greenighs":394qo8or said:
But lately I've begun to see more hair algae and even some (shiver) cyano.
Clare, sounds like the sink is starting to fill up and is beginning to regenerate phosphorous. When phosphates start to become regenerated, algae and cyanobacteria can suck them directly out of the sandbed, so even if you can't measure any phosphate in the actual water, you can still be feeding it to the algae growing on the bed.
This is how algae grows on wild barrier reefs, as well. Phosphate in the water on and being brought to reefs is very oligotrophic, and phosphorous is the most limiting nutrient for algae growth. This means that phosphate regenerated by any organic material trapped in reef structure is what the algae rely on to grow. When not enough of this organic material is flushed away, the reef will start to get into trouble with eutrophication and overgrowth of algae. This is essentially what a deep sandbed does. Instead of flushing this organic material away, it allows it to build up.
I imagine your seagrasses are doing well too, they are a climax community that thrives on sediment porewater geochemistry exactly like what a full sink would be providing. Florida Bay had and incredibly high density of seagrass meadow when the sink was right at full.
liquid":394qo8or said:
I see the research and read the all the pages of the above threads and am willing to give it a go.
Shane, definitely keep us in the loops, but I think as long as you keep your skimming and flow floored, you'll be quite content with what you see.
JimM":394qo8or said:
You can also go with a thin (1") layer of course sand/rubble instead of the dsb. Just siphon it once in a while.
Jim, the idea with these systems is actually to keep the detritus in suspension as much as possible. Any sandbed is going to hinder this and act as a trap. Rubble is a step up, but what pieces of live rock actually allow is for bacteria-generated pressure (turgor) to shed any detritus produced into the water column.