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LNG & LPG

LNG (Liquefied Natural Gas) and LPG (Liquefied Petroleum Gas) are two types of gases which are go through a process of liquefaction for transportation and storage purposes. Although similar in their liquid state, they differ significantly in composition, usage, and production methods.

LNG (Liquefied Natural Gas)

LNG is primarily methane (CH4) gas that has been cooled to a temperature of approximately -162 degrees Celsius (-260 degrees Fahrenheit). At this temperature, methane condenses into a liquid form, which takes up about 1/600 th of the volume it occupies as a gas at standard atmospheric temperature and pressure. This significant reduction in volume makes LNG economical to transport over long distances where pipelines are not feasible, such as across oceans. LNG is used mainly for heating and as a fuel for electricity generation and is increasingly used in the transportation sector, especially for ships and heavy-duty vehicles.

LPG (Liquefied Petroleum Gas)

LPG is a mixture of propane (C3H8) and butane (C4H10), gases that are found naturally in crude oil and natural gas. LPG is produced during natural gas processing and oil refining. It is stored and transported in liquid form under moderate pressure, which makes it easier to store and handle compared to LNG. LPG is widely used as a fuel for heating, cooking, and in vehicles. It is also used in industrial applications and is a popular choice for portable cooking and heating equipment in areas not connected to a natural gas network.

Both LNG and LPG play crucial roles in the global energy supply, offering cleaner alternatives to traditional fossil fuels like coal and oil. They contribute significantly to reducing emissions and air pollution in various applications.

Simplified Reapplication of the Code for Loss of Insulation 1095
Nitrogen Generator System on Liquefied Natural Gas Carriers 1605
Inert Gas Generator 2521
Air and Inert Gas Dryers 1270
Cargo System – Tank Construction 5217
LNG Carrier Pressure Relief Systems 2550
Cargo equipment for gas carriers carrying LNG/LPG 3694
Rules and Regulations for LNGC 1974
Origin, Applicability, Requirement of IMO Gas Code 1566
Fire Scenarios on liquefied gas carriers 1666
The Origins of the IGC Code 1683
ABS QA System in Korea and LNG Project Management 893
Liquefied natural gas (LNG) – The Ideal Gas 1706
Types of propulsion systems on ships carrying LNG 2111
Training LNGC Course for ABS and Service Project Managers & Project Management OG LNGC Project in Korea 993
Record Keeping and Planning 1112
Previous Incidents on vessel 1305
Contingency Plans for Liquefied Natural Gas Carrier 1505
Individual Responsibilities on Liquefied Natural Gas Vessel 2517
Risk Assessment on Liquefied Natural Gas Tanker 1406
Environmental Impact of Liquefied Natural Gas 1287
Liquefied Gas Carrier Types 3147
The business of LNG and historical involvement in maritime transportation of gas 1113
Hazards of LNG and Relevant Gases 1984
Understanding LNG Tank Atmosphere and Material Properties: Key Principles for Safety and Efficiency 1154
Gas laws, thermodynamic principles and reliquefaction 2117
Regulations and Guidance for Liquefied Natural Gas Shipping 3134
Liquefied Natural Gas Fundamental Knowledge and Understanding 2280
Properties of Liquefied Gases 2084
Overview of the Carriage of Liquefied Gases by Sea 2714
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