Preview

Topical biotechnology

Advanced search

ЭФФЕКТИВНОСТЬ ИСПОЛЬЗОВАНИЯ УГЛЕРОДИСТЫХ И МИНЕРАЛЬНЫХ СОРБЕНТОВ В ТЕХНОГЕННО ЗАГРЯЗНЕННОМ ЦИНКОМ ЧЕРНОЗЕМЕ

https://doi.org/10.20914/2304-4691-2022-1-193-195

About the Authors

Т. Минкина
Южный федеральный университет
Russian Federation


А. Барахов
Южный федеральный университет
Russian Federation


Т. Бауэр
Южный федеральный университет
Russian Federation


И. Лобзенко
Южный федеральный университет
Russian Federation


Е. Лацынник
Южный федеральный университет
Russian Federation


References

1. Kibblewhite M.G. Contamination of agricultural soil by urban and peri-urban highways: An overlooked priority? // Environmental Pollution. -2018. -Vol. 242. -P. 1331-1336.

2. Sophia C.A., Lima E.C. Removal of emerging contaminants from the environment by adsorption // Ecotoxicology and Environmental Safety. -2018. -Vol. 150. -P. 1-17.

3. Huang D., Xu Q., Cheng J., Lu X., Zhang H. Electrokinetic remediation and its combined technologies for removal of organic pollutants from contaminated soils // International journal of electrochemical science. -2012. -Vol. 7. -P. 4528-4544.

4. Mackay D., Shiu W.Y., Ma K.C., Lee S.C. Handbook of physical-chemical properties and environmental fate for organic chemicals. 2nd ed.: in 4 vol. -Boca Raton:CRC Press Taylor and Francis Group: Introduction and Hydrocarbons. -2006. -919 p.

5. Soltani N. et al. Ecological and human health hazards of heavy metals and polycyclic aromatic hydrocarbons (PAHs) in road dust of Isfahan metropolis, Iran // Science of the Total Environment. -2015. -Vol. 505. -P. 712-723.

6. Guixiang Z. et al. Effect of biochar on the availability of hevy metals to ryegrass in an alkaline contaminated soil // Environmental Pollution. -2016. -Vol. 218. -P. 513-522.

7. Honghua Z., Kunde L., Hailong W., Jay G. Effect of Pinus radiata derived biochars on soil sorption and desorption of phenanthrene // Environmental Pollution. -2010. -Vol. 158. -P. 2821-2825.

8. Mulligan C.N., Yong R.N., Gibbs B.F. Remediation technologies for metal-contaminated soils and groundwater: an evaluation // Engineering Geology. -2001. -Vol. 60. -P. 193-207.

9. Bauer T., Minkina T., Mandzhieva S., Burachevskaya M., Zharkova M. Biochar application to detoxification of the heavy metal-contaminated fluvisol // E3S Web of Conferences. -2020. -Vol. 175. -09009 p.

10. Minkina T., Mandzhieva S., Burachevskaya M., Bauer T., Sushkova S. Method of determining loosely bound compounds of heavy metals in the soil // Methods X. -2018. -Vol. 5. -P. 217-226.

11. Burachevskaya M., Minkina T., Zamulina I., Fedorenko A., Kalinichenko V., Lobzenko I., Sushkova S. Effect of biochar on the lead mobility in Haplic Chernozem //IOP Conference Series: Earth and Environmental Science. -2020. -Vol. 578(1). -012012 p.

12. Minkina T., et al. Possibilities of chemical fractionation and X-ray spectral analysis in estimating the speciation of Cu2+ with soil solid-phase components. -2019. -Vol. 102. -P. 55-63.


Review

For citations:


 ,  ,  ,  ,   . Topical biotechnology. 2022;(1):193-195. (In Russ.) https://doi.org/10.20914/2304-4691-2022-1-193-195

Views: 39


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2304-4691 (Print)