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Fire niveauer af Miljøvenlige, Lavpris, Mindre Kendte Vand Teknologi til Fremtiden : Four Types of Forgotten Water Related Low Cost Clean Tech for Commercial & Industrial Applications

Tværs af brancher og videnskab felter, der tidligere ikke har accepteret teknologier, hvoraf nogle har været meget brugt til kommercialiserede applikationer, er gradvist ved at blive re-bekræftet af mainstream vestlige akademikere. Den næste fase er, hvor de vestlige mainstream medier af forskellige niveauer (fra nyheder, videnskab rapporter til Wikipedia) kommer til at udtrykke disse bekræftelser. / Across industries and science fields, previously not accepted technologies, some of which has been widely used for commercialized applications, are gradually being re-confirmed by mainstream Western academics. The next phase is how Western mainstream media of various levels(from news, science reports, to Wikipedia) are going to express these confirmations.

Tværs af brancher og videnskab felter, der tidligere ikke har accepteret teknologier, hvoraf nogle har været meget brugt til kommercialiserede applikationer, er gradvist ved at blive re-bekræftet af mainstream vestlige akademikere. Den næste fase er, hvor de vestlige mainstream medier af forskellige niveauer (fra nyheder, videnskab rapporter til Wikipedia) kommer til at udtrykke disse bekræftelser. / Across industries and science fields, previously not accepted technologies, some of which has been widely used for commercialized applications, are gradually being re-confirmed by mainstream Western academics. The next phase is how Western mainstream media of various levels(from news, science reports, to Wikipedia) are going to express these confirmations.

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• 35’Vacuum Flash Vaporization/Vacuum Dis<strong>til</strong>lation<br />

Effect Accepted,or Rejected by Western Mainstream(WM)<br />

• ■ 35’<strong>Low</strong> Pressure/Vacuum Flash Vaporization/Vacuum Dis<strong>til</strong>lation/Flash evaporation: Can be<br />

linked to 34’Ice/Vacuum Freezing. Also widely used but rare stand alone or major use in:<br />

• Accepted: K2(energy saving): Quick evaporation <strong>of</strong> heavy very fine spray Air Fogging,(Turbine<br />

Inlet Air Cooling: TIAC) at high ambient temperature air intake <strong>for</strong> gas turbine or HVAC fan etc,<br />

can cause sufficient cooling to increase air density to save 10%+ range energy use/production<br />

cost even <strong>for</strong> large systems(Johnson Controls, Kiri no Ikeuchi, Araner+). Std process in advanced<br />

nation's new system but under u<strong>til</strong>ized in old systems.<br />

• M2(desalination): Easily built in as part <strong>of</strong> very low heat recovery in existing factory/generator<br />

station etc. Often private use or test operations: as low as 26-32°C:(Kerala/Karunya State<br />

Council <strong>for</strong> Science, National Institute <strong>of</strong> Ocean <strong>Tech</strong>nology <strong>of</strong> Chennai, Passarell Desalination<br />

+). At 45°C:(Inst. <strong>of</strong> Ocean Energy Saga+), Not on tech list but low cost high temperature vacuum<br />

freezing is widely used - but not <strong>for</strong> freeze desalination. <br />

P2(Wastewater cleaning): sometimes lowest cost solution: Vapor Compression Evaporation-<br />

Dis<strong>til</strong>lation/Mechanical Vapor Recompression(MVR): low grade heat water goes through venturi/<br />

orifice to made into steam partially at low temp, then that steam gets compressed to generate<br />

heat(ie far more than COP>1: overunity) and this heat is used to raise liquid temperature itself to<br />

enable efficient low cost recovery <strong>of</strong> water, also <strong>of</strong>ten uses vortex flow/hydrocyclone <strong>for</strong> efficient<br />

solids separation(ENCON Evaporators, PureStream, Salttech DyVaR ZLD+),<br />

linkedin.com/in/newnatureparadigm<br />

- Ben Rusuisiak, Vancouver BC, Canada<br />

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