Follow along with the video below to see how to install our site as a web app on your home screen.
Note: This feature may not be available in some browsers.
I'll defer to nano-sapiens' superior knowledge and experience, I've never heard of feeding MORE in order to make nitrates LESS, but I'm certain I have less experience than they. Otherwise I would have suggested feeding less, LOL.
.

I've been in the same boat as the OP, but with nitrates of 30+ in my 12g tank with just a small fish and a cleaner shrimp, very light feeding and minimal detritus removal. Took a while (and lots of reading) to appreciate that the bacteria living in the substrates need to have a steady source of carbon to function effectively and complete the nitrogen cycle all the way through. A gummed up substrate impedes flow/nutrients that the bacteria need. Of course, too much food all at once can turn a tank into a eurtrophic mess if export is not sufficient to balance the system, so input shouldn't be excessive, either.
Interestingly, the same conditions that benefit substrate nitrifying/denitrifying bacteria (they live in very close 'coupled' proximity to each other) has also kept phosphate (inorganic and organic forms) in check, too. The mechanism at work here is less clear, but I believe that my daily substrate stirring to release detritus /bacteria into the water column as a food source means that phosphate is assimilated into organism tissue for metabolism/growth and also causes a repopulating of the substrate bacterial communities...which then uses/sequesters phosphate in a continuous dynamic cycle.
Sounds good, but darn hard to prove![]()
You've got my ear, the logic makes sense. You've solidified my thinking that I need to stir my substrate more, regardless of whether it's accompanied by a water change. I'm always amazed at how much better my tank looks a day after stirring up everything. I got in the habit of only worrying about that during a water change, but I'm rapidly becoming convinced of the benefit of doing it far more frequently, making it a separate event from water changes.
O4-X was developed for.
O4-X provides stoichiometricaly balanced levels of several carbon compounds, which we found encourage heterotrophic denitrifiers upon the DNRA bacteria and by that it prevents the accumulation of ammonia or nitrite. NO3
O4-X also provides 7 enzymatic co-factors to insure complete denitrification to nitrogen gas and prevent the probability for N2O and NO formation.
O4-X, encourages the proliferation of heterotrophic denitrifiers that have the biological capability to synthesize poly-p in anoxic conditions (that can be called PHB) upon other PHA bacteria by maintaining balanced reduction of both nitrate and phosphate. Rapid reduction of nitrate over phosphate will lead to a rapid proliferation of anaerobic PHA bacteria and cyano-bacteria outbreak that can assimilate atmospheric nitrogen to thrive.

I agree that while some of the assertions may or may not be valid, they do provide a direction to investigate. The information regarding PHAs is of particular interest to me as I would like to gain a more complete understanding of how phosphate (in all it's forms) is cycled in my aquarium.

That's a good point, although I'm not sure how one would go about investigating without it being a big research project identifying the mass and turnover of different bacteria species growing in our tanks.![]()

While I do not claim to be any sort of microbiologist, that write up seems lacking in several respects. Notably, they have no mention of simple aerobic growth of heterotrophic bacteria that consume organics and simply use the N and P they take up to grow and multiply. All of the processes they mention result in what I'd call unusual endproducts for the N and P, and not simply increased biomass.
Good point, but I wonder if they are just assumed that the reader would have an understanding that organism growth takes up N and P?
.

Maybe, but IMO, the average reefer reading the above passage would assume the bacteria mentioned predominate the consumption of N and P in a reef tank. And they might dominate, under at least some circumstances, but I've never seen any evidence on what processes are really taking place in reef tanks with carbon dosing.![]()
Sorry Randy but compared to many explanations of how things work in our tanks and the ocean, that writeup is quite good.
'

To expect companies to share ALL of their ingredients is folly, you wouldn't if you produced something that made a huge leap in the hobby.
One big factor that you omit is the very basis of the liquid. Vodka/acetic acid vs methanol. There's your proof, it's not the same. There is some acetic acid in there, but I think you're still suffering from the mindset I once did, thinking it's all "just carbon dosing". And after having used it and paid attention to the results, it's not at all JUST carbon dosing. It contains carbon sources yes, but different from the current one's and it also contains things that other carbon dosing solutions just can't match.

