CN104719268A - Mosquito trapping method and attractant device used in same - Google Patents
Mosquito trapping method and attractant device used in same Download PDFInfo
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- CN104719268A CN104719268A CN201510043437.8A CN201510043437A CN104719268A CN 104719268 A CN104719268 A CN 104719268A CN 201510043437 A CN201510043437 A CN 201510043437A CN 104719268 A CN104719268 A CN 104719268A
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01M—CATCHING, TRAPPING OR SCARING OF ANIMALS; APPARATUS FOR THE DESTRUCTION OF NOXIOUS ANIMALS OR NOXIOUS PLANTS
- A01M1/00—Stationary means for catching or killing insects
- A01M1/02—Stationary means for catching or killing insects with devices or substances, e.g. food, pheronones attracting the insects
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01M—CATCHING, TRAPPING OR SCARING OF ANIMALS; APPARATUS FOR THE DESTRUCTION OF NOXIOUS ANIMALS OR NOXIOUS PLANTS
- A01M1/00—Stationary means for catching or killing insects
- A01M1/08—Attracting and catching insects by using combined illumination or colours and suction effects
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01M—CATCHING, TRAPPING OR SCARING OF ANIMALS; APPARATUS FOR THE DESTRUCTION OF NOXIOUS ANIMALS OR NOXIOUS PLANTS
- A01M1/00—Stationary means for catching or killing insects
- A01M1/10—Catching insects by using Traps
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A50/00—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
- Y02A50/30—Against vector-borne diseases, e.g. mosquito-borne, fly-borne, tick-borne or waterborne diseases whose impact is exacerbated by climate change
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- Life Sciences & Earth Sciences (AREA)
- Pest Control & Pesticides (AREA)
- Engineering & Computer Science (AREA)
- Insects & Arthropods (AREA)
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- Environmental Sciences (AREA)
- Agricultural Chemicals And Associated Chemicals (AREA)
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Abstract
The invention discloses a mosquito trapping method and an attractant device used in the same. According to the method, an attractant capable of volatilizing to form smell bait is placed at an air inlet of a mosquito trap, the smell bait formed after the attractant volatilizes attracts mosquitoes into the area, and then negative-pressure airflow generated by the mosquito trap sucks the mosquitoes into the mosquito trap to kill the mosquitoes. The attractant comprises three different volatilizable substances which are placed in three isolated spaces respectively and forms the smell bait capable of attracting the mosquitoes. The smell formed after the three substances in the attractant volatilize is similar to the smell generated by the human body, so that the mosquitoes are misdirected, attracted into the effective working area of the mosquito trap and then effectively killed. The three substances in the attractant volatilize a little, are nontoxic, free of environment pollution and beneficial for environment protection and can be used both outdoors and indoors.
Description
Technical field
The present invention relates to a kind of method of mosquito killing.Particularly, the present invention relates to a kind of mainly through bait giving forth fragrance, can effectively attract male mosquito and female mosquito to the mosquito method of catching of mosquito trap and for the attractant device in the method simultaneously.
Background technology
Such as malaria, dengue fever, encephalitis and West Nile Virus infection etc. are died from by the disease of killing propagation per year over a million people in the whole world.Except bringing except disease, biting of mosquito also disturbs the mankind often, brings discomfort to the health of the mankind and sleep etc.Use chemical insecticide kill mosquito be harmful to health and have the consequence of welding, can develop immunity to drugs with mosquito makes chemical insecticide efficiency reduce.Use mosquito-repellent incense etc. only can temporary transient expelling mosquito and its quantity can not be reduced.
Female mosquito life cycle is at least one or two moon, how within 2-3 days after emergence, to start drawing animal blood and makes a living, and grows ovary, produces offspring and the nutrient of fertilized egg when supplying pregnancy.Female mosquito is biting animal infection virus simultaneously.Relative male mosquito life cycle is generally 7-10 days, sprouts wings and gets final product mating in latter two days, only moisture and leaf juice need be relied on to survive, can not attack animal and virus spread.So document is seldom seen in female mosquito to the research of male mosquito in the study limitation of most of mosquito attractant.
Nasci equals 1983 and points out that common photo-induction mosquito trap utilizes ultraviolet to attract mosquito, but can only catch the male mosquito of light or the beneficial insect of transmitting pollen scraped by insect bag, and to female mosquito, then effect is unevident.To daytime attack human class and infect the Aedes aegypti of dengue fever and aedes albopictus then completely invalid.
