Surfactant Formulation Engineering using HLD and NAC
Editat de Edgar Acosta, Jeffrey Harwell, David A. Sabatinien Limba Engleză Paperback – 21 mai 2025
Surfactant Formulation Engineering using HLD and NAC will not only introduce the reader to HLD-NAC but also to the practical use of these concepts in numerous applications ranging from application in the petroleum industry, to environmental remediation, to food, cosmetic and pharmaceutical applications, and even nanotechnology. The last part of the book will look at the molecular origins of the empirical terms in HLD via the Integrated Free Energy Model (IFEM).
- Concentrates on the HLD and NAC, providing industrially-relevant examples
- Provides the only single depository for HLD parameters
- Balances theory and application, with insights from both academic and industrial authors
- Includes examples relevant to a wide range of fields, with practical guides on how to go from the formulation objective(s) to an actual formulation design
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Specificații
ISBN-13: 9780128214817
ISBN-10: 0128214813
Pagini: 458
Ilustrații: Approx. 100 illustrations
Dimensiuni: 191 x 235 mm
Greutate: 0.92 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128214813
Pagini: 458
Ilustrații: Approx. 100 illustrations
Dimensiuni: 191 x 235 mm
Greutate: 0.92 kg
Editura: ELSEVIER SCIENCE
Public țintă
Professionals in chemical, oil chemical, pharmaceutical, food formulation and other industries working with surfactant formulation and applicationsHLD-NAC short courses given to and by industrial groups
Cuprins
1. Surfactant hydrophilicity-lipophilicity and its assessment
2. Effect of lipophilic and hydrophilic additives on the hydrophilic-lipophilic difference (HLD)
3. Design Aspects and Practices of Surfactant Formulations Used in Chemical EOR and Surfactant-Enhanced Aquifer Remediation
4. HLD-guided surfactant design for enhanced oil recovery applications
5. Detergency System Design: From Hydrophile-Lipophile Balance (HLB) to Hydrophilic-Lipophilic Deviation (HLD)
6. HLD-guided design of vegetable oil extraction technology
7. Formulation of microemulsion-based biofuels via the HLD framework
8. Catastrophic Inversion of Epoxy Emulsions
9. Using HLD as a Framework for Solutions Without your Parameters
10. High-throughput HLD-guided formulation design for latex and agrochemical formulations
11. High Throughput HLD Surfactant Characterization and Formulation
12. Net-Average Curvature (NAC) fundamentals and applications
13. A Formulator’s Guide to HLD-NAC
14. Basic HLD and NAC Applied to Household Cleaner Formulation – Advantages and Limitations
15. Engineering cold water detergents with the HLD-NAC
16. Engineering separation processes with the HLD-NAC
17. Engineering nanoscale materials with the HLD-NAC
18. Microemulsion Flash Calculations using an HLD-NAC Based Equation of State
19. Molecular thermodynamic basis: the Integrated Free Energy Model (IFEM)
2. Effect of lipophilic and hydrophilic additives on the hydrophilic-lipophilic difference (HLD)
3. Design Aspects and Practices of Surfactant Formulations Used in Chemical EOR and Surfactant-Enhanced Aquifer Remediation
4. HLD-guided surfactant design for enhanced oil recovery applications
5. Detergency System Design: From Hydrophile-Lipophile Balance (HLB) to Hydrophilic-Lipophilic Deviation (HLD)
6. HLD-guided design of vegetable oil extraction technology
7. Formulation of microemulsion-based biofuels via the HLD framework
8. Catastrophic Inversion of Epoxy Emulsions
9. Using HLD as a Framework for Solutions Without your Parameters
10. High-throughput HLD-guided formulation design for latex and agrochemical formulations
11. High Throughput HLD Surfactant Characterization and Formulation
12. Net-Average Curvature (NAC) fundamentals and applications
13. A Formulator’s Guide to HLD-NAC
14. Basic HLD and NAC Applied to Household Cleaner Formulation – Advantages and Limitations
15. Engineering cold water detergents with the HLD-NAC
16. Engineering separation processes with the HLD-NAC
17. Engineering nanoscale materials with the HLD-NAC
18. Microemulsion Flash Calculations using an HLD-NAC Based Equation of State
19. Molecular thermodynamic basis: the Integrated Free Energy Model (IFEM)