Destruction of synthetic dyes by photocatalytic activated peroxodisulfuric acid

Мұқаба

Дәйексөз келтіру

Толық мәтін

Ашық рұқсат Ашық рұқсат
Рұқсат жабық Рұқсат берілді
Рұқсат жабық Рұқсат ақылы немесе тек жазылушылар үшін

Аннотация

The use of ultraviolet irradiation in the practice of AOPs (Advanced Oxidation Processes) for the treatment of wastewater of various origins has been the subject of many studies. In recent years, the possibilities of using AOPs based on sulfate radicals, the main source of which is peroxodisulfuric acid, have been actively considered. In this paper, the effect of peroxydisulfuric acid additives on the process of photodegradation of fuchsin, bromocresol green and methyl red was studied. It was proven that the combination of UV radiation and H2S2O8 has a synergistic effect and makes it possible to significantly increase the efficiency and rate of oxidation of dyes in comparison with individual photo- and reagent treatment. The maximum oxidation efficiency was 99.9% for bromocresol green, 93% for fuchsin and 76% for methyl red.

Толық мәтін

Рұқсат жабық

Авторлар туралы

T. Liubushkin

Mendeleev University of Chemical Technology of Russia

Хат алмасуға жауапты Автор.
Email: timlub2000@gmail.com
Ресей, Moscow

E. Kuzin

Mendeleev University of Chemical Technology of Russia

Email: timlub2000@gmail.com
Ресей, Moscow

N. Ivantsova

Mendeleev University of Chemical Technology of Russia

Email: timlub2000@gmail.com
Ресей, Moscow

V. Dubrovina

Mendeleev University of Chemical Technology of Russia

Email: timlub2000@gmail.com
Ресей, Moscow

Әдебиет тізімі

  1. Srivastava R., Sofi I.R. Impact of synthetic dyes on human health and environment // IGI Global, 2020. P. 146.
  2. Lellis B., Fávaro-Polonio C.Z., Pamphile J.A., Polonio J.C. // Biotechnol. Res. Innov. 2019. V. 3. № 2. P. 275.
  3. Adesanmi B.M., Hung Y.T., Paul H.H, Huhnke C.R. // GSCAR R. 2022. V. 10. № 2. P. 126.
  4. Crini G., Lichtfouse E. // Environ. Chem. Lett. 2019. V. 17. P. 145.
  5. Bhatia D., Sharma N.R., Singh J., Kanwar R.S. // Crit. Rev. Env. Sci. Technol. 2017. V. 47. № 19. P. 1836.
  6. Yagub M.T., Sen T.K., Afroze S., Ang H.M. // Adv. colloid interface sci. 2014. V. 209. P. 172.
  7. Periyasamy A.P. // Sustainability. 2024. V. 16. № 2. P. 495.
  8. Kuznetsov V.V., Ivantsova N.A., Kuzin E.N., Pirogov A.V., Mezhuev Y.O., Filatova E.A., Averina Y.M. // Water. 2023. V. 15. № 19. P. 3370.
  9. Sarantseva A.A., Ivantsova N.A., Kuzin E.N. // Russ. J. Gen. Chem. 2023. V. 93. № 13. P. 3454.
  10. Li J., Li Y., Xiong Z., Yao G., Lai B. // Chin. Chem. Lett. 2019. V. 30. № 12. P. 2139.
  11. Domingues E., Silva M.J., Vaz T., Gomez J., Martins R.C. // Water. 2021. V. 13. №. 21. P. 3010.
  12. Zhi K., Xu J., Li S., Luo L., Liu D., Li Z., Guo L., Hou J. // Nanomaterials. 2024. V. 14. № 5. P. 473.
  13. Ivantsova N.A., Panicheva D.A., Kuznetsov O.Y. // High Energy Chem. 2020. V. 54. P. 10.
  14. Sun W., Dong H., Wang Y., Duan S., Ji W., Huang H., Gu J., Qiang Z. // J. Environ. Chem. Eng. 2023. P. 110425.
  15. Любушкин Т.Г., Кузин Е.Н., Иванцова Н.А., Конькова Т.В. // Известия высших учебных заведений. Химия и химическая технология. 2025. Т. 68. № 1. С. 120–126.
  16. Yang Q., Ma Y., Chen F., Yao F., Sun J., Wang S., Yi K., Hou L., Li X., Wang D. // Chem. Eng. J. 2019. V. 378. P. 122149.
  17. Кулебякина А.И., Дубровина В.Н., Киреев С.Г., Иванцова Н.А., Шашковский С.Г. // Известия высших учебных заведений. Химия и химическая технология. 2022. Т. 65. № 11. С. 104.
  18. Шлыкова А.Ю., Дубровина В.Н., Кулебякина А.И., Иванцова Н.А. // Известия Тульского государственного университета. Естественные науки. 2024. № 3. С. 136.
  19. Abbas M. // J. Eng. Fiber. Fabr. 2022. V. 17. 1558925021991854.
  20. Onu C.E., Ohale P.E., Ekwueme B.N., Obiora-Okafo I.A., Okey-Oneyesolu C.F., Onu C.P., Ezema C.A., Onu O.O. // Cleaner Chem. Eng. 2022. V. 4. P. 100067.
  21. Gul S., Kanwal M., Qazi R.A., Gul H., Khattak R., Khan M.S., Khitab F., Krauklis A.E. // Water. 2022. V. 14. № 18. P. 2831.
  22. Кузин Е.Н., Кручинина Н.Е. // Известия высших учебных заведений. Химия и химическая технология. 2019. Т. 62. № 10. С. 140.
  23. Kuzin E. // Metallurgical and Materials Engineering. 2024. V. 30. № 2. С.
  24. Холодкова Е.М., Пономарев А.В. // Химия высоких энергий. 2023. Т. 57. № 2. С. 139–143.

Қосымша файлдар

Қосымша файлдар
Әрекет
1. JATS XML
2. Fig. 1. Optical density of model solutions: bromocresol green – 1; fuchsin – 2; methylene red – 3; normalized spectrum of PCL emission – 4.

Жүктеу (773KB)
3. Fig. 2. Efficiency of oxidation of synthetic dyes with peroxydisulfuric acid (1 – methyl red, 2 – fuchsine, 3 – bromocresol green).

Жүктеу (809KB)
4. Fig. 3. Kinetic curves of photooxidation of dyes (1 – methyl red, 2 – fuchsin, 3 – bromocresol green).

Жүктеу (342KB)
5. Fig. 4. Kinetic curves of photooxidation of dyes in the presence of peroxydisulfuric acid (1 – methyl red, 2 – fuchsin, 3 – bromocresol green).

Жүктеу (353KB)

© Russian Academy of Sciences, 2025