SSPC TR 3-2000 Dehumudification and Temperature Control During Surface Preparation Application and Curing for Coatings Linings of Steel Tanks Vessels and Other Enclosed Areas (NACE.pdf
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1、SSPC-TR 3/NACE 6A192 December, 2000 SSPC-TR 3 NACE 6A192 Joint Technical Committee Report SSPC-TR 3/NACE 6A192 Dehumidification and Temperature Control During Surface Preparation, Application, and Curing for Coatings/Linings of Steel Tanks, Vessels, and Other Enclosed Spaces This SSPC: The Society f
2、or Protective Coatings (SSPC)/NACE International (NACE) report represents a consensus of those individual members who have reviewed this document, its scope, and provisions. Its acceptance does not in any respect preclude anyone, whether he has adopted the report or not, from manufacturing, marketin
3、g, purchasing, or using products, processes, or procedures not in conformance with this report. Nothing contained in this SSPC/NACE report is to be construed as granting any right, by implication or otherwise, to manufacture, sell, or use in connection with any method, apparatus, or product covered
4、by Letters Patent, or as indemnifying or protecting anyone against liability for infringement of Letters Patent. This report should in no way be interpreted as a restriction on the use of better procedures or materials. Neither is this report intended to apply in all cases relating to the subject. U
5、npredictable circumstances may negate the usefulness of this report in specific instances. SSPC and NACE assume no responsibility for the interpretation or use of this report by other parties. Users of this SSPC/NACE report are responsible for reviewing appropriate health, safety, environmental, and
6、 regulatory documents and for determining their applicability in relation to this report prior to its use. This SSPC/NACE report may not necessarily address all potential health and safety problems or environmental hazards associated with the use of materials, equipment, and/or operations detailed o
7、r referred to within this report. Users of this SSPC/NACE report are also responsible for establishing appropriate health, safety, and environmental protection practices, in consultation with appropriate regulatory authorities if necessary, to achieve compliance with any existing applicable regulato
8、ry requirements prior to the use of this report. CAUTIONARY NOTICE: The user is cautioned to obtain the latest edition of this report. SSPC/NACE reports are subject to periodic review, and may be revised or withdrawn at any time without prior notice. SSPC and NACE require that action be taken to rea
9、ffirm, revise, or withdraw this report no later than ten years from the date of initial publication. Approved December 2000 2000, SSPC and NACE International NOTICE TO THE READER: The NACE and SSPC releases of this publication contain identical wording in the same sequence. Publication format may di
10、ffer. 1SSPC-TR 3/NACE 6A192 December, 2000 Foreword The use of dehumidification and temperature control has become more common during coating/lining operations and much has been learned about ways to optimize its use to achieve maximum benefits at minimum cost. This technical committee report presen
11、ts current information about why and how dehumidification and temperature control are being used to achieve higher-quality coating/ lining projects. It is intended to be a resource for engineers and coating consultants who write specifi-cations for coating projects involving tanks or enclosed spaces
12、. This report was originally prepared by NACE Task Group T-6A-60 on The Need for Dehumidification Equipment in the Application of Linings. This revision was prepared by NACE Task Group 003 on Dehumidification. This Task Group is administered by NACE Specific Technology Group (STG) 80 on Intersociety
13、 Joint Coatings Activities, and is sponsored by STG 03 on Protective Coatings and Linings Immersion/Buried. The Task Group also has representation from SSPC Group Committee C.2 on Surface Preparation. This report is published by SSPC and by NACE International under the auspices of STG 80. Introducti
14、on The use of dehumidification and temperature control during surface preparation and coating/lining application can be beneficial in a variety of ambient conditions. When used properly, dehumidification (DH) provides air dew points well below the surface temperature and reduces the relative humidit
15、y (RH) at the surface. Reducing the RH at the surface can retard rust bloom. The health and safety of personnel is also a factor in the design of a dehumidification system. Dehumidification equipment that is properly sized for a given space provides air flow for safe working conditions. The lower ex
16、plosive limits (LELs), toxicity levels, and oxygen levels are all evaluated at each stage of the project. The volume of coating to be sprayed per hour and the percentage of solvent and solids to be added is calculated using manufacturers data sheets. The formulas for these calculations can be found
17、in NFPA(1)33.1The appropriate air-flow rate of the dehumidified and of the exhausted air through the enclosure and the proper instrumentation to be used for monitoring during both stages of the project are also determined. Glossary of Terms Terms used in this report are widely used in several engine
18、ering disciplines. Precise definitions are contained in other references, notably the ASHRAE(2)Handbook of Fundamentals.2The explanatory definitions contained here are sufficient for this report but are not as precise and detailed as the ASHRAE definitions. Absorbent: A desiccant material that holds
19、 water vapor through a hydration reaction that is reversible when the material is heated. Sodium chloride (table salt) and lithium chloride are examples of absorbent desiccants. Adsorbent: A desiccant material that holds water vapor on its surface without a change in the chemical or physical structu
20、re of the material. Silica gel and the naturally occurring zeolites used for pet-waste granules are examples of adsorbent desiccants. Dehumidification: The removal of moisture from the air. Desiccant: A material commonly used to absorb moisture from the air; a solid or liquid material that has the a
21、bility to collect moisture from the air and later release the water vapor when the material is heated. A desiccant used for dehumidification has a vapor pressure below that of the air to be dehumidified is in its active, dehydrated state. Dew Point: The temperature of the air at which the moisture i
22、t contains condenses on nearby surfaces or suspended dust particles. At constant pressure, each dew point temperature represents a single value of air moisture content. As a result, air dew point is often used to describe air moisture content in absolute terms rather than relative humidity, which do
23、es not define the absolute amount of moisture in the air unless the air temperature is also known. Flash Rusting: (1) Rusting that occurs on metal within minutes to a few hours after cleaning is complete. The speed with which flash rusting occurs may be indicative of salt contamination on the surfac
24、e, high humidity, or both; (2) Appearance of rust spots on the surface of newly applied water-borne film during the drying phase. (1)National Fire Protection Association (NFPA), P.O. Box 9101, Quincy, MA 02269-9101. (2)American Society of Heating, Refrigeration, and Air-Conditioning Engineers, Inc.
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