Method for controlling cyanobacteria bloom
A technology of cyanobacteria blooms and cyanobacteria, applied in chemical instruments and methods, biochemical equipment and methods, biological water/sewage treatment, etc., can solve the problems of inability to ensure high microbial density, inability to ensure microbial activity, weak poison resistance, etc. problems, achieve good applicability and stability, maintain high-efficiency activity, and achieve large biomass effects
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Embodiment 1
[0012] A method for controlling cyanobacteria blooms, characterized in that the following steps are adopted:
[0013] A) Collect water samples from the surface layer of natural waters where cyanobacteria have exploded, and store them in an ice bath. The water samples pass through microporous membranes with a pore size of 0.80 μm, 0.45 μm, and 0.22 μm in turn, and then concentrated by a tangential flow ultrafiltration system. The cyanophage concentrated solution should be stored in the dark at 4°C for later use; the concentration ratio of the above-mentioned cyanophage concentrated solution is 200 times;
[0014] B) Cut the degradable polyurethane foam into cubes with a side length of 5mm as a carrier, pass through a 16-mesh sieve to remove debris, wash with distilled water several times, and sterilize for later use. The cyanophage concentrate obtained in step A) is mixed with the opposite Several phases of Microcystis aeruginosa liquid were prepared into a mixed solution at a ...
Embodiment 2
[0018] A method for controlling cyanobacteria blooms, characterized in that the following steps are adopted:
[0019] A) Collect water samples from the surface layer of natural waters where cyanobacteria have exploded, and store them in an ice bath. The water samples pass through microporous membranes with a pore size of 0.80 μm, 0.45 μm, and 0.22 μm in turn, and then concentrated by a tangential flow ultrafiltration system. The cyanophage concentrated solution should be stored in the dark at 4°C for future use; the concentration factor of the above-mentioned cyanophage concentrated solution is 600 times;
[0020] B) Cut the degradable polyurethane foam into cubes with a side length of 5mm as a carrier, pass through a 16-mesh sieve to remove debris, wash with distilled water several times, and sterilize for later use. The cyanophage concentrate obtained in step A) is mixed with the opposite Several phases of Microcystis aeruginosa liquid were prepared into a mixed solution at ...
Embodiment 3
[0024] A method for controlling cyanobacteria blooms, characterized in that the following steps are adopted:
[0025] A) Collect water samples from the surface layer of natural waters where cyanobacteria have exploded, and store them in an ice bath. The water samples pass through microporous membranes with a pore size of 0.80 μm, 0.45 μm, and 0.22 μm in turn, and then concentrated by a tangential flow ultrafiltration system. The cyanophage concentrated solution should be stored in the dark at 4°C for later use; the concentration factor of the above-mentioned cyanophage concentrated solution is 400 times;
[0026] B) Cut the degradable polyurethane foam into cubes with a side length of 5mm as a carrier, pass through a 16-mesh sieve to remove debris, wash with distilled water several times, and sterilize for later use. The cyanophage concentrate obtained in step A) is mixed with the opposite Several phases of Microcystis aeruginosa liquid were prepared into a mixed solution at a...
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