Thermal and Environmental Characteristics of Spent Petroleum Product Combustion in Industrial Plants

Authors

  • Виталий [Vitaliy] Анатольевич [A.] Кожевников [Kozhevnikov]
  • Станислав [Stanislav] Константинович [K.] Попов [Popov]

DOI:

https://doi.org/10.24160/1993-6982-2022-1-39-50

Keywords:

spent petroleum products, pollutant neutralization, halogens, polychlorinated biphenyls, energy efficiency, environmental safety

Abstract

Spent petroleum products can be efficiently used as an energy source in industrial thermal power engineering. Matters concerned with the energy efficiency and environmental safety of using this type of fuel and development of burners for spent petroleum products are extremely relevant.

To analyze the energy efficiency of industrial plants that use spent petroleum products as fuel, the heating value of these products has to be known. The data on the lower heating value and viscosity of various petroleum fuels published in the literature are systematized. The results obtained make it possible to estimate the heating value of spent petroleum products by using their viscosity as a parameter.

A set of works aimed at developing an evaporative burner for high-quality combustion of various spent petroleum products has been accomplished. Based on experimental studies of the combustion of various spent petroleum products in the evaporative burner, relationships between the viscosity, lower heating value, and flame length and temperature are revealed. By using the obtained relationships between the thermal parameters characterizing the combustion of spent petroleum products, it becomes possible to assess the possibility of effectively neutralizing such pollutants as halogens and polychlorinated biphenyls.

The boundary of the domain in which spent petroleum products can be combusted in an environmentally efficient manner with neutralizing such pollutants as halogens and polychlorinated biphenyls has been determined and described analytically. Dependences of the maximum allowable concentrations of pollutants in spent petroleum products on their viscosity, lower heating value, and flame temperature are presented. The obtained results can be used to develop domestic regulatory documents on energy efficient and environmentally friendly combustion of spent petroleum products in thermal engineering plants.

Author Biographies

Виталий [Vitaliy] Анатольевич [A.] Кожевников [Kozhevnikov]

Senior Researcher in Transneft Research Institute LLC, Moscow, e-mail: kozhevnikovva@niitnn.transneft.ru

Станислав [Stanislav] Константинович [K.] Попов [Popov]

Dr.Sci. (Techn.), Professor of Innovative Technologies for High-Tech Industries Dept., NRU MPEI, e-mail: popovsk@mpei.ru

