I am not asking for anything secret about the operations of your technology. I am asking for an explanation of the OUT PUT of the technology, which every single potential client would ask. If you side step those questions as you have here, you are merely being deceptive!   You asked for a fair judgement and now claim anyone who criticizes these wild promises of turning turn coastal desert land into green agriculture... to be helpless, and to check my mental capacity....lol....yet the onus in on YOU to answer the questions posed to you....AND YOU HAVEN"T! Your insulting nature seems to counter your religious fervor. But then that should be expected when you don't have the answers to simple questions opposing  your wild claims.   You HAVE NOT as yet:  Explained how you will get rid of the toxic salt solution left behind, which clearly there will be many tonnes! You HAVE NOT explained how you will produce the vast volumes of water your are claiming which is what is needed for agriculture.  You claim 1m3 / hour ...that's just 10m3 per day if you are relying on room temperature. But you haven't acknowledged that at night time and on cold days, there will be no evaporation... it is a fact, unless you are using an alternate heat source or energy transfer to increase pressure. How big will a plant have to be to produce the volumes of rainfall required to raise a crop in a desert climate, exactly as rainfall would be capable of? As in the desert climate, present day irrigation is delivered at 1 meter (100cm) per square meter of crop area to mature a crop of wheat.  That's 10,000 cubic meters per hectare. A typical irrigated field in the Middle east is 1000m across in a circle. That is equivalent to 785,000 square meters and you would have to produce 785,000 cubic meters of water for that one field of grain. Since your sample unit can only produce 10m3 per day....how large would it have to be to produce sufficient rainfall for 785,000m3 in just 90 days?  And that's just ONE FIELD!  If you can't answer that convincingly then your premise is bogus as you haven't considered the scale or water supply required by agriculture.  The fact that YOU can't answer these questions, sheds light on your inability to present a credible alternative to anything more than present day desalination for potable water.

Published by Mervyn Byron

I am not asking for anything secret about the operations of your technology. I am asking for an explanation of the OUT PUT of the technology, which every single potential client would ask. If you side step those questions as you have here, you are merely being deceptive!  

You asked for a fair judgement and now claim anyone who criticizes these wild promises of turning turn coastal desert land into green agriculture... to be helpless, and to check my mental capacity....lol....yet the onus in on YOU to answer the questions posed to you....AND YOU HAVEN"T!

Your insulting nature seems to counter your religious fervor. But then that should be expected when you don't have the answers to simple questions opposing  your wild claims.  

You HAVE NOT as yet:  Explained how you will get rid of the toxic salt solution left behind, which clearly there will be many tonnes!

You HAVE NOT explained how you will produce the vast volumes of water your are claiming which is what is needed for agriculture. 

You claim 1m3 / hour ...that's just 10m3 per day if you are relying on room temperature. But you haven't acknowledged that at night time and on cold days, there will be no evaporation... it is a fact, unless you are using an alternate heat source or energy transfer to increase pressure.

How big will a plant have to be to produce the volumes of rainfall required to raise a crop in a desert climate, exactly as rainfall would be capable of?

As in the desert climate, present day irrigation is delivered at 1 meter (100cm) per square meter of crop area to mature a crop of wheat.  That's 10,000 cubic meters per hectare. A typical irrigated field in the Middle east is 1000m across in a circle. That is equivalent to 785,000 square meters and you would have to produce 785,000 cubic meters of water for that one field of grain. Since your sample unit can only produce 10m3 per day....how large would it have to be to produce sufficient rainfall for 785,000m3 in just 90 days?  And that's just ONE FIELD!  If you can't answer that convincingly then your premise is bogus as you haven't considered the scale or water supply required by agriculture. 

The fact that YOU can't answer these questions, sheds light on your inability to present a credible alternative to anything more than present day desalination for potable water.