ASTM F1737 F1737M-2015 Standard Guide for Use of Oil Spill Dispersant Application Equipment During Spill Response Boom and Nozzle Systems《在溢出期间使用溢油分散剂应用设备的标准指南 喷杆和喷嘴系统》.pdf
《ASTM F1737 F1737M-2015 Standard Guide for Use of Oil Spill Dispersant Application Equipment During Spill Response Boom and Nozzle Systems《在溢出期间使用溢油分散剂应用设备的标准指南 喷杆和喷嘴系统》.pdf》由会员分享,可在线阅读,更多相关《ASTM F1737 F1737M-2015 Standard Guide for Use of Oil Spill Dispersant Application Equipment During Spill Response Boom and Nozzle Systems《在溢出期间使用溢油分散剂应用设备的标准指南 喷杆和喷嘴系统》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F1737/F1737M 15Standard Guide forUse of Oil Spill Dispersant Application Equipment DuringSpill Response: Boom and Nozzle Systems1This standard is issued under the fixed designation F1737/F1737M; the number immediately following the designation indicates the yearof original adoption or,
2、in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval.A superscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This guide covers considerations for the maintenance,storage, and use of oil spil
3、l dispersant application systems.1.2 This guide is applicable to spray systems employingbooms and nozzles and not to other systems such as firemonitors or single-point spray systems.1.3 This guide is applicable to systems employed on shipsor boats and helicopters or airplanes.1.4 This guide is appli
4、cable to temperate weather conditionsand may not be applicable to freezing conditions.1.5 This guide is one of five related to dispersant applicationsystems. Guide F1413/F1413M covers design, Practice F1460/F1460M covers calibration, Test Method F1738 coversdeposition, Guide F1737 covers the use of
5、the systems, andGuide F2465/F2465M covers the design and specification forsingle-point spray systems. Familiarity with all five standardsis recommended.1.6 The values stated in either SI units or inch-pound unitsare to be regarded separately as standard. The values stated ineach system may not be ex
6、act equivalents; therefore, eachsystem shall be used independently of the other. Combiningvalues from the two systems may result in non-conformancewith the standard.1.7 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of th
7、e user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2F1413/F1413M Guide for Oil Spill Dispersant ApplicationEquipment: Boom and Nozzle SystemsF1460/F1460M Pract
8、ice for Calibrating Oil Spill DispersantApplication Equipment Boom and Nozzle SystemsF1738 Test Method for Determination of Deposition ofAerially Applied Oil Spill DispersantsF2465/F2465M Guide for Oil Spill Dispersant ApplicationEquipment: Single-point Spray SystemsF2532 Guide for Determining Net E
9、nvironmental Benefit ofDispersant Use3. Significance and Use3.1 This guide provides information, procedures, and re-quirements for management and operation of dispersant sprayapplication equipment (boom and nozzle systems) in oil spillresponse.3.2 This guide provides information on requirements fors
10、torage and maintenance of dispersant spray equipment andassociated materials.3.3 This guide will aid operators in ensuring that a disper-sant spray operation is carried out in an effective manner.4. Background to the Use of Dispersants and SpraySystems4.1 Primary Considerations:4.1.1 Use of dispersa
11、nts, particularly in a specific area, maybe subject to regulatory approval. Net Environmental BenefitAnalysis is used for dispersant decision-making (GuideF2532). Dispersant response is for use in the early stages of aspill; so, it is strongly recommended that a rapid approvalmechanism, or pre-appro
12、val, be part of response planning.4.1.2 Nature of Oil Slick(s) to Be Treated:4.1.2.1 The effectiveness of dispersants is dependent (as-suming proper application) on two factors; the oil compositionand the sea surface energy. The primary factor is the oilcomposition. Heavier oils, those that contain
13、large amounts ofcomponents such as asphaltenes, disperse poorly, and thosewhich have only a small amount of these disperse more easily.As oil weathers on the sea surface, its composition changes andit generally becomes less dispersable. Some oils can also formhighly viscous water-in-oil emulsions, k
14、nown as “chocolate1This guide is under the jurisdiction of ASTM Committee F20 on HazardousSubstances and Oil Spill Responseand is the direct responsibility of SubcommitteeF20.13 on Treatment.Current edition approved March 1, 2015. Published April 2015. Originallyapproved in 1996. Last previous editi
15、on approved in 2010 as F1713/F1713M 10.DOI: 10.1520/F1737_F1737M-15.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM w
16、ebsite.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1mousse,” particularly in areas of high energy waves. Oncemousse has formed, dispersants may not be effective.4.1.2.2 Viscosity is an indicator of the oil composition, butaffects d
17、ispersion by its influence on the amount of dispersantpenetrating into and mixing with the oil. Dispersant can run offthe surface of highly viscous oils or will mix only slowly withthem. Traditionally, oils of a viscosity between 2000 and10 000 mPa were thought to be undispersable. However,viscosity
18、 may not be as much a limitation as is composition asnoted above, especially for dispersants which are not quicklylost to the water column. Viscosity may have its largest effecton the time required for mixing with the oil.4.1.2.3 Natural weathering affects the composition and vis-cosity of the oil.
19、Much of the oil evaporated will usuallyconsist of the most dispersable fraction.Also, loss of the lighterfractions by evaporation increases the viscosity. This combinedeffect may rapidly reduce the dispersability of some spilledoils. Some oils may not be effectively dispersed after only 24h on the s
20、urface.4.1.2.4 Sea surface energy can be an important factor indispersant effectiveness. Higher sea energy is needed to dis-perse oil of less favorable composition. Very low sea energiesoften result in poor dispersant performance. Very high seas canbe detrimental since they can promote water-in-oil
21、emulsionformation and can cause oil slicks to become discontinuous orsubmerged. Spraying such slicks can result in significantdispersant loss.4.1.3 Environmental Conditions, Including Wind, Sea State,Visibility, and Temperature of Air and WaterIt is essential tominimize dispersant loss in aerial app
22、lication due to wind driftand air turbulence. Large droplets assist in this, but, in addition,the aircraft should be flown as low as safety considerationsallow. It is also best to fly into the wind while spraying, so asto limit wind drift.5. Equipment Types For Vessels and Aircraft5.1 A boom and noz
23、zle spraying system consists of one ormore pumps, flowmeters, storage tanks, spray booms, andnozzles that are mounted in various configurations dependingon the platform.5.2 Single-point spray systems are not covered by thisstandard. See Guide F2465/F2465M.5.3 Dispersant application systems on ships
24、or boats may beportable or permanently installed. Vessels may have built-indispersant storage tanks and on-board pumps for use with thespraying system.5.4 Dispersant application systems on helicopters are mostcommonly slung beneath the aircraft, with remote controlsavailable to the pilot. Some speci
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