Amit Masih | Environmental | Best Researcher Award

Prof. Dr Amit Masih |  Environmental |  Best Researcher Award

Professor at st. Andrew’s College,  India

Lt. Prof. Amit Masih (born November 10, 1978) is a Professor in the Department of Chemistry at St. Andrew’s College, Gorakhpur, Uttar Pradesh, India. With over 18 years of research and 15 years of teaching experience, his work focuses on environmental monitoring, remediation, and health risk assessment. He has collaborated with prestigious institutions, including the United States Environmental Protection Agency (USEPA), Indian Institute of Toxicological Research (IITR), Bhabha Atomic Research Centre (BARC), and National Environmental Engineering Research Institute (NEERI). Prof. Masih has authored international publications, including books on ambient BTEX exposure and PAH carcinogenic potencies. He has received multiple international travel awards and is a member of renowned scientific societies. His research contributions, particularly on pollutants like PAHs, BTEX, and mercury in air, water, and soil, have earned him a notable h-index of 12 and nearly 1,000 citations.

 

Publication Profile

🌍 Collaborations:

  • Worked on atmospheric PAHs, Mercury, and BTEX with the United States Environmental Protection Agency (USEPA), New Jersey, USA.
  • Collaborated with leading Indian institutes, including IITR Lucknow, BARC Mumbai, and NEERI Mumbai.

🔬 Research Projects:

  • UGC-funded study on PAH contamination in groundwater.
  • DST-funded investigation of BTEX exposure and health risks in Gorakhpur.
  • USEPA-supported mercury exposure profiling in northern India.

🏅 Honors and Memberships:

  • Recipient of multiple international travel awards, including visits to USA, Canada, Germany, and Australia.
  • Member of esteemed organizations such as the Indian Science Congress, Royal Society of Chemistry (RSC), and Indian Chemical Society.

📚 Research Focus:

Environmental Monitoring, Remediation, and Health Risk Assessment with expertise in Persistent Organic Pollutants (POPs), Mercury, Volatile Organic Compounds (VOCs), and health risk assessment from environmental matrices such as air, water, and soil.

📈 Academic Impact:

  • Citations: 987
  • H-Index: 12
  • Research Interest Score: 591

Publication Top Note:

  • Source Characterization and Health Risks of BTEX in Indoor/Outdoor Air During Winters at a Terai Precinct of North India
    Masih, A., Dviwedi, S., Lal, J.K.
    Environmental Geochemistry and Health, 2021, 43(8), pp. 2985–3003.
  • Exposure Levels and Health Risk Assessment of Ambient BTX at Urban and Rural Environments of a Terai Region of Northern India
    Masih, A., Lall, A.S., Taneja, A., Singhvi, R.
    Environmental Pollution, 2018, 242, pp. 1678–1683.
  • A Preliminary Effort to Reduce Carcinogenic Polycyclic Aromatic Hydrocarbons from Diesel Exhaust by Using Different Blends of Diesel and Synthesized Biodiesel
    Kumar, V., Vikas, P., Saruchi, Masih, A., Kothiyal, N.C.
    Global Nest Journal, 2018, 20(2), pp. 389–398.
  • Exposure Profiles, Seasonal Variation, and Health Risk Assessment of BTEX in Indoor Air of Homes at Different Microenvironments of a Terai Province of Northern India
    Masih, A., Lall, A.S., Taneja, A., Singhvi, R.
    Chemosphere, 2017, 176, pp. 8–17.
  • Inhalation Exposure and Related Health Risks of BTEX in Ambient Air at Different Microenvironments of a Terai Zone in North India
    Masih, A., Lall, A.S., Taneja, A., Singhvi, R.
    Atmospheric Environment, 2016, 147, pp. 55–66.
  • Exposure Profiles of Mercury in Human Hair at a Terai Belt of North India
    Masih, A., Taneja, A., Singhvi, R.
    Environmental Geochemistry and Health, 2016, 38(1), pp. 145–156.
  • Concentrations and Carcinogenic Profiles of Polycyclic Aromatic Hydrocarbons (PAHs) in Groundwater of an Urban Site at a Terai Belt of North India
    Masih, A., Lal, J.K.
    International Journal of Applied Engineering Research, 2014, 9(1 SPEC.ISS.), pp. 1–7.
  • Study of Noise and Atmospheric Pollution During the Festival of Lights (Deepawali) in the North Central Part of India—A Case Study
    Masih, A., Verma, P., Lal, J.K., Taneja, A.
    Advanced Science Letters, 2014, 20(7-9), pp. 1666–1672.
  • Study of Air-Soil Exchange of Polycyclic Aromatic Hydrocarbons (PAHs) in the North-Central Part of India – A Semi-Arid Region
    Masih, A., Masih, J., Taneja, A.
    Journal of Environmental Monitoring, 2012, 14(1), pp. 172–180.
  • Characteristics of Polycyclic Aromatic Hydrocarbons in Indoor and Outdoor Atmosphere in the North Central Part of India
    Masih, J., Masih, A., Kulshrestha, A., Singhvi, R., Taneja, A.
    Journal of Hazardous Materials, 2010, 177(1-3), pp. 190–198.

