API PUBL 4592-1994 Odor Threshold Studies Performed with Gasoline and Gasoline Combined with MTBE ETBE and TAME《汽油和结合甲基叔丁基醚.乙基叔丁基醚和甲基叔戊基醚的汽油的气味阈值研究》.pdf
《API PUBL 4592-1994 Odor Threshold Studies Performed with Gasoline and Gasoline Combined with MTBE ETBE and TAME《汽油和结合甲基叔丁基醚.乙基叔丁基醚和甲基叔戊基醚的汽油的气味阈值研究》.pdf》由会员分享,可在线阅读,更多相关《API PUBL 4592-1994 Odor Threshold Studies Performed with Gasoline and Gasoline Combined with MTBE ETBE and TAME《汽油和结合甲基叔丁基醚.乙基叔丁基醚和甲基叔戊基醚的汽油的气味阈值研究》.pdf(76页珍藏版)》请在麦多课文档分享上搜索。
1、API PUBL*4592 94 I 0732270 0517413 084 Odor Threshold Studies Performed with Gasoline and Gasoline Combined with MTBE, ETBE and TAME HEALTH AND ENVIRONMENTAL SCIENCES API PUBLICATION NUMBER 4592 JANUARY 1994 American Petroleum Institute 1220 L Street. Northwest 11 Washington, D.C. 20005 API PUBLr459
2、2 94 0732290 0517414 TIO Odor Thresholds Studies Performed with Gasoline and Gasoline Combined with MTBE, ETBE and TAME Health and Environmental Sciences Department API PUBLICATION NUMBER 4592 PREPARED UNDER CONTRACT BY: TRC ENVIRONMENTAL CORPORATION 5 WATERSIDE CROSSING WINDSOR, CONNECTICUT DECEMBE
3、R 1993 American Petroleum Institute API PUBL*4592 94 m 0732290 05117435 957 m FOREWORD API PUBLICATIONS NECESSARILY ADDRESS PROBLEMS OF A GENERAL NATURE. WITH RESPECT TO PARTICULAR CIRCUMSTANCES, LOCAL, STATE, AND FEDERAL LAWS AND REGULATIONS SHOULD BE REVIEWED. AFI IS NOT UNDERTAKING TO MEET THE DU
4、TIES OFEMFLOYERS, MANWAC- TLJRERS, OR SUPPLIERS To WARN AND PROPERLY TRAIN AND EQUIP THEIR EMPLOYEES, AND OTHERS EXPOSED, CONCERNING HEALTH AND SAFETY RISKS AND PRECAUTIONS, NOR UNDERTAKING THEIR OBLIGATIONS WER LOCAL, STATE, OR FEDERAL LAWS. NOTHING CONTAINED IN ANY API PUBLICATION IS TO BE CONSTRU
5、ED AS GRANTING ANY RIGHT, BY IMPLICATION OR OTHERWISE, FOR THE MANU- FACTURE, SALE, OR USE OF ANY METHOD, APPARAWS, OR PRODUCT COV- ERED BY LETTERS PATENT. NEITHER SHOULD ANYTHING CONTAINED IN ITY FOR INFRINGEMENT OF LETTERS PATENT. THE PUBLICATION BE CONSTRUED AS INSURING ANYONE AGAINST LIABIL- Cop
6、yright Q 1994 American Petroleum Institute ii API PUBL+4592 74 = 0732290 05l174Lb 893 = ACKNOWLEDGMENTS THE FOLLOWING PEOPLE ARE RECOGNIZED FOR THEIR CONTRIBUTIONS OF TIME AND EXPERTISE DURING THIS STUDY AND IN THE PREPARATION OF THIS REPORT MI STAFF CONTACT Robert Barter Ph.D., Health and Environme
7、ntal Sciences Department AD HOC WO RKGROW O F THE TOXICOLOGY TASK FORCE Charles R. Clark B.D., Unocai Corporation Wayne Daughtrey Ph.D., Exxon Biomedicai Sciences Mark D. Saperstein ARCO iii API PUBLJ4592 4 = 0732290 05L7417 72T TABLE OF CONTENTS SECTION EXECUTIVE SUMMARY 1. INTRODUCTION 2. EXPERIME
8、NTAL PROCEDURES TASTE EVALUATION PROCEDURES ODOR EVALUATION PROCEDURES Threshold Determinations in Air Samples Threshold Determinations in Aqueous Samples CALCULATION OF ODOR AND TASTE THRESHOLD VALUES PANEL 3. RESULTS AND CONCLUSIONS TASTE EVALUATION RESULTS ODOR EVALUATION RESULTS Results From the
9、 Evaluation of MTBE Results From the Evaluation of Gasoline Results From the Evaluation of the Gasoline and Oxygenate Mixtures CONCLUSIONS REFERENCES APPENDIX A MTBE Data Sheets APPENDIX B Gasoline Headspace Vapor Data Sheets PAGE e5-1 1-1 2-1 2-1 2-2 2-2 2-8 2-8 . 2-12 3-1 3-1 3-1 3-1 3-3 3-5 3-9 R
10、- 1 APPENDIX C Gasoline-Oxygenate Headspace Vapor Data Sheets API PUBL*4592 94 m 0732290 0537438 bbb m TABLE 2- 1 2-2 2-3 3- 1 3-2 3-3 3-4 3-5 3-6 3-7 FIGURE 2- 1 2-2 LIST OF TABLES TFIC SOLVENT BAG STANDARD PREPARATION DATA FORM 2-3 E), EVALUATION FORM FOR THE DYNAMIC TFIIANGLE OLFACTOMETER 2-9 TAB
11、LE FOR CONVERSION OF RANK DATA TO X-AXIS PL.OT VALUES 2-1 o TASTE THRESHOLD VALUES FOR MTBE IN WATER 3- 1 ODOR DETECTION AND RECOGNITION THRESHOLD VALUES FOR MTBE IN AIR AND WATER ODOR INTENSITY VALUES FOR MTBE IN AIR AND WATER 3-1 3-2 OUOR DETECTION AND RECOGNITION THRESHOLD VALUES FOR GASOLINE HEA
