Key EYF8JQT7 WJ5VAVC2 YZ6TEE2G 3M4RTTK7 43YQ2CWT WX2I9SFF C7QT6VWX FPAN3WR9 J9WU7RYN JS4QZQWW JPLS24PZ MIC6T5TI KVFDN7JU LW97N4HB T4DK3JNU ALEXXVAE CHYSTQF5 S968JJSM ZPU67SIU PGUDGKJJ JCMXAS7N Y2B74WUQ GPU6EWYM QSXLR72T D2LTY3I6 TU7EKAME U88PGYWW 3WHSFX5E 4YABBQS3 T263DXUI 4D2AY3PH R7A3LR5B G7ZPI32K R9KQ9CTH B3SAHYRR HLP6F2H3 95FWSM3R D7TITGRW P62QLC5W R7R63Y7D NE2F95ZR TMNWBQX5 UM74EIH7 7BVQW7ZW 4DPXFQKE RB7LC3CV ZM99WXBP Item Type PublicationAuthor Title PublicationISBN ISSN DOI report 2018 European CBackground document to the Opinion on the Annex XV dossier proposing r report 2017 European CMember State Committee Support Document for Identification of Perfluor report 2015 European CBackground document to the Opinion on the Annex XV dossier proposing r report 2013 European CAgreement of the Member State Committee on the identification of Penta report 2013 European CMember State Committee support document for identification of pentade journalArti 2012 European CMember State Committee support document for identification of heptaco report 2012 European CInclusion of substances of very high concern in the Candidate List journalArti 2021 De Silva, A PFAS ExposEnvironmental Toxico07307268 (10.1002/etc.4935 journalArti 2021 De Silva, A PFAS ExposEnvironmental Toxico0730-726810.1002/etc.4935 journalArti 2008 De Silva, A.ToxicokinetEnviron.Toxicol.Chem bookSectio 2015 Kudo, Nao MetabolismToxicologic978-3-319-15518-0 journalArti 2003 Kudo, NaomToxicity anThe Journal of Toxicological Scie 10.2131/jts.28.49 journalArti 2009 Ahrens, L.; Total bodyMar Pollut Bull 1879-3363 1(0.1016/j.marpolbul.
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PFAS DM FUD Co.
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(19) (12) (21) 201810315387 .8 (22) 2018 .04 .10 (65) CN 108531135 A (43) 2018 .09 .14 (73) 100085 6-2607 (72) (74) () 11413 (10) CN 108531135 B (45) 2021.05.07 (56) CN 102660229 A ,2012 .09 .12 CN 102719226 A ,2012 .10 .10 CN 105885798 A ,2016 .08 .24 CN 105586009 A ,2016 .05 .18 CN 102719226 A ,2012 .10 .10 CN 201104043 Y ,2008 .08 .20 CN 1475544 A ,2004 .02 .18 CN 102559146 A ,2012 .07 .11 CN 1460703 A ,2003 .12 .10 CN 1210130 A ,1999 .03 .10 EP 0516093 A1 ,1992 .12 .02 CN 1388887 A ,2003 .01 .01 CN 1361399 A ,2002 .07 .31 (51)Int .Cl .
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PFA Fluoroplastic Resin Gujarat Fluorochemicals Ltd. nderungsnummer: 3.4 Safety Data Sheet (Entspricht den Verordnungen (EU) Nr. 2015/830) INOFLON Fluoropolymers Bewertungsdatum: 17/01/2020 Druckdatum: 17/01/2020 S.REACH.DEU.DE ABSCHNITT 1 BEZEICHNUNG DES STOFFS BZW.
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ELSEVIER Tetrahedron Letters 53 (2012) 4070-4073 Contents lists available at SciVerse ScienceDirect Tetrahedron Letters journal homepage: www.elsevier.com/locate/tetlet A theoretical study on the pyrolysis of perfluorobutanoic acid as a model compound for perfluoroalkyl acids Mohammednoor Altarawneh * Process Safety and Environmental Protection Research Group, School of Engineering, The University of Newcastle, NSW 2308, Australia Chemical Engineering Department, Al-Hussein Bin Talal University, Ma'an, Jordan ARTICLE INFO Article history: Received 17 February 2012 Revised 8 May 2012 Accepted 23 May 2012 Available online 30 May 2012 Keywords: Perfluorobutanoic acid Pyrolysis Reaction rate constants Decarboxylation ABSTRACT The potential energy surface is mapped out for all plausible reactions in the self-decomposition of perfluorobutanoic acid (CF3CF2CF2COOH) as a model compound for the notoriously toxic and bio-accumulative perfluoroalkyl acids.
