Organic Corrosion Inhibitors

Здесь есть возможность читать онлайн «Organic Corrosion Inhibitors» — ознакомительный отрывок электронной книги совершенно бесплатно, а после прочтения отрывка купить полную версию. В некоторых случаях можно слушать аудио, скачать через торрент в формате fb2 и присутствует краткое содержание. Жанр: unrecognised, на английском языке. Описание произведения, (предисловие) а так же отзывы посетителей доступны на портале библиотеки ЛибКат.

Organic Corrosion Inhibitors: краткое содержание, описание и аннотация

Предлагаем к чтению аннотацию, описание, краткое содержание или предисловие (зависит от того, что написал сам автор книги «Organic Corrosion Inhibitors»). Если вы не нашли необходимую информацию о книге — напишите в комментариях, мы постараемся отыскать её.

Provides comprehensive coverage of organic corrosion inhibitors used in modern industrial platforms, including current developments in the design of promising classes of organic corrosion inhibitors Corrosion is the cause of significant economic and safety-related problems that span across industries and applications, including production and processing operations, transportation and public utilities infrastructure, and oil and gas exploration. The use of organic corrosion inhibitors is a simple and cost-effective method for protecting processes, machinery, and materials while remaining environmentally acceptable.
provides up-to-date coverage of all aspects of organic corrosion inhibitors, including their fundamental characteristics, synthesis, characterization, inhibition mechanism, and industrial applications.
Divided into five sections, the text first covers the basics of corrosion and prevention, experimental and computational testing, and the differences between organic and inorganic corrosion inhibitors. The next section describes various heterocyclic and non-heterocyclic corrosion inhibitors, followed by discussion of the corrosion inhibition characteristics of carbohydrates, amino acids, and other organic green corrosion inhibitors. The final two sections examine the corrosion inhibition properties of carbon nanotubes and graphene oxide, and review the application of natural and synthetic polymers as corrosion inhibitors. Featuring contributions by leading researchers and scientists from academia and industry, this authoritative volume:
Discusses the latest developments and issues in the area of corrosion inhibition, including manufacturing challenges and new industrial applications Explores the development and implementation of environmentally-friendly alternatives to traditional toxic corrosion inhibitors Covers both established and emerging classes of corrosion inhibitors as well as future research directions Describes the anticorrosive mechanisms and effects of acyclic, cyclic, natural, and synthetic corrosion inhibitors Offering an interdisciplinary approach to the subject,
is essential reading for chemists, chemical engineers, researchers, industry professionals, and advanced students working in fields such as corrosion inhibitors, corrosion engineering, materials science, and applied chemistry.

Organic Corrosion Inhibitors — читать онлайн ознакомительный отрывок

Ниже представлен текст книги, разбитый по страницам. Система сохранения места последней прочитанной страницы, позволяет с удобством читать онлайн бесплатно книгу «Organic Corrosion Inhibitors», без необходимости каждый раз заново искать на чём Вы остановились. Поставьте закладку, и сможете в любой момент перейти на страницу, на которой закончили чтение.

Тёмная тема
Сбросить

Интервал:

Закладка:

Сделать

So this cause is the only possible way to monitor deterioration based on the extracted data so that further action of replacement of the pipelines can be done in industries. Corrosion monitoring also offers multiple answers to the problems of whether further corrosion is happening now compared to yesterday. Also by knowing this data, it is important to eliminate the cause of corrosion along with its effects. This can be considered as important asset to altercate corrosion and supposing considerable economic prosperity to the country.

References

1 1 Heuslerl, K.E., Landolt, D., and Trasatti, S. (1989). Electrochemical corrosion nomenclature. Pure and Applied Chemistry 61 (1): 19–22. https://doi.org/10.1351/pac198961010019.

2 2 Shreir, L.L., Jarman, R.A., and Burstein, G.T. (1994). Corrosion Volume 1: Metal and Environmental Reactions, 3rde. Butterworth‐Heinemann. ISBN: 0 7506 1077 8 Kindle Edition.

3 3 Jones, D.A. (1995). Principles and Prevention of Corrosion, 2nde. Prentice Hall. ISBN: 978‐0133599930.

4 4 Roberge, P.R. (1999). Handbook of Corrosion Engineering, 1ste. McGraw‐Hill. ISBN: 0‐07‐076516‐2 or Kindle Edition.

