Репозиторий Евразийского национального университета имени Л.Н. Гумилева
Репозиторий Евразийского национального университета имени Л.Н. Гумилева
Репозиторий Евразийского национального университета имени Л.Н. Гумилева
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  • Научные статьи
  • 01. Публикации в изданиях зарубежных стран
  • Biochemistry, Genetics and Molecul
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Effective photochemical treatment of a municipal solid waste landfill leachate

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Автор
Makhatova, Ardak
Mazhit, Birzhan
Sarbassov, Yerbol
Meiramkulova, Kulyash
Inglezakis, Vassilis J.
Poulopoulos, Stavros G.
Дата
2020-09
Редактор
PLOS ONE
ISSN
1544-9173
xmlui.dri2xhtml.METS-1.0.item-identifier-citation
Makhatova A, Mazhit B, Sarbassov Y, Meiramkulova K, Inglezakis VJ, Poulopoulos SG (2020) Effective photochemical treatment of a municipal solid waste landfill leachate. PLoS ONE 15(9): e0239433. https://doi.org/10.1371/journal. pone.0239433
Аннотации
This work aimed at studying the photochemical treatment of a landfill leachate using ultraviolet light, hydrogen peroxide, and ferrous or ferric ions, in a batch recycle photoreactor. The effect of inorganic carbon presence, pH, initial H2O2 amount (0–9990 mg L-1) as well as Fe (II) (200–600 ppm) and Fe(III) (300–700 ppm) concentrations on the total carbon removal and color change was studied. Prior to the photochemical treatment, a pretreatment process was applied; inorganic nitrogen and inorganic carbon were removed by means of air stripping and initial pH regulation, respectively. The leachate sent subsequently for photochemical treatment was free of inorganic carbon and contained only organic carbon with concentration 1200±100 mg L-1 at pH 5.1–5.3. The most favorable concentrations of H2O2 and ferric ions for carbon removal were 6660 mg L-1 and 400 ppm, respectively. Adjusting the initial pH value in the range of 2.2–5.3 had a significant effect on the organic carbon removal. The photo-Fenton-like process was more advantageous than the photo-Fenton one for leachate treatment. By applying the most favorable operating conditions, 88.7% removal of total organic carbon, 100% removal of total inorganic carbon, 96.5% removal of total nitrogen, and 98.2% color removal were achieved.
URI
http://rep.enu.kz/handle/enu/16111
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Effective-photochemical-treatment-of-a-municipal-solid-waste-landfill-leachatePLoS-ONE.pdf (3.791Mb)
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  • Biochemistry, Genetics and Molecul[139]
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