1 Transformer Oil 2 Residual Fuel Oil 3 Diesel Oil Heavy 4

Total Page:16

File Type:pdf, Size:1020Kb

1 Transformer Oil 2 Residual Fuel Oil 3 Diesel Oil Heavy 4 1 TRANSFORMER OIL 2 RESIDUAL FUEL OIL 3 DIESEL OIL HEAVY 4 SPINDLE OIL MIXTURES CONTAINING 5 CRUDE OIL 6 MOTOR OIL 7 ROAD OIL 8 FUEL OIL NO.4 9 FUEL OIL NO.5 10 FUEL OIL NO.6 LUBRICATING OILS AND 11 BLENDING STOCKS 12 PENETRATING OIL 13 TURBINE OIL 3 14 ROOFERS FLUX 15 CRUDE OIL 16 STRAIGHT RUN RESIDUE OCTAMETHYLCYCLOTETRA 17 SILOXANE BENZENEPROPANOIC ACID, 3,5- 1,1- 3,5-BIS(1,1-DIMETHYLETHYL 18 4- ), -C7-C9 4-HYDROXY-C7-C9ALCOHOL S BRANCHED AND LINEAR 19 1- -1- 1-PHENYL-1-XYLYL ETHANE BENZENETRICARBOXYLIC 20 ACID, TRIOCTYL ESTER 21 CASTOR OIL IMIDAZOLIUM COMPOUNDS, 1- -4,5- -1- 1-BENZYL-4,5-DIHYDRO-1-(H 22 -2- YDROXYETHYL)-2-NORCOC O ALKYL, CHLORIDES 4 2-PROPENOIC ACID 2- POLYMER WITH 4- 1,1- 4-(1,1-DIMETHYLETHYL)PHE 2,5- NOL,FORMALDEHYDE, 23 2- 2,5-FURANDIONE, 65% / 2-METHYLOXIRANE AND OXIRANE (65% IN NAPHTHA/XYLENE) 24 n-PENTYL PROPIONATE 25 -2- 2-ETHYLHEXYL ACRYLATE 26 DECYL ACRYLATE 27 RAPESEED OIL RAPESEED OIL (low erucic acid 4% 28 containing less than 4% free fatty acids) RAPE SEED OIL FATTY ACID 29 METHYL ESTERS ALCOHOLS (C12-C13), C12-C13 30 PRIMARY, LINEAR AND ESSENTIALLY LINEAR 31 C13+ ALCOHOLS (C13+) 5 ALCOHOLS (C14-C18), C14-C18 32 PRIMARY, LINEAR AND ESSENTIALLY LINEAR ALCOHOLS (C8-C11), C8-C11 33 PRIMARY, LINEAR AND ESSENTIALLY LINEAR ACID OIL MIXTURE FROM SOYABEAN, CORN (maize) 34 AND SUNFLOWER OIL REFINING NAPHTHALENE CRUDE 35 (MOLTEN) 36 SOYABEAN OIL SOYBEAN OIL FATTY ACID 37 METHYL ESTER 38 BUTYLBENZENE (all isomers) 39 TALLOW 40 TALLOW FATTY ACID (2- BIS(2-ETHYLHEXYL) 41 ) TEREPHTHALATE 42 -(2- ) DI-(2-ETHYLHEXYL) 6 PHOSPHORIC ACID -(2- ) DI-(2-ETHYLHEXYL) 43 ADIPATE DIPHENYLAMINE, REACTION 2,2,4- 44 PRODUCT WITH 2,2,4-TRIMETHYLPENTENE DIBUTYL HYDROGEN 45 PHOSPHONATE 46 XYLENOL POLYALKYL (C18-C22) 47 C18-C22 ACRYLATE IN XYLENE 48 DIMETHYLPOLYSILOXANE N,N-DIMETHYLDODECYLAM 49 N,N- INE 50 DIMETHYL OCTANOIC ACID 51 DIPENTENE 52 2,6- 2,6-DI-TERT-BUTYLPHENOL C7-C13 DIALKYL (C7-C13) 53 PHTHALATES C9-C10 DIALKYL (C9 - C10) 54 PHTHALATES 7 55 DIETHYLBENZENE DIISOPROPYLBENZENE (all 56 isomers) 57 DIISOPROPYLNAPHTHALENE 58 DIISOBUTYL KETONE ARYL POLYOLEFINS 59 C11-C50 (C11-C50) POLYOLEFINAMINE IN 60 AROMATIC SOLVENT NON-EDIBLE INDUSTRIAL 61 GRADE PALM OIL 62 USED COOKING OIL USED COOKING OIL 63 (TRIGLYCERIDES, C16-C18 AND C18 UNSATURATED) 64 GLYCEROL MONOOLEATE 65 OLIVE OIL 66 DECYL ALCOHOL (all isomers) / / DECYL/DODECYL/TETRADE 67 CYL ALCOHOL MIXTURE 68 DECYLOXYTETRAHYDROTH 8 IOPHENE DIOXIDE 69 DECANOIC ACID 70 DECENE 71 SAFFLOWER OIL 72 GROUNDNUT OIL 73 CYCLOHEXANOL CYCLOHEXANE-1,2-DICARB -1,2- 74 OXYLIC ACID, DIISONONYL ESTER 75 1,5,9- 1,5,9-CYCLODODECATRIENE 