5 5 ISO 8044:1999 (2000). Corrosion of Metals and Alloys Ð Basic Terms and Definitions. Brussels: International Organization for Standardization.

6 6 Fontana, M.G. (2005). Corrosion Science and Engineering, 3rde. Tata McGraw‐Hill. ISBN: 978‐0070607446.

7 7 NACE International/ ASTM G193‐12d (2012). Standard Terminology and Acronyms Relating to Corrosion. West Conshohocken, PA: ASTM International https://doi.org/10.1520/G0193‐12D.

8 8 Chafiq, M., Chaouiki, A., Damej, M. et al. (2020). Bolaamphiphile‐class surfactants as corrosion inhibitor model compounds against acid corrosion of mild steel. Journal of Molecular Liquids 309: 113070.

9 9 Lgaz, H., Salghi, R., Masroor, S. et al. (2020). Assessing corrosion inhibition characteristics of hydrazone derivatives on mild steel in HCl: Insights from electronic‐scale DFT and atomic‐scale molecular dynamics. Journal of Molecular Liquids 308: 112998.

10 10 Zheng, L., Wan, Z., Gao, N., and Zhang, C. (2012). Refining corrosion monitoring technology application and device progress. Journal of Petroleum Chemical Corrosion and Protection 2: 47–50.

11 11 Yu, Z. and Meng, X. (2012). Corrosion monitoring technology and its application in oil and gas field. Pipeline Technology and Equipment 2: 48–49.

12 12 Yang, X., Rao, J., and Wang, Y. (2011). Application of online monitoring technology in petrochemical industry. Journal of Petroleum Chemical Corrosion and Protection 3: 40–42.

13 13 Chapter 1, 2000 ASM International. All Rights Reserved. Corrosion: Understanding the Basics (#06691G).

14 14 https://corrosiondoctors.org/Principles/Cost.htm#:~:text=Within%20the%20total%20cost%20of,of%20available%20corrosion%20management%20techniques.

15 15 Rose, J. and Barshinger, J. (1998). Using ultrasonic guided wave mode cutoff for corrosion detection and classification. Materials Science, 1998 Ultrasonics Symposium. Proceedings (Cat. No. 98CH36102) 1: 851–854.

16 16 Pei, J., Yousuf, M., Degertekin, F. et al. (21 April 2009) (1996). Lamb wave tomography and its application in pipe erosion/corrosion monitoring. Research in Nondestructive Evaluation 8: 189–197. http://dx.doi.org/10.1007/BF02433949.

17 17 Hines, J. (1968). Industrial Corrosion Monitoring; Committee on Corrosion. London: Department of Industry H.M.S.O.

18 18 Rothwell, N. and Tullmin, M. (2000). The Corrosion Monitoring Handbook. Kingham, Oxford, UK: Coxmoor Publishing Co.

19 19 . Glossary, National Corrosion Service. Teddington, London, UK: National Physical Laboratory (NPL).

20 20 Standard Guide for Conducting Corrosion Tests in Field Applications; ASTM G4–01, ASTM International, 2005.

21 21 Field Corrosion Evaluation Using Metallic Test Specimens; RPO497–2004; NACE International: Houston, TX, USA, 2008.

22 22 Dean, S.W. (1987). In‐Service Monitoring‖, ASM Handbook, vol. 13, 197. ASM International.

23 23 M. Mobin and S. Masroor, Adsorption and corrosion inhibition behavior of schiff base‐based cationic gemini surfactant on mild steel in formic acid, Journal of Dispersion Science and Technology, 35:535–543, 2014, 0193‐2691 print=1532‐2351, https://doi.org/10.1080/01932691.2013.799435.

24 24 Masroor, S., Mobin, M., Singh, A.K. et al. (2020). Aspartic di‐dodecyl ester hydrochloride acid and its ZnO‐NPs derivative, as ingenious green corrosion defiance for carbon steel through theoretical and experimental access. SN Applied Sciences 2: 144. https://doi.org/10.1007/s42452‐019‐1515‐z.

25 25 Publication EFC4 (1990). Guidelines for Electrochemical Corrosion Measurements. European Federation of Corrosion.

26 26 Shrier, 1978; Eg&G Application note, 1982.

