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- Q4650975 subject Q8304223.
- Q4650975 abstract "The AD700 technology initiative began in the early 1990s with the idea of developing a range of advanced materials that would permit the raising of main and reheat steam temperatures in pulverized fuel boilers up to 700 °C (1,292 °F) and beyond.".
- Q4650975 thumbnail Graph_to_show_relationship_between_power_plant_efficiency_and_carbon_dioxide_emissions.JPG?width=300.
- Q4650975 wikiPageWikiLink Q1241260.
- Q4650975 wikiPageWikiLink Q1316434.
- Q4650975 wikiPageWikiLink Q137056.
- Q4650975 wikiPageWikiLink Q138133.
- Q4650975 wikiPageWikiLink Q1437651.
- Q4650975 wikiPageWikiLink Q157675.
- Q4650975 wikiPageWikiLink Q183.
- Q4650975 wikiPageWikiLink Q189859.
- Q4650975 wikiPageWikiLink Q193470.
- Q4650975 wikiPageWikiLink Q274591.
- Q4650975 wikiPageWikiLink Q2765.
- Q4650975 wikiPageWikiLink Q332512.
- Q4650975 wikiPageWikiLink Q37756.
- Q4650975 wikiPageWikiLink Q462188.
- Q4650975 wikiPageWikiLink Q47359.
- Q4650975 wikiPageWikiLink Q608323.
- Q4650975 wikiPageWikiLink Q644304.
- Q4650975 wikiPageWikiLink Q8304223.
- Q4650975 wikiPageWikiLink Q8880.
- Q4650975 comment "The AD700 technology initiative began in the early 1990s with the idea of developing a range of advanced materials that would permit the raising of main and reheat steam temperatures in pulverized fuel boilers up to 700 °C (1,292 °F) and beyond.".
- Q4650975 label "AD700".
- Q4650975 depiction Graph_to_show_relationship_between_power_plant_efficiency_and_carbon_dioxide_emissions.JPG.