1,3- 1,3-CYCLOPENTADIENE 76 DIMER (molten) 77 DIISONONYL ADIPATE 78 OCTYL DECYL ADIPATE 79 TOLUENEDIAMINE ALKYL 80 ACRYLATE-VINYLPYRIDINE - COPOLYMER IN TOLUENE alpha-METHYLBENZYL - 15% 81 ALCOHOL WITH ACETOPHENONE (15% or less) 9 NONYL METHACRYLATE 82 MONOMER 83 DODECYL METHACRYLATE DODECYL/OCTADECYL 84 / METHACRYLATE MIXTURE DODECYL/PENTADECYL 85 / METHACRYLATE MIXTURE / CETYL/EICOSYL 86 METHACRYLATE MIXTURE METHYLCYCLOPENTADIENE 87 DIMER METHYL NAPHTHALENE 88 (molten) 89 4+ POLY(4+)ISOBUTYLENE 90 5+ POLY(5+)PROPYLENE 91 POLYBUTENE POLYBUTENYL 92 SUCCINIMIDE 93 POLYSILOXANE MOLYBDENUM 94 POLYSULFIDE LONG CHAIN 10 ALKYL DITHIOCARBAMIDE COMPLEX POLYETHER (molecular weight 95 1350+ 1350+) POLYALKYL (C10-C18) C10-C18 METHACRYLATE/ETHYLENE 96 / - -PROPYLENE COPOLYMER MIXTURE C10-C20 POLYALKYL (C10-C20) 97 METHACRYLATE POLYALKYLALKENAMINES 98 UCCINIMIDE, MOLYBDENUM OXYSULPHIDE POLYOLEFIN (molecular weight 99 300+ 300+) POLYOLEFIN AMINOESTER 100 2000+ SALTS (molecular weight 2000+) POLYOLEFINAMINE 101 C28-C250 (C28-C250) POLYOLEFIN PHENOLIC 102 C28-C250 AMINE (C28-C250) 11 103 POLYOLEFIN ANHYDRIDE POLYALKENE SULPHONIC 104 ACID (C20-C28), SODIUM SALT POLYOLEFIN AMIDE 105 C17+ ALKENEAMINE (C17+) POLYOLEFIN AMIDE 106 ALKENEAMINE POLYOL POLYOLEFIN AMIDE 107 ALKENEAMINE BORATE C28-C250 (C28-C250) POLYOLEFIN ESTER 108 C28-C250 (C28-C250) POLYETHYLENE C5-C20 109 POLYAMINES (more than 50% 50% C5 -C20 paraffin oil) POLYISOBUTYLENE(MW 224 110 224 ) 111 COCOA BUTTER 112 PETROLATUM 113 SUNFLOWER SEED OIL 12 ALKENOIC ACID, 114 POLYHYDROXY ESTER BORATED 115 DITRIDECYL PHTHALATE 116 DIUNDECYL PHTHALATE 117 DIHEPTYL PHTHALATE 118 DIHEXYL PHTHALATE 119 DINONYL PHTHALATE 120 DIOCTYL PHTHALATE 121 DIISOOCTYL PHTHALATE 122 TRIBUTYL PHOSPHATE SULPHOHYDROCARBON 123 C3-C88 (C3-C88) 124 JATROPHA OIL 125 MANGO KERNEL OIL 126 RICE BRAN OIL 127 COTTON SEED OIL 128 SHEA BUTTER 129 - alpha-PINENE 13 130 - beta-PINENE 131 GRAPE SEED OIL 132 NONYL ALCOHOL (all isomers) 133 NONYLPHENOL 134 NONANOIC ACID (all isomers) 2,2,4- -1,3- 2,2,4-TRIMETHYL-1,3-PENTA 135 -1- NEDIOL-1-ISOBUTYRATE 2,2,4- -1,3- 2,2,4-TRIMETHYL-1,3-PENTA 136 NEDIOL DIISOBUTYRATE 137 TRIMETHYLACETIC ACID C10 GLYCIDYL ESTER OF C10 138 TRIALKYLACETIC ACID 139 TRIETHYLBENZENE 140 DODECANE (all isomers) / DODECYLAMINE/TETRADEC 141 YLAMINE MIXTURE 142 DODECYLBENZENE 143 DODECYL PHENOL 144 DODECYL ALCOHOL 145 DODECYL XYLENE 146 LAURIC ACID 14 147 1- 1-DODECENE 148 DODECENE (all isomers) 1-HEXADECYLNAPHTHALEN 1- /1,4- ( E / 149 ) 1,4-BIS(HEXADECYL)NAPHT HALENE MIXTURE 150 DECAHYDRONAPHTHALENE 151 TRIDECANOIC ACID 152 TRIDECANE 153 TRIDECYL ACETATE 154 UNDECYL ALCOHOL 155 1- 1-UNDECENE 156 UNDECANOIC ACID 157 PARAFFIN WAX 158 WAXES PARAFFIN WAX, 159 SEMI-REFINED PARAFFIN WAX, 160 HIGHLY-REFINED WHITE SPIRIT, LOW (15-20%) 161 15-20% AROMATIC 15 162 tert-DODECANETHIOL 163 DITRIDECYL ADIPATE TETRAMETHYLBENZENE (all 164 isomers) 165 PROPYLENE TETRAMER TETRAHYDRONAPHTHALEN 166 E 167 PINE OIL 168 HYDROCARBON WAX 169 TUNG OIL 170 TALL OIL, CRUDE 171 TALL OIL, DISTILLED 172 TALL OIL SOAP, CRUDE 173 TALL OIL PITCH TALL OIL FATTY ACID (resin 174 20% acids less than 20%) / TALL OIL ACIDS/LINOLEIC / / ACIDDIMER/POLYALKYLEN 175 EPOLYAMINES/DODECYLBE / NZENESULPHONIC ACID 16 COMPLEXES IN NAPHTHA/ISOPROPANOL TALL OIL ACIDS REACTION 176 PRODUCTS WITH TRIETHANOLAMINE ZINC ALKARYL 177 C7-C16) DITHIOPHOSPHATE (C7-C16) 178 C7-C9 ALKYL (C7-C9) NITRATES ALKYL (C10-C20, C10-C20 179 SATURATED AND UNSATURATED) PHOSPHITE C10-C28 CALCIUM ALKYL (C10-C28) 180 SALICYLATE ALKYL (C12+) 181 C12+ DIMETHYLAMINE 182 C18 ALKYL (C18+) TOLUENES C18-C28 ALKYL(C18-C28)TOLUENESU 183 LFONIC ACID 17 ALKYL (C18-C28) C18-C28 TOLUENESULFONIC ACID, 184 CALCIUM SALTS, LOW OVERBASE C2-C4 POLYOLEFINAMINE IN 185 ALKYL (C2-C4) BENZENES 186 C5-C8 ALKYL (C5-C8) BENZENES 187 C9+ ALKYL(C9+)BENZENES ALKYLBENZENES MIXTURES 188 (CONTAINING NAPHTHALENE) ALKYL BENZENE 189 DISTILLATION BOTTOMS C4-C9 ALKYLATED (C4-C9) 190 HINDERED PHENOLS DIPHENYLAMINES, 191 ALKYLATED ALKYL ESTER COPOLYMER 192 C4-C20 (C4-C20) (C10-C17) ALKANES (C10-C17), LINEAR 193 AND BRANCHED 18 C10-C26 ALKANES (C10-C26), LINEAR 194 and BRANCHED, >60 (FLASHPOINT >60 C) ALKANES (C10-C26), LINEAR (C10-C26) 195 AND BRANCHED 60 FLASHPOINT 60 196 ILLIPE OIL C11+ 197 ALKENYL (C11+) AMIDE ZINC ALKENYL 198 CARBOXAMIDE C13+ 199 OLEFINS (C13+, all isomers) OLEFIN-ALKYL ESTER - 200 COPOLYMER (molecular weight 2000+ 2000+) 201 OCTANOL (all isomers) 202 OCTYL ALDEHYDES 203 OCTANOIC ACID (all isomers) 204 NEODECANOIC ACID 19 205 VINYL NEODECANOATE 206 CAMELINA OIL 207 LINSEED OIL CASHEW NUT SHELL OIL 208 ( ) (untreated) 209 COCONUT OIL 210 COCONUT OIL FATTY ACID COCONUT OIL FATTY ACID 211 METHYL ESTER 2-ETHYL-2-(HYDROXYMETH 2- -2- 212 YL) PROPANE-1,3-DIOL -1,3- C8-C10 (C8-C10) ESTER 2-ETHYL-3-PROPYLACROLEI 213 2- -3- N S- s-ETHYL 214 DIPROPYLTHIOCARBAMATE 215 ETHYL TOLUENE 216 HEPTYL ACETATE 217 VINYLTOLUENE > ETHOXYLATED TALLOW 218 95% AMINE (> 95%) 20 ETHOXYLATED LONG CHAIN C16+ 219 (C16+) ALKYLOXYALKYLAMINE ISO- AND CYCLO-ALKANES 220 C10-C11 (C10-C11) 221 OLEIC ACID 222 OLEYLAMINE 223 FISH OIL 224 CORN OIL 225 MYRCENE COPPER SALT OF LONG 226 C17+ CHAIN (C17+) ALKANOIC ACID LONG-CHAIN ALKARYL 227 C16-C60 SULPHONIC ACID (C16-C60) MAGNESIUM LONG-CHAIN 228 ALKARYL SULPHONATE C11-C50 (C11-C50) LONG-CHAIN ALKARYL 229 C11-C20 POLYETHER (C11-C20) 230 C11-C40 CALCIUM LONG-CHAIN 21 ALKYL (C11-C40) PHENATE LONG-CHAIN ALKYLPHENOL 231 (C14-C18) (C14-C18) LONG-CHAIN ALKYLPHENOL 232 (C18-C30) (C18-C30) CALCIUM LONG-CHAIN 233 ALKYL PHENATE SULPHIDE C8-C40 (C8-C40) LONG-CHAIN / 234 ALKYLPHENATE/PHENOL SULPHIDE MIXTURE CALCIUM LONG-CHAIN 235 C13+ ALKYL SALICYLATE (C13+) CALCIUM LONG-CHAIN 236 ALKYL (C18-C28) C18-C28 SALICYLATE 237 n-DODECYL MERCAPTAN 238 - C10+ n-ALKANES (C10+) 239 C10-C20 n-ALKANES (C10-C20) 240 C9-C11 n-ALKANES (C9-C11) 241 n-OCTYL MERCAPTAN 22 FATTY ACID (SATURATED 242 C13+ C13+) 243 (C12+) FATTY ACIDS, (C12+) 244 (C16+) FATTY ACIDS, (C16+) 245 (C8-C10) FATTY ACIDS, (C8-C10) FATTY ACIDS, ESSENTIALLY 246 C6-C18 2- LINEAR (C6-C18) 2-ETHYLHEXYL ESTER FATTY ACID METHYL 247 ESTERS (m) (POLYISOBUTENE) AMINO 248 PRODUCTS IN ALIPHATIC HYDROCARBONS 249 VEGETABLE ACID OILS (m) VEGETABLE FATTY ACID 250 (m) DISTILLATES (m) 251 LARD 252 PALM KERNEL ACID OIL 253 PALM KERNEL STEARIN 254 PALM KERNEL OIL 255 PALM KERNEL OLEIN 23 PALM KERNEL FATTY ACID 256 DISTILLATE 257 PALM ACID OIL 258 PALM STEARIN 259 PALM OIL 260 PALM OLEIN PALM OIL FATTY ACID 261 METHYL ESTER PALM FATTY ACID 262 DISTILLATE 263 PALM MID-FRACTION 1. 1978 1973 2. 50% 95% ASTM D86 GB/T 6536 24 .
Recommended publications
  • Transport of Dangerous Goods
    ST/SG/AC.10/1/Rev.16 (Vol.I) Recommendations on the TRANSPORT OF DANGEROUS GOODS Model Regulations Volume I Sixteenth revised edition UNITED NATIONS New York and Geneva, 2009 NOTE The designations employed and the presentation of the material in this publication do not imply the expression of any opinion whatsoever on the part of the Secretariat of the United Nations concerning the legal status of any country, territory, city or area, or of its authorities, or concerning the delimitation of its frontiers or boundaries. ST/SG/AC.10/1/Rev.16 (Vol.I) Copyright © United Nations, 2009 All rights reserved. No part of this publication may, for sales purposes, be reproduced, stored in a retrieval system or transmitted in any form or by any means, electronic, electrostatic, magnetic tape, mechanical, photocopying or otherwise, without prior permission in writing from the United Nations. UNITED NATIONS Sales No. E.09.VIII.2 ISBN 978-92-1-139136-7 (complete set of two volumes) ISSN 1014-5753 Volumes I and II not to be sold separately FOREWORD The Recommendations on the Transport of Dangerous Goods are addressed to governments and to the international organizations concerned with safety in the transport of dangerous goods. The first version, prepared by the United Nations Economic and Social Council's Committee of Experts on the Transport of Dangerous Goods, was published in 1956 (ST/ECA/43-E/CN.2/170). In response to developments in technology and the changing needs of users, they have been regularly amended and updated at succeeding sessions of the Committee of Experts pursuant to Resolution 645 G (XXIII) of 26 April 1957 of the Economic and Social Council and subsequent resolutions.
