Last updated: 24 Sep 2026 | 12 Views |
"You sprayed last week, so why are you back?" and "You fogged, so why are there still mosquitoes?" are the two questions field teams hear most often. The answer lies in the life cycle of the Aedes mosquito itself. This plain-language guide explains which stages a thermal fogging machine can reach and which it cannot, why repeat rounds scheduled on the advice of your local health authority matter, and why fogging must always go hand in hand with removing breeding sites. It also introduces the stainless steel AIROFOG AT35, a fogger well suited to round-based agency work.
Thanakorn is a public health officer at a town municipality in central Thailand. Last week a dengue case was reported in a canal-side community. His team fogged around the patient's home, within roughly 100 metres, on the evening the report came in. Residents cooperated well: they opened doors and windows, covered food and took children outside during spraying.
Seven days later the team returns with the machine for the planned second round. The owner of the corner shop walks over, puzzled. "Didn't you spray just last week? The mosquitoes are still biting. Why spray again? It's a waste of chemicals." In the community chat group, someone posts: "They fogged and nothing changed. The house is still full of mosquitoes."
That same afternoon, a deputy mayor asks a similar question from a budget angle: "Why spray the same place twice instead of using the chemical somewhere new?" Every question is reasonable from the asker's point of view, and every one has the same answer: the Aedes life cycle. Explain it clearly, and residents and executives alike understand that a repeat round is not waste but a deliberate part of disease control.
Aedes mosquitoes go through four stages: egg, larva, pupa and adult. The first three live in water or on the wet walls of containers. Only the last stage flies and bites. The figures below are approximate ranges commonly seen in hot, humid conditions; they can be shorter or longer depending on temperature, food and water conditions.
| Stage | Where it lives | Approximate duration | Does fog reach it? |
|---|---|---|---|
| Egg | Inner wall of containers, just above the waterline | Hatches within days once flooded; can survive drying for months | No |
| Larva | Standing water in containers | About 4 to 7 days | No |
| Pupa | In water, not feeding | About 1 to 3 days | No |
| Adult | Flies and rests indoors, in dark corners and shrubs | Females often live several weeks in nature | Yes, only those that contact the droplets |
Female Aedes lay eggs on the inner walls of containers such as water jars, buckets, old tyres, flower pots, the water dishes under cupboard legs, coconut shells and plastic bottles holding rainwater. Eggs usually sit just above the waterline. When rain or a refill floods them, they hatch into larvae. What makes Aedes so hard to control is that the eggs can survive drying for months. A container that looks bone-dry in the dry season may hold eggs ready to hatch with the first rain.
Larvae live in water, feed on tiny organic particles and come to the surface to breathe. Residents can see them and deal with them easily: tip out water, scrub containers, cover jars, change vase water weekly, or use a larvicide recommended by the health authority.
Pupae do not feed and take only a few days to become adults. Because they are still underwater, fog drifting in the air does not affect them. If there are pupae in a backyard jar on spraying day, a fresh batch of mosquitoes will fly out within days.
Female Aedes need blood to make eggs. They mostly bite during the day, especially in the morning and from afternoon into early evening. They rest in dark, sheltered places such as under tables, behind cupboards, among hanging clothes and in room corners, and they usually do not fly far from where they bred. That is why control spraying focuses on the area around a patient's home, and why the fog must reach inside houses.
In short: on spraying day, fog reduces the adults that are flying, but eggs, larvae and pupae in water survive and become the next generation within days.
To see why repeat fogging matters, picture two clocks running at the same time: one for mosquito development and one for the virus inside the mosquito.
Clock one, the new generation: Eggs, larvae and pupae that survived the first round emerge as adults over the following days, up to about a week. None of these mosquitoes were exposed to the first round.
Clock two, the virus inside the mosquito: When a mosquito bites a person with dengue virus in their blood, it cannot pass the virus on immediately. The virus needs time to multiply inside the mosquito, roughly a week or more depending on temperature. After that, the mosquito can usually transmit for the rest of its life.
Put the clocks together and the logic is clear. New mosquitoes emerging after the first round may bite a patient, or an infected person without symptoms, and pick up the virus. A second round about a week later aims to remove this group before the virus inside them is ready to spread. That is the biology behind the repeat-round approach used in many areas. The right number of rounds and the interval in each situation should follow your local health authority and the Department of Disease Control.
Patients have a clock too: After an infected bite, symptoms usually appear within about 4 to 10 days. A new case found a few days after the first round may have been infected before spraying took place. More cases after fogging do not automatically mean fogging failed, but they are another reason to keep monitoring and to complete the rounds.
Aedes mosquitoes carry dengue, chikungunya and Zika. Dengue typically begins with a high fever, headache and muscle aches, sometimes with a rash or small bleeding spots, and some patients become seriously ill around the time the fever drops, which calls for close monitoring. Children, older people, people with chronic conditions and pregnant women need special attention. If fogging stops after one round, a new generation that may carry the virus can spread disease more widely.