References

1. Кожевников В.А., Попов С.К. Энергоэффективное использование отработанных нефтепродуктов в качестве топлива // Вестник МЭИ. 2020. № 2. С. 42—51.
2. Николаева А.В., Кожевников В.А., Черных В.А. Анализ потенциала использования отработанных нефтепродуктов на собственные нужды в организациях системы «Транснефть» // Наука и технологии трубопроводного транспорта нефти и нефтепродуктов. 2020. № 1. С. 70—83.
3. Пат. № 2706168 РФ. Горелочное устройство и способ организации факела горения топлива /П.А. Ревель-Муроз и др. // Бюл. изобрет. 2019 № 32.
4. Кожевников В.А., Попов С.К. Разработка горелочного устройства для сжигания отработанных нефтепродуктов // Промышленная энергетика. 2020. № 4. С. 26—36.
5. Кожевников В.А., Попов С.К., Сериков Э.А. Исследование качества сжигания отработанных нефтепродуктов в испарительной горелке // Промышленная энергетика. 2020. № 8. С. 34—42.
6. Life Cycle Assessment of Used Oil Management. Prepared for the American Petroleum Institute [Офиц. сайт] www.api.org/~/media/Files/Certification/Engine-Oil-Diesel/Publications/LCA-of-Used-Oil-Mgmt-ERM-10012017.pdf (дата обращения 03.08.2021).
7. ГОСТ 10585—99. Топливо нефтяное. Мазут. Технические условия.
8. ГОСТ 14298—79. Топливо нефтяное для мартеновских печей. Технические условия.
9. ГОСТ 305—2013. Топливо дизельное. Технические условия.
10. ГОСТ Р 55475—2013. Топливо дизельное зимнее и арктическое депарафинированное. Технические условия.
11. ГОСТ 21261—91. Нефтепродукты. Метод определения высшей теплоты сгорания и вычисление низшей теплоты сгорания.
12. ГОСТ 32510—2013 (ИСО 8217:2017). Топлива судовые. Технические условия.
13. NGE.RU. Независимая торговая площадка по нефтепродуктам в России и СНГ [Офиц. сайт] www.nge.ru/product_guide_list_11_1.htm (дата обращения 03.08.2021).
14. Правила технической эксплуатации судовых дизелей [Электрон. ресурс] www.morkniga.ru/p201669.html (дата обращения 03.08.2021).
15. Кожевников В.А., Попов С.К., Яковлев И.В. Эффективность применения автономных теплогенераторов на отработанных нефтепродуктах // Промышленная энергетика. 2020. № 6. С. 44–52.
16. Раздел АР-42 архива Агентства охраны окружающей среды США «Air Emissions Factors and Quantification» [Офиц. сайт] www3.epa.gov/ttn/chief/ap42/ch01/index.html; www3.epa.gov/ttn/chief/ap42/ch01/bgdocs/b01s03.pdf; www3.epa.gov/ttn/chief/ap42/ch01/final/c01s03.pdf; www3.epa.gov/ttn/chief/ap42/ch01/bgdocs/b01s11.pdf; www3.epa.gov/ttn/chief/ap42/ch01/final/c01s11.pdf (дата обращения 03.08.2021).
17. Кожевников В.А., Захаров С.В. Анализ потенциала использования отработанных масел [Электрон. ресурс] www.energosovet.ru/stat424.html (дата обращения 03.08.2021).
18. Видеоматериалы Термопортал.RU [Электрон. ресурс] www.termoportal.ru/threads/video-gorelki-na-otrabotannom-masle.480/; www.termoportal.ru/threads/gorelki-na-otrabotannom-masle-svoimi-rukami-video.478/ (дата обращения 03.08.2021).
19. Видеоматериалы экспериментальной горелки [Электрон. ресурс] www.youtube.com/watch?v=edbfNJwBOPw&feature=emb_title; www.youtube.com/watch?v=AY_dmd1kUoQ&feature=emb_title (дата обращения 03.08.2021).
20. ГОСТ Р 54299—2010. Топлива судовые. Технические условия.
21. Title 40 CFR Part 260. Hazardous Waste Management System: General [Электрон. ресурс] www.ecfr.gov/cgi-bin/text-idx?SID=b656ab603496daf6d620241043222e6a&mc=true&node=pt40.28.260&rgn=div5 (дата обращения 03.08.2021).
22. Title 40 CFR Part 279. Standards for the Management of Used Oil [Электрон. ресурс] www.ecfr.gov/cgi-bin/text-idx?SID=a6739eadc899514c81d8e3781bb37e7e&mc=true&node=pt40.29.279&rgn=div5 (дата обращения 03.08.2021).
23. Title 40 CFR Part 761. Polychlorinated Biphenyls (PCBs) Manufacturing, Processing, Distribution in Commerce, and Use Prohibitions [Электрон. ресурс] www.ecfr.gov/cgi-bin/text-idx?SID=a6739eadc899514c81d8e3781bb37e7e&mc=true&node=pt40.34.761&rgn=div5 (дата обращения 03.08.2021).
