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催化燃燒設(shè)備是一種利用催化劑促進(jìn)有機(jī)廢氣氧化分解的環(huán)保裝置,通過在較低溫度下實(shí)現(xiàn)有機(jī)污染物的無害化處理,兼具高效凈化與節(jié)能特性,廣泛應(yīng)用于涂裝、印刷、化工等產(chǎn)生揮發(fā)性有機(jī)物的行業(yè)。其核心功能圍繞有機(jī)廢氣的凈化處理展開,同時通過能量回收提升運(yùn)行經(jīng)濟(jì)性,在環(huán)保達(dá)標(biāo)與成本控制之間形成平衡。
Catalytic combustion equipment is an environmental protection device that uses catalysts to promote the oxidation and decomposition of organic waste gas. It achieves harmless treatment of organic pollutants at lower temperatures, and has both efficient purification and energy-saving characteristics. It is widely used in industries that produce volatile organic compounds such as painting, printing, and chemical engineering. Its core function revolves around the purification treatment of organic waste gas, while improving operational economy through energy recovery, forming a balance between environmental standards and cost control.
催化燃燒設(shè)備的核心功能是高效降解有機(jī)廢氣,將有害物質(zhì)轉(zhuǎn)化為無害物質(zhì)。設(shè)備通過引風(fēng)機(jī)將收集的有機(jī)廢氣(如苯、甲苯、乙酸乙酯等)引入燃燒室,在催化劑(常用貴金屬如鉑、鈀或非貴金屬如錳、鈷氧化物)的作用下,有機(jī)分子與氧氣發(fā)生氧化反應(yīng),生成二氧化碳和水。與傳統(tǒng)直接燃燒相比,催化劑的參與降低了反應(yīng)活化能,使燃燒溫度大幅降低,大幅減少了氮氧化物的生成(高溫下空氣中氮?dú)庖着c氧氣反應(yīng)生成氮氧化物)。對于常見濃度的有機(jī)廢氣,設(shè)備的凈化效率可達(dá) 95% 以上,部分高性能設(shè)備甚至能達(dá)到 99%,滿足嚴(yán)格的排放標(biāo)準(zhǔn)。
The core function of catalytic combustion equipment is to efficiently degrade organic waste gas and convert harmful substances into harmless substances. The equipment introduces the collected organic waste gas (such as benzene, toluene, ethyl acetate, etc.) into the combustion chamber through an induced draft fan. Under the action of catalysts (commonly precious metals such as platinum and palladium or non precious metals such as manganese and cobalt oxides), organic molecules undergo oxidation reaction with oxygen to generate carbon dioxide and water. Compared with traditional direct combustion, the participation of catalysts reduces the activation energy of the reaction, significantly lowers the combustion temperature, and greatly reduces the generation of nitrogen oxides (nitrogen in the air easily reacts with oxygen to form nitrogen oxides at high temperatures). For common concentrations of organic waste gas, the purification efficiency of the equipment can reach over 95%, and some high-performance equipment can even reach 99%, meeting strict emission standards.
能量回收與節(jié)能是催化燃燒設(shè)備的重要附加功能,能顯著降低運(yùn)行能耗。有機(jī)廢氣在燃燒過程中會釋放熱量,設(shè)備通過換熱器(如板式、管式換熱器)將高溫尾氣中的熱量回收,用于預(yù)熱待處理的低溫廢氣,減少輔助加熱(如電加熱、燃?xì)饧訜幔┑哪芎?。?dāng)廢氣濃度較高時,回收的熱量可滿足設(shè)備自身加熱需求,實(shí)現(xiàn) “自供熱” 運(yùn)行,無需額外消耗能源。這種能量循環(huán)模式使設(shè)備的能耗顯著低于直接燃燒,尤其適合連續(xù)穩(wěn)定排放廢氣的企業(yè),長期運(yùn)行可顯著降低環(huán)保處理成本。
Energy recovery and energy conservation are important additional functions of catalytic combustion equipment, which can significantly reduce operational energy consumption. Organic waste gas releases heat during combustion, and the equipment recovers the heat from the high-temperature exhaust gas through heat exchangers (such as plate and tube heat exchangers) to preheat the low-temperature waste gas to be treated, reducing the energy consumption of auxiliary heating (such as electric heating and gas heating). When the concentration of exhaust gas is high, the recovered heat can meet the heating needs of the equipment itself, achieving "self heating" operation without additional energy consumption. This energy cycling mode significantly reduces the energy consumption of the equipment compared to direct combustion, especially suitable for enterprises that continuously and stably emit exhaust gas. Long term operation can significantly reduce environmental treatment costs.
