Korkmaz Özkan, Filiz

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Korkmaz Ozkan,Filiz
K.,Filiz
F.,Korkmaz Ozkan
Filiz, Korkmaz Özkan
Korkmaz Ozkan,F.
K.Ö.Filiz
Korkmaz Özkan,F.
K. O. Filiz
Korkmaz F.
F.,Korkmaz Özkan
F., Korkmaz Ozkan
Filiz, Korkmaz Ozkan
Filiz Korkmaz Özkan
F., Korkmaz Özkan
Korkmaz Ozkan, Filiz
Korkmaz Özkan, Filiz
K. Ö. Filiz
K., Filiz
Özkan, Filiz Korkmaz
Korkmaz, Filiz
Job Title
Profesör Doktor
Email Address
filiz.korkmaz@atilim.edu.tr
Main Affiliation
Physics Group
Status
Website
Scopus Author ID
Turkish CoHE Profile ID
Google Scholar ID
WoS Researcher ID

Sustainable Development Goals

9

INDUSTRY, INNOVATION AND INFRASTRUCTURE
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0

Research Products

5

GENDER EQUALITY
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0

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2

ZERO HUNGER
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0

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4

QUALITY EDUCATION
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11

SUSTAINABLE CITIES AND COMMUNITIES
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17

PARTNERSHIPS FOR THE GOALS
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16

PEACE, JUSTICE AND STRONG INSTITUTIONS
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3

GOOD HEALTH AND WELL-BEING
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3

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12

RESPONSIBLE CONSUMPTION AND PRODUCTION
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0

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15

LIFE ON LAND
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2

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8

DECENT WORK AND ECONOMIC GROWTH
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0

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14

LIFE BELOW WATER
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0

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10

REDUCED INEQUALITIES
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7

AFFORDABLE AND CLEAN ENERGY
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1

NO POVERTY
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6

CLEAN WATER AND SANITATION
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3

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13

CLIMATE ACTION
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0

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Documents

24

Citations

665

h-index

9

Documents

0

Citations

0

Scholarly Output

27

Articles

22

Views / Downloads

6/0

Supervised MSc Theses

4

Supervised PhD Theses

0

WoS Citation Count

600

Scopus Citation Count

619

WoS h-index

9

Scopus h-index

8

Patents

0

Projects

0

WoS Citations per Publication

22.22

Scopus Citations per Publication

22.93

Open Access Source

9

Supervised Theses

4

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JournalCount
Scientific Reports4
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy2
Physica B: Condensed Matter2
Archives of Biochemistry and Biophysics2
Journal of Biomolecular Structure and Dynamics1
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  • Article
    Simultaneous Removal of Setazol Navy Blue and Cr(vi) by Mixed Microbial Culture Isolated From the Çubuk Stream
    (Springer int Publ Ag, 2024) Gunduz, A. Irem; Erkoc, Esra; Korkmaz, Filiz; Kilic, Nur Kocberber
    Water samples taken from the & Ccedil;ubuk Stream (Ankara, Turkey) were inoculated into nutrient broth media containing Setazol Navy Blue SBG (SNB), an organic pollutant, and heavy metal Cr(VI), an inorganic pollutant, to obtain a pollutant-resistant mixed microbial culture. Experiments were conducted with this culture to remove SNB and heavy metal. The optimum conditions, where the mixed bacterial culture removed the pollutants most effectively, were determined, showing that the highest capacity for removal took place at pH 8 with removal percentages 96.3% for Cr(VI) and 78.5% for SNB. In media with 50.4 mg/L SNB and 9.7 mg/L Cr(VI), the SNB removal was 87.3%, and the Cr(VI) removal was 96.6% at the end of the 7-day incubation period. The highest removal was observed with a biomass concentration of 8% (v/v) of mixed culture [50 mg/L SNB dye+25 mg/L Cr(VI)]. The removal was 100% for both Cr(VI) and the SNB dye. The bacteria with the highest removal were isolated and identified using 16S rDNA gene sequence analysis as Microbacterium oxydans and Leucobacter aridicollis. The role of various functional groups and the structures of the microorganisms that might be involved in the removal mechanisms were discussed using their FTIR spectra. This report is the first study that investigates a mixed bacterial culture and pure cultures (M. oxydans and L. aridicollis) isolated from that mixed culture, removing both SNB and Cr(VI) simultaneously.