Vishal Kumar Parida
Amity University, Indian Institute of Technology Kharagpur, National Institute of Foundry and Forge Technology, Biju Patnaik University of Technology
About
Vishal Kumar Parida is currently working as a Full Assistant Professor of Environmental Engineering at Amity University Jharkhand, Ranchi, India. He received his PhD from the Indian Institute of Technology Kharagpur, India, in 2024. He has over 5 years of experience in Environmental Engineering, and his research primarily focuses on visible-light-driven degradation of emerging contaminants using engineered photocatalytic nanomaterials. The work integrates advanced nanomaterial synthesis, hybrid reactor design, and sustainable treatment strategies to address real-world environmental challenges. Through interdisciplinary research, critical scientific inquiry, and strong mentoring, he is committed to developing innovative, scalable solutions for clean water and long-term environmental sustainability.
Employment
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Amity University Assistant Professor2024 - Present
Education
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Indian Institute of Technology Kharagpur Ph. D.2020 - 2024
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National Institute of Foundry and Forge Technology M.TECH2018 - 2020
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Biju Patnaik University of Technology B.TECH2012 - 2016
Projects & Funding
Projects & funding information is unavailable.
Publications (27)
- Sustainable wastewater management in the Middle East: Energy recovery and aquifer recharge solutions Save
- A review on strategies for the removal and degradation of microplastics from aquatic environments: Pros, cons, policies perspectives, and life cycle and economic assessment Save
- Green synthesis of a visible-light-active 0D/0D MnO2/CuO p-n heterojunction for continuous-flow iohexol degradation with machine-learning-assisted performance prediction Save
- Optimization of F¯ Removal From Wastewater Utilizing Alternating Current Electrocoagulation Coupled With Sonication Using a Statistical Design Approach Save
- Sustainable facile low-temperature synthesis of a visible light activated NiS-zeolite 13X supported composite for enhanced photocatalytic degradation of nitrobenzene and other nitro-aromatic compounds Save
- Sustainable green synthesis of sulfur-doped BiOCl/BiOBr type-II heterojunction via Azadirachta indica for visible-light-driven photocatalytic degradation of imidacloprid: Integration of machine learning for performance prediction Save
- Saudi Arabia as a case of water-smart critical minerals: integrating desalination brine recovery with electric vehicle policy Save
- Sustainable finance in emerging markets: Adaptive governance and environmental, social, and governance innovation for equitable climate resilience Save
- Unleashing the power of silk-based proteins as biomaterials for cutting-edge drug delivery: a comprehensive review Save
- Insights into the synthetic dye contamination in textile wastewater: Impacts on aquatic ecosystems and human health, and eco-friendly remediation strategies for environmental sustainability Save