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Posted on June 1st, 2009 by MIKE SIPE in Tilapia
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What is the VALUE OF TILAPIA AQUACULTURE’S GENE LINES AND TECHNOLOGY

I am convinced that  all of the work I will speak of, I have done MYSELF  and that all of the statements made are therefore as  true as possible.

We can help set up a 4,000 square foot pond with a u-tube and a deep bottom drain to siphon out the algae.  The Algae which falls to the bottom can be processed to make bio-diesel.  It can be siphoned out by a special collector located at the bottom, of a pond with an oval bottom in the shape of a really big giant egg shell that was cut in half the long way and placed in the hole excavated for it.  The Algae collector would be placed in the lowest par of the giant egg shell and would suck out the accumulated dead algae off the bottom and extract the water and send what is left to the bio-diesel processor to make BIO-DIESEL from.

The density of algae cells in terms of the number of cells per cubic centimeter can be  used in a number of methods.  The density doubles every 30 to 40 minutes with a sunlight  intensity and the presence of enough fertilizer made up of Nitrogen, potassium and phosphorous and assorted micro elements.  A number of conditions need to be met for encouraging the maximum amount of algae cells to be present throughout the water column.

material and cages to grow the fish.

My estimate of the number of pounds of tilapia that will be available to market is 1,000 pounds per week every week and the gallons of BUY OUR U-TUBE TECHNOLOGY, DISSOLVE CO2 IN WATER, GROW ALGAE & TILAPIA & BIO DIESEL FOR $.04 PER LB+REDUCE CO2 EMISSIONS BY TWICE WEIGHT OF CROPS

I am convinced by all of the work I have done that all of this statement is true, so, What do you think this is worth to the world if it is all correct?

All that has to be done to prove this is to set up a 5,000 square foot pond with a u-tube and a deep bottom drain to siphon out the algae (BIO DIESEL) falling to the bottom each day and a processor for the BIO DIESEL

BUY OUR U-TUBE TECHNOLOGY, DISSOLVE CO2 IN WATER, GROW ALGAE& TILAPIA &  BIO DIESEL FOR $.04 PER LB+REDUCE CO2 EMISSIONS BY TWICE WEIGHT OF CROPS

I am convinced by all of s the work I have done that all of this statement is true, so, What do you think this is worth to the world if it is all correct?

All that has to be done to prove the above is to set up a 5,000 square foot pond with a u-tube and a deep bottom drain to siphon out algae (BIO DIESEL) falling to the bottom each day and a processor for the BIO DIESEL and the daily yield of BIO DIESEL material  will be around 3000 gallons and should yield about 500 gallons of fuel a week, (worth around $1.00 a gallon or a total of $500 a week)  and the pounds of fish available for sale per week will be approximately 1,000 pounds a week (worth about  $2.00 per pound or a total of $2,000 per week.)

So the projected Income from the Tilapia and the BIO DIESEL is approximately $2,500 per week.  The projected cost for building one pond with a greenhouse  and a u-tube and placement of appropriate automated control equipment and BIO DIESEL processing equipment , and cages is an up front cost of approximately $50,000. for a single pond and the feed, management, materials is approximately $.30 per pound.  Since a single management team of 3 could service and overlook a facility having around 12 ponds at each facility, the total upfront facility cost for 12 tilapia/bio diesel ponds and equipment should run around $500,000 per POD.

Each pod should produce approximately 6,000 gallons(worth about $2,00 per gallon or a total of $12.000.00 worth of bio diesel) a week and 1,200 pounds of tilapia per week worth approximately $2.50 per pound or a total of $3,000.00) per week. So the projected yield of a pod is approximately $15,000 a week or $780,000 per year.

So I believe the profitability is very strong and the environmental contributions of Capturing well over a half million pounds of co2 per pod per week is a real consideration.  Perhaps We could get some funding based on that.

Terry, do you have any contacts that might be interested in creating a continuous supply of  both bio diesel and delicious pennyfish fillets.  People could then buy bio diesel to get to a restaurant where they can buy delicious supper  “pennyfish” so we will earn money from them twice,  ha! ha!

Our short proposal is above.

The following is a statement by Mike & Jan Sipe

“We worked on this u-tube technology through 5 pilot projects costing well over $3,000,000{in today’s currency} continually improving the technology. over 40 years.

Mike & Jan sipe, We hope to share this technological break through with persons who are capable of appreciating the immense amount value accrued as a result of our attention and work . We have also developed a several new gene lines by continuous selection, which are now (kicking ass) in the actual meat production.  One of these gene lines when crossed with our red or orange or black gene lines produce orange pennyfish, red pennyfish, and black pennyfish.

Growth test have been done in a warm lake in panama that show our pennyfish beat the scales off of other strains of tilapia{sex reversed t. nilotica from Israel,and yy produced by.  The pennyfish produced over double the meat per pound of whole fish grown.  The pennyfish did this for the same cost per pound of whole fish as the nilotica strains. Our pennyfish fillets were grown for less than half of the nilotica fillet production costs.

We hope to share these breakthroughs (which only Jan and I have made) in cost of production of algae, tilapia and bio diesel with people who can appreciate our accomplishments the respect and value due to us.

Related Posts

  1. Yearly production of tilapia in ponds ranging from 1 acre to 1/30th of an acre.
  2. MIKE SIPES SIMPLE ONE ACRE INTENSIVE SYSTEM or “SIPE’S SIMPLE SYSTEM”
  3. OXYGEN & AQUATIC LIFE
  4. NEW BLACK DIAMOND PENNYFISH
  5. Advantages of Hybrid Pennyfish (Tilapia) Culture

About the author

MIKE SIPE

I am 70 as of August 4th 2010.  I have spent over 41 years Breeding tilapia, improving tilapia gene lines creating Red tilapia, and improving the body form of "pennyfish" from 24% in 1963 to 50% in 2009. I have pioneered and installed high oxygen intensive aquaculture production  systems.   We (TILAPIA AQUACULTURE INTERNATIONAL) built the first u-tube used to control oxygen and co2 levels in aquaculture.   We can dissolve up to  800 parts per million parts of water and thereby control oxygen levels in growing situations. ( THIS IS WHAT MAKES OUR INTENSIVE CULTURE SYSTEM WORK SO WELL) We have designed hatchery systems to produce thousand of pennyfish fingerlings a day using breeder cages.   We have helped to establish the production of over two billion pounds per year of our tilapia in over 50 locations in North America, Mexico, South America, Central America, Kenya Africa, and Saudi Aribea in the Middle east.  Our goal is to help people with the production of tilapia necessary to *feed everyone* in the world a well balanced nutritious* diet, and to restore the forest of the world. If you wish to talk with me my phone number is 877 217 7006. Please feel free to call me during normal Eastern daylight times. At this particular time I believe that I have more hands on experience in building , designing and running u-tubes to lower the cost and risk for growing all kinds of Aquaculture by 10% - 20% and the cost of dissolving oxygen in an intensive system by 50- 85%. The safety issue is by far the most important issue because having complete control over the oxygen level in a tank helps to assure he safety of the crop and the cost. Another area where I have extensive experience is on what is required to create new characteristics in a gene line. We can take a tilapia that is black and turn it to a brilliant red or take a gene line and select for various body form changes or various internal genetics needed needed to manufacture certain expensive biochemical products..such as Heparin which is an important molecule in haemoglobin that plays a role in clotting blood. A good breeding and selection system could virtually increase the production of almost any biological chemical system in the tilapia.

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