Absorption-biological treatment method for malodorous gas
A biological treatment and exhaust gas technology, applied in the field of malodorous exhaust gas absorption-biological treatment, can solve the problems of complex operation, large investment, secondary pollution, etc.
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Embodiment 1
[0014] Example 1: Absorption-biological joint treatment of malodorous waste gas from aquatic feed
[0015] The malodorous waste gas produced by the aquatic feed during the curing and drying process is organized. The components of these malodorous waste gas include trimethylamine, ammonia, hydrogen sulfide, styrene, dimethyl disulfide, dimethyl trisulfide, benzylamine, and carbon disulfide. , Dimethyl sulfide, carbonyl sulfide, etc. Exhaust gas temperature: 70-80°C. The biological trickling filter device was inoculated and film-coated with special bacterial strains for purification of odor and waste gas from aquatic feed. In Zhanjiang Yuehua Aquatic Feed Co., Ltd., a 154-day test run was conducted on the long-term operation stability of the malodorous waste gas absorption-biological purification engineering device for aquatic feed, during which the device showed good operational stability. The residence time is 11.73s, and the purification efficiency of ammonia is generally s...
Embodiment 2
[0016] Example 2: Absorption-Biotechnology Treatment of Malodorous Waste Gas Containing Trimethylamine
[0017] In order to solve the problem of odor pollution caused by organic amines in the exhaust gas, the experimental method of treating trimethylamine odor exhaust gas with a bio-trickling filter tower with domesticated strains of membrane-coated special domesticated bacteria for odor exhaust gas purification, the purification efficiency of trimethylamine is over 99.9%, and the exhaust gas after purification It can meet the national secondary emission standard.
Embodiment 3
[0018] Example Three: Absorption-Biotechnology Treatment Containing H 2 S and NH 3 malodorous exhaust gas
[0019] The biological trickling filter tower with domesticated bacteria hanging on the film for the purification of malodorous exhaust gas is effective against H 2 S and NH 3 Both pollutants have strong degradation ability, and H 2 Purification of S than NH 3 Purification is easier, H 2 S can achieve 100% removal rate; while NH 3 The purification efficiency is maintained above 99.9%, which can achieve standard discharge.
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