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Membrane Product Description 500LPH 3000GPD RO
System RO Plant working cycle:Step 1: Water is fed to the raw
water pump into the sand filter, which removes suspended solids
from water.Step 2: The water then flows to the activated carbon
filter for dichlorination.Step 3: Water is further passed to
a micron cartridge filter for fine filtration.Step 4: Water is then
pumped by a high-pressure pump into the RO membranes.Step 5: Pure
water passes through the membranes, while most dissolved solids do
not pass through the membrane.Step 6: The pure water then passes
through the RO product line, and the contaminated water passes
through the reject line or recycle line. What does a reverse
osmosis system remove?A reverse osmosis system removes dissolved
solids like arsenic and fluoride through the RO membrane. An RO
system also includes sediment and carbon filtration for a broad
spectrum of reduction. The carbon filters in an RO system remove
chlorine, bad taste, and foul odors, and the sediment filter
removes dirt and debris.Does a reverse osmosis system
remove…Fluoride?------Yes.Salt?------ Yes.Sediment?------
Yes.Chlorine?------ Yes.Arsenic? ------Yes.VOCs? ------Yes.Herbicides
and pesticides?------ Yes.Many other
contaminants? ------Yes. The contaminants listed are some
of the most popular ones treated with an RO system, but the system
also removes a slew of other contaminants.Bacteria and
Viruses?------ No. If your water comes from a city
treatment plant, then it should already be microbiologically
safe. Reverse osmosis may remove some bacteria, but bacteria could
grow on the membrane and potentially enter your water supply. To
remove living organisms and viruses, we recommend UV
disinfection. Product Parameters Reverse Osmosis System
is built of five basic parts: 1) Pressure RO
Vessel & MembraneObviously, a reverse osmosis system wouldn't
get very far without membrane elements. The proteins that make up
membrane elements vary depending on the kind of intake water and
ending clarity. There are membrane elements for brackish
water, seawater, hospital-grade disinfection, and
membranes designed to remove specific contaminants to name a few.
If there is a water treatment need, you can be sure there is
certainly a membrane element for the job. The size of the task
(municipal, commercial, or industrial) will determine the size and
number of reverse osmosis membranes in a system. There
can be anywhere from a single two and a half inch membrane (like in
an under-sink reverse osmosis water system) to hundreds of eight
inch membranes all working together (a typical reverse osmosis
plant).2) SS FrameThe best way to make your reverse osmosis
system as durable as possible is with a powder coated, carbon steel
frame to mount all of your components on. It's resistant to the
elements, designed for the heavy vibration of high-pressure pumps,
and mounts to the ground to ensure that it will last a
lifetime.3) Cartridge FilterMost reverse osmosis water systems
come with a cartridge filter to ensure that no particles large
enough to damage the membranes come anywhere near them. This
cartridge is usually a five micron spun polypropylene filter, but
can vary upon request. The cartridge comes in a durable casing that
can handle the pressure from the main feed or booster
pumps.4) Reverse Osmosis High Pressure PumpWithout a
high-grade pump, the rejection rate for a reverse osmosis system
isn't viable in most commercial or industrial settings. It is vital
to the system to ensure that the pump is matched to the membrane
quantity and size appropriately. Usually, the higher the horsepower
on the intake pump, the better the rejection and recovery rates of
permeate.5) Control PanelLastly, the reverse osmosis system
has to be controlled by a human operator. At Pure Aqua, we use
advanced PLCs or a solid-state microprocessor depending on how
advanced the controls need to be. The controls can also be used to
manage multiple systems simultaneously, effectively making a
one-man water production plant.A reverse osmosis system can have a
number of other components built onto or into it as extra
components as well. The entire skid can be built into a
containerized system, for example, so your Desalination by RO
System is always on the go. There are a number of supplemental
skids that can be attached to an RO System as well, for tasks like
membrane cleaning, pretreatment, chemical dosing, and a number of
other jobs as necessary. Packaging & ShippingProject
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