Can someone identify what my Sps frags are doing?

WVReefJunkie

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They are losing color, and it looks like a dull white color
20210206_091434.jpg
. It doesnt seem to me that the tissue is gone fully from the infected areas, doesnt look like a brite white like total tissue necrosis.
 
I have growth, and the corals have been in the system for a couple months. Tank is 6-9 months old.
 
Par 250-350
Temp 78
Alk 8.4
Cal 430
Mag 1400
Nopox Was 16ML, now at 7.5 ML
P04 .018
N03 20ppm

My P04 was bottoming out, so I cut the Nopox in half and removed GFO.
I did put a cup of Carbon .08 online, because of yellow pigments in my water.
I do have really small flatworms, but I dont think they are the acro eating ones, I have added a sixline and yellow coris about a week ago.
 
My guess is your frags are bleaching from to low phosphate. SOme of these links below are thick reading but here's some stuff to follow up on if you like. I would be feeding your fish small amounts several times a day if convienent and if those are the only two fish I would QT more and add them. Also, even though we can't test for all the forms in our reefs I would start thinking in terms of total nitrogen (particulate, organic and inorganic) and total phosphorus (particulate, organic and inorganic) and total carbon (particulate, organic and inorganic). I would also recommend Forest Rohwer's "Coral Reefs in the Microbial Seas".

For starters here's what a couple of the foremost researchers say abouot nutrients on reefs:

"When I see the colors of some of these low nutrient tanks, I can't help but be reminded of bleached coral reefs. It should therefore not come as a surprise that feeding corals in such systems becomes a very important component in these systems. Though reefs are often catagorized as nutrient "deserts" the influx of nutrients in the form of particulates and plankton is quite high when the total volume of water passing over a reef is taken into consideration.

Our crystal-clear aquaria do not come close to the nutrient loads that swirl around natural reefs. And so when we create low-nutrient water conditions, we still have to deal with the rest of a much more complex puzzle. Much like those who run their aquarium water temperature close to the thermal maximums of corals walk a narrow tight rope, I can't help but think that low-nutrient aquariums may be headed down a similar path." Charles Delbeck, Coral Nov/Dec 2010, pg 127

"Imported nutrients are usually transported to reefs from rivers; but if there are no rivers, as with reefs remote from land masses, nutrients can only come from surface ocean circulation. Often this supply is poor, and thus the vast ocean expanses have been refered to as "nutrient deserts". The Indo-Pacific has many huge atolls in these supposed deserts which testify to the resilience of reefs, but the corals themselves may lack the lush appearance of those of more fertile waters. Many reefs have another major supply of inorganic nutrients as, under certain conditions, surface currents moving against a reef face may cause deep ocean water to be drawn to the surface. This "upwelled" water is often rich in phosphorus and other essential chemicals." J. E. N. Veron "Corals of Austrailia and the Indo-Pacific" pg 30




Phosphate Deficiency:
Nutrient enrichment can increase the susceptibility of reef corals to bleaching:

Ultrastructural Biomarkers in Symbiotic Algae Reflect the Availability of Dissolved Inorganic Nutrients and Particulate Food to the Reef Coral Holobiont:

Phosphate deficiency promotes coral bleaching and is reflected by the ultrastructure of symbiotic dinoflagellates

Effects of phosphate on growth and skeletal density in the scleractinian coral Acropora muricata: A controlled experimental approach

High phosphate uptake requirements of the scleractinian coral Stylophora pistillata

Phosphorus metabolism of reef organisms with algal symbionts

Sponge symbionts and the marine P cycle

Phosphorus sequestration in the form of polyphosphate by microbial symbionts in marine sponges
 

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