 

 

Surajbhan Sevda | Environmental Biotechnology | Best Researcher Award

Assist Prof Dr Surajbhan Sevda |  Environmental Biotechnology |  Best Researcher Award

Assistant Professor at  NIT Warangal , India

Dr. Surajbhan Sevda has demonstrated significant expertise in biotechnology through his extensive academic and research career, contributing to the fields of biochemical engineering and fermentation technology. His international collaborations and accolades highlight his commitment to advancing research in environmental science and biotechnology.

Publication Profile

Education:

  • Ph.D. in Biochemical Engineering and Biotechnology
    Indian Institute of Technology (IIT) Delhi, New Delhi (2009 – 2013)
  • M.Tech. in Fermentation Technology
    University Institute of Chemical Technology, Mumbai (2006 – 2008)
  • B.E. in Biotechnology
    University of Rajasthan, Jaipur (2002 – 2006)

Professional Experience:

  1. Assistant Professor
    National Institute of Technology Warangal
    Teaching and Research (Dec 2019 – Present)
  2. Scientist
    IIT Guwahati
    Research (Mar 2017 – Dec 2019)
  3. Assistant Professor
    NIT Jalandhar
    Teaching and Research (Jul 2016 – Mar 2017)
  4. Post Doctorate Fellow
    Qatar University and Virginia Tech, USA
    Research (Jan 2014 – May 2016)
  5. Visiting Doctorate Fellow
    VITO, Belgium
    Research (Oct 2011 – Jul 2012)
  6. Process Engineer
    NLPL India
    Industrial Research (Jul 2008 – Jul 2009)

Honors and Awards:

  • Recipient of the Shastri-Canadian Travel Support for travel to Canada (2017-2018).
  • Awarded a Belgium Government Scholarship by the Flemish Government for research at VITO, Belgium (2011-2012).
  • Received DST International Travel Grant from the Government of India for attending the 4th International Microbial Fuel Cell Conference in Cairns, Australia (2013).

Research Impact:

  • Total Citations: 2,662
  • Citations Since 2019: 2,003
  • h-index: 25 (22 since 2019)
  • i10-index: 35