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Introduction The growth rate of data volume globally is nothing but astonishing.
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ELSEVIER Chemosphere 226 (2019) 898-906 Contents lists available at ScienceDirect Chemosphere journal homepage: www.elsevier.com/locate/chemosphere Waste incineration of Polytetrafluoroethylene (PTFE) to evaluate potential formation of per- and Poly-Fluorinated Alkyl Substances Chec updates (PFAS) in flue gas Krasimir Aleksandrov a, Hans-Joachim Gehrmann a, Manuela Hauser a, Hartmut Matzing a, Daniel Pigeon b. , Dieter Stapf a, Manuela Wexler a a Karlsruhe Institute of Technology, Karlsruhe, 76021, Germany b W.L.
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JYAVUSU is a manufacturer of dry cleaning machines.
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Annex III. - Comments on TFA toxicologic and risk assessments in the Proposal for PFAS REACH Restriction 1.
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No.: EG160826028V01MVer.1.0 Test Report Date: Sep. 01, 2016 Applicant Address : Changzhou XCF Polymer Materials Co., Ltd. : No.15 Dongcheng Road, Dingyan Town, Changzhou, China Page 1 of 3 Sample Name Quantity Model Lot No.
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JID: NF ELSEVIF ARTICLE IN PRESS Combustion and Flame 000 (2016) 1-11 Contents lists available at ScienceDirect Combustion and Flame journal homepage: www.elsevier.com/locate/combustflame m5 ;March 18, 2016;20:8 Combustion and Flame Understanding overpressure in the FAA aerosol can test by C3H2 F3Br (2-BTP) Gregory Thomas Linteris a'*, Valeri Ivan Babushoka, John Leonard Pagliaro , Donald Raymond Burgess, Jr. b, Jeffrey Alan Manion b, Fumiaki Takahashi'', Viswanath Reddy Kattad, Patrick Thomas Baker e a Fire Research Division, National Institute of Standards and Technology, Gaithersburg, MD 20899, USA b Chemical Sciences Division, National Institute of Standards and Technology, Gaithersburg, MD 20899, USA Case Western Reserve University, Cleveland, OH 44106, USA d Innovative Scientific Solutions Inc., Dayton, OH 45440, USA e The Boeing Company, Seattle, WA 98124, USA ARTICLE INFO Article history: Received 29 May 2015 Revised 14 October 2015 Accepted 15 October 2015 Available online xxx Keywords: Cs H2 F3 Br 2-BTP Cargo bay fire suppression Halon replacements CF3 Br, Clean agent fire suppression ABSTRACT Thermodynamic equilibrium calculations, as well as perfectly-stirred reactor (PSR) simulations with detailed reaction kinetics, are performed for a potential halon replacement, C3H2 F3Br (2-BTP, C3H2 F3Br, 2-Bromo3,3,3-trifluoropropene), to understand the reasons for the unexpected enhanced combustion rather than suppression in a mandated FAA test.
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lubricants MDPI Review A Review of Transfer Films and Their Role in Ultra-Low-Wear Sliding of Polymers Jiaxin Ye 1,2, David L.
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Linde feedback and concerns on the proposed PFAS restriction Linde as one of the refrigerant distributors in Northern Europe is fully committed to minimizing release of PFAS to the environment by continuously investing in circular economy for refrigerants including refrigerants that contain PFAS with the aim to keep refrigerants in a closed circle until they reach the end of their life cycle and move to our waste management partners where a well-controlled process is applied which destroys PFAS by destroying fluorocarbon structure and even enables recovery of hydrofluoric acid for reuse.
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SCHMIDT + BARTL Werkstoffe & Chem.
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Cost-effective fire protection.
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