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The fate of phosphonate inhibitors i...
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Watson, Malene Abena.
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The fate of phosphonate inhibitors in oil and gas reservoirs: Validation of the SqueezeSoft(TM) computer program.
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
The fate of phosphonate inhibitors in oil and gas reservoirs: Validation of the SqueezeSoft(TM) computer program./
作者:
Watson, Malene Abena.
面頁冊數:
166 p.
附註:
Chair: Mason B. Tomson.
Contained By:
Masters Abstracts International40-06.
標題:
Engineering, Chemical. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1408720
ISBN:
0493614893
The fate of phosphonate inhibitors in oil and gas reservoirs: Validation of the SqueezeSoft(TM) computer program.
Watson, Malene Abena.
The fate of phosphonate inhibitors in oil and gas reservoirs: Validation of the SqueezeSoft(TM) computer program.
- 166 p.
Chair: Mason B. Tomson.
Thesis (M.S.)--Rice University, 2002.
The deposition of material that has precipitated out of solution can cause problems that plague a variety of engineering and biological processes. Scale formation in cooling towers, boilers, and oil/gas operations are prevented with chemical inhibitors such as nitrilotris (methylene phosphonic acid). The release of this phosphonate from solid material is studied with batch and dynamic flow experiments. The corresponding observations can be incorporated into SqueezeSoft™, a computer program, written by the Rice University Brine Chemistry Consortium. This work attempts to examine SqueezeSoft™'s ability to identify the placement of inhibitor during a squeeze treatment and the corresponding reactions that occur. SqueezeSoft™ has been found to correctly predict the profile of inhibitor injected into a column packed with core material. Because this program is based on theory and not on empirical findings, it can be expanded to other more general applications.
ISBN: 0493614893Subjects--Topical Terms:
1018531
Engineering, Chemical.
The fate of phosphonate inhibitors in oil and gas reservoirs: Validation of the SqueezeSoft(TM) computer program.
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The deposition of material that has precipitated out of solution can cause problems that plague a variety of engineering and biological processes. Scale formation in cooling towers, boilers, and oil/gas operations are prevented with chemical inhibitors such as nitrilotris (methylene phosphonic acid). The release of this phosphonate from solid material is studied with batch and dynamic flow experiments. The corresponding observations can be incorporated into SqueezeSoft™, a computer program, written by the Rice University Brine Chemistry Consortium. This work attempts to examine SqueezeSoft™'s ability to identify the placement of inhibitor during a squeeze treatment and the corresponding reactions that occur. SqueezeSoft™ has been found to correctly predict the profile of inhibitor injected into a column packed with core material. Because this program is based on theory and not on empirical findings, it can be expanded to other more general applications.
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