Skip to main content
Top

A Lignosulfonate Drilling Reagent Modified with an Additive Derived from Acrylamide, Formalin and Malic Acid

  • 14-11-2024
  • RESEARCH
Published in:

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The article presents a comprehensive study on the modification of sodium lignosulfonate using an additive derived from acrylamide, formalin, and malic acid. This modification aims to enhance the performance of drilling fluids, specifically addressing filtration losses and viscosity issues. The research involves the synthesis of the modifier through polycondensation, followed by detailed characterization using techniques such as NMR spectroscopy and mass spectrometry. The optimal component ratios were determined through mathematical modeling, and the effectiveness of the modified reagent was evaluated through various performance metrics. The results show that the modified lignosulfonate reagent significantly reduces surface tension, conditional viscosity, and filtration index, even at high temperatures, highlighting its potential for practical applications in the oil and gas industry.

Not a customer yet? Then find out more about our access models now:

Individual Access

Start your personal individual access now. Get instant access to more than 164,000 books and 540 journals – including PDF downloads and new releases.

Starting from 54,00 € per month!    

Get access

Access for Businesses

Utilise Springer Professional in your company and provide your employees with sound specialist knowledge. Request information about corporate access now.

Find out how Springer Professional can uplift your work!

Contact us now
Title
A Lignosulfonate Drilling Reagent Modified with an Additive Derived from Acrylamide, Formalin and Malic Acid
Authors
I. N. Kulyashova
A. D. Badikova
A. R. Muzafarova
S. R. Sakhibgareev
T. R. Vakhitov
Publication date
14-11-2024
Publisher
Springer US
Published in
Chemistry and Technology of Fuels and Oils / Issue 5/2024
Print ISSN: 0009-3092
Electronic ISSN: 1573-8310
DOI
https://doi.org/10.1007/s10553-024-01777-9
This content is only visible if you are logged in and have the appropriate permissions.

Premium Partner

    Image Credits
    Korero Solutions/© Korero Solutions