Kinetic modeling and isotherm approach for biosorptive removal of hexavalent chromium using heat inactivated fungal biomass

Author:

Das Sasmita1,Behera Bikash Chandra2,Mohapatra Ranjan Kumar3,Pradhan Biswaranjan4,Sudarshan Mathummal5,Chakraborty Anindita5,Thatoi Hrudayanath6ORCID

Affiliation:

1. Department of Biotechnology Academy of Management and Information Technology Khordha India

2. School of Biological Sciences National Institute of Science Education and Research Bhubaneswar India

3. Environment and Sustainability Department CSIR‐Institute of Minerals and Materials Technology Bhubaneswar India

4. Indian Institute of Technology S. K. Dash Center of Excellence of Biosciences and Engineering & Technology Bhubaneswar India

5. UGC‐DAE‐CSR Kolkata Center Kolkata India

6. Department of Biotechnology Maharaja Sriram Chandra BhanjaDeo University Baripada India

Abstract

AbstractTwo highly Cr (VI) resistant fungal strains, CSF‐1 and CSF‐2, were isolated and identified as Cladosporium sp. and Penicillium sp., respectively, using 18S rRNA gene sequencing. At optimized growth conditions, the dead biomass of Cladosporium sp. and Penicillium sp. has removed more than 99% of the supplemented Cr(VI). The kinetic study outcomes evidenced that the present fungal Cr(VI) biosorption is best fitting with the pseudo‐first‐order model with higher R2 values (i.e., 0.70–0.95) than that of the pseudo‐second‐order kinetic model (R2 = 0.02–0.73). After analyzing the R2 values, it was observed that the Langmuir and Freundlich isotherm models best fit the Cr(VI) biosorption employing fungal biomass.

Publisher

Wiley

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Biochemistry

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