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Buckeye Field Supply

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Everything posted by Buckeye Field Supply

  1. The beauty of the Filmtec brand membranes is that they are rated at a lower water pressure (50 psi) than the other brands (60 to 65 psi). The factory spec rejection rates of the Filmtec membranes commonly used in this hobby are: 50 gpd: 98% 75 gpd: 98% 100 gpd: 90% The membranes will perform better at higher pressures, but you don't want to exceed the maximum working pressure of any component in your system, so we typically recommend that folks with a booster pump dial the pump in at no more than 90 psi. Believe it or not, the weak link in the systems (in terms of standing up to high pressure) is often the clear housings. Russ
  2. You don't need to add a second membrane if all you are looking to do is reduce waste water. ANY membrane, or series of two or more membranes can be set up to run at any ratio of waste water to purified water. The 4:1 ratio we are all familiar with is a recomendation designed to protect the life span of the membrane. The ratio is controlled by your flow restrictor. Change the restrictor if you want a lower ratio. You don't need to add a second membrane to do this. Russ @ BFS
  3. Assuming you are on city water, and you don't have chloramines: a 1 micron sediment filter a 0.6 micron 20,000 gallon carbon block and a refillable DI resin cartridge with color changing resin Russ
  4. Thanks for the support folks. Filmtec 50 and 75 gpd membranes are spec'ed at 250ppm feedwater at 77 degrees F and 50 psi, and both have a stabilized salt rejection rate of 98%. The Filmtec 100 gpd is spec'ed at 250 ppm feedwater at 77 degrees F and 50 psi, and has a stabilized salt rejection rate of 90%. We have a 150 gpd membrane now that is spec'ed at 250 ppm feedwater at 77 degrees F and 60 psi, and has a stabilized salt rejection rate of 98%. If you don't have conditions that match the factory spec's (few do), we have a calculator on our site that allows to to calculate how much your membrane should produce given your conditions (temperature and pressure). Russ
  5. A good rule of thumb is to replace your sediment filter and carbon block after six months. A more precise way to maximize the useable life of these two filters is to use a pressure gauge to identify when pressure reaching the membrane starts to decline. This is your indication one or both of the filters is beginning to clog. Also be cognizant of the chlorine capacity of the carbon block. The Matrikx+1 (“Chlorine Guzzler”) for example will remove 99% of chlorine from 20,000 gallons of tap water presented at 1 gpm. Original equipment suppliers commonly provide carbon cartridges rated at 2,000 to 6,000 gallons. Regarding your RO membrane and DI resin, use your TDS meter to measure, record, and track the TDS (expressed in parts per million) in three places: 1. Tap water 2. After the RO but before the DI 3. After the DI. The TDS in your tap water will likely range from about 50 ppm to upwards of 1000 parts per million (ppm). Common readings are 100 to 400 ppm. So for sake of discussion, let's say your tap water reads 400 ppm. That means that for every million parts of water, you have 400 parts of dissolved solids. How do we go about getting that TDS reading down to somewhere near zero? If you do some experimenting with your TDS meter, you'll note that your sediment filter and carbon block filter (collectively called prefilters) do very little to remove dissolved solids. So with your tap water at 400 ppm, you can measure the water at the “in” port on your RO housing and you'll see its still approximately 400 ppm. The RO membrane is really the workhorse of the system. It removes most of the TDS, some membranes to a greater extent than others. For instance, 100 gpd Filmtec membranes have a rejection rate of 90% (i.e., they reject 90% of the dissolved solids in feed water). So the purified water coming from your 100 gpd membrane would be about 40 ppm (a 90% reduction). Filmtec 75 gpd (and below) membranes produce less purified water (aka “permeate”), but have a higher rejection rate (96 to 98%). The life span of a RO membrane is dependant upon how much water you run through it, and how dirty the water is. Membranes can function well for a year, two years, or more. To test the membrane, measure the total dissolved solids (TDS) in the water coming in to the membrane, and in the purified water (permeate) produced by the membrane. Compare that to the membrane’s advertised rejection rate, and to the same reading you recorded when the membrane was new. Membranes also commonly produce less water as their function declines. After the RO membrane, water will flow to your DI housing. DI resin in good condition will reduce the 40 ppm water down to 0 or 1 ppm. When the DI output starts creeping up from 0 or 1 ppm to 3 ppm, 5 ppm, and higher, you know that your resin needs to be replaced. Sometimes people complain that their DI resin didn't last very long. Often the culprit is a malfunctioning RO membrane sending the DI resin “dirty” water. This will exhaust the resin quicker then would otherwise have been the case. Sometimes the problem is poor quality resin – remember that all resins are not created equal! RE Chloramines: Carbon does not remove chloramines - but given adequate contact time, the carbon with split the chloramine into chloine and ammonia. The carbon will take care of the chlorine, and ammonia needs the be handled by later stages in the system. Re where to order a system from... Well, we are a little biased on that topic! Russ @ BFS
  6. The 1/4" plastic tubing for your RO system simply slips into the quick connect fitting - stick it in and you're done. You'll not find these at a hardware store. We've pm'ed you a source. Russ
  7. If you are talking about a fitting that takes you from garden hose threads to a quick connect for 1/4" tubing, those are called "hose bib adapters" and would take you all of about 30 seconds to replace - very easy.
  8. Headless Donkey - now THAT'S a username! How hard? If you are comfortable working around strong acids and bases, and you use separate bed resins, it's not that difficult. Unless you have a fair amount of resin to recharge however, I would think it more trouble than it's worth, given the price of refillable DI cartridges and resin refills. Russ
  9. Hi folks - We just discovered your board and this is our first post. We'll keep our eyes open for people needing help with RO and RODI / water purification issues. Russ @ BFS
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