24. Hazardous Waste Management System. Burning of Waste Fuel and Used Oil Fuel in Boilers and Industrial Furnaces // Environmental Protection Agency USA. Rules and Regulations. Federal Register. 1985. V. 50. No. 230. [Электрон. ресурс] www.epa.gov/sites/production/files/2016-04/documents/50fr49164_1.pdf (дата обращения 03.08.2021).
25. Burning of Hazardous Waste in Boilers and Industrial Furnaces // Environmental Protection Agency USA. Proposed Rules. Federal Register 1987. V. 52. No. 87. [Электрон. ресурс] www.epa.gov/sites/production/files/2016-03/documents/52fr16982.pdf (дата обращения 03.08.2021).
26. Assessment of the Effects of Combustion of Waste, Oil and Health Effects Associated with the use of Waste Oil as a Dust Suppressant. Ministry for the Environment New Zealand [Электрон. ресурс] www.environment.govt.nz/publications/assessment-of-the-effects-of-combustion-of-waste-oil-and-health-effects-associated-with-the-use-of-waste-oil-as-a-dust-suppressant/ (дата обращения 03.08.2021).
27. Бернадинер И.М. Диоксины и другие токсиканты при высокотемпературной переработке и обезвреживании отходов. М.: Издат. дом МЭИ, 2007.
28. Best Available Techniques (BAT). Reference Document for Waste Treatment Industrial Emissions Directive 2010/75/EU (Integrated Pollution Prevention and Control) [Электрон. ресурс] www.ec.europa.eu/jrc/en/publication/eur-scientific-and-technical-research-reports/best-available-techniques-bat-reference-document-waste-treatment-industrial-emissions; www.eur-lex.europa.eu/legal-content/EN/TXT/PDF/?uri=CELEX:32010L0075&from=EN (дата обращения 03.08.2021).
29. Директива № 2010/75/ЕС Европейского парламента и Совета Европейского Союза «О промышленных выбросах (о комплексном предотвращении загрязнения и контроле над ним)» [Электрон. ресурс] www.base.garant.ru/70161770/#friends (дата обращения 03.08.2021).
30. Бернадинер М.Н., Шурыгин А.П. Огневая переработка и обезвреживание промышленных отходов. М.: Химия, 1990.
31. Vermont Used Oil Analysis and Waste Oil Furnace Emissions Study. Vermont Agency of Natural Resources [Электрон. ресурс] www3.epa.gov/ttn/catc/dir1/w_oilacr.pdf (дата обращения 03.08.2021).
32. Pelitli V., Doğan Ö., Köroğlu H.J. Waste Oil Management: Analyses of Waste Oils From Vehicle Crankcases and Gearboxes [Электрон. ресурс] www.gjesm.net/article_22148_03e030d8c64c45fd18a362bc6f9d017c.pdf (дата обращения 03.08.2021).
33. Energy Management by Recycling of Vehicle Waste Oil in Pakistan [Электрон. ресурс] www.paper.researchbib.com/view/paper/7243 (дата обращения 03.08.2021).
34. Petrochemical standards. Edition 2011/2012. [Электрон. ресурс] www.ecolan.com.ru/standard-samples-foreign/4/4-2.pdf (дата обращения 03.08.2021).
35. Petrochemical standards. ASTM. AccuStandard is Accredited to ISO Guide 34, ISO/IEC 17025 and Certified to ISO 9001 [Электрон. ресурс] www.weber.hu/Downloads/Standards/AccuStandard_Petrochemicals.pdf (дата обращения 03.08.2021).
36. Guide to ASTM Test Methods for the Analysis of Petroleum Products and Lubricants [Электрон. ресурс] www.prime.erpnext.com/files/GuidetoAstmTestMethodsfortheAnalysisofPetroleumProductsandLubricantsSecondEdition.pdf (дата обращения 03.08.2021).
37. Compendium of Recycling and Destruction Technologies for Waste Oils [Электрон. ресурс] www.wedocs.unep.org/bitstream/handle/20.500.11822/8601/IETC_Waste_Oils_Compendium.pdf?sequence=3&isAllowed=y (дата обращения 03.08.2021).
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Для цитирования: Кожевников В.А., Попов С.К. Теплотехнические и экологические характеристики сжигания отработанных нефтепродуктов в промышленных установках // Вестник МЭИ. 2022. № 1. С. 39—50. DOI: 10.24160/1993-6982-2022-1-39-50.
#
1. Kozhevnikov V.A., Popov S.K. Energoeffektivnoe Ispol'zovanie Otrabotannykh Nefteproduktov v Kachestve Topliva. Vestnik MEI. 2020;2:42—51. (in Russian).
