Title of article
Degradation processes of polydimethylsiloxane under thermal cracking conditions of hydrocarbons in an experimental pilot plant followed by size exclusion chromatography coupled to inductively coupled plasma high resolution mass spectrometry
Author/Authors
Chainet، نويسنده , , Fabien and Le Meur، نويسنده , , Laurent and Lienemann، نويسنده , , Charles-Philippe and Courtiade، نويسنده , , Marion and Ponthus، نويسنده , , Jeremie and Brunet-Errard، نويسنده , , Lena and Donard، نويسنده , , Olivier François Xavier، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
10
From page
300
To page
309
Abstract
In the oil and gas industry, silicon coming from antifoaming agents, is recognized to be an emergent contaminant for hydrotreatment catalyst due to its negative effect on their performance. Using a pilot plant, representative samples of the thermal degradation of antifoaming agent such as polydimethylsiloxanes (PDMS) were produced under evaluated thermal cracking of hydrocarbons with the presence or absence of steam. Micro size exclusion chromatography hyphenated to inductively coupled plasma high resolution mass spectrometry was used to characterize these samples. Under low temperature processing conditions at around 250 °C, PDMS was not degraded in the presence of hydrocarbons. Under thermal cracking of hydrocarbons at 500 °C, PDMS is degraded and formed intermediate polymers and low molecular weight compounds. A small amount of the initial PDMS can be present following the different operating conditions. The percentage of steam has a great influence on the degradation of intermediate polymers probably following a hydrolysis to produce low molecular weight species. The results presented bring preliminary results and a new insight on the degradation of PDMS under thermal cracking conditions. This work indicates that the different molecular weight silicon compounds can distillate in the various petroleum cuts and could be responsible for catalyst poisoning.
Keywords
characterization , Silicon , thermal degradation , polydimethylsiloxane , Poisoning , Pilot plant
Journal title
Fuel Processing Technology
Serial Year
2012
Journal title
Fuel Processing Technology
Record number
1509037
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