Biologist begins one's study carbonic acid gas and chemical odor to the epigamic of mosquito at the twentieth century initial stage, recent two decades Takken and Knold 1999; Allan et al.2006; Cook et al.2011; Kline et al.2012; There is further investigated in article more.
Bernier etc. (2000) contain 300 multiple compounds with GC/MS Instrumental Analysis human body skin effluent, and bag scrapes carboxylic acid, alcohol, aldehyde, ketone, aromatic hydrocarbon, acid amides, ester, halogenated hydrocarbons, heterocycle compound.Sweat main component is water, Pfansteihl, ammonia and urea.The breathing of many literature research biologies is discharged the attraction of different element to different mosquito kind from skin and has been done many deep discussions.Bosch et al., 1999 the article pointed out that the aerial concentration of attractant is 1,000,000/or lower all enough to mosquito generation attraction.
Carbonic acid gas is that attracting mosquitoes finds one of important element of target of attack.A kind of photocatalyst mosquito trap of known business application, it increases coating of titanium dioxide in mosquito trap inside, declare that titanium dioxide can be had an effect with ultraviolet and produce anion oxygen, plankton generation chemical action in anion oxygen and air thus form carbonic acid gas and water.By ultraviolet luring to strengthen and catch mosquito effect in conjunction with carbonic acid gas.But, the carbonic acid gas produced by photocatalyst mosquito trap can be detected so far without any scientific instrument, this mosquito trap catch mosquito effect with only have the mosquito trap of light source to be more or less the same.
With the kill mosquito magnetic that bait reinforcement benefit mosquito device most representativeness is produced for Woodstream company of the U.S., burn propane or liquefied petroleum gas produce carbonic acid gas for the main bait of attraction mosquito, and its concentration need reach more than 500PPM.Auxiliary bait is placed in air outlet and discharges with main bait, strengthens and catches mosquito efficiency.But this product cost is high, ordinary consumer could not power be bought; The accumulating of propane or liquefied petroleum gas and the security consideration of use, high concentration carbon dioxide is discharged and has all been limited to the universal of kill mosquito magnetic.
Although bioscience man studies the attractant effect of different odor to mosquito extensively and profoundly, be confined to consideration that is a kind of or combination smell few practicality to the scholastic pursuit of the female mosquito of some specific mosquito kind.The present invention effectively lures mosquito element to volatilize in room temperature the smell of enough attracting mosquitoes from the screening of numerous attractant, and the simple mosquito trap of integrated structure, to different mosquito kind, male mosquito, female mosquito is is all effectively catched and killed.
Referenced patent document:
1, the United States Patent (USP) of patent No. position: US 6,145,243;
2, number of patent application is: the Chinese invention patent application of 200510135487.5;
3, number of patent application is: the Chinese invention patent application of 201010142601.8.
Summary of the invention
Technical problem to be solved by this invention is just comprehensive above academic theory basis, proposes a kind of to various different mosquito kind and simultaneously to male mosquito, and female mosquito effectively catches mosquito method and for the attractant device in the method.
For solving the problems of the technologies described above, the present invention catches mosquito method and have employed following technical scheme: the method is at the air inlet place of mosquito trap by a kind of attractant device of volatilizable formation smell bait, mosquito is attracted this region by the smell bait utilizing attractant volatilization to be formed, mosquito is sucked into mosquito trap inside by the negative-pressure air-flow then utilizing mosquito trap to produce, and is formed catch and kill mosquito; Wherein said attractant comprises and is positioned in three mutually isolated spaces, three kinds of volatilizable different materials respectively, these three kinds of materials are respectively: lactic acid, matsutake alcohol and can cracking release ammonia and titanium dioxide carbon compound, three kinds of described materials outwards volatilize respectively by the through hole of respective spatial placement, form and form to mosquito the smell bait attracted.
Furthermore, in technique scheme, described lactic acid, matsutake alcohol are liquid, are immersed in the carrier of adsorbable liquid, reduce lactic acid, the mobility of matsutake alcohol and controller volatility by carrier; Lactic acid, matsutake alcohol volatility control at 0.1-10 milli Grams Per Hour.
Furthermore, in technique scheme, described enough cracking release ammonias and titanium dioxide carbon compound are solid-state carbonic hydroammonium.
