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Cortec VpCI®-637 Inhibitor for Gas Flow and Transmission Lines

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Product Description

VpCI-637/637 GL provides effective internal corrosion control in natural gas and crude oil gatherings and transmission lines.

VpCI-637/637 GL are a combination of vapor phase, neutralizing, and film-forming corrosion inhibitors to combat the broadest range of corrosive attack from moisture and condensation, oxygen, carbon dioxide, hydrogen sulfide, and other corrosive contaminants in natural gas and petroleum. These non-emulsifying formulations offer the benefits of filming inhibitors that form a tenacious protective film on metal surfaces; neutralizing inhibitors that combat corrosive fluid formation and vapor phase inhibitors that reach areas inaccessible by direct contact to protect areas subject to varying flow ratios.

The unique chemistries of VpCI-637/637 GL allow these products to provide excellent protection in “sweet/ sour” saturated carbon dioxide/hydrogen sulfide environments.

According to results obtained from the Wheel Test (NACE test method publication ID182), VpCI-637/637 GL provides excellent protection in both continuous and intermittent treatments; due to exceptional film persistency

Features

  • Effective for a wide range of systems and corrosive conditions
  • Provides maximum control over long distances for highly corrosive systems having a high ratio of waterto-hydrocarbons, including low areas in systems where water collects and extreme corrosive attack occurs
  • Form an adsorbed, protective layer that protects ferrous and non-ferrous metals
  • Effective against water, corrosive gases, and halogens
  • Vapor phase action provides protection from atmospheric conditions and moisture condensation to areas not accessible by filming inhibitors
  • Recommended concentrations do not cause foaming or upsets in gas sweetening or glycol dehydration processes 
  • Does not contain heavy metals, chlorinated hydrocarbons, or volatile amines
  • Provides cost effective solution 
  • VpCI-637 GL does not affect foaming properties in the natural gas processing

Typical Applications

VpCI-637/637 GL are designed for use in natural gas and petroleum recovery process and crude oil when water solubilty is desired.

VpCI-637 GL is recommended for systems where low foaming properties are required.

VpCI-637 is very effective in gathering systems containing a significant amount of water or as a corrosion inhibitor for secondary oil-recovery operations, where the water is a carrier

Method of Application

VpCI-637 GL is best applied by continuous injection or atomization into the transmission line at a rate of 10-30 fl. oz. (300-900 ml) of product per million cubic feet of gas. Atomization of the product neat into the gas stream enhances dispersion and length of travel. The effective distance expected through atomization varies with gas volumes and degree of dryness (quantity of water condensed inside pipeline), however the distance will usually range between 20 and 40 miles (32 to 64 kilometers).

VpCI-637/637GL can be applied at the 15-50 ppm concentration ranges in gathering systems and pipelines of crude oil systems, “as is” or be prediluted with a carrier.

Type of System to be Protected
Product to Use
Technology of Application
Natural Gas Wells and Gas Transmissions PipelinesVpCI-637 GLContinuous injection of 300-900 ml per million cubic feet of gas
Gathering Systems containing CO2, H2S, and highly electrolyte encroachedVpCI-637Periodic injection of 700-2500 ppm every 1-1.5 months
Crude Oil/Brines for secondary recoveryVpCI637/637GLContinuous injection 15-50 ppm

Typical Properties

VpCI-637VpCI-637 GL
AppearanceDark green/brownliquidAmber to green/ brown liquid
Non-Volatile Content27-31%32-39%
pH9.4-10.4 (neat)7-8.2 (1% water)
Density8.0-8.3 lb/gal (0.96-0.99 kg/l)8.1-8.3 lb/gal (0.97-0.99 kg/l)
Pour Point14°F (-10°C)-54.45°F (-48°C)

Storage/Packaging

VpCI-637/637 GL are available in 5 gallon (19 liter) containers, 55 gallon (208 liter) metal drums, liquid totes, and bulk. Products should be stored in tightly closed containers.