Publication Top Notes

  1. The accurate use of impedance analysis for the study of microbial electrochemical systems
    X Dominguez-Benetton, S Sevda, K Vanbroekhoven, D Pant
    Chemical Society Reviews 41 (21), 7228-7246 (2012) – 300 citations
  2. High strength wastewater treatment accompanied by power generation using air cathode microbial fuel cell
    S Sevda, X Dominguez-Benetton, K Vanbroekhoven, H De Wever, …
    Applied Energy 105, 194-206 (2013) – 230 citations
  3. Sustainable utilization of crop residues for energy generation: A life cycle assessment (LCA) perspective
    S Prasad, A Singh, NE Korres, D Rathore, S Sevda, D Pant
    Bioresource Technology 303, 122964 (2020) – 212 citations
  4. Circular economy aspects of lignin: towards a lignocellulose biorefinery
    VK Garlapati, AK Chandel, SPJ Kumar, S Sharma, S Sevda, AP Ingle, …
    Renewable and Sustainable Energy Reviews 130, 109977 (2020) – 202 citations
  5. Microbial desalination cells as a versatile technology: functions, optimization and prospective
    S Sevda, H Yuan, Z He, IM Abu-Reesh
    Desalination 371, 9-17 (2015) – 169 citations
  6. Bioelectroremediation of perchlorate and nitrate contaminated water: a review
    S Sevda, TR Sreekishnan, N Pous, S Puig, D Pant
    Bioresource Technology 255, 331-339 (2018) – 166 citations
  7. Biohydrogen production from lignocellulosic biomass: technology and sustainability
    A Singh, S Sevda, IM Abu Reesh, K Vanbroekhoven, D Rathore, D Pant
    Energies 8 (11), 13062-13080 (2015) – 160 citations
  8. Characterization and comparison of the performance of two different separator types in air–cathode microbial fuel cell treating synthetic wastewater
    S Sevda, X Dominguez-Benetton, K Vanbroekhoven, TR Sreekrishnan, …
    Chemical Engineering Journal 228, 1-11 (2013) – 114 citations
  9. Effect of salt concentration and mediators in salt bridge microbial fuel cell for electricity generation from synthetic wastewater
    S Sevda, TR Sreekishnan
    Journal of Environmental Science and Health, Part A: Toxic/Hazardous Substances and Environmental Engineering (2012) – 101 citations
  10. Bioelectricity generation from treatment of petroleum refinery wastewater with simultaneous seawater desalination in microbial desalination cells
    S Sevda, IM Abu-Reesh, H Yuan, Z He
    Energy Conversion and Management 141, 101-107 (2017) – 75 citations
  11. Intervention of microfluidics in biofuel and bioenergy sectors: technological considerations and future prospects
    R Banerjee, SPJ Kumar, N Mehendale, S Sevda, VK Garlapati
    Renewable and Sustainable Energy Reviews 101, 548-558 (2019) – 68 citations
  12. Fermentative Behavior of Saccharomyces Strains During Guava (Psidium Guajava L) Must Fermentation and Optimization of Guava Wine Production
    S Sevda, L Rodrigues
    Journal of Food Processing & Technology (2011) – 62 citations
  13. Multigenic Effects
    V Singh
    Encyclopedia of Animal Cognition and Behavior, 4448-4453 (2022) – 54 citations
  14. The role of biofilm in the development and dissemination of ubiquitous pathogens in drinking water distribution systems: an overview of surveillance, outbreaks, and prevention
    BA Hemdan, GE El-Taweel, P Goswami, D Pant, S Sevda
    World Journal of Microbiology and Biotechnology 37, 1-18 (2021) – 52 citations
  15. Improved petroleum refinery wastewater treatment and seawater desalination performance by combining osmotic microbial fuel cell and up-flow microbial desalination cell
    S Sevda, IM Abu-Reesh
    Environmental Technology 40 (7), 888-895 (2019) – 48 citations
  16. Investigation of CNT/PPy-modified carbon paper electrodes under anaerobic and aerobic conditions for phenol bioremediation in microbial fuel cells
    N Khan, AH Anwer, A Ahmad, S Sabir, S Sevda, MZ Khan
    ACS Omega 5 (1), 471-480 (2019) – 46 citations
  17. Microalgae at niches of bioelectrochemical systems: A new platform for sustainable energy production coupled with industrial effluent treatment
    S Sevda, VK Garlapati, S Sharma, S Bhattacharya, S Mishra, …
    Bioresource Technology Reports 7, 100290 (2019) – 46 citations
  18. The making of pomegranate wine using yeast immobilized on sodium alginate
    SB Sevda, L Rodrigues
    African Journal of Food Science 5 (5), 299-304 (2011) – 43 citations
  19. Extraction and optimization of guava juice by using response surface methodology
    S Surajbhan, A Singh, C Joshi, L Rodrigues
    American Journal of Food Technology 7, 326-339 (2012) – 40 citations
  20. Biofilm formation and electron transfer in bioelectrochemical systems
    S Sevda, S Sharma, C Joshi, L Pandey, N Tyagi, I Abu-Reesh, …
    Environmental Technology Reviews 7 (1), 220-234 (2018) – 35 citations

 

Thongsouk Sompouviset | Climate Change | Young Scientist Award

Dr. Thongsouk Sompouviset | Climate Change | Young Scientist Award

Teacher, NWAFU, China

Dr. Thongsouk Sompouviset is a dedicated researcher and environmental scientist from Laos, specializing in plant nutrition and climate change. With a solid academic background and hands-on experience in greenhouse gas analysis, he has contributed significantly to understanding the impacts of agricultural practices on the environment. His work, spanning from field surveys to advanced research, reflects a commitment to sustainable agricultural practices and environmental management.

