Photocatalytic Water Splitting For Hydrogen Production

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TEQIP IIT Kanpur

TEQIP IIT Kanpur

Күн бұрын

Пікірлер: 13
@orangekangrufrmdnmrk
@orangekangrufrmdnmrk 3 жыл бұрын
Very good information liked 👍🏾
@SeaworthyShippingServices
@SeaworthyShippingServices 2 жыл бұрын
fantastic how do i contact , mehernosh Shroff Knight Orh chief engineer fellow Institute of marine engineers
@samiramammadova4942
@samiramammadova4942 3 жыл бұрын
great explanatıon thank you
@lookmanismail4070
@lookmanismail4070 4 жыл бұрын
hi, where can i get his journal or research paper ?
@kwazi598
@kwazi598 4 жыл бұрын
Heterogeneous photocatalyst materials for water splittingw Akihiko Kudo* and Yugo Miseki Received 8th October 2008 First published as an Advance Article on the web 18th November 2008 I recognised the one diagram from this paper ✨
@lookmanismail4070
@lookmanismail4070 4 жыл бұрын
@@MyJazmani thank you
@Rudrabhairav9565
@Rudrabhairav9565 2 жыл бұрын
@@kwazi598 kzbin.info/www/bejne/lXfdeoh-oLCggrU you can also watch from here about the new green and environment sustainable technologies for Green Hydrogen Production in a very interesting way.The future fuel kzbin.info/www/bejne/lXfdeoh-oLCggrU kzbin.info/www/bejne/lXfdeoh-oLCggtU
@Rudrabhairav9565
@Rudrabhairav9565 2 жыл бұрын
@@lookmanismail4070 kzbin.info/www/bejne/lXfdeoh-oLCggrU you can also watch from here about the new green and environment sustainable technologies for Green Hydrogen Production in a very interesting way.The future fuel kzbin.info/www/bejne/lXfdeoh-oLCggrU kzbin.info/www/bejne/lXfdeoh-oLCggtU
@நீர்மருத்துவம்942
@நீர்மருத்துவம்942 Жыл бұрын
low cost Quantum entaclement water spliter to generate clean hydrogen with AAA 1.5 volt battery This is different all kind of electrolysis method because input is less than 200 mili volt and external heat is 120 degree Celsius only,using 600°c degree heat resistant and dielectric borosil ceramic container and aluminium porous strip electrode and electrolysing and boiling works at a time in one container and DC back EMF problem redirect to split water continuously by silicon semiconductor diode needs of material thermometer multimeter,1.5 volt battery, 100K potential metre,silicon semiconductor diode, aluminium porous strip electrode,100 ml heat resistant and dielectric borosil container,60 ml 1:6 h2so4 dialuted water,LPG gas burner, that's all problem and salvation number 1 when water boils at 100 degree Celsius it losses its density and goes to zero electric resistance it means zero horms, so it is possible to reduce input voltage as much as possible.. number 2 major problem of the DC back EMF why can't make hydrogen cheaper because of the DC back EMF is reason when reducing input voltage the hydrogen and oxygen fuel cells gives and EMF of 0.73 volte and electric current chaseed, this problem can solve by semiconductor diode this technique inverted in 1976 by space scientist yes Venkatesan patent holder of ccw hydrogen engine எக்ஸ்பெக்டிங் ரிசல்ட் expecting result Total input is approximately 80 wats to heat 60 ml H2SO4 1:6 dialuted water when splitting the 60 ml water gives approximately seven gram hydrogen 1 gram hydrogen equal to 40 wats,7gram hydrogen equal to 280 watts output is more than input by Quantum entanglement total input in the mechanism equal to the total output is produced points of reference number 1 1889 lordwik mond and corl long American scientist of gas battery clean hydrogen project number 2 yes Venkatesan in 1976 invented ccw hydrogen engine-reported to NRDC number 3 In 2014 the American Stanford scientist Hangsitoi and meengank -invented low cost water splitting-at room'temperature using triple AAA 1.5 battery nikal porus electrode and nickel oxide catalyse etc.. number 4 in 2019 the American brown University scientist invented the goldylock problem in electrolysis on platinum electrode
@நீர்மருத்துவம்942
@நீர்மருத்துவம்942 Жыл бұрын
kzbin.info/www/bejne/hZPEmKiDnNF4Y7ugow cost Quantum entaclement water spliter to generate clean hydrogen with AAA 1.5 volt battery This is different all kind of electrolysis method because input is less than 200 mili volt and external heat is 120 degree Celsius only,using 600°c degree heat resistant and dielectric borosil ceramic container and aluminium porous strip electrode and electrolysing and boiling works at a time in one container and DC back EMF problem redirect to split water continuously by silicon semiconductor diode needs of material thermometer multimeter,1.5 volt battery, 100K potential metre,silicon semiconductor diode, aluminium porous strip electrode,100 ml heat resistant and dielectric borosil container,60 ml 1:6 h2so4 dialuted water,LPG gas burner, that's all problem and salvation number 1 when water boils at 100 degree Celsius it losses its density and goes to zero electric resistance it means zero horms, so it is possible to reduce input voltage as much as possible.. number 2 major problem of the DC back EMF why can't make hydrogen cheaper because of the DC back EMF is reason when reducing input voltage the hydrogen and oxygen fuel cells gives and EMF of 0.73 volte and electric current chaseed, this problem can solve by semiconductor diode this technique inverted in 1976 by space scientist yes Venkatesan patent holder of ccw hydrogen engine எக்ஸ்பெக்டிங் ரிசல்ட் expecting result Total input is approximately 80 wats to heat 60 ml H2SO4 1:6 dialuted water when splitting the 60 ml water gives approximately seven gram hydrogen 1 gram hydrogen equal to 40 wats,7gram hydrogen equal to 280 watts output is more than input by Quantum entanglement total input in the mechanism equal to the total output is produced points of reference number 1 1889 lordwik mond and corl long American scientist of gas battery clean hydrogen project number 2 yes Venkatesan in 1976 invented ccw hydrogen engine-reported to NRDC number 3 In 2014 the American Stanford scientist Hangsitoi and meengank -invented low cost water splitting-at room'temperature using triple AAA 1.5 battery nikal porus electrode and nickel oxide catalyse etc.. number 4 in 2019 the American brown University scientist invented the goldylock problem in electrolysis on platinum electrode
Exploring Materials for Overall Electrochemical Water Splitting Activity
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