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- W2969674093 abstract "Natural gas is a gas consisting primarily of methane, small portion of ethane,propane, butane and other higher C molecules of hydrocarbon as well as the presence ofsmall amounts of Nitrogen, Sulphur and Oxygen (NSO) components. Natural gas iscolorless, shapeless and odorless in its pure form. Natural gas is often informally referredto as simply gas, especially when compared to other energy sources such as electricity.In oil and gas industry, the presence of water in natural gas is not a new problem.The awareness for this problem leads to the research on this area in order to find solutionto overcome the problem. The problems arise such as the corrosion of the pipeline, theformation of hydrates and also customer requirements of water content. Hence, it isessential to remove the water in the natural gas before transporting to the downstreamfacilities.Commonly used technology nowadays is using liquid desiccant (TriethyleneGlycol) to absorb the water molecules in the natural gas. However, large in weight andinstallation as well as the emission of hazardous component (benzene, toluene, ethylbenzene and xylene) to the environment is the main problem with this method. Hence,recently the research has been expanded to find the suitable way to remove the water toovercome the problem from the use of liquid desiccant.1 The new developed method is the usage of membrane technology to remove waterin natural gas. The characteristic of membrane and the separation principle of membraneare studied to design the suitable separation process for this problem. The data generatedby the software simulation will be analyzed to observe the effectiveness of membraneseparation. Membrane separation is expected to reduce the loss of hydrocarbon and havethe efficient separation of water from natural gas" @default.
- W2969674093 created "2019-08-29" @default.
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- W2969674093 date "2009-01-01" @default.
- W2969674093 modified "2023-09-23" @default.
- W2969674093 title "Removal of water from Natural Gas using Membrane: Modelling and Simulation (FLUENT)" @default.
- W2969674093 hasPublicationYear "2009" @default.
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