    [Show full text]
  • General Disclaimer One Or More of the Following Statements May Affect
    General Disclaimer One or more of the Following Statements may affect this Document This document has been reproduced from the best copy furnished by the organizational source. It is being released in the interest of making available as much information as possible. This document may contain data, which exceeds the sheet parameters. It was furnished in this condition by the organizational source and is the best copy available. This document may contain tone-on-tone or color graphs, charts and/or pictures, which have been reproduced in black and white. This document is paginated as submitted by the original source. Portions of this document are not fully legible due to the historical nature of some of the material. However, it is the best reproduction available from the original submission. Produced by the NASA Center for Aerospace Information (CASI) NASA CR - 159480 EXXON/GRUS. 1KWD. 78 NIGH PERFORMANCE, HIGH DENSITY HYDROCARBON FUELS J. W. Frankenfeld, T. W. Hastings, M. Lieberman and W. F. Taylor EXXON RESEARCH AND ENGINEERING COMPANY prepared for NATIONAL AERONAUTICS AND SPACE ADMINISTRATION (NASA-CR-159''PO) HIGH PEPPOFMANCF, HIGH V79-20267 DENSTTv HYDR I-CARBON FTIELS (Exxon P.esearch and Engineering Co.) 239 rp HC A11/MF A01 CSCL 21D 'Inclas G3/28 19456 NASA Lewis Research Center Contract NAS 3-20394 Qnr{l,,Y^ ^'Pr I€ ^i NASA CR - 159480 EXXON/GRUS . 1KWD . 78 L: HIGH PERFORMANCE, HIGH DENSITY HYDROCARBON FUELS J. W. Frankenfeld, T. W. Hastings, M. Lieberman and W. F. Taylor EXXON RESEARCH AND ENGINEERING COMPANY prepared for NATIONAL AERONAUTICS AND SPACE ADMINISTRATION NASA Lewis Research Center Contract NAS 3-20394 FOREWARD The research described in this report was performed at Exxon Research and Engineering Company, Linden, New Jersey and Contract NAS 320394 with Mr.
    [Show full text]
  • Dibasic Acids for Nylon Manufacture
    - e Report No. 75 DIBASIC ACIDS FOR NYLON MANUFACTURE by YEN-CHEN YEN October 1971 A private report by the PROCESS ECONOMICS PROGRAM STANFORD RESEARCH INSTITUTE MENLO PARK, CALIFORNIA CONTENTS INTRODUCTION, ....................... 1 SUMMARY .......................... 3 General Aspects ...................... 3 Technical Aspects ..................... 7 INDUSTRY STATUS ...................... 15 Applications and Consumption of Sebacic Acid ........ 15 Applications and Consumption of Azelaic Acid ........ 16 Applications of Dodecanedioic and Suberic Acids ...... 16 Applications of Cyclododecatriene and Cyclooctadiene .... 17 Producers ......................... 17 Prices ........................... 18 DIBASIC ACIDS FOR MANUFACTURE OF POLYAMIDES ........ 21 CYCLOOLIGOMERIZATIONOF BUTADIENE ............. 29 Chemistry ......................... 29 Ziegler Catalyst ..................... 30 Nickel Catalyst ..................... 33 Other Catalysts ..................... 34 Co-Cyclooligomerization ................. 34 Mechanism ........................ 35 By-products and Impurities ................ 37 Review of Processes .................... 38 A Process for Manufacture of Cyclododecatriene ....... 54 Process Description ................... 54 Process Discussion .................... 60 Cost Estimates ...................... 60 A Process for Manufacture of Cyclooctadiene ........ 65 Process Description ................... 65 Process Discussion .................... 70 Cost Estimates ...................... 70 A Process for Manufacture of Cyclodecadiene
    [Show full text]
  • Flammable Liquids and Solids Chemical Class Standard Operating Procedure
    1 Flammable Liquids and Solids Chemical Class Standard Operating Procedure Flammable Liquids and Solids H224 H225 H226 H227 H228 This SOP is not a substitute for hands-on training. Print a copy and insert into your laboratory SOP binder. Department: Chemistry Date SOP was written: Thursday, July 1, 2021 Date SOP was approved by PI/lab supervisor: Thursday, July 1, 2021 Name: F. Fischer Principal Investigator: Signature: ______________________________ Name: Matthew Rollings Internal Lab Safety Coordinator or Lab Manager: Lab Phone: 510.301.1058 Office Phone: 510.643.7205 Name: Felix Fischer Emergency Contact: Phone Number: 510.643.7205 Tan Hall 674, 675, 676, 679, 680, 683, 684 Location(s) covered by this SOP: Hildebrand Hall: D61, D32 1. Purpose This SOP covers the precautions and safe handling procedures for the use of Flammable Liquids and Solids. For a list of Flammable Liquids and Solids covered by this SOP and their use(s), see “List of Chemicals”. Procedures described in Section 12 apply to all materials covered in this SOP. A change to the “List of Chemicals” does not constitute a change in the SOP requiring review or retraining. If you have questions concerning the applicability of any recommendation or requirement listed in this procedure, contact the Principal Investigator/Laboratory Supervisor or the campus Chemical Hygiene Officer at [email protected]. Rev. Date: 2021-06-29 2 Flammable Liquids and Solids Chemical Class Standard Operating Procedure 2. Physical & Chemical Properties/Definition of Chemical Group Flammable liquid means a liquid having a flash point1 of not more than 199.4 °F (93 °C).