2. Nikolaeva A.V., Kozhevnikov V.A., Chernykh V.A. Analiz Potentsiala Ispol'zovaniya Otrabotannykh Nefteproduktov na Sobstvennye Nuzhdy v Organizatsiyakh Sistemy «Transneft'». Nauka i Tekhnologii Truboprovodnogo Transporta Nefti i Nefteproduktov. 2020;1:70—83. (in Russian).
3. Pat. № 2706168 RF. Gorelochnoe Ustroystvo i Sposob Organizatsii Fakela Goreniya Topliva /P.A. Revel'-Muroz i dr. Byul. izobret. 2019;32. (in Russian).
4. Kozhevnikov V.A., Popov S.K. Razrabotka Gorelochnogo Ustroystva dlya Szhiganiya Otrabotannykh Nefteproduktov. Promyshlennaya Energetika. 2020;4:26—36. (in Russian).
5. Kozhevnikov V.A., Popov S.K., Serikov E.A. Issledovanie Kachestva Szhiganiya Otrabotannykh Nefteproduktov v Isparitel'noy Gorelke. Promyshlennaya Energetika. 2020;8:34—42. (in Russian).
6. Life Cycle Assessment of Used Oil Management. Prepared for the American Petroleum Institute [Ofits. Sayt] www.api.org/~/media/Files/Certification/Engine-Oil-Diesel/Publications/LCA-of-Used-Oil-Mgmt-ERM-10012017.pdf (Data Obrashcheniya 03.08.2021).
7. GOST 10585—99. Toplivo Neftyanoe. Mazut. Tekhnicheskie Usloviya. (in Russian).
8. GOST 14298—79. Toplivo Neftyanoe dlya Martenovskikh Pechey. Tekhnicheskie Usloviya. (in Russian).
9. GOST 305—2013. Toplivo Dizel'noe. Tekhnicheskie Usloviya. (in Russian).
10. GOST R 55475—2013. Toplivo Dizel'noe Zimnee i Arkticheskoe Deparafinirovannoe. Tekhnicheskie Usloviya. (in Russian).
11. GOST 21261—91. Nefteprodukty. Metod Opredeleniya Vysshey Teploty Sgoraniya i Vychislenie Nizshey Teploty Sgoraniya. (in Russian).
12. GOST 32510—2013 (ISO 8217:2017). Topliva Sudovye. Tekhnicheskie Usloviya. (in Russian).
13. NGE.RU. Nezavisimaya Torgovaya Ploshchadka po Nefteproduktam v Rossii i SNG [Ofits. Sayt] www.nge.ru/product_guide_list_11_1.htm (Data Obrashcheniya 03.08.2021). (in Russian).
14. Pravila Tekhnicheskoy Ekspluatatsii Sudovykh Dizeley [Elektron. Resurs] www.morkniga.ru/p201669.html (Data Obrashcheniya 03.08.2021). (in Russian).
15. Kozhevnikov V.A., Popov S.K., Yakovlev I.V. Effektivnost' Primeneniya Avtonomnykh Teplogeneratorov na Otrabotannykh Nefteproduktakh. Promyshlennaya Energetika. 2020;6:44–52. (in Russian).
16. Razdel AR-42 Arkhiva Agentstva Okhrany Okruzhayushchey Sredy SSHA «Air Emissions Factors and Quantification» [Ofits. Sayt] www3.epa.gov/ttn/chief/ap42/ch01/index.html; www3.epa.gov/ttn/chief/ap42/ch01/bgdocs/b01s03.pdf; www3.epa.gov/ttn/chief/ap42/ch01/final/c01s03.pdf; www3.epa.gov/ttn/chief/ap42/ch01/bgdocs/b01s11.pdf; www3.epa.gov/ttn/chief/ap42/ch01/final/c01s11.pdf (Data Obrashcheniya 03.08.2021). (in Russian).
17. Kozhevnikov V.A., Zakharov S.V. Analiz Potentsiala Ispol'zovaniya Otrabotannykh Masel [Elektron. Resurs] www.energosovet.ru/stat424.html (Data Obrashcheniya 03.08.2021). (in Russian).
18. Videomaterialy Termoportal.RU [Elektron. Resurs] www.termoportal.ru/threads/video-gorelki-na-otrabotannom-masle.480/; www.termoportal.ru/threads/gorelki-na-otrabotannom-masle-svoimi-rukami-video.478/ (Data Obrashcheniya 03.08.2021). (in Russian).
19. Videomaterialy eksperimental'noy Gorelki [Elektron. Resurs] www.youtube.com/watch?v=edbfNJwBOPw&feature=emb_title; www.youtube.com/watch?v=AY_dmd1kUoQ&feature=emb_title (Data Obrashcheniya 03.08.2021). (in Russian).
20. GOST R 54299—2010. Topliva Sudovye. Tekhnicheskie Usloviya. (in Russian).
21. Title 40 CFR Part 260. Hazardous Waste Management System: General [Elektron. Resurs] www.ecfr.gov/cgi-bin/text-idx?SID=b656ab603496daf6d620241043222e6a&mc=true&node=pt40.28.260&rgn=div5 (Data Obrashcheniya 03.08.2021).
22. Title 40 CFR Part 279. Standards for the Management of Used Oil [Elektron. Resurs] www.ecfr.gov/cgi-bin/text-idx?SID=a6739eadc899514c81d8e3781bb37e7e&mc=true&node=pt40.29.279&rgn=div5 (Data Obrashcheniya 03.08.2021).
23. Title 40 CFR Part 761. Polychlorinated Biphenyls (PCBs) Manufacturing, Processing, Distribution in Commerce, and Use Prohibitions [Elektron. Resurs] www.ecfr.gov/cgi-bin/text-idx?SID=a6739eadc899514c81d8e3781bb37e7e&mc=true&node=pt40.34.761&rgn=div5 (Data Obrashcheniya 03.08.2021).
