Bikash Chandra Behera | Bioremediation | Best Researcher Award

Dr. Bikash Chandra Behera | Bioremediation | Best Researcher Award

Technical person at National Institute of Science Education and Research, Bhubaneswar, India

Dr. Bikash Chandra Behera is a scientific and technical staff member at the School of Biological Sciences, NISER, Bhubaneswar, India. With a Ph.D. in Life Sciences from North Orissa University, his expertise lies in microbial bioprospecting, bioremediation, and the exploration of extreme environments for novel bioactive molecules. His work integrates culture-dependent and metagenomic approaches to identify microbial diversity and develop applications for biotechnological advancements. Dr. Behera is dedicated to environmental sustainability, working on bioremediation and biofuel production from waste biomass.

Profile

Scopus

πŸŽ“ Education

Ph.D. in Life Sciences, North Orissa University, Thesis: Biotechnological potential of soil bacteria from mangroves (Guides: Prof. H.N. Thatoi, Prof. S.K. Dutta). M.Sc. in Microbiology, North Orissa University. B.Sc. in Botany, Fakir Mohan University. His academic journey emphasizes microbiology, environmental science, and biotechnology, laying the foundation for his current research endeavors.

πŸ’Ό Experience

Scientific & Technical Staff at School of Biological Sciences, NISER, Bhubaneswar (Present). Researcher: Conducted in-depth research on microbial diversity from mangrove ecosystems and hazardous metal bioremediation. Teaching & Mentoring: Involved in guiding research students and contributing to academic growth in microbiology and biotechnology. He has utilized cutting-edge techniques in genomics, biochemistry, and microscopy for microbial functional analysis.

πŸ† Awards and Honors

Recognition for research excellence in microbial diversity and bioremediation. Contributions to biotechnological innovations in microbial bioactive molecule discovery. Numerous research presentations at national and international conferences. Dr. Behera’s accolades reflect his dedication to advancing scientific understanding in the fields of microbiology and environmental biotechnology.

πŸ”¬ Research Focus

Dr. Behera’s research focuses on microbial bioprospecting from extreme habitats to uncover novel enzymes, antimicrobials, and organic acids. He explores bioremediation strategies for hazardous metal contamination and investigates microbial adaptation to extreme environments using omics-based approaches. His work also aims to utilize waste biomass for cost-effective biofuel production. By combining various physical, biochemical, and molecular techniques, he strives to bridge the gap between microbial diversity and practical biotechnological applications.

Conclusion

Dr. Bikash Chandra Behera is a promising candidate for the Best Researcher Award due to his significant contributions to the field of microbial diversity and biotechnological innovation. His research on exploring microbial potential from extreme habitats, coupled with his expertise in bioremediation and biofuel production, positions him as a leader in his field. With continued efforts to expand his international collaborations and practical applications, Dr. Behera is well on his way to making substantial advancements in biotechnology and environmental sustainability.

πŸ“šPublications 

  1. Green synthesis of lignin nanoparticle and its potential applications in modern biotechnology
    • Year: 2023
    • Authors: HT Sandesh Behera, Sonali Mohapatra, Bikash Chandra Behera
    • Citation: 18

 

  1. Process optimization for conversion of waste banana peels to biobutanol by a yeast co-culture fermentation system
    • Year: 2020
    • Authors: BRPSM Rashmi Ranjan Mishraa, Barsha Samantaraya, Bikash Chandra Behera
    • Citation: 18

 

  1. Biotechnological potentials of halotolerant and halophilic bacteria from mangrove ecosystems
    • Year: 2020
    • Authors: H Thatoi, RR Mishra, BC Behera
    • Citation: 16

 

  1. Production of ethanol and clarification of apple juice by pectinase enzyme produced from Aspergillus terreus NCFT 4269.10
    • Year: 2016
    • Authors: B Sethi, A Satpathy, S Tripathy, S Parida, SK Singdevsachan, B Behera
    • Citation: 16

 

  1. Extracellular production and characterization of red pigment from Penicillium purpurogenum BKS9
    • Year: 2016
    • Authors: BK Sethi, P Prabhatee, SL Sahoo, BC Behera, B Dikshit, S Sena
    • Citation: 13

 

