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How to estimate the exhaust volume for the treatment of organic waste gases? ! Thank you! ! !
In the case of treatment by incineration, the main components of the exhaust gases are CO2 + H2O + N2 + O2 resulting from the decomposition of organic substances; this also depends on the calorific value of the organic matter in the waste gases. The amount of H2O in the exhaust gases increases after washing or quenching
Thank you. . . What I would like to ask is that organic waste gases are generally collected; how is the volume of gas to be collected estimated? !
It’s hard to say; it depends on what kinds of emissions there are. It’s also necessary to determine whether they are part of normal production process emissions or result from overpressure release. The total amount is calculated based on the process parameters of the production equipment
I want to know too, how can it be collected?
Due to their flammability and explosiveness, organic waste gases are not suitable for collection; instead, they should be transported, treated, and discharged in a way that meets regulatory standards. Attention must also be paid to the disposal of wastewater and waste residues generated as a result of such treatment. Compliant emissions are determined through testing by qualified entities. You need to clarify what type of organic waste gas it is and how much there is
Organic waste gases are often generated in open areas, and of course they need to be collected before they can be treated. The volume of gas in such open areas is usually uncertain; I would like to know how to estimate the volume of gas that needs to be collected !
Organic waste gases are often generated in open areas, and of course they need to be collected before they can be treated. The volume of gas in such open areas is usually uncertain; I would like to know how to estimate the volume of gas that needs to be collected !
Organic waste gases can be classified into those collected in an organized manner and those emitted in an unorganized way. Given the current environmental protection requirements, various regions are working to control VOCs; those that were previously emitted in an unorganized manner must now be transferred to enclosed systems, where organized collection and treatment take place through negative pressure. For the exhaust air in a space, calculate the required air exchange rate at 12 times per hour; this is equal to the volume of the space multiplied by 12, and that value represents the amount of air that needs to be processed.