Vestnik On-line
Orenburg State University april 24, 2024   RU/EN
Headings of Vestnik
Pedagogics
Psychology
Other

Search
Vak
Антиплагиат
Orcid
Viniti
ЭБС Лань
Rsl
Лицензия Creative Commons

March 2018, № 3 (215), pages 114–119

doi: 10.25198/1814-6457-215-114

Vershinin A.A., Petrov A.M., Zaynulgabidinov E.R., Karimullin L.K. OIL POLLUTION AND MICROBIAL BIOMASS IN DIFFERENT TYPES OF SOILSContent of microbial biomass carbon (Cmic) in light-grey forest medium loamy soil, grey forest light loamy soil, dark-grey forest light loamy soil, sod-podzolic sandy loamy soil and sod-podzolic medium loamy soil under different levels of residual content of oil products was studied. The nature of change of microbe biomass carbon and share of microbial carbon in organic substance of soil (Cmic/Corg) dependent on soil type, granulometric composition and residual content of oil. Increase of non-polar hydrocarbons concentration led to decrease both microbial biomass carbon and Cmic/Corg. Among the soils studied microbiota of sod-podzolic sabulous soil appeared to be the most sensitive to oil pollution. Carbone content of dark-grey forest light loamy soil remained at high level and virtually unchanged even high doses of pollutant. The lack of inhibitory effect on the basal respiration of studied soils within the using range of pollutant concentrations indicates sufficiently intensive degradation of oil hydrocarbons. Against the background of absence of influence of pollutant concentration on the speed of basal respiration, increase in content of oil products led to a increase in the speed of substrate-induced respiration. This effect is most pronounced in the experimental varianrs of light sod-podzolic sandy loamy soil. The decrease in activity of substrate-induced respiration of dark-grey forest light loamy soil in 10 % is registered only in variants containing 4,94 and 6,45 g/kg of oil products. Practically in all variants of experiment the inhibitory effect of oil pollution on the growth of wheat roots was recorded. Sod-podzolic sandy loamy soil was most exposed to the negative influence of the pollutant. In other soils, phytoeffect is determinate by the residual oil content in soil. In the course of conducted researches somt interrelation between microbial potential (Cmic and Cmic/Corg ) and toxicity of oil polluted soils was found. The maximum toxicity for higher plants were identified in the sod-podzolic sandy loamy soil, with a minimum reserve of microbial carbon.Key words: oil, microbial biomass carbon (Cmic), organic carbon (Corg), basal respiration, substrate-induced respiration, toxicity.

Download
References:

1. Kudeyarov V.N. Puly i potoki ugleroda v nazemnyh ehkosistemah [Pools and carbon fluxes in terrestrial ecosystems]. Moskva: Nauka, 2007, 315 p.

2. Polyanskaya L.M., Zvyagincev D.G. Soderzhanie i struktura mikrobnoj massy kak pokazatel' ehkologicheskogo sostoyaniya pochv. Pochvovedenie [Pedology], 2005, no. 6, pp. 706–714.

3. Kuznecova T.V. et al. Sostav mikrobnyh soobshchestv pri razlichnom soderzhanii nefteproduktov v seryh lesnyh pochvah. Vestnik Kazanskogo tekhnologicheskogo universiteta [Bulletin of the Kazan Technological University], 2016, vol. 19, no. 14, pp. 165–168.

4. Degtyareva I.A. et al. Metody biologicheskoj diagnostiki pochv. Vestnik Kazanskogo tekhnologicheskogo universiteta [Bulletin of the Kazan Technological University], 2017, vol. 20, no. 24, pp. 163–168.

5. Sus'yan E.A. et al. Uglerod mikrobnoj biomassy v profile lesnyh pochv yuzhnoj tajgi. Pochvovedenie [Pedology], 2009, no. 10, pp. 1233–1240.

6. Prihod'ko V.E., Sizemskaya M.L. Bazal'noe dyhanie i sostav mikrobnoj biomassy celinnyh, agro- i lesomeliorirovannyh polupustynnyh pochv severnogo Prikaspiya. Pochvovedenie [Pedology], 2015, no. 8, pp. 974–983.

