Journal of Photochemistry & Photobiology A: Chemistry 367 (2018) 365-374 Contents lists available at ScienceDirect In J ournal of Photochemistry & Photobiology A: Chemistry journal homepage: www.elsevier.com/locate/jphotochem Photodissociation of trifluoroacetic acid at 193 nm: Mechanism for formation of OH radical and stable products Sumana SenGupta', Ankur Saha, Awadhesh Kumar` , Prakash D.
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YES NO RESERVATION NAME: INSPECTION/PLAN REVIEW INFORMATION PLAN REVIEW DATE: No SPCC Plan REVIEWER NAME: INSPECTION DATE: 05 November 2024 TIME: 1230 ACTIVITY ID NO: SPCC-IA-2025-001 LEAD INSPECTOR: Mark Aaron OTHER INSPECTOR(S): Abigail Widiker INSPECTION ACKNOWLEDGMENT I performed an SPCC inspection at the facility specified above.
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YES NO RESERVATION NAME: INSPECTION / PLAN REVIEW INFORMATION PLAN REVIEW DATE: 10/3/23REVIEWER NAME: David Turin INSPECTION DATE: 9/27/23TIME:ACTIVITY ID NO: SPCC - MA - 2023-00010 LEAD INSPECTOR: David Turin OTHER INSPECTOR(S): INSPECTION ACKNOWLEDGMENT I performed an SPCC inspection at the facility specified above.
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Journal of Photochemistry & Photobiology A: Chemistry 367 (2018) 365-374 Contents lists available at ScienceDirect In J ournal of Photochemistry & Photobiology A: Chemistry journal homepage: www.elsevier.com/locate/jphotochem Photodissociation of trifluoroacetic acid at 193 nm: Mechanism for formation of OH radical and stable products Sumana SenGupta', Ankur Saha, Awadhesh Kumar` , Prakash D.
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ELSEVIER Journal of Photochemistry & Photobiology A: Chemistry 367 (2018) 365-374 Contents lists available at ScienceDirect Journal of Photochemistry & Photobiology A: Chemistry journal homepage: www.elsevier.com/locate/jphotochem Photochemistry drir1Photobiohi.gy Photodissociation of trifluoroacetic acid at 193 nm: Mechanism for formation of OH radical and stable products Sumana SenGupta*, Ankur Saha, Awadhesh Kumar*'1, Prakash D.
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DOE, PHMSA PICKS CONFIRMED: Before heading out on a 10-day recess, the Senate confirmed by voice vote Howard "Skip" Elliott to run the Pipeline and Hazardous Materials Safety Administration and Bruce Walker to lead DOE's electricity delivery and energy reliability office.
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These revisions, suggested by the SAB (2013), include the following: Derivation of a perchlorate MCLG that addresses sensitive life stages through PBPK/PD modeling; Expansion of the modeling approach to account for thyroid hormone perturbations and potential adverse neurodevelopmental outcomes from perchlorate exposure; Utilization of a mode of action framework for developing the MCLG that links the steps in the proposed mechanism leading from perchlorate exposure through iodide uptake inhibition to thyroid hormone changes and finally neurodevelopmental impacts; and Extension of "the [BBDR] model expeditiously to...provide a key tool for linking early events with subsequent events as reported in the scientific and clinical literature on iodide deficiency, changes in thyroid hormone levels, and their relationship to neurodevelopmental outcomes during sensitive early life stages" (SAB 2013, p. 19).
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December 11, 2017 Via the Federal eRulemaking Portal Document Control Office (7407M) Office of Pollution Prevention and Toxics (OPPT) Environmental Protection Agency 1200 Pennsylvania Ave.
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YES NO RESERVATION NAME: INSPECTION / PLAN REVIEW INFORMATION PLAN REVIEW DATE: 10/3/23REVIEWER NAME: David Turin INSPECTION DATE: 9/27/23TIME:ACTIVITY ID NO: SPCC - MA - 2023-00010 LEAD INSPECTOR: David Turin OTHER INSPECTOR(S): INSPECTION ACKNOWLEDGMENT I performed an SPCC inspection at the facility specified above.
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We observed erosion on the wall and visible flow paths leading from the tank battery area north towards the tributary of the South Fork of Jim Ned Creek.
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FILE NAME Reynolds Metals RM DATE 2017 Jan 11 DOC RM068 DOCUMENT DESCRIPTION Legal - Deposition of Reynolds Aluminum Development Co.
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FILE NAME TILO TIL DATE 2017 Jan 11 DOC TIL030 DOCUMENT DESCRIPTION Legal - Deposition of Reynolds Aluminum Linda Maillet Linda Maillet Volume I January 11 2017 123 123 123 4 597 597 597 860 860 860 860 123 123 13 14 15 67892 67892 67892 67892 67892 21 222 222 24 STATE OF CONNECTICUT CV13-6039034 oe nes eeowereneensesencaenn JAMES STEMPERT EXECUTOR OF THE ESTATE OF CHARLES STEMPERT Plaintiff VS.
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Study on the feasibility of applying extended producer responsibility to micropollutants and microplastics emitted in the aquatic environment from products during their life cycle Module 1 - Relevance of EPR for products emitting pollutants to the aquatic environment FINAL REPORT December 2019 EXECUTIVE SUMMARY STUDY OBJECTIVES AND SCOPE EurEau commissioned a study to assess the potential applicability and relevance of extended producer responsibility (EPR) in order to develop clear policy guidance to address emissions of micropollutants and microplastics from products.
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Portland Harbor Superfund Site Sampling Plan for Pre-Remedlal Design, Baseline and Long-Term Monitoring June S, 2017 REVISED WORKING DRAFT Table of Contents LIST OF ACRONYMS...................................................................................................................................... iv 1 Introduction.......................................................................................................................................... 1 1.1 Purpose and Scope........................................................................................................................ 1 1.2 Activities Not Included in Sampling Plan.......................................................................................2 2 Remedial Goal Decision Criteria............................................................................................................ 4 2.1 Remedial Action Objectives...........................................................................................................4 2.2 Cleanup Levels...............................................................................................................................5 2.2.1 Human Health Risk-Based Cleanup Levels............................................................................ 5 2.2.2 Human Health Fish Tissue Targets........................................................................................5 2.2.3 Ecological Risk-Based CleanupLevels..................................................................................... 5 2.2.4 ARAR-Based Cleanup Levels.................................................................................................. 5 2.2.5 Background-Based Cleanup Levels........................................................................................5 3 Preliminary Remedial Design SMA Delineation.....................................................................................7 3.1 Problem Definition........................................................................................................................ 7 3.2 Pre-Remedial Design Sampling Objectives....................................................................................7 3.3 Pre-Remedial Design Sampling Boundaries...................................................................................8 3.3.1 Navigation Channel...............................................................................................................8 3.3.2 Future Maintenance Dredge Areas.......................................................................................8 3.3.3 Intermediate Region..............................................................................................................8 3.3.4 Shallow Region...................................................................................................................... 8 3.4 Preliminary Remedial Design Data Collection.............................................................................. 8 4 Basline Monitoring..............................................................................................................................10 i Sierra Club v.
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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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