Furthermore, in technique scheme, it is binder that described carbonic hydroammonium adopts with calcium carbonate, forms block by pressurization, controls volatility with the evaporation surface sum reducing carbonic hydroammonium; Described carbonic hydroammonium volatility controls at 1-300 milli Grams Per Hour.
The technical scheme adopted for the attractant device of catching in mosquito method in the present invention is: this device comprises the bait box that has three mutually isolated spaces, three kinds of volatilizable different materials are positioned in three spaces respectively, these three kinds of materials are respectively: lactic acid, matsutake alcohol and can cracking release ammonia and titanium dioxide carbon compound, three kinds of described materials outwards volatilize respectively by the through hole of respective spatial placement, form and form to mosquito the smell bait attracted.
Described bait box combines by forming the plastic cement cylindrical shell in three mutually isolated spaces, the masking foil covering plastic cement cartridge openings and plastic cement top cover, and the space that on described top cover, correspondence three is mutually isolated offers through hole respectively; Three kinds of materials are positioned over after in three spaces respectively, by masking foil by three space sealings, then are locked by masking foil with coordinating of cartridge openings by top cover; Puncture masking foil by sharp objects through the through hole on top cover and make three kinds of outside Volatilized smell baits of material.
Have employed ternary bait in attractant device in the present invention, lactic acid, matsutake alcohol and ammonium hydrogencarbonate, be placed in bait box three separate space respectively, these three kinds of chemical compositions all can in room temperature, and under the condition of air flowing, volatilization is enough to attracting mosquitoes concentration.After the smell mixing that the attractant volatilization that described ternary bait is formed is formed, the smell discharged with human body is extremely approximate, can be formed lure word.Because the allotriosmia of mosquito is sharp, the effective bait smell of trace can effective attracting mosquitoes.Bait box of the present invention is placed in the central authorities of mosquito trap air inlet, when mosquito is attracted to bait box annex by the attractant distributing trace, sucks the collection mosquito device of mosquito trap with air-flow.
The present invention has following characteristics relative to current traditional scheme:
1. the smell of the generation of the smell and human body self formed after three kinds of material volatilizations in attractant is similar, thus misleads mosquito, thus lures mosquito formation, is lured to the effective working region of mosquito trap, is formed effectively catch and kill mosquito.
2, the three kinds of materials volatilization trace in the present invention in attractant, avirulence and not polluting the environment, is conducive to environmental protection, outdoorly all can use with indoor.
3. mosquito can produce antibody to dissipation insecticide, and attractant of the present invention is sustainable effectively catches mosquito.
Accompanying drawing explanation
Fig. 1 is the structural representation of attractant device embodiment one of the present invention;
Fig. 2 is the structural representation of mosquito trap used in the present invention;
Fig. 3 is that the present invention does not suck blood to 4 ages in days the indoor capture effect tables of data of aedes albopictus;
Fig. 4 is that the present invention does not suck blood to 4 ages in days the indoor capture effect tables of data of Aedes aegypti;
Fig. 5 is that the present invention does not suck blood to 5 ages in days the indoor capture effect tables of data of Aedes aegypti;
Fig. 6 is that the present invention does not suck blood to 6 ages in days the indoor capture effect tables of data of Aedes aegypti;
Fig. 7 is that the present invention does not suck blood to 4 ages in days the indoor capture effect tables of data of Anopheles sinensis;
Fig. 8 is that the present invention does not suck blood to 4 ages in days the indoor capture effect tables of data of Culex tritaeniorhynchus.
Embodiment
Of the present invention test is carried out in Inst of Infection Disease Prevention and Control, Chinese Diseases Prevention an, and the present invention is to the Aedes aegypti (dengue fever and yellow fever) of the high section of infection of China in test, aedes albopictus (dengue fever, Japanese Type-B encephalitis,
chikungunya fever), the attractant effect of Anopheles sinensis (malaria, except Xinjiang, Qinghai) and Culex tritaeniorhynchus (Japanese Type-B encephalitis and malaria).
1. for examination worm:
Aedes albopictus, Anopheles sinensis and Culex tritaeniorhynchus are the adult mosquito sprouted wings latter four days, Aedes aegypti for sprouting wings latter two days, three days, four days, five days with the adult mosquito of six days.Each mensuration needs about 200, and male and female individual half, female mosquito is not sucked blood after sprouting wings.Test mosquito kind provides by Inst of Infection Disease Prevention and Control, Chinese Diseases Prevention an's Vector factors control room.
