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14篇 您的检索式:作者名="Padak"
    题名 作者 年代 出处 被引量
1Understanding mercury binding on activated carbon 显示文摘PADAK B WILCOX J 2009Carbon2009,47,12:1
2Understanding mercury binding on activated carbon显示文摘Padak B Wilcox J 2009Carbon2009,47,12:1
3'lhree-year review oI bacteriological profile and antibiogram of bum wound isolates in Van, Turkey 显示文摘Bayram Y Padak M Aypak C 2013Int J Med Sci2013,10,1:1
4Serum trypsinogen-2 in the prediction of outcome in acute necrotizing pancreatitis显示文摘 Padak P Kemppainen E 1996Scand J Gastroenterol1996,31,:1
5Understanding mercury binding onactivated carbon显示文摘PADAK B WILCOX J 2009Carbon2009,47,12:1
6Population behavioral scenarios influencing radiological disaster preparedness and planning显示文摘Padak A I Lambert J H Guterbock T M 0,,:1
7Serum trypsinogen-Ⅰ in the prediction of outcome in acute necrotizing parcreatitis显示文摘Sainio V Padak P Kemppainen E 1996Scand J Gasteoercteol1996,31,:1
8Process Chem- istry of Br Addition to Utility Flue Gas for Hg Emissions Control 显示文摘Niksa S Padak B Krishnakumar B 2010Energy ~z Fuels2010,24,2:1
9Understanding mercury binding onactivated carbon 显示文摘Padak B Wilcox J 2009Carbon2009,47,12:1
10Mercury binding onactivated carbon显示文摘Padak B Brunetti M Lewis A 2006Environ Prog2006,25,:1
11Prognostic value of gross tumor vol- ume delineated by FDG-PET-CT based radiotherapy treatment planning in patients with locally advanced pancreatic cancer treated with chemo- radiotherapy显示文摘Padak C Topkan E Onal C 2012Radiat Oncol2012,19,7:1
12Understanding mercury binding on activated carbon显示文摘Bihter Padak Jennifer Wilcox 2009Carbon2009,,12:1
13Process chemistry of Br addition to utility flue gas for Hg emissions control显示文摘Niksa S Padak B Krishnakumar B 0,,2:1
14Effects of temperature and SO_3 on re-emission of mercury from activated carbon under flue gas conditions显示文摘Mercury(Hg) is a toxic and bio-accumulating heavy metal that is predominantly released via the combustion of coal. Due to its toxicity, the Environmental Protection Agency(EPA)has introduced Mercury and Air Toxics Standards(MATS) Rule regarding allowable Hg emissions. In order to reduce emissions, power plants have widely adopted activated carbon(AC) injection. AC injection has proven to be an effective method to reduce Hg emissions, but the re-emission of previously adsorbed Hg during unit operation, likely due to changing temperature or flue gas composition, could be problematic. This study specifically examined the effects of temperature and sulfur trioxide(SO3) concentration,by ramping temperature and SO3 concentration independently and simultaneously, on AC samples that are already exposed to flue gas and saturated in presence of Hg, sulfur dioxide(SO2) and nitric oxide(NO). Of these two suspected factors to cause re-emission,temperature had the greater impact and resulted in re-emission of both elemental and oxidized Hg with a greater fraction of oxidized Hg, which can be attributed to elemental Hg being more strongly bonded to the AC surface. Surprisingly, exposing the samples to increasing concentrations of SO3 had nearly no effect under the conditions examined in this study, possibly as a result of the samples being already saturated with sulfur prior to the SO3 ramp tests to simulate transient conditions in the plant.Michael Royko Benjamin Galloway Noah D.Meeks Bihter Padak 2019Journal of Environmental Sciences2019,31,5:1
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