    [Show full text]
  • Accuracy and Methodologic Challenges of Volatile Organic Compound–Based Exhaled Breath Tests for Cancer Diagnosis: a Systematic Review and Pooled Analysis
    1 Supplementary Online Content Hanna GB, Boshier PR, Markar SR, Romano A. Accuracy and Methodologic Challenges of Volatile Organic Compound–Based Exhaled Breath Tests for Cancer Diagnosis: A Systematic Review and Pooled Analysis. JAMA Oncol. Published online August 16, 2018. doi:10.1001/jamaoncol.2018.2815 Supplement. eTable 1. Search strategy for cancer systematic review eTable 2. Modification of QUADAS-2 assessment tools eTable 3. QUADAS-2 results eTable 6. STARD assessment of each study eTable 7. Summary of factors reported to influence levels of volatile organic compounds within exhaled breath eFigure 1. Risk of bias and applicability concerns using QUADAS-2 eFigure 2. PRISMA flowchart of literature search eTable 4. Details of studies on exhaled volatile organic compounds in cancer eTable 5. Cancer VOCs in exhaled breath and their chemical class. eFigure 3. Chemical classes of VOCs reported in different tumor sites. This supplementary material has been provided by the authors to give readers additional information about their work. © 2018 American Medical Association. All rights reserved. Downloaded From: https://jamanetwork.com/ on 10/01/2021 2 eTable 1. Search strategy for cancer systematic review # Search 1 (cancer or neoplasm* or malignancy).ab. 2 limit 1 to abstracts 3 limit 2 to cochrane library [Limit not valid in Ovid MEDLINE(R),Ovid MEDLINE(R) Daily Update,Ovid MEDLINE(R) In-Process,Ovid MEDLINE(R) Publisher; records were retained] 4 limit 3 to english language 5 limit 4 to human 6 limit 5 to yr="2000 -Current" 7 limit 6 to humans 8 (cancer or neoplasm* or malignancy).ti. 9 limit 8 to abstracts 10 limit 9 to cochrane library [Limit not valid in Ovid MEDLINE(R),Ovid MEDLINE(R) Daily Update,Ovid MEDLINE(R) In-Process,Ovid MEDLINE(R) Publisher; records were retained] 11 limit 10 to english language 12 limit 11 to human 13 limit 12 to yr="2000 -Current" 14 limit 13 to humans 15 7 or 14 16 (volatile organic compound* or VOC* or Breath or Exhaled).ab.
    [Show full text]
  • Overview and Assessment of Priority Substances Globally and Regionally Addressed and Related Emission Limit Value (Elvs)
    UNEP(DEPI)/MED WG. 328/Inf. 1 10 November 2008 ENGLISH MEDITERRANEAN ACTION PLAN MED POL Meeting on the Implementation of NAPs and the Preparation of Legally Binding Measures and Timetables required by Art. 15 of the LBS Protocol Aix-en-Provence (France), 27-28 November 2008 Overview and assessment of priority substances globally and regionally addressed and related Emission Limit Value (ELVs) Background document UNEP/MAP Athens, 2008 Table of Contents 1. INTRODUCTION..................................................................................................... 1 1.1 BACKGROUND................................................................................................... 1 1.2 OBJECTIVES AND SCOPE ................................................................................... 1 2. SUBSTANCES OF CONCERN IN THE MARINE ENVIRONMENT ....................... 2 2.1 ADDRESSING SUBSTANCES OF CONCERN IN THE MEDITERRANEAN: THE LBS PROTOCOL AND THE SAP ............................................................................................. 2 2.2 IDENTIFICATION OF PRIORITY SUBSTANCES: INTERNATIONAL COMPARISON.......... 3 2.2.1 European Union .......................................................................................... 4 2.2.1.1 First initiatives protect the aquatic environment from dangerous substances.......................................................................................................... 4 2.2.1.2 The Water Framework Directive (WFD).............................................. 5 2.2.1.3 The Marine
    [Show full text]
  • The Synthesis of a Water-Soluble Molecule
    THE SYNTHESIS OF A WATER-SOLUBLE MOLECULE CONTAINING A HYDROPHOBIC CAVITY by W. HARRY MANDEVILLE B. S. Colorado School of Mines (1971) SUBMITTED IN PARTIAL FULFILLMENT OF'THE REQUIREMENTS FOR THE DEGREE OF DOCTOR OF PHILOSOPHY at the MASSACHUSETTS INSTITUTE OF TECHNOLOGY May 16, 1975 Signature of Author / Department of Chemistry May , 1975 Certified by K Thesis Supervisor Accepted by --~~~~~~~~~ ( Chairman, Departmental ARCHIVES Committee JUN 11 1975 -2- This Doctoral. Thesis has been examined by a committee of the Department of Chemistry as follows: Professor Dietmar Seyferth I/ Chairman Professor George MI.Whitesides \K. u- '|Thesis Supervisor Professor K. Barry Sharpless -3- to SUSIE... 143 for CHRISTMAS and SNOW and to MY PARENTS -4- "You know how when you stand in the rain with your mouth open how rarely the raindrops hit your tongue... Chemistry is a lot like that. I like standing in the rain." April 30, 1975 -5- THE SYNTHESIS of a WATER-SOLUBLE MOLECULE CONTAINING a HYDROPHOBIC CAVITY by W. Harry Mandeville Submitted to the Department of Chemistry at the Massachusetts Institute of Technology, May 16, 1975, in partial fulfillment of the requirements for the degree of Doctor of Philosophy. ABSTRACT Part I: The Synthesis of a Water-Soluble Molecule Containing a Hydrophobic Cavity The syntheses and characterization of three macrocyclic compounds, cyclohexatriaconta[l,2,13,14,25,26-b,b',b"]tris- quinoxaline (1) cyclohexatriaconta[l,2,13,14,25,26-b,b',b"] tris(diethyl 1H,3H,2-oxoimadazo[4,5-g]quinoxalino-l,3-di- a-acetate) (2) and cyclopentatetraconta[1,2,16,17,31,32-b, b',b"]trisqu'lnoxaline (3 are described.