2. bait and bait volatile concentrations:
Fig. 1 is the stereo decomposing structural representation of attractant device of the present invention.This device comprises the bait box 20 that has three mutually isolated spaces, three kinds of volatilizable different materials are positioned in three spaces respectively, these three kinds of materials are respectively: lactic acid, matsutake alcohol and can cracking release ammonia and titanium dioxide carbon compound, three kinds of described materials outwards volatilize respectively by the aperture of respective spatial placement, form and form to mosquito the smell bait attracted.
Bait box 20 comprises: cylindrical shell 201, masking foil 202, top cover 203.Its middle cylinder body 201 adopts plastic material to make with top cover 203, three mutually isolated spaces are wherein formed in cylindrical shell 201 inside, above-mentioned three kinds of materials are in right amount put into different spaces respectively, after masking foil 202 sealed cylinder 201, by the port part of top cover 203 screw-threaded coupling at cylindrical shell 201, thus gland is formed to masking foil 202, by the mutually isolated space sealing of three in cylindrical shell 201, the volatilization of three kinds of materials can be prevented by the sealing of masking foil.Described top cover 203 offers through hole 204, and when using this attractant device, pierced through by masking foil through through hole 204 by the sharp objects such as pin, thorn, three kinds of materials will outwards volatilize smell bait by through hole 204.
In described three kinds of materials, carbonic hydroammonium is that pressed powder slowly resolves into ammonia under room temperature, carbonic acid gas and water.The carbonic hydroammonium that the present invention uses is binder with calcium carbonate and is squeezed into cake block amass to reduce evaporation surface and control volatility.The lactic acid that the present invention uses and matsutake alcohol are liquid, and it is immersed in the carrier of adsorbable liquid, to reduce its mobility and not affect its volatility.The carrier of adsorbable liquid can adopt adhesive-bonded fabric, sponge, cotton-wool etc. to have the material of micropore.
The present invention controls the scope of three kinds of material volatilities, and carbonic hydroammonium is 50-300 milli Grams Per Hour, and lactic acid and matsutake alcohol are 1-5 milli Grams Per Hour.
3. the mosquito trap of case use:
As shown in Figure 2, the mosquito trap 10 that the present invention uses is exhausting type mosquito trap.Itself and fan are similar, difference is, fan is outside blowing, and mosquito trap 10 used in the present invention is exhausting type, attractant device 20 is placed in air inlet 401 middle section of mosquito trap 10 by it, and when mosquito trap 10 starts, air flowing increases the volatilization of the baiting substance in attractant device, when mosquito is attracted to mosquito trap 10 air inlet 401 by smell bait, mosquito trap 10 produces negative pressure and is sucked in mosquito trap by mosquito.
As shown in Figure 2, trapper 10 comprises: light-emitting device 30, housing 40, fan assembly 50 and gathering unit 60.Attractant device 20 attracts mosquito for giving forth fragrance bait.Fan assembly 50 is arranged in the above-mentioned hollow space of housing 40, for generation of the air-flow from air inlet 401 to exhaust outlet 402 through housing 40, to suck mosquito from air inlet 401.Gathering unit 60 is connected to the exhaust outlet 402 of housing 40, for collecting the mosquito that is inhaled into housing 40 and discharging the air-flow that fan assembly 50 produces.In addition, the light that light-emitting device 30 produces has the auxiliary effect attracting mosquito in dark surrounds.
4. experimental condition:
To aedes albopictus and the assessment of Aedes aegypti capture effect, carry out for 50% ± 10% time in temperature 25 ± 1 DEG C, relative moisture, fine day natural lighting; To the assessment of Anopheles sinensis and Culex tritaeniorhynchus capture effect, temperature 27 ± 1 DEG C, relative moisture is carried out for 70% ± 10% time, is the natural lighting of fine day.
5. assay method
Embodiment one: aedes albopictus and Aedes aegypti
1. be placed in by mosquito net in the room controlling temperature and humidity conditions, wherein mosquito net is of a size of, 240 centimeter length, and 220 centimetres wide, and 175 centimetres high.
