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The Important Role Of Protein Separator In Ocean Museum Project
- Jun 09, 2017 -

An aquarium or aquarium is an essential element of a modern metropolis. The aquarium project requires a very complex subsistence system to deal with the sea. Its profitability and dynamic are two characteristics. All marine organisms need the support of recycled water treatment equipment at all times. Dynamic water quality changes also need to be monitored by instrumentation at all times. As a typical representative of the protein separator, marine aquarium equipment plays a very important role here.

Generally, the aquarium is composed of a domestic pond, a performance pool, a water tank and a display tank. The involved systems are power systems, filtering systems, sterilization systems, lighting and weak current systems. All systems are organically combined into a whole, coordinated and controlled.

Take an ordinary seal show, pool water treatment, because domesticated seals are quite precious, so the water (sea water) they live in is very strict. Not only required temperature, PH, suspended solids and other indicators to be standard, but also through strict ozone disinfection. In the filtration process, it is far from enough to filter sand tanks. The filter sand tank can only filter suspended solids larger than 100 microns in diameter, and smaller suspensions need protein separators to process them. If the water does not pass through these physical filtration procedures, excessive suspension will scale on the surface of the biochemical filter material and affect the membrane of the biochemical bacteria.

Protein separator is not only equivalent to a very precise physical filter, but also because it is in the process of aeration, so after the treated water, dissolved oxygen is relatively high. Filtering out organic suspended matter in most water, so that they do not have the opportunity to break down into nitrogen containing toxic substances, and thus pave the way for the next step of biofiltration. At the same time, because of its high dissolved oxygen content, it also creates a high oxygen environment for nitrifying bacteria, which is more likely to breed.

Aquarium systems should use ozone filters carefully if biological filtration systems are added. Residual ozone may kill biochemical bacteria and cause biofiltration to fail. Therefore, either stagger the use time (interval should not be less than 2 hours, because the half-life of ozone is not greater than 1 hours), or install ozone adsorption device at the back of the ozone machine. At present, more adsorption devices are used for adsorption of residual carbon on activated carbon.

There is a very important problem in the marine engineering project, which is the problem of the spare equipment. If the water pump in the long-term uninterrupted work, the failure rate is relatively high, so the pump is necessary. Others, such as activated carbon in the filter sand tank, need to be replaced after saturation. These consumables should be added to the budget during the pre planning period.