    [Show full text]
  • Fedex Ground Hazardous Materials Shipping Guide Is Intended to Simplify Title 49 CFR
    FedEx Ground Package Systems Inc. is committed to the safe transportation of hazardous materials. It is very important that each person engaged in the transportation of hazardous materials has the proper training and is thoroughly familiar with the Title 49CFR (Code of Federal Regulations) and/or USPS Publication 52. This guide is intended only to assist you in your preparation of hazardous materials shipped via FedEx Ground Package Systems Inc. It is the shipper’s responsibility to ensure each hazardous material package is in compliance with applicable Department of Transportation (D.O.T.) regulations and FedEx Ground Package Systems Inc. requirements. Failure to comply with these regulations and requirements may subject the shipper and carrier to fines and penalties. Improperly prepared hazmat packages or documentation may be subject to an additional charge(s) due to the unexpected hanlding associated with these shipments. Due to the changing nature of D.O.T. regulations and other information, it is impossible to guarantee absolute accuracy of the material contained in this guide. FedEx Ground Package Systems Inc., therefore, cannot assume any responsibility for omissions, errors, misprinting, or ambiguity contained within this guide and shall not be held liable in any degree for any loss or injury caused by such omission or error presented in this publication. Shippers should consult the most current version of the hazardous material regulations. Training is mandatory for those shipping hazardous materials, including limited quantity and other exceptions. The www.shipsafeshipsmart.com battery and hazmat training programs offer shippers an economical source of basic ground battery and/or hazardous materials shipping as well as addressing FedEx Ground specific issues.
    [Show full text]
  • "Hydrocarbons," In: Ullmann's Encyclopedia of Industrial Chemistry
    Article No : a13_227 Hydrocarbons KARL GRIESBAUM, Universit€at Karlsruhe (TH), Karlsruhe, Federal Republic of Germany ARNO BEHR, Henkel KGaA, Dusseldorf,€ Federal Republic of Germany DIETER BIEDENKAPP, BASF Aktiengesellschaft, Ludwigshafen, Federal Republic of Germany HEINZ-WERNER VOGES, Huls€ Aktiengesellschaft, Marl, Federal Republic of Germany DOROTHEA GARBE, Haarmann & Reimer GmbH, Holzminden, Federal Republic of Germany CHRISTIAN PAETZ, Bayer AG, Leverkusen, Federal Republic of Germany GERD COLLIN, Ruttgerswerke€ AG, Duisburg, Federal Republic of Germany DIETER MAYER, Hoechst Aktiengesellschaft, Frankfurt, Federal Republic of Germany HARTMUT Ho€KE, Ruttgerswerke€ AG, Castrop-Rauxel, Federal Republic of Germany 1. Saturated Hydrocarbons ............ 134 3.7. Cumene ......................... 163 1.1. Physical Properties ................ 134 3.8. Diisopropylbenzenes ............... 164 1.2. Chemical Properties ............... 134 3.9. Cymenes; C4- and C5-Alkylaromatic 1.3. Production ....................... 134 Compounds ...................... 165 1.3.1. From Natural Gas and Petroleum . .... 135 3.10. Monoalkylbenzenes with Alkyl Groups 1.3.2. From Coal and Coal-Derived Products . 138 >C10 ........................... 166 1.3.3. By Synthesis and by Conversion of other 3.11. Diphenylmethane .................. 167 Hydrocarbons . .................. 139 4. Biphenyls and Polyphenyls .......... 168 1.4. Uses ............................ 140 4.1. Biphenyl......................... 168 1.5. Individual Saturated Hydrocarbons ... 142 4.2. Terphenyls......................