12、DSPACE VAPOR SAMPLES ODOR INTENSITY VALUES FOR GASOLINE HEADSPACE VAPOR SAM PLES 3-4 ODOR DETECTION AND RECOGNITION THRESHOLD VALUES GASOLINE-OXYGENATE HEADSPACE VAPOR SAMPLES 3-5 ODOR INTENSITY VALUES FOR GASOLINE-OXYGENATE HEADSPACE VAPOR SAMPLES 3-7 3-3 LIST OF FIGURES DW C DIL ITION FORCED-CHOIC
13、E TRIANG OL-FACTOM ETER B LITANOL OLFACTOMETER E 2r6 2-7 API PUBL*4592 94 0732290 0517419 5T2 EXECUTIVE SUMMARY The Clean Air Act Amendments of 1990 require that gasoline sold in areas of non- attainment for carbon monoxide or ozone contain specified amounts of fuel oxygenates. Fuel oxygenates inclu
14、de, methyl-tertiary-butyl ether (MTBE), ethyl- tertiary-butyl ether (ETBE), and tertiary-amyl-methyl ether (TAME). These oxygenated compounds increase the oxygen content of fuels, producing a more complete combustion, resulting in a reduction in carbon monoxide emissions. Oxygenated compounds such a
15、s MTBE have been previously added to gasoline to enhance octane ratings. More recently, larger amounts of oxygenates, MTBE, in particular, have been added to fuels to meet Clean Air Act Amendment requirements. This study examines the effect of oxygenate addition on the odor of gasoline blends. Three
16、 blends of gasoline (summer, winter and a “composite“) were evaluated for their odor detection and recognition thresholds in air. These gasolines were also combined with the gasoline oxygenates MTBE, ETBE or TAME to evaluate the effect of the oxygenates on the gasolines odor detection and recognitio
17、n thresholds. Additionally, commercialgrade MTBE (97% pure, obtained from ARCO Chemical Co.) was evaluated for its odor detection and recognition thresholds in air and water as well as its taste threshold in water. The detection threshold is defined as the minimum concentration at which 50 percent o
18、f a given population can differentiate between a sample containing the odorant and a sample of odor free air. The recognition threshold value is defined as the minimum concentration at which 50 percent of a given population can recognize or identify the odorant. These evaluations were conducted at T
19、RC Environmental Corporations (TRCs) Odor Laboratory in Windsor, Connecticut. The average detection and recognition threshold values for commercial grade MTBE were determined to be 0.053 and 0.1 25 parts-per-million (ppm), respectively. The average detection and recognition threshold values for this
20、 MTBE in water were ES-1 API PUBL*4572 74 H 0732290 0537420 234 W determined to be 0.045 and 0.055 ppm, respectively. In general, compounds with odor thresholds below.1 ppm are considered highly odorous. The panelists descriptions of MTBEs odor included alcohol, chemical, ether and butane. Finally,
21、the average taste detection threshold value for this oxygenate was determined to be 0.039 ppm. The panelists found the taste of MTBE to be highly objectionable. The average detection and recognition threshold values for the headspace vapor of the three gasoline blends are as follows: summer blend -
22、0.576 and 0.802 ppm, respectively; winter blend - 0.479 and 1.121 ppm, respectively; and “composite“ blend - 0.474 and 0.765 ppm, respectively. In general, the panelists described all three blends as smelling like gasoline. The average detection and recognition threshold values for the headspace vap
23、or of the gasoline-oxygenate mixtures are as follows: summer blend + 3% MTBE (97% purity) - 0.5 and 0.696 ppm, respectively; summer blend + 11 % MTBE (97% purity) - 0.275 and 0.710 ppm, respectively; summer blend + 15% MTBE (97% purity) - 0.264 and 0.686 ppm, respectively; summer blend + 15% MTBE (9
24、9% punty) - 0.1 13 and 0.358 ppm, respectively. The odors associated with these mixtures included organic volatile, gasoline, ether, car exhaust, sweet gasoline and gasoline with ether. The summer blend of gasoline was also mixed with 15% ETBE (99% purity) and also with 15% TAME (94% purity). The av
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