Mosquito-driving joss stick for preventing infectous disease medium mosquito
A technology for infectious diseases and vectors, applied in the direction of resisting vector-borne diseases, applications, pest control, etc., can solve the problems of not seeking countermeasures for infectious disease vectors and mosquitoes, and achieve excellent results, cheap manufacturing, and excellent safety
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Embodiment 1
[0042] The content of this compound is 0.1% by mass, the synergist A is 0.2% by mass, and the base material of mosquito repellent incense sticks such as pyrethrum extract meal powder, wood flour, starch, etc. is 99.7% by mass, and they are uniformly mixed, and then add pigment and preservative The water, with known method, obtains the mosquito repelling coil of the present invention for controlling mosquitoes of infectious diseases.
Embodiment 2
[0044] The present compound is 0.05% by mass, the synergist A is 0.15% by mass, dodecylbenzenesulfonyl isopropylamine salt is 0.08% by mass, and 2,6-di-tert-butyl-4-methylphenol is 0.1% by mass. % by mass, and then uniformly mixed into the mosquito repellent line incense base material of 99.62 mass % of coconut shell powder, wood powder, phoenix powder, starch, etc., then add water containing preservatives, and use known methods to obtain the Mosquito repellent coils for mosquito control of infectious disease vectors.
Embodiment 3
[0046] [Measurement of the volatilization rate of active ingredients when incense sticks are smoked]
[0047] On the upper part of the exhaust bell with an internal volume of about 1.5 liters, two traps for trapping volatile matter (inner diameter 25 mm, length 10 cm) stuffed with about 6 g of silica gel were connected in series to a vacuum pump. Set 2g of mosquito repellent incense sticks for testing on the line incense holder, and place it in the center of the bottom surface of the exhaust bell. After ignition, pump air at a rate of 8 liters per minute, and take samples of volatile substances. After the fumigation is finished, the volatile substances trapped in the trap and the volatile substances attached to the inside of the exhaust bell are washed away, and the amount of the recovered effective components is analyzed by gas chromatography. The active ingredient volatilization rate was calculated from the recovered amount relative to the theoretical active ingredient amoun...
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