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– М.: Изд-во ООО «РАИЛЬФ», 2015. – С. 167 – 174.37 Barnes, D.L. Treatment of Petroleum-Contaminated Soil in Cold, Wet, Remote Regions /D.L. Barnes, Sh.R. Laderach, Ch. Shower. – Washington: USDA’s TARGET Center, 2002. – 59 p.38 Y.
Si-Zhong Bioremediation of Oil Spills in Cold Environments: A Review / Y. Si-Zhong,J. Hui-Jun, W. Zhi, H. Rui-Xia, et.al. // Pedosphere. – 2009 – № 19(3). – PP. 371 – 381.39 Thomassin-Lacroix, E.J.M. Biostimulation and bioaugmentation for on-site treatment ofweathered diesel fuel in Arctic soil / E.J.M. Thomassin-Lacroix, M. Eriksson, K.J. Reimer, W.W.Mohn // Appl Microbiol Biotechnol. – 2002 – № 59. –PP. 551–556.40 Camenzuli, D. On-site and in situ remediation technologies applicable to petroleumhydrocarbon contaminated sites in the Antarctic and Arctic / D.
Camenzuli, B. L. Freidman // PolarResearch. – 2015 – № 34. – PP. 24492 – 24492.41 Биотехнологии для защиты экосистем Арктики. – М.: ООО «Арктический НаучныйЦентр», «Иннопрактика», 2018.42 Госэкспертиза одобрила технологию Лукойла по ликвидации разливов нефти вАрктике[Электронныйресурс]/ПАО«НК«ЛУКОЙЛ»http://www.lukoil.ru/PressCenter/Pressreleases/Pressrelease?rid=335080[Офиц.(датасайт].–URL:обращения:10.01.2019).43 Проект «Ранжированный перечень наилучших доступных технологий по очисткезагрязненных территорий и ликвидации накопленного экологического ущерба» [Электронныйресурс].
– URL: http://ecostaff.ru/novosti/2941-ranzhirovannyj-perechen-nailuchshikh-dostupnykh-147tekhnologij-po-ochistke-zagryaznennykh-territorij-i-likvidatsii-nakoplennogo-ekologicheskogoushcherba (дата обращения: 05.10.2018).44 Filler, D.M. Contamination, regulation, and remediation: an introduction to bioremediationof petroleum hydrocarbons in cold regions. Bioremediation of Petroleum Hydrocarbons in ColdRegions / D.M.
Filler, I. Snape, D.L. Barnes. – Cambridge University Press, 2008. – 298 p.45 Information bulletin on the Arctic. 2750 contaminated sites in Arctic // Polar Star. – 2009 –№ 2/49. – 51 p.46 Ликвидация накопленного вреда окружающей среде на территории РоссийскойФедерации [Электронный ресурс] / Круглый стол на тему: «Правовые и организационныепроблемы рекультивации объектов накопленного вреда окружающей среде». – URL:http://komitet2-21.km.duma.gov.ru/upload/site22/MPR_Tagilova_OA.pdf(датаобращения:03.03.2019).47 Фокин, С.Г.
«Реализация мероприятий по ликвидации накопленного вредаокружающей среде в Арктической зоне Российской Федерации: Материалы доклада[Электронный ресурс] / С.Г. Фокин // VIII Международный форум «Арктика: настоящее ибудущее». – URL: http://vniiecology.ru/images/documents/Arctic_2018.pdf (дата обращения:03.03.2019).48 Remediation of Oil Polluted Soil in the Arctic – Conference Summary [Electronic source] /DanishMinistryofDefenceEstateAgency(MDEA)[Officialsite].http://www.ejendomsstyrelsen.dk/nyheder/Documents/ROPSA%20Translation_final.pdf–URL:(assessed:04/03/2019).49 Granberg, M. Local contamination in Svalbard.