2. mosquito trap to be measured to be placed in the middle of mosquito net and overhead on the estrade of 30 centimetres;
3. controlling room temperature is 24-26 DEG C, and relative moisture is 40-60%;
4. yellow-fever mosquito after about 21:00 evening before that day measured puts into about 200 emergence in mosquito net, male and female half and half, make mosquito freely movable;
5., in morning 9:00, mosquito trap switch is opened;
6. every 15 minutes, 30 minutes, 60 minutes, 120 minutes, within every 2 hours afterwards, observe once, to 12 hours, record the mosquito quantity of trapper respectively, and distinguish male and female; Test repetition 3 times.
(2) mensuration of Anopheles sinensis and Culex tritaeniorhynchus
1. be placed in by mosquito net in the room controlling temperature and humidity conditions, wherein mosquito net is of a size of, 240 centimeter length, and 220 centimetres wide, and 175 centimetres high.
2. mosquito trap to be measured to be placed in the middle of mosquito net and overhead on the estrade of 30 centimetres;
3. controlling room temperature is 26-28 DEG C, and relative moisture is 50-70%;
4. in mensuration about 10:00 in morning on the same day, put in mosquito net about 200 sprout wings after the Anopheles sinensis of the 4th day and Culex tritaeniorhynchus mosquito, male and female half and half, make mosquito freely movable;
5., in afternoon 5:00, mosquito trap switch is opened;
6. respectively at the 15th after mosquito trap work minute, the 30th minute, the 60th minute, the 120th minute, within every 2 hours afterwards, observe once, to 12 hours, record the mosquito quantity (Culex tritaeniorhynchus does not record for the 8th hour, the 10th hour) of trapper respectively, and distinguish male and female; Test repetition 3 times.
Experimental result:
Embodiment one: aedes albopictus and Aedes aegypti
The present invention to the capture effect of aedes albopictus as seen from Figure 3, has good capture effect to 4 age in days aedes albopictus, and it is 73.37% that its female mosquito of 12 hours adds up capture rate, to the capture rate of the male mosquito of aedes albopictus up to 96.89%.
Embodiment two: the capture effect of Aedes aegypti
The present invention was only for 36.46 ± 8.92% (as shown in Figure 4) to the rear Aedes aegypti capture effect of 12 hours of not sucking blood for 4 days of emergence, but along with sprout wings after the time extend to the 5th day and the 6th day, its 12 hours add up female mosquito capture rate be increased to 79.10 ± 5.83% (as shown in Figure 5) and 90.45 ± 6.32% (as shown in Figure 6).Capture rate increases with emergence time and improves relevant with the development degree of the female mosquito of Aedes aegypti, and along with the development degree of the female mosquito of Aedes aegypti is day by day ripe, capture rate of the present invention increases accordingly.
Embodiment three: the capture effect of Anopheles sinensis
The present invention does not suck blood Anopheles sinensis better to 4 ages in days, and as shown in Figure 7, within its 12 hours, accumulative female mosquito capture rate is 79.84 ± 7.55%, close with the accumulative capture rate of aedes albopictus of not sucking blood to 4 ages in days.
Embodiment four: the capture effect of Culex tritaeniorhynchus
As shown in Figure 8, the present invention 4 age in days 12 hours of Culex tritaeniorhynchus accumulative female mosquito capture rates of not sucking blood are 51.08 ± 5.45%, not suck blood higher than 4 ages in days the accumulative capture rate of same time of Aedes aegypti, lower than the capture rate of aedes albopictus under the same terms and Anopheles sinensis.
Certainly, the foregoing is only specific embodiment of the utility model, be not limit the utility model practical range, all equivalences done according to structure, feature and principle described in the utility model claim change or modify, and all should be included in the utility model claim.
Claims (10)
1. catch mosquito method for one kind, it is characterized in that: the method is the air inlet place a kind of attractant device of volatilizable formation smell bait being placed on mosquito trap, mosquito is attracted to this region by the smell bait utilizing attractant volatilization to be formed, mosquito is sucked into mosquito trap inside by the negative-pressure air-flow then utilizing mosquito trap to produce, and is formed catch and kill mosquito;
Wherein, described attractant comprises and is positioned in three mutually isolated spaces, three kinds of volatilizable different materials respectively, these three kinds of materials are respectively: lactic acid, matsutake alcohol and can cracking release ammonia and titanium dioxide carbon compound, three kinds of described materials outwards volatilize respectively by the through hole of respective spatial placement, form and form to mosquito the smell bait attracted.
