Węgiel aktywny (Polish Wikipedia)

Analysis of information sources in references of the Wikipedia article "Węgiel aktywny" in Polish language version.

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aces.pl

books.google.com

dentystaradzi.pl

doi.org

dx.doi.org

  • K. Ilkhanipour, D.M. Yealy, E.P. Krenzelok, Activated charcoal surface area and its role in multiple-dose charcoal therapy, „The American Journal of Emergency Medicine”, 11 (6), 1993, s. 583–585, DOI10.1016/0735-6757(93)90005-v, PMID8240556 [dostęp 2021-04-27] (ang.).
  • G.D. Park i inni, Effect of the surface area of activated charcoal on theophylline clearance, „Journal of Clinical Pharmacology”, 24 (7), 1984, s. 289–292, DOI10.1002/j.1552-4604.1984.tb01835.x, PMID6480875 [dostęp 2021-04-27] (ang.).
  • J.R. Roberts, E.J. Gracely, J.M. Schoffstall, Advantage of high-surface-area charcoal for gastrointestinal decontamination in a human acetaminophen ingestion model, „Academic Emergency Medicine: Official Journal of the Society for Academic Emergency Medicine”, 4 (3), 1997, s. 167–174, DOI10.1111/j.1553-2712.1997.tb03735.x, PMID9063541 [dostęp 2021-04-27] (ang.).
  • E.C. Dillon i inni, Large surface area activated charcoal and the inhibition of aspirin absorption, „Annals of Emergency Medicine”, 18 (5), 1989, s. 547–552, DOI10.1016/s0196-0644(89)80841-8, PMID2719366 [dostęp 2021-04-27] (ang.).
  • A new method on producing high surface area activated carbon: The effect of salt on the surface area and the pore size distribution of activated carbon prepared from pistachio shell, „Chemical Engineering Journal”, 166 (1), 2011, s. 191–197, DOI10.1016/j.cej.2010.10.061 [dostęp 2021-04-27] (ang.).
  • Fatemeh Tavakoli Foroushani, Hossein Tavanai, Farzaneh Ali Hosseini, An investigation on the effect of KMnO4 on the pore characteristics of pistachio nut shell based activated carbon, „Microporous and Mesoporous Materials”, 230, 2016, s. 39–48, DOI10.1016/j.micromeso.2016.04.030 [dostęp 2021-04-27] (ang.).
  • Ömer Şahin, Cafer Saka, Preparation and characterization of activated carbon from acorn shell by physical activation with H2O–CO2 in two-step pretreatment, „Bioresource Technology”, 136, 2013, s. 163–168, DOI10.1016/j.biortech.2013.02.074 [dostęp 2021-04-27] (ang.).
  • H.K. Gogel, D. Tandberg, R.G. Strickland, Substances that interfere with guaiac card tests: implications for gastric aspirate testing, „The American Journal of Emergency Medicine”, 7 (5), 1989, s. 474–480, DOI10.1016/0735-6757(89)90248-9, PMID2787993 [dostęp 2021-04-27] (ang.).

homespot.pl

nih.gov

ncbi.nlm.nih.gov

  • K. Ilkhanipour, D.M. Yealy, E.P. Krenzelok, Activated charcoal surface area and its role in multiple-dose charcoal therapy, „The American Journal of Emergency Medicine”, 11 (6), 1993, s. 583–585, DOI10.1016/0735-6757(93)90005-v, PMID8240556 [dostęp 2021-04-27] (ang.).
  • G.D. Park i inni, Effect of the surface area of activated charcoal on theophylline clearance, „Journal of Clinical Pharmacology”, 24 (7), 1984, s. 289–292, DOI10.1002/j.1552-4604.1984.tb01835.x, PMID6480875 [dostęp 2021-04-27] (ang.).
  • J.R. Roberts, E.J. Gracely, J.M. Schoffstall, Advantage of high-surface-area charcoal for gastrointestinal decontamination in a human acetaminophen ingestion model, „Academic Emergency Medicine: Official Journal of the Society for Academic Emergency Medicine”, 4 (3), 1997, s. 167–174, DOI10.1111/j.1553-2712.1997.tb03735.x, PMID9063541 [dostęp 2021-04-27] (ang.).
  • E.C. Dillon i inni, Large surface area activated charcoal and the inhibition of aspirin absorption, „Annals of Emergency Medicine”, 18 (5), 1989, s. 547–552, DOI10.1016/s0196-0644(89)80841-8, PMID2719366 [dostęp 2021-04-27] (ang.).
  • H.K. Gogel, D. Tandberg, R.G. Strickland, Substances that interfere with guaiac card tests: implications for gastric aspirate testing, „The American Journal of Emergency Medicine”, 7 (5), 1989, s. 474–480, DOI10.1016/0735-6757(89)90248-9, PMID2787993 [dostęp 2021-04-27] (ang.).

pwr.edu.pl

polymer-carbon.ch.pwr.edu.pl

technicaljournalsonline.com

who.int

worldcat.org