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anyone want to buy my extra 3" clear PVC

JohnK

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I bought 5' of 3" clear PVC, I have 34" left over. I paid about $15 per foot with shipping from usplastics.com. I will sell my leftovers for what I paid, $15/foot (roughy, including shipping).

I have 34" left and will sell any length.

This pipe has a blue tint but works great for kalk reactors and other DIY projects. I bought it for a kalk reactor and it works great. Fits regular PVC fittings.

PM if interested,

JK

PS, I can can send pics of a simple and easy to build kalk reactor using this tubing.
 
I might be interested. I'm looking to build a kalk reactor for my small system of about 60 gallons total. How easy is this thing to build really? Can you post more info here about what I'd have to do to make this happen? Where are you located by the way?

Thanks,
Chris
 
The Kalk reactor I made was really easy with the right tools and PVC cement. I'd post a pic but I'm on dial up at home so it would take forever. My design uses a mag 2 in a timer to stir the kalk. Inlet at the top and outlet at the bottom so the pump sucks minimal kalk paste.
Basically here's what I did,

1. I used a 3 " closet flange with closed end for the bottom. (Has slotted screw holes at the bottom)

2. 1/2" acrylic base plate, about 12"x5", drilled and tapped 4 holes to match the flange. Use plastic screws from HD to attach the flange to the base plate.

3. carefully drill 1" holes in the clear PVC near the top and near the bottom allowing room for the fittings (flange and reducer). Carefully use PVC cement to glue in 1/2" female thread x 3/4" slip adapter (really 1" OD), let dry at least 24 hr. (This way the criculation tubes and pump are removable so if you make a mistake somewhere you can fix it, and you have the option to change something if you want to)

*I used a 3"x2" adapter to reduce the top size to make it take up less room and save $ in the large unuion fitting. You could just as easily skip step 4

4. use a 3"x2" reducer and cut a short peice of 2" pipe to attach it to a 2" unuion.

5. take a 2" slip cap, drill and tap 2 holes in the top to fit john guest fittings. (I forget the size but I have the tap). Thread in 2, 1/4" john guest ball valves (from HD, about $6 ea). Attach a length of RO tubing to one of these valve fittings on the inside so that it reaches to the bottom of the reactor when assembled. This will be where the RO comes in, the other valve will go out to the top off pump, drawing water from the very top of the reactor so that there is little to no air space inside the reactor.

6. cement the 2" cap with valves onto the other end of the 2" unuion.

7. attach 3/4" slip elbows inside the tube, over the inner ends of the 1/2" female thread x 3/4" slip adapters you cemented into the clear PVC so as to direct the outlet from the pump down near the bottom, and the top facing up near the top.

8. cement the 3" clear tube into the closet flange on the bottom and the 3"x2" reducer at the top. Let cement dry.

9. assemble 1/2" PVC pipes / elbows / 45's to connect the pump however you like.


Operate by connecting the reactor outlet to a peristaltic pump connected to a level sensor or timer (Timer only works If you have a seperate pure RO top off to make up for any difference). connect the stir pump to a digital timer to run for 1 min a few times a day.

This might sound complicated, but after thinking this plan out, I built mine in about 2 hours at the most. I have all the tools needed and would be happy to help you build one just like mine, or similar if you have some different ideas. Late afternoon/early evening sunday is usually good for me if you wanted to build one when you picked up the tubing if you want to go that route. At a quick guess it would cost you 80-100$ for all the PVC parts, the pipe from me, the john guest valves, and the mag pump. You would still need 2 digital timers or one digital timer and a top off sensor set up, and a perastaltic pump.

There are infinate details that could be different, and lots of other designs for simple kalk reactors but this is just what I did that workes really well. The only "special" tools I used were 2 taps, a 1" holesaw, and that's about it. I made mine with a little over 2' of the clear PVC and it seems to be good for a 120 reef.

I can try to post or e-mail some pics from work Mon if your interested in this design.

