的活性炭床可以利用廢氣催化燃燒處理產生的熱量預熱冷空氣進行脫附再生,脫附后的氣體送入催化燃燒室凈化,不需要額外的能源,運行成本低,節能效果顯著。
    e. The activated carbon bed that adsorbs organic waste gas can use the heat generated by catalytic combustion treatment of waste gas to preheat cold air for desorption regeneration. The desorbed gas is sent to the catalytic combustion chamber for purification, without the need for additional energy, with low operating costs and significant energy-saving effects.
    主要核心組件A.活性炭吸附箱:吸附箱內安裝活性炭層和氣流分布器,對有機氣體進行濃縮凈化,是整個裝置吸附濃縮環節的主要組成部分和核心工藝。活性炭采用優質無煙煤為原料,呈蜂窩狀。其主要特點是:強度高、吸附速度快、吸附容量高、比表面積大、椰殼活性炭和木質活性炭之間的孔結構和孔徑發達。B.催化燃燒裝置:結構原理說明:催化燃燒:以催化劑為中間體,在較低溫度下,有機氣體可以轉化為無害的水和二氧化碳氣體,即:脫附后的高濃度有機氣體由風量為15000的引風機送入凈化裝置,首先通過除塵阻火器系統,然后進入換熱器,再送入加熱室。
    Main Core Component A. Activated Carbon Adsorption Box: The adsorption box is equipped with an activated carbon layer and airflow distributor to concentrate and purify organic gases, which is the main component and core process of the entire adsorption and concentration process of the device. Activated carbon uses high-quality anthracite as raw material, in a honeycomb shape. Its main characteristics are high strength, fast adsorption speed, high adsorption capacity, large specific surface area, and well-developed pore structure and pore size between coconut shell activated carbon and wooden activated carbon. B. Catalytic combustion device: Structural principle explanation: Catalytic combustion: Using a catalyst as an intermediate, organic gases can be converted into harmless water and carbon dioxide gas at lower temperatures. That is, the high concentration organic gas after desorption is sent to the purification device by an induced draft fan with a wind volume of 15000. It first passes through the dust and flame arrester system, then enters the heat exchanger, and then enters the heating chamber.
    氣體通過加熱裝置達到燃燒反應溫度,然后有機氣體通過催化床分解成二氧化碳和水,再進入換熱器與低溫氣體進行熱交換,使進入的氣體溫度上升到反應溫度。如果沒有達到反應溫度,加熱系統可以通過自動控制系統實現補償加熱,使其完全燃燒,從而節約能源,廢氣有效去除率達到97%以上,符合國家排放標準。該裝置由主機、引風機和電控柜組成。凈化裝置主機由熱交換器、催化床、電加熱元件、阻火器、除塵器和減壓裝置等組成。阻火器和除塵器位于進氣管道上,泄壓裝置位于主機頂部。
    The gas reaches the combustion reaction temperature through a heating device, and then the organic gas is decomposed into carbon dioxide and water through a catalytic bed. It enters a heat exchanger for heat exchange with the low-temperature gas, causing the temperature of the incoming gas to rise to the reaction temperature. If the reaction temperature is not reached, the heating system can compensate for heating through an automatic control system, allowing it to burn completely, thereby saving energy. The effective removal rate of exhaust gas reaches over 97%, which meets national emission standards. The device consists of a host, an induced draft fan, and an electrical control cabinet. The main unit of the purification device consists of a heat exchanger, catalytic bed, electric heating element, flame arrester, dust collector, and pressure reducing device. The flame arrester and dust collector are located on the intake pipeline, and the pressure relief device is located on the top of the main engine.
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