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TURNITIN Effect Of Tri Ethylen Glycol (Teg) Concentration And Temperature Wet Gas Against Water Content Gas Outlet Glycol Contactor In Natural Gas Dehydration Process

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Effect Of Tri Ethylen Glycol (Teg) Concentration And

Temperature Wet Gas Against Water Content Gas Outlet

Glycol Contactor In Natural Gas Dehydration Process

by Kiagus Ahmad Roni Ericson Simanungkalit, Sri Martini

Submission date: 23-Aug-2021 08:53AM (UTC+0700) Submission ID: 1634538080

File name: Article_Roni_at_al_Turcomat.pdf (228.15K) Word count: 2783

Character count: 14521

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Contactor In Natural Gas Dehydration Process

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www.turcomat.org

Internet Source

jurnal.teknologiindustriumi.ac.id

Internet Source

zombiedoc.com

Internet Source

Abdel-Aal, . "Gas Dehydration", Chemical Industries, 2003.

Publication

Zykamilia Kamin, Awang Bono, Lek Yan Leong.

"Simulation and Optimization of the

Utilization of Triethylene Glycol in a Natural Gas Dehydration Process", Chemical Product and Process Modeling, 2017

Publication

turcomat.org

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eprints.upnjatim.ac.id

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V. Piemonte, M. Maschietti, F. Gironi. "A

Triethylene Glycol–Water System: A Study of the TEG Regeneration Processes in Natural Gas Dehydration Plants", Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2012

Publication

Submitted to University of Surrey

Student Paper

Submitted to University of Leeds

Student Paper

journal.unusida.ac.id

Internet Source

Alay Arya, Bjørn Maribo-Mogensen, Ioannis Tsivintzelis, Georgios M. Kontogeorgis.

"Process Design of Industrial Triethylene Glycol Processes Using the Cubic-Plus- Association (CPA) Equation of State",

Industrial & Engineering Chemistry Research, 2014Publication

A. Kumar. "Polymeric-nanoparticles–induced vertical alignment in ferroelectric liquid

crystals", EPL (Europhysics Letters), 10/01/2009

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baixardoc.com

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