Device for high-efficient separation of magnetotactic bacteria in high gradient magnetic field
A high gradient magnetic field, magnetotactic bacteria technology, applied in the direction of stress-stimulated microbial growth and other directions, can solve the problems of low capture efficiency, induce and capture magnetotactic bacteria, affect the separation efficiency of magnetotactic bacteria, etc. Improved adsorption efficiency and no secondary pollution
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Embodiment 2
[0024] The inventive device is used to efficiently separate the magnetotactic bacteria from the solution.
[0025] Slowly inject 10 liters of the magnetotactic bacteria (Magnetospirillum sp.StrainAMB-I, purchased from ATCC, strain number: ATCC700264)) bacteria liquid to be treated into the prepared in Example 1 from the liquid inlet. In a container (length 500mm, diameter 100mm, copper wire turns 1000 turns). The power supply current (5 amps) was turned on so that the magnetic field on the axis of the container was about 0.01 Tesla. Under the capture of the high gradient magnetic field force near the steel wool, most of the magnetotactic bacteria will be adhered to the steel wool with a large specific surface area.
[0026] The treated solution was collected from the liquid outlet for analysis, and it was found that more than 98% of the magnetotactic bacteria were captured by the device, thereby achieving the purpose of efficiently separating the magnetotactic bacteria in the...
Embodiment 3
[0029] The inventive device is used to separate heavy metals from solution.
[0030] Add 100 mg of Ni2+, Cu2+, Pb2+, Cr2+ respectively to 10 liters of magnetotactic bacteria (Magnetospirillum sp.Strain AMB-I, purchased from ATCC, strain number: ATCC700264), Mixed, magnetotactic bacteria will combine heavy metal ions to become a solution of magnetotactic bacteria with heavy metal ions.
[0031] The solution was injected into the device according to the method of Example 2 for processing. Most of the magnetotactic bacteria that adsorb heavy metals will be captured by the steel wool.
[0032] The treated solution was collected from the liquid outlet, and the concentration of heavy metal ions was detected by atomic absorption spectroscopy. It was found that the removal efficiency of more than 92% could be achieved for different ions. Among them, Ni2+ is 94%, Cu2+ is 92.5%, Pb2+ is 92%, and Cr2+ is 93.5%.
[0033] After the power is turned off, since the magnetic field disappear...
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