API DR 76-1999 DETERMINATION OF EMISSIONS FROM RETAIL GASOLINE OUTLETS USING OPTICAL REMOTE SENSING PILOT FIELD STUDY AT A NON-VAPOR RECOVERY SITE - PROJECT SUMMARY REPORT - VOLUME.pdf
《API DR 76-1999 DETERMINATION OF EMISSIONS FROM RETAIL GASOLINE OUTLETS USING OPTICAL REMOTE SENSING PILOT FIELD STUDY AT A NON-VAPOR RECOVERY SITE - PROJECT SUMMARY REPORT - VOLUME.pdf》由会员分享,可在线阅读,更多相关《API DR 76-1999 DETERMINATION OF EMISSIONS FROM RETAIL GASOLINE OUTLETS USING OPTICAL REMOTE SENSING PILOT FIELD STUDY AT A NON-VAPOR RECOVERY SITE - PROJECT SUMMARY REPORT - VOLUME.pdf(59页珍藏版)》请在麦多课文档分享上搜索。
1、41“ American .1 Petroleum Institute DETERMINATION OF EMISSIONS FROM RETAIL GASOLINE OUTLETS USING OPTICAL REMOTE SENSING: PILOT FIELD STUDY AT A NON-VAPOR RECOVERY SITE PROJECT SUMMARY REPORT VOLUME I Health and Environmental Sciences Department Publication Number DR 76 June 1999 American Petroleum
2、Institute American Petroleum Institute Environmental, Health, and Safety Mission and Guiding Principles MISSION PRINCIPLES The members. of the American Petroleum Institute are dedicated to continuous ejfons to improve the compatibility of our operations with the environment while economically develo
3、ping energy resources and SuPplying high qwiliry products and services to consumers. We recogmze our responsibility to work with the public. the government, and others to develop and to use natural resources in an environmentally sound manner while protecting the health and safety of our employees a
4、nd the public. To meet these responsibilities, API members pledge to manage our businesses according to the following principles using sound science to prioritize risks and to implement cost-effective management practices: To recognize and to respond to community concerns about our raw materials, pr
5、oducts and operations. To operate our plants and facilities, and to handle our raw materials and products in a manner that protects the environment, and the safety and health of our employees and the public. To make safety, health and environmental considerations a priority in our planning, and our
6、development of new products and processes. To advise promptly, appropriate officials, employees, customers and the public of information on significant industry-related safety, health and environmental hazards, and to =ommend protective measures. To counsel customers, uansporters and others in the s
7、afe use, transportation and disposal of our raw materials, products and waste materials. To economically develop and produce natural resources and to conserve those resources by using energy efficiently. To extend knowledge by conducting or supporting research on the safety, health and environmental
8、 effects of our raw materials, products, processes and waste materials. To commit to reduce overall emission and waste generation. To work with others to resolve problems created by handling and disposal of hazardous substances from our operations. To participate with government and others in creati
9、ng responsible laws, regulations and standards to safeguard the community, workplace and environmcnL To promote these principles and practices by sbaring experiences and offering assistance to others who produce, handle, use, transport or dispose of similar raw mateiials, petroleum products and wast
10、eS. Determination of Emissions from Retail Gasoline Outlets Using Optical Remote Sensing: Pilot Field Study at a Non-Vapor Recovery Site Project Summary Report Volume I Health and Environmental Sciences Department API PUBLICATION NUMBER DR 76 PREPARED UNDER CONTRACT BY: WILLIAM M. VAUGHAN JUDITH 0.