    [Show full text]
  • United States Patent 19 11 Patent Number: 6,156,692 Nubel Et Al
    USOO6156692A United States Patent 19 11 Patent Number: 6,156,692 Nubel et al. (45) Date of Patent: *Dec. 5, 2000 54 RUTHENIUM-CONTAINING CATALYST WO 98/39346 9/1998 WIPO. COMPOSITION FOR OLEFIN METATHESIS OTHER PUBLICATIONS 75 Inventors: Philip O. Nubel; Craig Lane Hunt; C. Grunwald et al., Advance ACS Abstracts, vol. 4, No. 6, David S. Choi, all of Naperville; Tobin p. 140, Mar. 15, 1996. J. Marks, Evanston, all of Ill. Gruenwald, C., et al., “Five-Coordinate 16-Electron Car bene- and Vinylidenruthenium (II) Complexes Prepared 73 Assignee: BP Amoco Corporation, Chicago, Ill. from RuC12(C8H12)n or from the New Dihydridoruthe nium (IV) Compound RuH2C12(PiPr3)2]", Organometal * Notice: This patent is Subject to a terminal dis lics (1996), 15: 1960–1962. claimer. Demonceau, A., et al., Novel Ruthenium-Based Catalyst Systems for the Ring-Opening Metathesis Polymerization 21 Appl. No.: 08/842,251 of Low-Strain Cyclic Olefins, Macromolecules (1997), 30: 3127-3136. 22 Filed: Apr. 24, 1997 K.J. Ivin, “Summary of Catalyst Systems”, Olefin Metathe Related U.S. Application Data sis, Academic Press, New York, 1983, p. 34. 60 Provisional application No. 60/016,554, Apr. 30, 1996, and Porri, L., et al., “Ring-Opening Polymerizataion of provisional application No. 60/033,257, Dec. 6, 1996. Cycloolefins with Catalysts Derived from Ruthenium and Iridium', Die Makromolekulare Chemie, 1974, 175: (51) Int. Cl. ................................................ B01J 31/00 3097-31.15. 52 U.S. C. ... ... 502/155; 502/150, 502/152; Demonceau, A., et al., “Ruthenium-catalysed ring-opening 502/158; 502/169; 502/162 metathesis polymerization of cycloolefins initiated by dia 58 Field of Search ....................................
    [Show full text]
  • Chemical Substances in Lattice Semiconductor Products
    July 8, 2021 Frequently Requested Information Regarding Chemical Substances in Lattice Semiconductor Products Lattice Semiconductor is fully committed to providing environmentally friendly processes, products, and shipping packages that meet our corporate commitment to protect the natural environment. Lattice has been actively tracking and is fully supportive of the various industry efforts throughout the world to phase out the use of undesirable substances from electronic equipment, materials, and manufacturing processes. Lattice Semiconductor Corporation represents that the substances listed below are not intentionally or willfully added to Lattice’s plastic device packages or used in the manufacturing process, excluding trace impurities (see the referenced tables for more detailed listings of certain categories of substances). PLEASE NOTE: This publication is supplemental to Lattice’s RoHS2 Compliance and REACH Compliance declaration letters; substances regulated under these two regulations are not listed in this document. [1,1'-Biphenyl]-4-ol, 3,5-bis(1,1-dimethylethyl)- 2668-47-5 1,2,4-Trichlorobenzene 120-82-1 1,2-Benzenedicarboxylicacid di(C8-10 branched alkyl ester, C9 rich) 68515-48-0 1,2-Dichloroethylene 156-59-2 1,2-Dichloropropane 78-87-5 1,2-Diisopropylnaphthalene 94133-79-6 1,2-Diphenylhydrazine 122-66-7 1,3-Butadiene 106-99-0 1,3-Dichloro-2-propanol 13674-87-8 1,3-Dichlorobenzene 541-73-1 1,3-Dichloroprop-1-ene 542-75-6 1,3-Dichloropropene 10061-02-6 1,3-Diisopropylnaphthalene 57122-16-4 1,4-dicyclohexylbenzene 1087-02-1
    [Show full text]
  • Calculation of the Isobaric Heat Capacities of the Liquid and Solid Phase of Organic Compounds at and Around 298.15 K Based on Their “True” Molecular Volume
    molecules Article Calculation of the Isobaric Heat Capacities of the Liquid and Solid Phase of Organic Compounds at and around 298.15 K Based on Their “True” Molecular Volume Rudolf Naef Department of Chemistry, University of Basel, 4003 Basel, Switzerland; [email protected]; Tel.: +41-61-9119273 Received: 28 March 2019; Accepted: 20 April 2019; Published: 24 April 2019 Abstract: A universally applicable method for the prediction of the isobaric heat capacities of the liquid and solid phase of molecules at 298.15 K is presented, derived from their “true” volume. The molecules’ “true” volume in A3 is calculated on the basis of their geometry-optimized structure and the Van-der-Waals radii of their constituting atoms by means of a fast numerical algorithm. Good linear correlations of the “true” volume of a large number of compounds encompassing all classes and sizes with their experimental liquid and solid heat capacities over a large range have been found, although noticeably distorted by intermolecular hydrogen-bond effects. To account for these effects, the total amount of 1303 compounds with known experimental liquid heat capacities has been subdivided into three subsets consisting of 1102 hydroxy-group-free compounds, 164 monoalcohols/monoacids, and 36 polyalcohols/polyacids. The standard deviations for Cp(liq,298) were 20.7 J/mol/K for the OH-free compunds, 22.91 J/mol/K for the monoalcohols/monoacids and 16.03 J/mol/K for the polyols/polyacids. Analogously, 797 compounds with known solid heat capacities have been separated into a subset of 555 OH-free compounds, 123 monoalcohols/monoacids and 119 polyols/polyacids.
    [Show full text]