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The Purpose Of Liquefied Natural Gas System Optimization Is To React To Changes In The Feed And Environment.
The Purpose Of Liquefied Natural Gas System Optimization Is To React To Changes In The Feed And Environment.
Liquefied Natural Gas (LNG) is natural gas, primarily methane, that has been transformed to a liquid state for storage or transportation.LNG is also used as a backup fuel in power plants. Utilities can store LNG on-site in cryogenic tanks by chilling gas. The utility returns the LNG to its gaseous condition and burns it to create energy when demand increases or supply dips due to limited pipeline access.

The liquefaction process is the one that consumes the most energy during the natural gas life cycle. This is why there has been a surge in interest in the strategy and optimization of the liquefaction industry. Researchers have been interested in reducing the cost and energy consumed in liquefaction.The environmental impact, as well as other considerations such as operating and capital expenses, should be considered while designing and optimising Liquefied Natural Gas systems. Optimization should be done with the goal of reacting to changes in the environment and feed. 

To reduce duplication and offer equipment synergy, natural gas liquid (NGL) and LNG plants should be interconnected. This implies that income streams associated with processing plants are likely to be included in optimization trends.Because of the rise of the  Liquefied Natural Gas Market and technical advancements, designers are increasingly focusing on small-scale markets. The expected trend is likely to coincide with a rise in liquefaction process optimization.

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