設(shè)備具備適應(yīng)不同工況的調(diào)節(jié)功能,能應(yīng)對廢氣濃度與成分的波動。通過濃度監(jiān)測傳感器實(shí)時檢測進(jìn)氣中的有機(jī)物濃度,當(dāng)濃度低于下限時,自動啟動輔助加熱系統(tǒng),確保反應(yīng)溫度達(dá)標(biāo);當(dāng)濃度過高時,開啟稀釋風(fēng)閥引入新鮮空氣,避免因燃燒放熱過多導(dǎo)致催化劑過熱。對于成分復(fù)雜的混合廢氣(如同時含有烷烴、烯烴、芳烴),設(shè)備可通過選用廣譜性催化劑或調(diào)整氣流分布,保證各類有機(jī)物均勻接觸催化劑表面,避免局部反應(yīng)不完全。部分設(shè)備還配備備用催化劑層,在主催化劑失活時自動切換,確保凈化過程不中斷,適應(yīng)企業(yè)連續(xù)生產(chǎn)的需求。
The equipment has the ability to adjust to different working conditions and cope with fluctuations in exhaust gas concentration and composition. Real time detection of organic matter concentration in the intake through concentration monitoring sensors. When the concentration is below the lower limit, the auxiliary heating system is automatically activated to ensure that the reaction temperature meets the standard; When the concentration is too high, open the dilution air valve to introduce fresh air to avoid overheating of the catalyst due to excessive heat release from combustion. For mixed exhaust gases with complex components (such as simultaneously containing alkanes, alkenes, and aromatics), the equipment can use broad-spectrum catalysts or adjust the airflow distribution to ensure that various organic compounds uniformly contact the catalyst surface and avoid incomplete local reactions. Some equipment is also equipped with a backup catalyst layer, which automatically switches when the main catalyst is deactivated to ensure uninterrupted purification process and meet the needs of continuous production in enterprises.
安全保障功能是設(shè)備穩(wěn)定運(yùn)行的基礎(chǔ),能有效防范火災(zāi)與爆炸風(fēng)險。設(shè)備設(shè)置多重安全聯(lián)鎖裝置:進(jìn)氣濃度超標(biāo)時自動切斷加熱源并報(bào)警;燃燒室溫度超過設(shè)定上限時啟動緊急降溫系統(tǒng)(如噴淋冷卻);系統(tǒng)壓力異常波動時關(guān)閉進(jìn)氣閥門,防止回火或爆炸。對于易凝結(jié)的廢氣(如含有高沸點(diǎn)有機(jī)物),設(shè)備在管道和換熱器處配備伴熱保溫裝置,避免有機(jī)物冷凝堵塞管道引發(fā)壓力升高。此外,設(shè)備的燃燒室采用防爆設(shè)計(jì)(如設(shè)置泄爆片、防爆門),即使發(fā)生意外燃燒爆炸,也能通過定向泄爆釋放壓力,減少對設(shè)備和周邊環(huán)境的破壞。
The security function is the foundation for stable operation of equipment and can effectively prevent fire and explosion risks. The equipment is equipped with multiple safety interlock devices: when the intake concentration exceeds the standard, the heating source will be automatically cut off and an alarm will be triggered; Activate the emergency cooling system (such as spray cooling) when the combustion chamber temperature exceeds the set upper limit; Close the intake valve when the system pressure fluctuates abnormally to prevent backfire or explosion. For exhaust gases that are prone to condensation (such as those containing high boiling point organic compounds), the equipment is equipped with heat tracing and insulation devices at the pipeline and heat exchanger to prevent the condensation of organic compounds from blocking the pipeline and causing pressure rise. In addition, the combustion chamber of the equipment adopts explosion-proof design (such as setting up explosion relief fins and explosion-proof doors), which can release pressure through directional explosion release even in the event of accidental combustion and explosion, reducing damage to the equipment and surrounding environment.
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