2. one according to claim 1 catches mosquito method, it is characterized in that: described lactic acid, matsutake alcohol are liquid, is immersed in the carrier of adsorbable liquid, by carrier reduce lactic acid, matsutake alcohol mobility and control its volatility; Lactic acid, matsutake alcohol volatility control at 0.1-10 milli Grams Per Hour.
3. one according to claim 1 catches mosquito method, it is characterized in that: described can cracking release ammonia and titanium dioxide carbon compound be solid-state carbonic hydroammonium.
4. one according to claim 3 catches mosquito method, it is characterized in that: it is binder that described carbonic hydroammonium adopts with calcium carbonate, forms block by pressurization, controls volatility with the evaporation surface sum reducing carbonic hydroammonium; Described carbonic hydroammonium volatility controls at 1-300 milli Grams Per Hour.
5. one kind for catching the attractant device in mosquito method, it is characterized in that: this device comprises the bait box that has three mutually isolated spaces, three kinds of volatilizable different materials are positioned in three spaces respectively, these three kinds of materials are respectively: lactic acid, matsutake alcohol and can cracking release ammonia and titanium dioxide carbon compound, three kinds of described materials outwards volatilize respectively by the through hole of respective spatial placement, form and form to mosquito the smell bait attracted.
6. a kind of attractant device for catching in mosquito method according to claim 5, it is characterized in that: described lactic acid, matsutake alcohol are liquid, be immersed in the carrier of adsorbable liquid, reduced lactic acid, the mobility of matsutake alcohol and controller volatility by carrier.
7. a kind of attractant device for catching in mosquito method according to claim 6, is characterized in that: described lactic acid, matsutake alcohol volatility control at 0.1-10 milli Grams Per Hour.
8. a kind of attractant device for catching in mosquito method according to claim 5, is characterized in that: described enough cracking release ammonias and titanium dioxide carbon compound are solid-state carbonic hydroammonium; It is binder that described carbonic hydroammonium adopts with calcium carbonate, forms block by pressurization, controls volatility with the evaporation surface sum reducing carbonic hydroammonium.
9. a kind of attractant device for catching in mosquito method according to claim 8, is characterized in that: described carbonic hydroammonium volatility controls at 1-300 milli Grams Per Hour.
10. according to a kind of attractant device for catching in mosquito method in claim 5-9 described in any one, it is characterized in that: described bait box combines by forming the plastic cement cylindrical shell in three mutually isolated spaces, the masking foil covering plastic cement cartridge openings and plastic cement top cover, the space that on described top cover, correspondence three is mutually isolated offers through hole respectively; Three kinds of materials are positioned over after in three spaces respectively, by masking foil by three space sealings, then are locked by masking foil with coordinating of cartridge openings by top cover; Puncture masking foil by sharp objects through the through hole on top cover and make three kinds of outside Volatilized smell baits of material.
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PCT/CN2015/072477 WO2016119274A1 (en) | 2015-01-28 | 2015-02-09 | Mosquito capturing method and attractant device used in same |
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CN105165763A (en) * | 2015-08-06 | 2015-12-23 | 广西柳州昊邦日化有限公司 | Method for manufacturing mosquito sucking mat for mosquito sucking device |
CN107810977A (en) * | 2016-09-14 | 2018-03-20 | 苏盈嘉 | Small black mosquito, the preventing and treating bait of spot mosquito |
CN108244137A (en) * | 2018-01-09 | 2018-07-06 | 惠州市特许实业有限公司 | A kind of mosquito trap agent |
CN110122442A (en) * | 2019-05-06 | 2019-08-16 | 泰山医学院 | A kind of mosquito control method suitable for pig farm |
CN110122442B (en) * | 2019-05-06 | 2022-04-15 | 山东第一医科大学(山东省医学科学院) | Mosquito control method suitable for pig farm |
US11330812B2 (en) * | 2019-08-16 | 2022-05-17 | Foshan Greenyellow Electric Technology Co., Ltd. | Mosquito trapping device |
CN110637794A (en) * | 2019-09-19 | 2020-01-03 | 浙江益康白蚁防治有限公司 | Closed multi-bait termite trapping, killing and alarming integrated device |
CN111387159A (en) * | 2020-03-23 | 2020-07-10 | 北京国强博源科技发展有限公司 | Air suction type physical insect trap |
CN115943968A (en) * | 2023-01-09 | 2023-04-11 | 中山榄菊日化实业有限公司 | Slow-release microcapsule suspending agent with mosquito repelling effect and preparation method thereof |
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