11、ZWICKER REMOTE SENSING=AIR, INC. 8147 DELMAR BOULEVARD ST. LOUIS MISSOURI63130 JUNE 1999 Reproduced by Global Engineering Documents With the Permission of API Under Royalty Agreement GLOBAL BNGINEERING DOCUMENTS American Petroleum Institute FOREWORD API PUBLICATIONS NECESSARILY ADDRESS PROBLEMS OF A
12、 GENERAL NATURE. WITH RESPECT TO PARTICULAR CIRCUMSTANCES, LOCAL, STATE, AND FEDERAL LAWS AND REGULATIONS SHOULD BE REVIEWED. API IS NOT UNDERTAKING TO MEET THE DUTIES OF EMPLOYERS, MANUFAC TURERS, OR SUPPLIERS TO WARN AND PROPERLY TRAIN AND EQUIP THEIR EMPLOYEES, AND OTHERS EXPOSED, CONCERNING HEAL
13、TH AND SAFETY RISKS AND PRECAUTIONS, NOR UNDERTAKING THEIR OBLIGATIONS UNDER LOCAL, STATE, OR FEDERAL LAWS. NOTHING CONTAINED IN ANY API PUBLICATION IS TO BE CONSTRUED AS GRANTING ANY RIGHT, BY IMPLICATION OR OTHERWISE, FOR THE MANU FACTURE, SALE, OR USE OF ANY METHOD, APPARATUS, OR PRODUCT COV ERED
14、 BY LETTERS PATENT. NEITHER SHOULD ANYTHING CONTAINED IN THE PUBLICATION BE CONSTRUED AS INSURING ANYONE AGAINST LIABIL ITY FOR INFRINGEMENT OF LETTERS PATENT. All rights reserved. No pan of tltis wort may be rwprodut:ed, Jtored in a NtrieWJIJYstem, or rransmitted by cmy means, e/t!ctronic, meclumic
15、tJI phorocopying, recording, or otherwise, widaout prior written permission from tM publiJh canisters at 0, 2.5 and 5 m at the 4 hours most downwind pillar. TedJarTM bags at three pillars. 4 hours Determination of At least one OP-FTIR system downwind 10 hours Emission Factors with tracer release, me
16、teorological data, and (Total and Vehicle vehicle fueling data and/or totalizer data. Fueling) Determination of Bulk fuel delivery data, OP-FTIR data 0.5 hours Emission Factors downwind of the vent pipes, tracer release for Bulk Fuel from the vent pipes, vehicle fueling data, and Delivery meteorolog
17、ical data. The total volume of gasoline dispensed was determined by regularly recording the totalizer values at each pump for calculating total emission factors. The amount of fuel dispensed, the type of vehicle, the start and end time of the fueling, the grade of gasoline and pump number as well as
18、 estimates of areas of spills were recorded for each vehicle fueling during certain periods. ES-3 Figure Es-1. Site diagram showing locations of equipment for afternoon monitoring on June 28, 1997. Sign 0 0 Fl Ut Ven!Pipoa . ,- STORE H lm T, IH 1!1 0 “ u 0 C t 0 ES-4 Grassy Slope “ , I FEAT-OJ ETGrn
19、R El _FTIR * , . Cl IN C:. IN- MIIW 0 TCMW I T_,_ STUDY RESULTS The results of the monitoring are swnmarized below: Upwind/Downwind Monitoring No upwind concentrations of benzene or toluene were observed above the OP-UV detection limits for these two compounds (7.5 J.lg/m3 and 12.5 J.lg/m3, respecti
20、vely). Upwind OP-FTIR concentrations were observed when: (a) winds were variable and emissions from the fueling area were transported to the upwind beam, (b) propane was dispensed upwind (winds from the east) of the upwind beam, and (c) winds were steady (about 3 m/s) from the southeast during the r
21、ush hour morning monitoring on June 27, 1997. The upwind concentrations that might be attributed to the rush hour traffic on the nearby interstate were near the minimum detectable limits of 1 00 J.lg/mJ. Determination of Emission Rates Emission rates of gasoline vapors in g/s were determined using t
22、he downwind OP-FTIR gasoline and SF6 path-integrated concentrations and the known tracer release rates (0.03 to 0.16 g/s) for each of the test scenarios. The emission rates that were determined using the OP-FTIR data collected at the downwind fenceline (:0 to 2 g/s) incorporate the impact of vehicle
23、 fueling, spills, and other fugitive emissions. The highest emission rates at the downwind fenceline were observed during the early monitoring with the downwind beam only a few meters from the closest fueling area. The vehicle fueling emission factors are summarized in Tables ES-2. The values are qu
24、ite consistent for all monitoring periods and for both OP-FTIR systems even at different heights and positions. The average and standard deviation of the coefficients are 0.0016 0.0005 kg emitted/kg dispensed or a vehicle fueling emission factor of 0.16% 0.05% mass emissions. This is about 40% highe
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