27 27 Martin R. Dynamic optimization of chemical additives in a water treatment system. US Patent 6419817, 2000.

28 28 https://www.alspi.com/lprintro.htm.

29 29 Rathod, N.G. and Moharana, N.C. (2015). Advanced methods of corrosion monitoring‐ a review. IJRET: International Journal of Research in Engineering and Technology 04 (13) ICISE‐2015, Dec‐ eISSN: 2319‐1163, pISSN: 2321‐7308.

30 30 Ropital, F. (2011). 15 ‐ Environmental Degradation in Hydrocarbon Fuel Processing Plant: Issues and Mitigation, 437–462. Advances in Clean Hydrocarbon Fuel Processing, Science and Technology, Woodhead Publishing Series in Energy https://doi.org/10.1533/9780857093783.5.437.

31 31 Stern, M. and Geary, A.L. (1957). Electrochemical polarization. Journal of the Electrochemical Society 104 (1): 56.

32 32 Song, H.W. and Saraswathy, V. (2007). Corrosion monitoring of reinforced concrete structures – a review. International Journal of Electrochemical Science 2: 1–28.

33 33 Zaki, A., Chai, H.K., Aggelis, G.D., and Alver, N. (2015). Non destructive evaluation for corrosion monitoring in concrete: a review and capability of acoustic emission technique. Sensors 15 (8): 19069–19101. ISSN 1424‐8220.

34 34 Burkle, W.S. (1989). Application of tangential radiographic technique for evaluating pipe system erosion/corrosion. Mater Eval 47 (10): 1186–1188.

35 35 Zecherpel U. Corrosion and Deposit Evaluation in Large Diameter Pipes by Radiography. Internal report of the second RCM of the CRP, IAEA, Istanbul, Turkey, March 2004.

36 36 ASNT (2002). Nondestructive Testing Handbook—Radiographic Testing, vol. 4. USA: American Society for Nondestructive Testing, Inc.

37 37 Krolicki, R.P. (1997). Internal corrosion examination and wall thickness measurement of pipe by radiographic method. Mater Eval 35 (2): 32–33.

38 38 Ekinci, S., Bas, N., Aksu, M. et al. (1998). Corrosion and deposit measurements in pipes by radiographic technique. Insight 40 (9): 602–605.

39 39 Rheinlander, J. and Christiansen, H. (1995). Using film density variations for determination of pipe thickness variation in gamma‐ray radiography. Insight 37 (9): 691–694.

40 40 Kajiwara, G. (2000). Examination of the X‐ray piping diagnostic system using EGS4 (examination of the film and iron rust). In: Proceedings of the Second International Workshop on EGS, 199–208. Japan: Tsukuba.

41 41 Willems, P., Vaessen, B., Hueck, W., and Ewert, U. (1999). Application of CR for corrosion and wall thickness measurements. Insight 41 (10): 635–637.

42 42 Marstboom, N. (1999). Computed radiography for corrosion and wall thickness measurements. Insight 41 (5): 308–309.

43 43 Edalati, K., Rastkhah, N., Kermani, A. et al. (2006). The use of radiography for thickness measurement and corrosion monitoring in pipes. International Journal of Pressure Vessels and Piping 83: 736–741.

44 44 He, Y. (2016). Corrosion Monitoring, Reference Module in Materials Science and Materials Engineering. Hamilton, ON, Canada: Elsevier Inc, Natural Resources Canada https://doi.org/10.1016/B978‐0‐12‐803581‐8.03460‐3.

Читать дальше
Тёмная тема
Сбросить

Интервал:

Закладка:

Сделать

Похожие книги на «Organic Corrosion Inhibitors»

Представляем Вашему вниманию похожие книги на «Organic Corrosion Inhibitors» списком для выбора. Мы отобрали схожую по названию и смыслу литературу в надежде предоставить читателям больше вариантов отыскать новые, интересные, ещё непрочитанные произведения.


Отзывы о книге «Organic Corrosion Inhibitors»

Обсуждение, отзывы о книге «Organic Corrosion Inhibitors» и просто собственные мнения читателей. Оставьте ваши комментарии, напишите, что Вы думаете о произведении, его смысле или главных героях. Укажите что конкретно понравилось, а что нет, и почему Вы так считаете.

x