Green biocatalysis represents an environmentally friendly approach to chemical synthesis by utilizing biological catalysts, such as enzymes, for various chemical transformations. Unlike traditional methods, green biocatalysis operates under mild conditions, reducing energy consumption and minimizing the production of harmful byproducts. Enzymes are highly selective, enabling precise control over reactions and minimizing waste. This sustainable methodology aligns with the principles of green chemistry, emphasizing the use of renewable resources and biodegradable materials. Green biocatalysis is employed in diverse industries, including pharmaceuticals, biofuels, and food production, offering a viable alternative to conventional chemical processes. Enzymes used in green biocatalysis can often be produced through biotechnological methods, further reducing environmental impact. The versatility of biocatalysis allows for the synthesis of complex molecules with high efficiency, contributing to the development of greener and more sustainable manufacturing processes. The implementation of green biocatalysis not only enhances the overall environmental profile of chemical production but also holds the potential to revolutionize the way industries approach synthesis, fostering a more sustainable and eco-friendly future.
Title : Beyond business as usual: Advancing ethical sustainability education through indigenous knowledge, industry engagement, and real-world impact
Tomayess Issa, Curtin University, Australia
Title : Hydrocracking theory and technology
Orchidea Maria Lecian, Sapienza University of Rome, Italy
Title : Optical investigations of Zn-doped CuO nanostructure
Yarub Al Douri, European Academy of Sciences, Belgium
Title : Generalized green and red concepts: Environmental sustainability of AI, big data, ICT, and general green technologies
Jinsong Wu, University of Chile, Chile
Title : Crystallographic transformations and energy relations of thermomechanical processes in shape memory alloys
Osman Adiguzel, Firat University, Turkey
Title : AI-enabled circular economy and green chemistry: accelerating net-zero and sustainable industrial transformation
Anthony Halog, The University of Queensland, Australia
Title : Antibacterial activity of bioactive compounds extracted from the Egyptian untapped green algae Rhizoclonium hieroglyphicum
Ahmed Diab Mohamed Ahmed El Esawy, Drinking Water and Sanitation Company, Egypt
Title : Structural and gas-sensing properties of nano-structured mixed ferrites synthesized by citrate-gel auto-combustion technique
Laxmi J Hathiya, Saurashtra University, India
Title : Waste-derived eggshell-based catalysts for sustainable valorization of tamarind seed waste into value-added bio-oil
Rudra Sarkar, Indian Institute of Petroleum and Energy, India
Title : Reduction of lead and cadmium accumulation in coriander grown in contaminated soil using peanut shell waste
Fatemehsadat Mirmohammadmakki, Shaid Beheshti University of Medical Sciences, Iran (Islamic Republic of)