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催化燃燒設(shè)備氧化法就是將VOCs工業(yè)三廢在較低條件下進(jìn)行氧化焚燒,在金屬催化機(jī)理下轉(zhuǎn)化成CO2和H2O。這類有機(jī)廢氣治理方法的主要特征取決于,在具體運(yùn)行中,對預(yù)熱溫度的要求不高,VOCs工業(yè)三廢處在無焰燃燒情況,進(jìn)行凈化后的階段處在無焰燃燒情況,這樣既可以提升有機(jī)廢氣處理的穩(wěn)定性,又可對VOCs工業(yè)三廢進(jìn)行合理濃度和發(fā)熱量操縱,從而減少有機(jī)廢氣處理費(fèi)用。
The oxidation method of catalytic combustion equipment is to oxidize and incinerate VOCs industrial three wastes under lower conditions, and convert them into CO2 and H2O under metal catalytic mechanism. The main characteristics of this type of organic waste gas treatment method depend on the fact that in specific operation, the requirement for preheating temperature is not high, and the VOCs industrial three wastes are in a flameless combustion state. After purification, the stage is in a flameless combustion state, which can not only improve the stability of organic waste gas treatment, but also control the concentration and heat generation of VOCs industrial three wastes reasonably, thereby reducing the cost of organic waste gas treatment.

現(xiàn)在國內(nèi)過去的工業(yè)有機(jī)廢氣處理階段所采用的催化燃燒設(shè)備法存在一定的缺陷,一方面,當(dāng)催化劑載體與工業(yè)三廢中的重金屬、鹵素?zé)襞莺土蛩猁}等物質(zhì)混合均勻,及易發(fā)生無效狀況,另一方面,當(dāng)整治之后的VOCs工業(yè)三廢濃度值比較低或氣旋過大時(shí),僅依靠易燃物點(diǎn)燃放熱反應(yīng)就難以維持催化劑載體料層所需要的凈化的作用環(huán)境溫度,因而,在設(shè)備打開、運(yùn)行中還需耗費(fèi)比較多的電力能源或然料。
The catalytic combustion equipment method used in the treatment of industrial organic waste gas in the past in China has certain defects. On the one hand, when the catalyst carrier is uniformly mixed with heavy metals, halogen bulbs, sulfates and other substances in the industrial three wastes, it is prone to ineffective situations. On the other hand, when the concentration of VOCs industrial three wastes after treatment is relatively low or the cyclone is too large, it is difficult to maintain the purification environment temperature required by the catalyst carrier material layer solely relying on the ignition and heat release reaction of flammable materials. Therefore, a considerable amount of electrical energy or materials is required during equipment opening and operation.
為提升催化燃燒設(shè)備技術(shù)處理的經(jīng)濟(jì)性,除了繼續(xù)科學(xué)研究改善催化劑載體性能外,還需要開展新技術(shù)的研究和探索。近些年科學(xué)研究比較多的是憑借儲熱技術(shù)性,轉(zhuǎn)為催化燃燒設(shè)備技術(shù)性,轉(zhuǎn)為催化燃燒設(shè)備技術(shù)性從技術(shù)上具備獨(dú)特優(yōu)勢,在環(huán)境保護(hù)工程、低質(zhì)量資源利用等多個(gè)方面有著大量的運(yùn)用,海外已把它現(xiàn)代化,目前有數(shù)百臺設(shè)備投入使用。
In order to improve the economic efficiency of catalytic combustion equipment technology processing, in addition to continuing scientific research to improve the performance of catalyst carriers, it is also necessary to carry out research and exploration of new technologies. In recent years, there has been a significant shift in scientific research from thermal storage technology to catalytic combustion equipment technology, which has unique advantages in terms of technology. It has been widely used in various fields such as environmental protection engineering and low-quality resource utilization. It has been modernized overseas and currently has hundreds of devices in use.
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