Overview and suggestions for remediationactions / M.E. Granberg, A. Ask, G.W. Gabrielsen. – Norsk Polarinstitutt, 2017. – 52 p.50 Jorgenson, M.T. Six Strategies for Rehabilitating Land Disturbed by Oil Development inArctic Alaska / M.T. Jorgenson, M.R. Joyce // Arctic. – 1994 – V.47, № 4. – PP. 374 – 390.51 Chapter 10 Petroleum Hydrocarbons [Electronic source] / AMAP [Official site]. – URL:https://www.amap.no/documents/download/96/inline (assessed: 01.05.2019).52Шигапов,компонентамиА.М.отходовБиоремедиациялесозаготовительнойнефтезагрязненныхпромышленностипочв(наорганическимипримередерново-подзолистых почв Уральского федерального округа): дис.
… канд. биол. наук: 03.02.08 /Шигапов Айрат Минимарсильевич. – Екатеринбург, 2016. – 252 с.53 Chen, T.Y. Application of Oxygen-Releasing Material to Enhance In Situ AerobicBioremediation / T.Y. Chen, C.M. Kao, H.Y. Chiou, Y.T. Yu // Proceedings of the 3rd WSEAS148International Conference on Mathematical Biology and Ecology, Gold Coast, Queensland, Australia,January 17-19, 2007. – 2007. – PP. 48 – 52.54 Enhanced Bioremediation Utilizing Hydrogen Peroxide As A Supplemental Source OfOxygen Laboratory And Field Study [Electronic source] / US EPA [Official site].
– URL:https://nepis.epa.gov (assessed: 15.03.2018).55 Suni, S. Electrokinetically enhanced bioremediation of creosote-contaminated soil:Laboratory and field studies / S. Suni, E. Malinen,J. Kosonen,H. Silvennoinen, et al. // Journal ofEnvironmental Science and Health. –2007 – Vol. 42, №3. – PP. 277 – 287.56 Advances in the state of the practice for enhanced in situ bioremediation.
Technical ReportTR-NAVFAC EXWC-EV-1806 [Electronic source] / Contaminated Site. Clean-Up Information[Official site]. – URL: https://clu-in.org/download/techfocus/bio/EISB-Advances-2018.pdf (assessed:16.04.2019).57 Agarry, S.E. Enhanced Bioremediation of Soil Artificially Contaminated with Kerosene:Optimization of Biostimulation Agents through Statistical Experimental Design/ S.E. Agarry, C.N.Owabor, R.O. Yusuf // Journal of Petroleum & Environmental Biotechnology. – 2012 – Vol.
3, №3. –8 p.58 Tsai, T.T. Enhanced Bioremediation of Fuel-Oil Contaminated Soils: Laboratory FeasibilityStudy / T.T. Tsai, C.M. Kao, R.Y. Surampalli, H.Y. Chien // Journal of Environmental Engineering. –2009 – Vol. 135, №9. – PP. 651 – 659.59 Mohanty, S. Practical Considerations and Challenges Involved in Surfactant EnhancedBioremediation of Oil / S. Mohanty, J. Jasmine, S. Mukherji // BioMed Research International.
– 2013– Vol. 2013. – 16 p.60 Churchill, P.F. Surfactant-enhanced bioremediation / P.F. Churchill, R.J. Dudley, Sh.A.Churchill // Waste Management. – 1995 – Vol. 15, №5 – 6. – PP. 371 – 377.61 Cheng, M. Tween 80 surfactant-enhanced bioremediation: toward a solution to the soilcontamination by hydrophobic organic compounds / M. Cheng, G. Zeng, D. Huang, C. , et al. // CritRev Biotechnol.. – 2018 – №38(1). – PP. 17 – 30.62 Cecotti, M. Efficiency of surfactant-enhanced bioremediation of aged polycyclic aromatichydrocarbon-contaminated soil: Link with bioavailability and the dynamics of the bacterial community/ M. Cecotti, B.M.
Coppotelli, V.C. Mora, M. Viera, et al. // Sci Total Environ. – 2018 – №634. – PP.224 – 234.63 Jordan, R.N. Surfactant-Enhanced Bioremediation / R.N. Jordan, A.B. Cunningham //Bioavailability of Organic Xenobiotics in the Environment. – 1999 – Vol. 64. – PP. 463 – 496.14964 Industrial Emissions Directive 2010/75/EU (Integrated Pollution Prevention and Control)Best Available Techniques (BAT) Reference Document for Waste Treatment. Final Draft (October2017) [Electronic source] / European IPPC Bureau (EIPPCB) [Official site]. – URL:http://eippcb.jrc.ec.europa.eu/reference/BREF/WT/WT_Final_Draft1017.pdf (assessed: 01.06.2019).65 Lee, L.S.