  1. Partial purification and characterization of sulphur oxidase from Micrococcus sp. and Klebsiella sp. isolated from mangrove soils of Mahanadi river delta, Odisha, India
    • Year: 2016
    • Authors: BC Behera, SK Singh, M Patra, RR Mishra, BK Sethi, SK Dutta, HN Thatoi
    • Citation: 12

 

  1. Ethanol production by a cellulolytic fungus Aspergillus terreus NCFT 4269.10 using agro-waste as a substrate
    • Year: 2017
    • Authors: BK Sethi, AS Das, A Satpathy, BC Behera
    • Citation: 8

 

  1. Life cycle assessment of bioethanol production from Pennisetum sp. using fed-batch simultaneous saccharification and cofermentation at high solid loadings
    • Year: 2021
    • Authors: Sonali Mohapatra, Bikash Chandra Behera, Achyuta Nanda Acharya, Hrudayanath …
    • Citation: 6

 

  1. Bioethanol production from agro-wastes: a comprehensive review with a focus on pretreatment, enzymatic hydrolysis, and fermentation
    • Year: 2023
    • Authors: HT Barsha Samantaray, Sonali Mohapatra, Rashmi Ranjan Mishra, Bikash …
    • Citation: 5

 

  1. Bio-production of alkaline protease by Trichoderma longibrachiatum and Penicillium rubidurum using different agro-industrial products
    • Year: 2021
    • Authors: BC Behera, BK Sethi, S Mohapatra, H Thatoi, RR Mishra
    • Citation: 5

 

  1. Current status of COVID-19 vaccination and its safety and liability concern for children, pregnant and lactating women
    • Year: 2022
    • Authors: BCBHT Swagat Kumar Das, Manish Paul
    • Citation: 4

 

  1. Extracellular production of amylase and protease by Penicillium Purpurogenum BKS9
    • Year: 2017
    • Authors: BK Sethi, B Dikshit, SL Sahoo, C Pradhan, S Sena, BC Behera
    • Citation: 4

 

  1. Bioethanol production from Pennisetum sp. using fed-batch simultaneous saccharification and co-fermentation at high solid loadings and its life cycle analysis
    • Year: 2020
    • Authors: S Mohapatra, BC Behera, AN Acharya
    • Citation: 3

 

  1. Isolation and Identification of Thermotolerent Acetic Acid Bacteria from Waste Fruits
    • Year: 2020
    • Authors: BCB Bikash Kumar Sahoo, Rashmi Ranjan Mishra
    • Citation: 3

 

  1. Anti-candidal activity of Vitex negundo L.: An ethnomedicinal plant
    • Year: 2009
    • Authors: SK Panda, B Behera, SK Dutta
    • Citation: 3

 

  1. Friedelin: Structure, Biosynthesis, Extraction, and Its Potential Health Impact
    • Year: 2023
    • Authors: ABKHB Santosh Kumar Singh, Shweta Shrivastava, Awdhesh Kumar Mishra …
    • Citation: 2

 

  1. Kinetic modeling and isotherm approach for biosorptive removal of hexavalent chromium using heat inactivated fungal biomass
    • Year: 2023
    • Authors: SDBCBRKMBPMSACH Thatoi
    • Citation: 2

 

  1. Valorization of Lignin Based Nanoparticle from Grass Biomass: An Overview on Synthesis, Characterization and Application
    • Year: 2023
    • Authors: BCBHT Sandesh Behera
    • Citation: 2

 

Wenjie Ren | Soil Contamination and remediation | Best Researcher Award

Assoc Prof Dr. Wenjie Ren | Soil Contamination and remediation | Best Researcher Award

Assoc Prof Dr at Institute of Soil Science, Chinese Academy of Sciences,  China

Wenjie Ren is an accomplished Associate Professor at the Institute of Soil Science, Chinese Academy of Sciences, specializing in environmental science and soil remediation. He earned his Ph.D. in Environmental Science from the Institute of Applied Ecology, Chinese Academy of Sciences, focusing on the bioavailability of chlorimuron-ethyl in soil. Ren has led significant research projects funded by national and provincial grants, with a focus on nanomaterial applications in soil pollution remediation. His prolific publication record includes numerous refereed SCI papers, contributing to advancements in environmental microbiology and bioremediation technologies. Ren has received multiple academic honors throughout his career.

