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Effektive, Niedrige Kosten, Nicht Sehr Bekannt, Umweltfreundliche Wassertechnologien Für Die Zukunft (Zusammenfassung in Deutsch)

Zusammen mit anderen Technologiefeldern , die zuvor nicht angenommen Technologien, von denen einige seit kommerzialisierte Anwendungen weit verbreitet sind, nach und nach wird erneut bestätigt durch westlichen Mainstream-Akademiker. Die nächste Phase ist, wie westliche Mainstream-Medien oder verschiedenen Ebenen (von Nachrichten, Wissenschaft berichtet, Wikipedia) diese Bestätigungen zum Ausdruck bringen wollen.

Zusammen mit anderen Technologiefeldern , die zuvor nicht angenommen Technologien, von denen einige seit kommerzialisierte Anwendungen weit verbreitet sind, nach und nach wird erneut bestätigt durch westlichen Mainstream-Akademiker. Die nächste Phase ist, wie westliche Mainstream-Medien oder verschiedenen Ebenen (von Nachrichten, Wissenschaft berichtet, Wikipedia) diese Bestätigungen zum Ausdruck bringen wollen.

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• 20’Electro phoresis, Electro migration, Electro<br />

Reclamation, ElectroWett<strong>in</strong>g cont<strong>in</strong>ued 2<br />

• WM Accepted effects: H(oil/paraff<strong>in</strong>-water separation)+, J(waste water/oil field produced water<br />

clean<strong>in</strong>g): Electrically Enhanced Oil Recovery(EEOR): (ElectroPetroleum, Geoox dk, Группа компаний<br />

«Петрос»+), also some oil majors have patents: at Some soil/oil/m<strong>in</strong>eral situations much higher<br />

recovery is made by: i-EM Pulse based Electrochemical crack<strong>in</strong>g, ii-ElectroHeat<strong>in</strong>g(decreases heavy oil<br />

viscosity), iii-Oil is dragged out with water as this permeated water/diluent(but sometimes chemical<br />

needs to be <strong>in</strong>jected - then not cleantech) migrates or spirals with electric fields/pulse. ii, iii are also<br />

used as Oil Sand recovery process <strong>in</strong> Canada widely, but under-utilized <strong>in</strong> other oil sand regions/other<br />

geological crude oil recovery:<br />

• Seems to be even more effective than convection effect added Electro-thermal Dynamic Stripp<strong>in</strong>g<br />

Process(ET-DSP)(McMillan McGee Corp+), or Thermal-Assisted Gravity Dra<strong>in</strong>age(TAGD)(Athabasca<br />

Oil+): they need no external water, less depth limitation compared to types of already conventional<br />

basic Steam Assisted Gravity Dra<strong>in</strong>age(SAGD), or further less efficient Cyclic Steam Stimulation(CSS)<br />

for unconventional oil sands EOR. For oil field remediation focus: (ElectroK<strong>in</strong>etic Solution+), while<br />

others additionally claim bioremediation enhancement of tail<strong>in</strong>g ponds due to collection of<br />

nutrients and m<strong>in</strong>erals strategically..<br />

• S(coagulation/tox<strong>in</strong> separation), G2(harvest<strong>in</strong>g electricity+): Reverse ElectroWett<strong>in</strong>g use(Instep<br />

nanopower+), Often appear<strong>in</strong>g similar but actually different Tribo Electric harvester(Beij<strong>in</strong>g Institute of<br />

Nanoenergy & Nanosystems+), Lot more efficient than PiezoElectricity. H2(dewater sludge, soil,<br />

Geosynthetics): Food use is WM approved, while masonry, water <strong>in</strong>gress proof use is sometimes<br />

debunked(HydroTech Asia, ElectroK<strong>in</strong>etic Limited, Lectros, Structural Technologies+), but US military<br />

endorsed(Drytronic de), But add<strong>in</strong>g to this ElectroPoration makes more than x2 improved dewater<strong>in</strong>g<br />

with less energy cost(see end of section 42'Electroporation). Also "fraud treatment" lower cost version<br />

exists <strong>in</strong> later pages<br />

110

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