Saving chemicals by skipping the second round can look sensible in the short term. But if the outbreak spreads to other villages, the agency will spend many times more on chemicals, overtime, repeated campaigns and staff time pulled from other duties.
When residents do not understand why rounds are repeated, reactions split both ways. Some feel spraying is too frequent and worry about chemicals; others feel it did not work. Both turn into complaints on social media. Good communication before and after each round matters as much as the machine.
Round-based control means several visits for every case. When many cases arrive together, schedules get very tight. If the machine is heavy, hard to start or often broken, staff tire quickly and the second round is postponed or dropped, leaving the job half done.
This table is an illustration to help residents and executives picture the process. The sequence, methods and intervals should be adapted to Department of Disease Control guidance and the advice of your local health authority.
| When | Activity | Goal |
|---|---|---|
| Day the case is reported | Investigate, inform the community, first round within roughly 100 metres of the home | Reduce adults that may carry the virus |
| Following days | House-to-house larva survey and removal with village health volunteers | Break the cycle at egg and larva stage |
| About one week after round one | Second round in the same area | Remove the new generation before it spreads infection |
| Following weeks | Watch for new cases, check larval indices, decide on further rounds | Confirm the outbreak has settled |
Larval index (one line): a figure showing the share of houses or containers surveyed that contain Aedes larvae, used to judge how well source reduction is working.
3 Collect, Prevent 3 Diseases (one line): keep homes tidy so mosquitoes have fewer resting places, collect rubbish that can hold water, and cover or change stored water weekly, to prevent dengue, chikungunya and Zika.
When Aedes control runs in rounds, success depends on a machine that is ready every time the team goes out, not just on day one. The AIROFOG AT35 is a mosquito fogger with these features, according to WHD product information:
WHD also holds ISO and GMP certification, performs 100% QC before delivery, provides after-sales service, technicians and spare parts, and its products meet Thai government equipment standards. That matters for round-based work, because a breakdown between rounds derails the whole plan.
Residents can see fog clearly, so each round is also a chance to communicate. Teams can announce spraying dates, explain why they are coming back, and ask households to remove larvae between rounds. When residents see the team return as promised, trust grows.
For indoor work or places where heavy smoke is unwelcome, agencies may add a ULV cold fogger such as the AIROFOG U240. For wide areas covering several communities, a vehicle-mounted unit such as the AIROFOG UM2 can work alongside.
Teams can adapt this text for loudspeaker announcements or chat-group posts before the second round.
"Dear residents, last week the municipality fogged around the home of a dengue patient. That round reduced the mosquitoes that were flying, but eggs and larvae in jars, buckets and other containers were not affected and will become new mosquitoes within days. Our team will return tomorrow evening for the second round. Please open doors and windows, cover or put away food and drinking water, take children, older people and pets outside during spraying, and empty standing water every week so a new generation cannot grow."
"We used to be asked every time why we had to come back, and we could never answer clearly. Once we started using a life-cycle picture at village meetings and making a loudspeaker announcement before the second round, people understood. Some households even emptied their jars and plant saucers before we arrived. The other lesson is that the machine has to be ready. If it breaks in the week between rounds, the plan we explained falls apart."
Note: This is a composite example based on the typical work of local disease control teams. It does not refer to any specific person or agency.
Fog only affects adults that contact the droplets during spraying. Eggs, larvae and pupae in water survive and become adults within days, and mosquitoes can also arrive from nearby areas. Source reduction must always run alongside fogging.
A widely used approach is to repeat about one week later, matching the time a new generation takes to emerge. The right number of rounds and interval depend on the local situation, so follow your local health authority and the Department of Disease Control.
Using one chemical group for a long time, or at the wrong dose, can raise the risk of resistance. Use the dose on the label and follow health authority guidance on rotating chemical groups. Planned rounds are very different from spraying without a reason.
Thermal fogging is generally done in the early morning or early evening, when mosquitoes are active and the air is calm, so droplets hang longer than in strong sun or wind.
Open doors and windows so fog reaches indoor resting places, cover food and drinking water, move children, older people, anyone with breathing problems and pets away temporarily, and return when staff say it is safe.
Removing breeding sites is the foundation. Once there is a case, however, fogging to reduce adults that may carry the virus is a measure health authorities use alongside it. The two complement each other rather than replace each other.
The AIROFOG AT35 works with water-based and oil-based formulations. Choose products properly registered for public health use and follow the label and relevant guidance. Call 065-556-6294 for details.
AIROFOG AT35: a 100% stainless steel, lightweight thermal fogger for water-based and oil-based chemicals, built for government Aedes control.
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