About

Log in?

DTU users get better search results including licensed content and discounts on order fees.

Anyone can log in and get personalized features such as favorites, tags and feeds.

Log in as DTU user Log in as non-DTU user No thanks

DTU Findit

Journal article

Experimental validation of kinetic inhibitor strength on natural gas hydrate nucleation

In Fuel 2015, Volume 139, pp. 554-560
From

Center for Energy Resources Engineering, Centers, Technical University of Denmark1

Department of Chemical and Biochemical Engineering, Technical University of Denmark2

CERE – Center for Energy Ressources Engineering, Department of Chemical and Biochemical Engineering, Technical University of Denmark3

CHEC Research Centre, Department of Chemical and Biochemical Engineering, Technical University of Denmark4

The kinetics of natural gas hydrate formation in the presence of dissolved salts (NaCl) and crude oil ( a middle east crude with density 851.5 kg/m3 were investigated by using a standard rocking cell (RC-5) apparatus. The hydrate nucleation temperature was reduced in the presence of NaCl and oil in comparison with that in pure distilled water.

The kinetic inhibition strength of various inhibitors (Luvicap Bio; Inhibex 505; Inhibex 501; Luvicap 55w; BIO inhibex-800; and Inhibex 301) was experimentally evaluated at complex conditions (in the presence of salts and crude oil) using the constant cooling temperature approach. These polymer-based chemicals were ranked based on the inhibition strength as follows: Luvicap Bio

The same trend was also observed in the presence of salts and liquid hydrocarbon phase. The KHIs' inhibition strength was not affected by NaCl but decreased significantly in the presence of crude oil. The hydrate decomposition temperatures were not influenced by the presence of NaCl, however, they decreased slightly in the presence of liquid hydrocarbon.

The data presented here can contribute to appropriate hydrate risk management in oil and gas facilities. (C) 2014 Elsevier Ltd. All rights reserved.

Language: English
Year: 2015
Pages: 554-560
ISSN: 18737153 and 00162361
Types: Journal article
DOI: 10.1016/j.fuel.2014.09.013
ORCIDs: 0000-0002-0366-4991 and von Solms, Nicolas

DTU users get better search results including licensed content and discounts on order fees.

Log in as DTU user

Access

Analysis