24. Hazardous Waste Management System. Burning of Waste Fuel and Used Oil Fuel in Boilers and Industrial Furnaces. Environmental Protection Agency USA. Rules and Regulations. Federal Register. 1985;50;230. [Elektron. Resurs] www.epa.gov/sites/production/files/2016-04/documents/50fr49164_1.pdf (Data Obrashcheniya 03.08.2021).
25. Burning of Hazardous Waste in Boilers and Industrial Furnaces // Environmental Protection Agency USA. Proposed Rules. Federal Register 1987;52;87. [Elektron. Resurs] www.epa.gov/sites/production/files/2016-03/documents/52fr16982.pdf (Data Obrashcheniya 03.08.2021).
26. Assessment of the Effects of Combustion of Waste, Oil and Health Effects Associated with the use of Waste Oil as a Dust Suppressant. Ministry for the Environment New Zealand [Elektron. Resurs] www.environment.govt.nz/publications/assessment-of-the-effects-of-combustion-of-waste-oil-and-health-effects-associated-with-the-use-of-waste-oil-as-a-dust-suppressant/ (Data Obrashcheniya 03.08.2021).
27. Bernadiner I.M. Dioksiny i Drugie Toksikanty pri Vysokotemperaturnoy Pererabotke i Obezvrezhivanii Otkhodov. M.: Izdat. Dom MEI, 2007. (in Russian).
28. Best Available Techniques (BAT). Reference Document for Waste Treatment Industrial Emissions Directive 2010/75/EU (Integrated Pollution Prevention and Control) [Elektron. Resurs] www.ec.europa.eu/jrc/en/publication/eur-scientific-and-technical-research-reports/best-available-techniques-bat-reference-document-waste-treatment-industrial-emissions; www.eur-lex.europa.eu/legal-content/EN/TXT/PDF/?uri=CELEX:32010L0075&from=EN (Data Obrashcheniya 03.08.2021).
29. Direktiva № 2010/75/ES Evropeyskogo Parlamenta i Soveta Evropeyskogo Soyuza «O Promyshlennykh Vybrosakh (o Kompleksnom Predotvrashchenii Zagryazneniya i Kontrole nad nim)» [Elektron. Resurs] www.base.garant.ru/70161770/#friends (Data Obrashcheniya 03.08.2021). (in Russian).
30. Bernadiner M.N., Shurygin A.P. Ognevaya Pererabotka i Obezvrezhivanie Promyshlennykh Otkhodov. M.: Khimiya, 1990. (in Russian).
31. Vermont Used Oil Analysis and Waste Oil Furnace Emissions Study. Vermont Agency of Natural Resources [Elektron. Resurs] www3.epa.gov/ttn/catc/dir1/w_oilacr.pdf (Data Obrashcheniya 03.08.2021).
32. Pelitli V., Doğan Ö., Köroğlu H.J. Waste Oil Management: Analyses of Waste Oils From Vehicle Crankcases and Gearboxes [Elektron. Resurs] www.gjesm.net/article_22148_03e030d8c64c45fd18a362bc6f9d017c.pdf (Data Obrashcheniya 03.08.2021).
33. Energy Management by Recycling of Vehicle Waste Oil in Pakistan [Elektron. Resurs] www.paper.researchbib.com/view/paper/7243 (Data Obrashcheniya 03.08.2021).
34. Petrochemical standards. Edition 2011/2012. [Elektron. Resurs] www.ecolan.com.ru/standard-samples-foreign/4/4-2.pdf (Data Obrashcheniya 03.08.2021).
35. Petrochemical standards. ASTM. AccuStandard is Accredited to ISO Guide 34, ISO/IEC 17025 and Certified to ISO 9001 [Elektron. Resurs] www.weber.hu/Downloads/Standards/AccuStandard_Petrochemicals.pdf (Data Obrashcheniya 03.08.2021).
36. Guide to ASTM Test Methods for the Analysis of Petroleum Products and Lubricants [Elektron. Resurs] www.prime.erpnext.com/files/GuidetoAstmTestMethodsfortheAnalysisofPetroleumProductsandLubricantsSecondEdition.pdf (Data Obrashcheniya 03.08.2021).
37. Compendium of Recycling and Destruction Technologies for Waste Oils [Elektron. Resurs] www.wedocs.unep.org/bitstream/handle/20.500.11822/8601/IETC_Waste_Oils_Compendium.pdf?sequence=3&isAllowed=y (Data Obrashcheniya 03.08.2021).
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For citation: Kozhevnikov V.A., Popov S.K. Thermal and Environmental Characteristics of Spent Petroleum Product Combustion in Industrial Plants. Bulletin of MPEI. 2022;1:39—50. (in Russian). DOI: 10.24160/1993-6982-2022-1-39-50.

Published

2021-01-28

Issue

Section

Industrial Power System (05.14.04)