7. Anan'eva N.D. et al. Uglerod mikrobnoj biomassy i mikrobnoe producirovanie dvuokisi ugleroda dernovo-podzolistymi pochvami postagrogennyh biogeocenozov i korennyh el'kov YUzhnoj tajgi ( Kostromskaya oblast'). Pochvovedenie [Pedology], 2009, no. 9, pp. 1108–1116.

8. Ivashchenko K.V. et al. Biomassa i dyhatel'naya aktivnost' pochvennyh mikroorganizmov v antropogenno-izmenennyh ehkosistemah (Moskovskaya oblast'). Pochvovedenie [Pedology], 2014, no. 9, pp. 1077–1088.

9. ZHukova A.D., Homyakov D.M. Pokazateli mikrobnogo dyhaniya v pochvennom pokrove impaktnoj zony predpriyatiya po proizvodstvu mineral'nyh udobrenij. Pochvovedenie [Pedology], 2015, no. 8, pp. 984–982.

10. Petrov A.M. et al. Vliyanie ostatochnogo soderzhaniya nefteproduktov na sostav i aktivnost' pochvennogo mikrobnogo soobshchestva. Vestnik Kazanskogo tekhnologicheskogo universiteta [Bulletin of the Kazan Technological University], 2014, vol. 23, no. 17, pp. 356–359.

11. Kurganova I.N. et al. Balans ugleroda v pochvah zalezhej Podmoskov'ya. Pochvovedenie [Pedology], 2007, no. 1, pp. 60–68.

12. PND F 16.1.2.2.22-98. Metodika vypolneniya izmerenij massovoj doli nefteproduktov v mineral'nyh, organogennyh, organo-mineral'nyh pochvah i donnyh otlozheniyah metodom IK-spektrometrii. M.: 1998, 11 p.

13. Arinushkina E.V. Rukovodstvo po himicheskomu analizu pochv [Guidelines for the chemical analysis of soils]. Moskva: MGU, 1961, 491 p.

14. Garusov A.V. et al. Gazovaya hromatografiya v biologicheskom monitoringe pochvy [Gas chromatography in biological soil monitoring]. Kazan': Izd-vo KGU, 2006, 90 p.

15. Anan'eva N.D. et al. Metodicheskie aspekty opredeleniya skorosti substrat-inducirovannogo dyhaniya pochvennyh mikroorganizmov. Pochvovedenie [Pedology], 1993, no. 11, pp 72–77.

16. Anderson T.-H., Domsch K.H. A physiological method for the quantitative measurement of microbial biomass in soils. Soil Biol. Biochem., 1978, vol. 10, no. 3, pp. 215–221.

17. FR. 1.39.2006.02264. Metodika vypolneniya izmerenij vskhozhesti semyan i dliny kornej prorostkov vysshih rastenij dlya opredeleniya toksichnosti tekhnogenno zagryaznennyh pochv. S-P.: 2009, 20 p.

18. Brookes P.C. et al. Chlopoform fumigation and the release of soil nitrogen: a rapid direct extraction method to measure microbial biomass nitrogen in soil. Soil Biol. Biochem., 1985, vol. 17, pp. 837–842.

19. Jenkinson D.S. The soil biomass. New Zeland Soil News, 1977, vol. 25, pp. 213–218.


About this article

Authors: Vershinin A.A., Petrov A.M., Zaynulgabidinov E.R., Karimullin L.K.

Year: 2018

doi: 10.25198/1814-6457-215-114

Editor-in-chief
Sergey Aleksandrovich
MIROSHNIKOV

Crossref
Cyberleninka
Doi
Europeanlibrary
Googleacademy
scienceindex
worldcat
© Электронное периодическое издание: ВЕСТНИК ОГУ on-line (VESTNIK OSU on-line), ISSN on-line 1814-6465
Зарегистрировано в Федеральной службе по надзору в сфере связи, информационных технологий и массовых коммуникаций
Свидетельство о регистрации СМИ: Эл № ФС77-37678 от 29 сентября 2009 г.
Учредитель: Оренбургский государственный университет (ОГУ)
Главный редактор: С.А. Мирошников
Адрес редакции: 460018, г. Оренбург, проспект Победы, д. 13, к. 2335
Тел./факс: (3532)37-27-78 E-mail: vestnik@mail.osu.ru
1999–2024 © CIT OSU