INDOT Guidance Document for In-Situ Soil Flushing / L.S. Lee, X. Zhai, J. Lee.– Purdue University, 2007. – 48 p.66 Azarmi, R. Type and application of some common surfactants / R. Azarmi, A. Ashjaran //Journal of Chemical and Pharmaceutical Research. – 2015 – № 7(2). – PP. 632 – 640.67 Zhu, K. Remediation of Petroleum-Contaminated Loess Soil by Surfactant-EnhancedFlushing Technique / K.
Zhu, W. Hart, J. Yang // Journal of Environmental Science and Health, PartA: Toxic/Hazardous Substances and Environmental Engineering. – 2005 – №40. – PP. 1877 – 1893.68 Urum, K. Surfactants treatment of crude oil contaminated soils / K. Urum, T. Pekdemir, M.Çopur // Journal of Colloid and Interface Science. – 2004 – № 276. – PP. 456 – 464.69 Kłosowska-Chomiczewska, I.E. Biosurfactants – biodegrability, toxicity, efficiency incomparison with synthetic surfactants / I.E. Kłosowska-Chomiczewska, K. Mędrzycka, E. Karpenko //Research and application of new technologies in wastewater treatment and municipal solid wastedisposal in Ukraine, Sweden and Poland, TRITA-LWR.REPORT 3031.
– PP. 141 – 149.70 Franzetti, A. (Bio)surfactant and Bioremediation, Successes and Failures [in Trends inBioremediation and Phytoremediation] / A. Franzetti, I. Gandolfi, G. Bestetti, I.M. Banat. – ResearchSignpost, 2010. – PP 145 – 156.71 Urum, K. Evaluation of biosurfactants for crude oil contaminated soil washing / K. Urum, T.Pekdemir // Chemosphere. – 2004 – № 57. – PP. 1139 – 1150.72 Li, G. Evaluation of biodegradability and biotoxicity of surfactants in soil / G. Li, G. Lan,Yo.
Liu, Ch. Chen, et al. // RSC Adv. – 2017 – № 7. – PP. 31018 – 31026.73 Guha, S. Multisubstrate biodegradation kinetics of naphthalene, phenanthrene, and pyrenemixtures / S. Guha, C. A. Peters, P. R. Jaffe // Biotechnology and Bioengineering. – 1999 – Vol. 65. –PP. 491 – 499.74 Mohanty, S.
Surfactant-aided biodegradation of NAPLs by Burkholderia multivorans:comparison between Triton X-100 and rhamnolipid JBR 515 / S. Mohanty, S. Mukherji // Colloids andSurfaces B. – 2013 – Vol. 102. – PP. 644 – 652.75 Lanzon, J.B. Partitioning of phenanthrene into surfactant hemimicelles on the bacterial cellsurface and implications for surfactant-enhanced biodegradation / J.B. Lanzon, D.G. Brown // WaterResearch.
– 2013 – Vol. 47. – PP. 4612 – 4620.15076 Li, J.B. Surfactant mediated biodegradation of polycyclic aromatic hydrocarbons / J.L. Li,B.H. Chen // Material. – 2009 – Vol. 2. – PP. 76 – 94.77 Плотникова, М.Д. Перспективы использования водных композиций поверхностноактивных веществ для очистки нефтезагрязненных грунтов / М.Д. Плотникова, М.Г. Щербань,Н.А. Медведева // Географический вестник. – 2016 – № 3(38).
– С. 114 – 121.78 Zhu, L. Synergistic solubilization of polycyclic aromatic hydrocarbons by mixed anionicnonionic surfactants / L. Zhu, S. Feng // Chemospher. – 2003 – Vol. 53, № 5. – PP. 459 – 467.79 Van Hamme, J.D. Physical and metabolic interactions of Pseudomonas sp. strain JA5-B45and Rhodococcus sp. strain F9-D79 during growth on crude oil and effect of a chemical surfactant onthem / J.D. Van Hamme, O.P. Ward // Applied and Environmental Microbiolog.