Arvind Kumar
18 Papers
Arvind Kumar is an academic researcher. The author has contributed to research in topics: Chemistry & Catalysis. The author has an hindex of 2, co-authored 15 publications.
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Papers
Metal-based ionic liquids: effective catalysts in aqueous media for the selective production of vanillin from alkali lignin at room temperature
Sanjay Mehra,Arvind Kumar +1 more
TL;DR: In this article , a catalytic depolymerization of lignin to value-added compounds is described as part of the circular bioeconomy, and the authors propose a method to solve this problem.
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Metal–Organic Framework-Based Aerogel: A Novel Adsorbent for the Efficient Removal of Heavy Metal Ions and Selective Removal of a Cationic Dye from Aqueous Solution
Hiral Ukani,Sanjay Mehra,Bhagyesh Parmar,Arvind Kumar,Imran Ahmed Khan,Omar A. El Seoud,Naved I. Malek +6 more
TL;DR: In this paper , a MOF/biopolymer composite-based aerogel was used for the removal of heavy metal ions from contaminated drinking water and the selective removal of the cationic dye crystal violet from its mixture with (anionic) methyl orange from contaminated water samples.
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Investigations on the effect of spacer in direct contact and air gap membrane distillation using computational fluid dynamics
TL;DR: In this article , the authors developed a comprehensive two-dimensional computational fluid dynamics model to describe and simulate heat transfer, mass transfer, and fluid flow in DCMD and AGMD processes, and investigated the effect of Reynolds number, inlet feed temperature, and distance between two successive spacer filaments on the performance parameters such as mass flux, temperature polarisation, concentration polarisation and thermal efficiency.
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Dual Responsive Ionic Liquid-Based Polymeric Hydrogel: A Promising Drug Delivery Vehicle for the Treatment of Breast Cancer
Tapasya J. Patel,Sanjay Mehra,Arvind Kumar,Omar A. El Seoud,Sugam Kumar,Vinod K. Aswal,Suresh Kumar Kailasa,Naved I. Malek +7 more
TL;DR: In this article , the authors proposed a cancer therapeutics that can ameliorate the high dose related side effects of chemotherapy and is safer, more effective, and site specific with stimuli response.
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