A Comprehensively Understanding On Importance Of Fugitive Emission Management

By Margaret Russell


Having a well-integrated pipeline remains a key aspect of any industry where hazardous products are transmitted through pipes. This owes to the fact that there is a higher chance of eliminating hazards so that a company is freed from having to spend on compensational losses to any victim. The other implication is that such an organization is compliant with the safety standards so that it may not be charged with breaking local and state laws. Each organization ought to have fugitive emission management equipment and plans instituted so as to contain hazardous situations within a short duration.

Fugitive emissions refer to vapors and gases among other particles that occur from equipment and tools with components with high pressure in the case of leakage development. These leakages are responsible for causing irregular and unintended particles and materials release. When these materials or particles get into the atmosphere, they cause pollution and or climate change. Other particles such as aerosols, dust, fine particles and compressor, flanges, pump and valve leaks are also referred to as emissions.

When these particles are left to circulate in the atmosphere, they have the ability to cause a greenhouse effect, global warming, accidents, and life-threatening conditions such as asthma and cancer of the respiratory organs when inhaled for a long period of time. Working in areas experiencing leaks from volatile organic compounds, refineries, as well as chemicals industries, is dangerous and life-threatening.

This is for the reason that the emissions may result in fires and explosions which are not easy to contain leading to deaths when the leakages consist of highly flammable gasses and particles. On the other hand, the leaks can be minor but with the emitted particles being strong and a potent cause of severe negative impacts to the surroundings and to the health of persons in the vicinity.

In most cases, leaks coming from pressurized equipment, systems and processes mainly occur in pipe connections, valves, sealing and other parts where the piping that requires manual or personal fixing. These activities also happen in areas that have evaporative activities such as storage points, tanks, and reservoirs. It is therefore important to have systems put in place to detect and correct these leakages once they occur before they can cause negative effects.

Having detection, correction and overall leakage management systems are therefore important in curbing any occurrence. Detection and track keeping can be done through aerial inspection of the entire pipeline system. Energy-based industries mostly employ of these techniques as a way of ascertaining proper system functioning.

Another method of keeping track is corrosion monitoring. This enables the operator to understand the extent to which the pipeline has been corroded so that the pipes can be replaced or they are in good functioning states. Another method of making sure that these activities do not happen is through GIS mapping. This is a crucial component that every industry should have.

Another method is the actual management of the equipment integrity. This is used to make sure that everything is functioning properly and that no section is malfunctioning. It is done through periodical evaluations and analysis. Internal pipes video inspection, as well as data management, are other maintenance and management practices.




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