Timed air blasting of reef?

This seems like a good topic. I understand the issue with salt spray. I just recently took the lid of my tank off and hoping it doesn't affect my lights with the spray. So far so good. I am wondering if anyone thought of trying this in the sump by the skimmer? Would it have the same affect on the water column in the sump?
 
This seems like a good topic. I understand the issue with salt spray. I just recently took the lid of my tank off and hoping it doesn't affect my lights with the spray. So far so good. I am wondering if anyone thought of trying this in the sump by the skimmer? Would it have the same affect on the water column in the sump?

I expect that if the bubbles are not brushing against the corals, it is not much different than what a skimmer already does. :)
 
So as someone that is currently doing this. My question would be. If this does prove to not only be beneficial long term but not detrimental to things we don't yet understand. Im wondering if its best to do this in the 4-8hr increments that folks are currently using or if it would be better split up say 10-? min every hour
 
So as someone that is currently doing this. My question would be. If this does prove to not only be beneficial long term but not detrimental to things we don't yet understand. Im wondering if its best to do this in the 4-8hr increments that folks are currently using or if it would be better split up say 10-? min every hour

I'm not sure how one could know except by trying it. :)
 
I'm Skeptical to say the least. 99% of our fixture failures are due to salt creep and salt damage. Adding a bunch of bubbles only increases the salt air detrimental to any thing subject to corrosion.

Proper Flow...I mean FLOW and Excellent skimming should do the same.

This could also damage sponges and sea squirts in the cryptic zones as air in contact with their tissue will cause tissue necrosis...

Just food for thought

Bill
I have a lid on my tank. No increased salt spray here.
 
"C. Maximize aeration. A high oxygen level drives hydrogen sulfide oxidation, and high aeration will drive some off as volatile H2S gas."
- from Hydrogen Sulfide and the Reef Aquarium

This link is broken. I would like to read the article.

Would someone please provide a working link to this article?

SCRATCH THAT REQUEST.

I found it in another thread by searching on:
Hydrogen Sulfide and the Reef Aquarium
 
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I decided to give it a try. All I can really say is that my fish looked like they were really enjoying the bubbles.

 
Anyone done this with sponges?
 
This just came across my Facebook newsfeed:


Introducing air bubbles to water may help protect coral reefs, a new study has found. Researchers found that bubbling may boost the transfer of carbon dioxide between the water and the atmosphere.
(Photo : Bruno Vincent | Getty)

Simply blowing air bubbles in the seawater may help protect coral reefs, a new study has found.

What seems like a fun activity may protect the reef from the ocean waters, which are increasingly becoming acidic due to human interventions that stripped off carbon dioxide from marine environments and transport it into the air.

Ocean acidification pose hazards to different marine species, but the impact is much higher in those that use calcium carbonate to arrange their shells and skeletons.

In a new study by Stanford University, researchers showed how introducing air bubbles through seawater for a couple of hours in the morning can help boost the transfer rate of carbon dioxide between the air and water. The said increase amounts to 30 times faster than the natural rate, leading to a notable decrease in greenhouse gas concentrations in local marine environments.

Study co-author Rob Dunbar says the good thing about bubbling is that it involves an engineering method that brings the coral reefs close to an environment that existed for them 100 years ago.

Bubbling Benefits

The study started when lead author David Koweek was studying natural chemical cycles of coral reefs and other ecosystems in shallow waters. He noticed that carbon dioxide levels follow a constant pattern of highs and lows within a day. Carbon dioxide levels decline when the sun is out and photosynthesis among some marine species takes place. During the night, however, carbon dioxide levels shoot up when plants and animals respire and the process of photosynthesis takes a dip.

With this, Koweek wondered if it may be feasible to stimulate coral development by decreasing the levels of carbon dioxide in the water during predawn through bubbling – taking the gas out of the water and transport it into the air.

The team then conducted a bubbling experiment wherein they placed a sensor-laden water tank at a marine station. Every night, they would put bags of giant kelp into the tank.

The kelp is left to respire throughout the night thus, adding more carbon dioxide into the water and spurring gas buildup.

Every morning, the team would remove the kelp and bubble up the carbon dioxide-filled seawater to see if the intervention could lower the gas concentrations.

Indeed, the team observed that bubbling can boost the transfer of carbon dioxide from the water to the air 10 to 30 times faster than natural circumstances, all within the short span of two hours only.

Doing It The Right Way

Experts say bubble stripping, if timed in the right way, could have the potential of becoming an effective measure for taming down activity in coastal environments today and in the future.

Study co-author Robert Dunbar says strategic implementation of little bubbling can have vast effects, taking note of the unidirectional water flow that exists in majority of Pacific coral reefs.

“If you operate your bubbler in an area that is upstream of a large section of coral, you could reduce CO2 levels for an entire reef,” he says.

Corals are not the only ones. Bubbling may also have beneficial effects on other marine ecosystems such as seagrass meadows, mangroves and salt marshes that also face varying levels of carbon dioxide from day to night.

The study was published in the journal Environmental Science & Technology on March 18.

Our editors found this article on this site using Google and regenerate for our readers for better reviews.
 
To be fair, all that study did was show that aeration keeps the pH minimum from getting as low as it otherwise would. We already know that. That also why we do many things, like have reverse light cycles for refugia or dose limewater at night.

There was no actual study of corals or the effect of bubbles on them.
 
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