Method for performing low-dosage radiant biology early warning by utilizing luminous bacteria
A luminescent bacteria and low-dose technology, applied in the direction of dosimeters, etc., can solve problems such as comprehensively responding to radiation pollution, and achieve the effects of low environmental risk, short time, and simple equipment
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Embodiment 1
[0038] Add 5 mL of 0.85% NaCl solution to 5 mg of Vibrio Qinghai freeze-dried powder, mix well, and place it at 25°C for 15 min to restore the stable luminescence of Vibrio Qinghai to obtain the luminescent bacteria recovery solution. Add 2 mL of 0.85% NaCl solution to 10 measuring cups, and then add 0.5 mL of luminous bacteria resuscitating solution, mix them well, place them at 25 °C for 15 min, and take 5 of them to measure The cup was placed in a gamma-ray radiation environment with a dose rate of 0.055 Gy / min for 11 s, and the cumulative radiation dose received at this time was 10 mGy. After 20 min, the luminous intensity of the luminescent bacteria in the control group and the radiation group was measured with a luminescent bacteria detector, and the photoelectron readings were recorded. According to the average value of photoelectron readings, the luminous intensity inhibition rate of luminescent bacteria in the radiation group was calculated, and the value was 12.0%. A...
Embodiment 2
[0040] Add 5 mL of 0.85% NaCl solution to 5 mg of Vibrio Qinghai freeze-dried powder, mix well, and place it at 25 °C for 15 min to restore the stable luminescence of Vibrio Qinghai to obtain the luminescent bacteria recovery solution. Add 2 mL of 0.85% NaCl solution to 10 measuring cups, and then add 0.5 mL of luminous bacteria resuscitating solution to make them fully mixed. After standing at 25 °C for 15 min, take 5 of them to measure The cup was placed in a gamma-ray radiation environment with a dose rate of 0.055 Gy / min for 15 s, and the cumulative radiation dose received at this time was 14 mGy. After 20 min, the luminous intensity of the luminescent bacteria in the control group and the radiation group was measured with a luminescent bacteria detector, and the photoelectron readings were recorded. According to the average value of photoelectron readings, the luminous intensity inhibition rate of luminescent bacteria in the radiation group was calculated, and the value w...
Embodiment 3
[0042] Add 5 mL of 0.85% NaCl solution to 5 mg of Vibrio Qinghai freeze-dried powder, mix well, and place it at 25 °C for 15 min to restore the stable luminescence of Vibrio Qinghai to obtain the luminescent bacteria recovery solution. Add 2 mL of 0.85% NaCl solution to 10 measuring cups, and then add 0.5 mL of luminous bacteria resuscitating solution to make them fully mixed. After standing at 25 °C for 15 min, take 5 of them to measure The cup was placed in a gamma-ray radiation environment with a dose rate of 0.055 Gy / min for 17 s, and the cumulative radiation dose received at this time was 16 mGy. After 20 min, the luminous intensity of the luminescent bacteria in the control group and the radiation group was measured with a luminescent bacteria detector, and the photoelectron readings were recorded. According to the average value of photoelectron readings, the luminous intensity inhibition rate of luminescent bacteria in the radiation group was calculated, and the value w...
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