Recent Progress in Heterogeneous Catalysis for Sustainable Chemical Processes

سال انتشار: 1405
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 52

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شناسه ملی سند علمی:

JR_JCHM-8-2_001

تاریخ نمایه سازی: 29 آذر 1404

چکیده مقاله:

Recent advances in heterogeneous catalysis have significantly propelled the development of sustainable chemical processes, addressing key challenges in green chemistry. Metal-based catalysts—including nanostructured and single-atom types—have demonstrated remarkable improvements in activity and selectivity, with turnover frequencies (TOFs) reaching up to ۲۵۰ h⁻¹ and product selectivities exceeding ۹۰% in biomass conversion and CO₂ utilization. These capabilities enable efficient transformation of renewable feedstocks into value-added chemicals and fuels. Zeolite and mesoporous catalysts maintain high thermal stability (up to ۶۰۰ °C) and tunable pore sizes (~۲-۵۰ nm), which are crucial for enhancing the catalytic performance in fine chemical synthesis and waste valorization. Emerging materials, such as metal–organic frameworks (MOFs) and carbon-based catalysts, provide high surface areas (often exceeding ۱۵۰۰ m²/g) and novel active sites, resulting in improved recyclability and catalytic lifetimes of over ۵۰ cycles. Advances in catalyst design, particularly bimetallic and multimetallic systems, have led to synergistic effects, increasing conversion rates by ۳۰–۵۰% compared to their monometallic counterparts. Surface modification techniques have further improved catalyst durability, reducing deactivation rates by up to ۴۰%. Photocatalysis and electrocatalysis are gaining momentum, achieving solar-to-hydrogen efficiencies of ۱۰-۱۵%, especially in water splitting and hydrogen production, thus facilitating the integration of renewable energy into chemical manufacturing. Despite the ongoing challenges in catalyst scale-up, deactivation, and economic feasibility, recent developments in reactor engineering and catalyst regeneration have reduced production costs by ۱۵–۲۰%. Additionally, the incorporation of AI and machine learning in catalyst discovery has accelerated the identification of novel candidates using optimized metrics, such as energy efficiency and reaction specificity. Overall, the integration of innovative catalytic systems with green feedstocks and renewable energy paves the way for sustainable, efficient, and economically viable chemical processes that support long-term global sustainability goals.

نویسندگان

Patibandla Jahnavi

Department of Pharmaceutics, KVSR Siddhartha College of Pharmaceutical Sciences, Vijayawada, Andhra Pradesh ۵۲۰۰۰۸, India

A. Kiran Kumar

Department of Pharmaceutical Analysis and Quality Assurance, Krishna Teja pharmacy college, chadalavada Nagar, Renigunta Road Tirupati. ۵۱۷۵۰۶. A.P, India

S. Prema

Crescent School of Pharmacy, B.S Abdur Rahman Crescent Institute of Science and Technology, Vandalur, Chennai ۶۰۰۰۴۸, India

Venkata Ramana Singamaneni

Senior Scientist II, Department of Analytical Research and development, Cambrex, Address: ۱۰۰۶ Ellis Dr # ۲, Charles City, Iowa- ۵۰۶۱۶, United States

Nithin Vidiyala

Principal Scientist, Cerevel therapeutics, ۲۲۲ Jacobs St. Suite ۲۰۰, Boston, Massachusetts ۰۲۱۴۱, United States

Pavani Sunkishala

Senior Validation Specialist, PCI Pharma Services ,۲۳ Commerce Drive, Bedford, NH, ۰۳۱۱۰, United States

Soniya Rani

Department of Pharmacology, GITAM School of Pharmacy, GITAM (Deemed to be University), campus Hyderabad, Telangana-۵۰۲۳۲۹, India

Prem Shankar Gupta

Department of Pharmaceutics, Teerthanker Mahaveer College of Pharmacy, Teerthanker Mahaveer University, Moradabad, Uttar Pradesh ۲۴۴۰۰۱, India

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