Method of biological inhibition using sea water cooling system
A cooling system and bioinhibition technology, applied in the direction of sterilization/microdynamic water/sewage treatment, etc., can solve the problems of safety, environmental protection and drug resistance, reduce heat exchange efficiency, increase heat energy demand, etc. Achieve the effect of solving the drug resistance of marine organisms, avoiding safety accidents, and simple dosing equipment
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Embodiment 1
[0034] Example 1: For a 4×300MW unit in a thermal power plant in the south, the dosing point is at the entrance of the forebay of the circulating water pump.
[0035] 1) Put the non-oxidizing biocide into the seawater pool of the seawater cooling system (at the entrance of the forebay of the circulating water pump), add 10 mg of non-oxidizing biocide per liter of seawater, the dosing time is 45 minutes, and the frequency is 3 times a week times, every 55-56 hours to invest once.
[0036] 2) Add non-oxidizing biocide for two months and then add oxidizing biocide at a dose of 10 mg per liter of seawater, once a week, and the dosing time is about 2 hours.
[0037] 3) One month after the oxidizing biocide is put in, add a non-oxidizing biocide, and cycle step 1) and step 2).
[0038] The detection results of the total number of bacterial colonies in the water samples before and after using this method and the adhesion of marine organisms in the water chamber of the cooling system...
Embodiment 2
[0042] The system operation and dosing method are the same as in Example 1. The detection results of the total number of bacterial colonies in the water samples before and after adopting this method and the adhesion of marine organisms in the water chamber of the cooling system are shown in Table 1.
[0043]In the present embodiment, the non-oxidative biocide is composed of isothiazolinone, diethanolamide, fatty alcohol polyoxyethylene (5-6) ether, ethanol and water, and the weight percentages of each composition are: isothiazolone 50, Diethanolamide 10, fatty alcohol polyoxyethylene (5-6) ether 6, ethanol 10, water 24; mix, stir and filter to obtain the product.
[0044] In this embodiment, the oxidative biocide is mainly composed of peracetic acid, hydrogen peroxide and water, and the weight percentages of each composition are: 5 peracetic acid, 10 hydrogen peroxide, and 85 water; the product is obtained after mixing, stirring and filtering .
Embodiment 3
[0046] The system operation and dosing method are the same as in Example 1. The detection results of the total number of bacterial colonies in the water samples before and after adopting this method and the adhesion of marine organisms in the water chamber of the cooling system are shown in Table 1.
[0047] In the present embodiment, the non-oxidizing biocide is made up of dodecyltributylphosphonium chloride, fatty alcohol polyoxyethylene (5-6) ether, ethanol and water, and the percentage by weight of each composition is: dodecyl Tributylphosphonium chloride 50, fatty alcohol polyoxyethylene (5-6) ether 3, ethanol 10, water 37; mix, stir and filter to obtain the product.
[0048] In this example, the oxidizing biocide is mainly composed of bromochlorodimethylhydantoin and water, and the percentages by weight of each composition are: 15% bromochlorodimethylhydantoin and 85% water; the product is obtained after mixing, stirring and filtering.
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