Profile

Orcid

Education 🎓 

Dr. Thongsouk Sompouviset earned his PhD in Plant Nutrition with a focus on Climate Change from Northwest A&F University, China, from 2019 to 2023, achieving a GPA of 3.80. His doctoral research examined the influence of combined organic and inorganic fertilizer applications on greenhouse gas emissions in apple orchards on Weibei dryland, earning him the Outstanding Activities Student Award in 2022. Prior to his PhD, Dr. Sompouviset completed a Master’s in Plant Nutrition (Climate Change) at the same institution from 2015 to 2019, graduating with a GPA of 3.55. His Master’s thesis explored the effects of cover crops combined with manure and chemical fertilizers on greenhouse gas emissions in apple orchards, and he received the Best Student Award in 2019. Dr. Sompouviset also holds a Bachelor of Arts in Environmental Science from the National University of Laos (2007-2012), where he achieved a GPA of 3.48. His undergraduate thesis focused on the study process and water management of the Kaolieo water supply company, and he was recognized with awards in debate competitions, essay contests, and as an outstanding student. Additionally, he completed a Vocational Diploma in General English from Sahakitsamphan College (2008-2011) and is currently pursuing ongoing English studies (IELTS) at Vientiane College from January to August 2024.

Experience 💼

Professionally, Dr. Sompouviset has been serving as a Coordinator and Translator at Sino-Agri Potash Co., Ltd in Vientiane Capital, Laos, since January 2024. Prior to this, he managed the Environment and Social Department at Sino-Agri Potash Co., Ltd in Khammuane, Laos, from September 2012 to July 2015

Research Interests 🔬

Impact of Organic and Inorganic Fertilizers on Greenhouse Gas Emissions: This research investigates how the use of both organic and inorganic fertilizers affects the emission of greenhouse gases in agricultural settings. The combination of these fertilizers can influence soil processes and plant growth, potentially altering the levels of methane (CH₄), nitrous oxide (N₂O), and carbon dioxide (CO₂) released into the atmosphere. Studies typically focus on optimizing fertilizer practices to reduce greenhouse gas emissions while maintaining crop yields.

Effects of Plastic Mulching and Cover Crops on Environmental Sustainability: Plastic mulching and the use of cover crops are techniques aimed at improving soil health and enhancing environmental sustainability. Plastic mulching helps in moisture retention, temperature regulation, and weed suppression, which can indirectly impact greenhouse gas emissions. Cover crops, on the other hand, contribute to soil organic matter, reduce erosion, and enhance nutrient cycling. Research in this area evaluates how these practices affect soil health, greenhouse gas emissions, and overall environmental sustainability.

Climate Change Adaptation and Greenhouse Gas Mitigation Strategies in Agriculture: This area of study focuses on developing strategies for agriculture to adapt to the impacts of climate change while simultaneously mitigating greenhouse gas emissions. Adaptation strategies may include altering crop varieties, adjusting planting dates, and improving irrigation practices. Mitigation strategies might involve adopting more sustainable farming practices, enhancing soil carbon sequestration, and optimizing fertilizer use. The goal is to create resilient agricultural systems that can cope with climate change and reduce their carbon footprint.

Awards 🏆

Outstanding Activities Student Award (2022)
Northwest A&F University, China

Best Student Award (2019)
Northwest A&F University, China

Publications 📝

Combined application of organic and inorganic fertilizers effects on the global warming potential and greenhouse gas emissions in apple orchard in the Loess Plateau Region of China. link

The effects of plastic mulching combined with different fertilizer applications on greenhouse gas emissions, intensity, and apple yield in Northwestern China. link

Evaluation of Soil and Leaf Potassium, Calcium, Magnesium, and Micronutrient Status and Their Relationship in the Main Apple Production Areas of the Loess Plateau, China. link

Distinguishing the contribution of nitrogen fertilizer and native soil nitrogen to young apple trees . link