 

Publication profile

πŸŽ“ Education

  • Ph.D. in Environmental Science, Chinese Academy of Sciences (2013)
  • B.Sc. in Environmental Engineering, Northeastern University, China (2007)

🏒 Professional Experience

Associate Professor, Institute of Soil Science, Chinese Academy of Sciences (2019 – Present). Assistant Research Fellow, Key Laboratory of Soil Environment and Pollution Remediation (2013 – 2019). Visiting Scholar, Netherlands Institute of Ecology (2022 – 2023)

🌟 Research Focus

Wenjie specializes in soil ecology and environmental remediation, particularly the bioavailability of contaminants and the effects of nanomaterials on soil health. He has led multiple national research projects on carbon nanomaterials and rhizoremediation technologies.

πŸ“š Publications

Wenjie has authored numerous peer-reviewed articles in prominent journals, focusing on soil pollution, microbial ecology, and nanotechnology. His recent works include studies on the impact of nanoparticles on soil microbiomes and innovative remediation techniques.

πŸ† Awards and Honors

  • First Prize, Diao Scholarship, Chinese Academy of Sciences (2013)
  • Multiple merit awards from the Graduate School, Chinese Academy of Sciences

πŸ” Current Projects

He is currently involved in various projects, including the Major Project of National Natural Science Foundation focusing on soil pollution processes and bioremediation strategies.

Publication

  1. Mode of application of sulfonated graphene modulated bioavailable heavy metal contents and microbial community composition in long-term heavy metal contaminated soil
    Ren, W., Ren, G., Kuramae, E.E., Teng, Y., Luo, Y.
    Science of the Total Environment
    2024

 

  1. Legacy of herbicides in water from Hailun City, Northeast China: Occurrence, source, and ecological risk assessment
    Ma, J., Ren, W., Wang, H., Tan, C., Teng, Y.
    Journal of Environmental Sciences (China)
    2024

 

  1. Long-term herbicide residues affect soil multifunctionality and the soil microbial community
    Wang, H., Ren, W., Xu, Y., Jia, J., Teng, Y.
    Ecotoxicology and Environmental Safety
    2024

 

  1. Biohydrogen utilization in legume-rhizobium symbiosis reveals a novel mechanism of accelerated tetrachlorobiphenyl transformation
    Xu, Y., Teng, Y., Wang, X., Wei, M., Luo, Y.
    Bioresource Technology
    2024

 

  1. Exploring bacterial community assembly in vadose and saturated zone soil for tailored bioremediation of a long-term hydrocarbon-contaminated site
    Ni, S., Teng, Y., Zhang, G., Shu, Y., Ren, W.
    Journal of Environmental Management
    2024

 

  1. A Novel Method for the Highly Effective Removal of Binary Dyes from Colored Dyeing Wastewater by Periodic Reversal/Direct Current-Activated Persulfate
    Sun, Z., Ren, W., Shi, K., Kou, W., Feng, Y.
    Sustainability (Switzerland)
    2024

 

  1. Spatial distribution and ecological-health risks associated with herbicides in soils and crop kernels of the black soil region in China
    Ma, J., Ren, W., Dai, S., Teng, Y., Luo, Y.
    Science of the Total Environment
    2024

 

  1. Phytotoxicological effects of phytosynthesized nanoparticles: A systematic review and meta-analysis
    Liu, H., Ren, W., Ciric, L., Bhatti, M.
    Critical Reviews in Environmental Science and Technology
    2024

 

  1. Research Progress on Distribution, Transportation, and Control of Per- and Polyfluoroalkyl Substances in Chinese Soils
    Liu, H.-R., Xing, J.-Y., Ren, W.-J.
    Huanjing Kexue/Environmental Science
    2024

 

  1. Exposure Characteristics and Human Health Risk Assessment of Herbicides in Water in a Typical Region of Northeastern China
    Ma, J., Ren, W., Wang, H., Tan, C., Teng, Y.
    Exposure and Health
    2024

πŸ“ Conclusion

Wenjie Ren stands out as a deserving candidate for the Best Researcher Award due to his strong academic background, substantial contributions to environmental science, and a solid publication record. His leadership in significant research projects and receipt of numerous accolades highlight his dedication and impact in the field. By addressing areas for improvement, such as interdisciplinary collaboration and public engagement, Wenjie can enhance his influence and further contribute to innovative solutions for environmental challenges. His ongoing research initiatives position him well for continued success and recognition in the scientific community.