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Journal of Catalyst & Catalysis

jocc | E-ISSN: 2349-4344 | Peer-Reviewed | Hybrid Open Access

About the Journal

Journal of Catalyst & Catalysis Journal of Catalyst & Catalysis [2349-4344(e)] is a peer-reviewed open-access journal of engineering and scientific journals launched in 2014 which publishes original research articles and review articles related to all aspects of catalysts. This Journal provides an indispensable source of information for chemists in Industrial and academic fields.

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Journal of Catalyst & Catalysis (JOCC): 2349-4344(e) is a peer-reviewed open-access journal of engineering and scientific journals launched in 2014 which View Full Focus and Scope…

Journal Information

Title:
Journal of Catalyst & Catalysis
Abbreviation:
JOCC
Issues Per Year:
3 Issues (Jan-April,May-August,Sept-Dec)
P-ISSN:
2349-4344
Publisher:
116314
DOI:
10.37591/JOCC
Starting Year:
2014
Subject:
Language:
English
Publication Format:
Hybrid Open Access
Copyright Policy:
CC BY-NC-ND
Type:
Peer-reviewed Journal (Refereed Journal)
Address:

Editorial Board

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jocc maintains an Editorial Board of practicing researchers from around the world, to ensure manuscripts are handled by editors who are experts in the field of study.

Editor in Chief

Editor

Dr. Shailendra Tripathi, Principal Scientist

Catalytic Conversion Process Division (CCPD) CSIR-Indian Institute of Petroleum Dehradun, , ,

Email :

Institutional Profile Link:

Journal: Journal of Catalyst & Catalysis

Latest Articles

Production of Oil from Agro Seeds using Mechanothermal Extraction: A Review of Chemical, Pharmaceutical, and Food Applications

The increasing demand for sustainable raw materials and renewable industrial resources has intensified research into the extraction of oils from agro seeds for chemical, pharmaceutical, and food applications. Agro-seed oils are valuable due to their biodegradability, nutritional composition, eco-friendliness, and wide industrial applicability.

Mechanothermal extraction, agro-seed oils, enzyme-assisted aqueous extraction, sustainable processing, industrial applications

From Quantum Chemistry to Bioprocess Intensification: Advanced Computational Modeling and Enzyme-Based Catalytic Platforms for Green Chemical Transformations

Green chemistry requires the development of sustainable catalytic systems that minimize waste generation, reduce energy consumption, and improve process efficiency. Computational chemistry and biocatalysis have emerged as complementary approaches for environmentally responsible chemical manufacturing.

Green chemistry, computational chemistry, biocatalysis, DFT, methanation, MOFs, enzyme immobilization, bioprocess intensification, carbon dots, hybrid catalysis

Integrated Computational and Bio-catalytic Transformations: DFT-Guided Mechanistic Insights, Machine Learning, and Nano-biocatalyst Engineering for Sustainable Catalysis

Computational catalysis has emerged as a transformative scientific discipline that integrates quantum chemistry, molecular modeling, machine learning, and density functional theory (DFT) to understand catalytic mechanisms and design highly efficient catalytic systems for sustainable industrial applications.

Computational catalysis, Density functional theory, Machine learning, Nickel catalyst, Iron catalyst, Methanation, Nanobiocatalyst, Enzyme immobilization, Green chemistry, Transition states

Multiscale Catalytic Strategies for Sustainable Chemical Production: Integrating Computational Catalysis, Process Technology and Biocatalytic Transformations

The transition toward sustainable chemical manufacturing requires catalytic technologies capable of maximizing resource efficiency, minimizing greenhouse gas emissions, and enabling the utilization of renewable feedstocks.

Computational catalysis, DFT, Machine learning, Hydro processing, CO₂ utilization, Biomass conversion, Biocatalysis, Process intensification, Sustainable chemistry

Modern Catalytic Systems: Mechanisms, Materials Engineering, and Sustainable Applications

Catalysis is a fundamental pillar of modern chemical science and industrial manufacturing, enabling efficient production of fuels, chemicals, pharmaceuticals, polymers, and environmentally important products through the acceleration of chemical reactions and reduction of activation energy barriers.

Homogeneous catalysis, heterogeneous catalysis, nanocatalysts, sustainable catalysis, catalyst deactivation, catalyst engineering

Synthesis and Evaluation of MgO-Supported Activated Carbon for Carbon dioxide Capture

Carbon dioxide (CO₂) capture has emerged as a critical strategy for mitigating greenhouse gas emissions and addressing global climate change.

MgO, Activated carbon, CO2 capture, fixed bed adsorption, Recyclability

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