Either way (if you want help building a reactor or just want some tubing), I'm in sudbury Ma.

I'm around weekday evenings, and can plan to be around weekends, I also work in framingham so I could also meet you at my work if you just want to get some of the tubing.

jk
 
This sounds like a great project. I'm just starting to familiarize myself with the plumbing section at HD too, so this will be a good learning project. Do you think you could jot down a list of parts I would need to pickup to make this project happen? It would be awesome if you could help me build one like yours, I wouldn't want to try my hand with it (not having much experience with this stuff) and having it leak kalk all over my room. I would assume I could pick up the PVC parts, etc at home depot and then meet up with you one night to assemble it? I'll probably search around for a good deal on a pump, but that can be added after we assemble it I would assume. I'm going to be using it on a total water volume of about 50-60 gal (30g heavily stocked reef, ~15g sump, 20g seahorse) so it probably could be smaller than the one you built if that affects anything.

So if you could consolidate the directions into an easy list of pieces that I can collect that would be great! Thanks for taking the time to give me these details and helping me work on this too.

Thanks so much,
Chris
 
Never get directions from me, I'm worse than mapquest. I gaurentee I'll forget something and leave you stranded somehow :)

I was actually going to suggest meeting at HD if you wanted to take me up on the project, this way we could at least minimize the risk of the forgotten part.

I was picturing the project like this, we meet at HD marlboro or framingham, get the parts then go to my house and build the reaction chamber and internal parts. You could then take this home and let the cement dry overnight, then rig up the pump plumbing the next day (that would be very easy, the parts can all be test fit before cementing and all you would need is a hack saw and the right fittings). We could also finish the project at my house a day or two later if you don't feel comfortable doing it. Either way the cement on the reaction chamber would have to dry overnight to finish without risking leaks.

Since you would probablly want a smaller reactor I would guess a smaller pump would be best but I'm not sure what to reccomend. Maybe a maxi jet (precision marine uses one to stir their kalk reactor so I would expect that it would be reilable), but we might have to micky mouse the connections since the maxi jet doesn't have threaded inlet/outlet.

Also don't forget to add in the perastalitc pump and digital timers into the project cost. There are other ways to add the kalk but I wouldn't trust anything else personally. The perastaltic pump I have cost about $80 at CRA.

I would suggest deciding for sure how you will drip the kalk (perastaltic pump or other),and what stir pump you want to use then let me know and I can figure out the details on assembly. Research a bit before committing the cash since I'm sure somebody would think my design stinks for some reason. Whatever you decide to go with for a final plan I'll be happy to help (I'm on a big DIY kick lately, this would be fun).

jk
 
This sounds great. How does sometime next week sound? I was telling RichConley about building this reactor and he might be interested in joining us and using the rest of your pipe.

Chris
 
That sounds cool.

I have 34" left of the tube so that would make for two reactors with 17" main tubes, that would stand about 23" tall total when assembled. These would work but I'm sure you would want to use signifigantly smaller pumps to circ. I use the Mag 2 because it has standard threaded connections and seems reliable for this application (though I hate the larger mag drives). When the mag does turn on it takes about 30 seconds max for the entire chamber to be slurry, it shuts off and the slurry settles slowly. I'm worried that in a shorter chamber the pump would end up sucking in a lot thicker slurry or just more of it which can't be good long term.

As for as making them, Next Sunday would probablly work for me. Maybe meet up mid afternoon and go from there. The pump selection wouldn't be all that important now because you can plumb the pipe outside of the reactor for the circ pump any you want once the reactor chamber is made.

I'll try to post a pic but I don't think it will work.
 
Sounds like a fun DIY day.

Rich or agent, If you PM me your EM addresses I can send a drawing and pic of my current reactor.

JK
 
Agent and Rich, PM me your E-mails and I should be able to send a drawing and a pic of my reactor.
 
This sunday should work for me. Just have to make sure I'm not scheduled to work. Shouldn't be a problem.
 

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