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Corrosion prediction models. Parameters (CO2, H2S concentrations, microbes, inhibitors, hydrocarbons, type of steel, oxygen, effects of flow and erosion). Task Group 076
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This technical report presents basic information on laboratory evaluation of corrosion inhibitors used in the oil and gas industry. It includes 18 inhibitor properties that are evaluated before inhibitors are used in the field and refers to various standards available to evaluate those properties.
Aplicación y el desempeño de recubrimientos de epóxico de fusión-bond (FBE) aplicado en planta a ductos (tuberías). Usados en conjunto con la protección catódica. Controlar la calidad. Aplicación apropiada. Inspección y reparación.
Recubrmientos de epóxico de fusión-bond (FBE) aplicados en campo a las superficies externas en las uniones con soldaduras circunferenciales de ductos (tuberías) encontrados en la industria petrolera.
This technical report discusses equipment, procedures, materials, and the resulting substrate conditions involved in a variety of WAB cleaning methods currently available for commercial use. It also discusses the effect that the water present with these wet cleaning methods has on achieving the defined degree of cleaning of steel surfaces in accordance with the wet abrasive blast cleaning standards found in the list of Referenced Standards and Other Consensus Documents. It is intended for use primarily by specifiers, owners, painting contractors, inspectors, and others involved in surface preparation of industrial structures.
This report was originally issued in 1998 and has been revised to include additional configurations of equipment setup as well as current (2022) developments in the design of wet abrasive blast cleaning systems and nozzles. This TR provides a foundation to assist users to determine the quantity and quality of water, abrasive, and air.
HISTORICAL DOCUMENT. Procedures, equipment, and materials used for air/water/abrasive, water/abrasive, and pressurized water/abrasive blasting. Inhibitors, equipment maintenance & safety guidelines also included.
HISTORICAL DOCUMENT 2008. Forming a successful Underground Corrosion-Control Coordinating Committee. Organizing meeting minutes and personnel directories. Samples of eight documents, including bylaws and reporting forms. Free.
Revised in 2020! Assessment of corrosion in the field is complex because of the variety of applications, process conditions, and fluid phases that exist in industrial plants where corrosion occurs. A wide range of direct and indirect measurement techniques is available, but each technique has its strengths and weaknesses. In some applications, certain techniques cannot be used. Some techniques can be used online, while others are used off-line. Commonly, more than one technique is used so the weaknesses of one are compensated for by the strengths of another. In other cases, a combination of different techniques can be synergistic, such as process sampling along with detection of corrosion upset.
The purpose of this technical committee report is to analyze the various techniques with respect to their benefits and limitations across the broad spectrum of industries in which they are used.
This revision incorporates Guided Wave Monitoring (GWM), On-Line Gas Chromatography (GC), and Acoustic Solid Detection (ASD) techniques and updates references to NACE standards.
This technical report applies to water-using cooling and heating systems in buildings. It provides information for minimizing system damage and operational interference because of corrosion, scale, fouling, and microbiological growth in building heating, ventilation, and air conditioning (HVAC) systems. This includes open and closed circulating water systems, low-pressure steam boilers and hot water “boilers.” The document also addresses thermal energy storage systems, but does not address potable water or fire protection systems. It is intended for use by building owners and engineering, maintenance, and operations management personnel. It is also intended for use by those involved in the design and construction of building HVAC systems so that corrosion, scale, fouling, and microbiological growth problems described above can be understood, anticipated, and minimized through appropriate design decisions.