Advanced Oxidation Technologies (AOTs) represent a cutting-edge approach in water treatment, offering effective solutions for contaminant removal. By harnessing powerful oxidants such as hydroxyl radicals (•OH), AOTs efficiently degrade organic pollutants, including pharmaceuticals, pesticides, and industrial chemicals, into harmless by-products. These technologies, including methods like ozone-based processes, UV irradiation, and Fenton reactions, offer advantages over traditional treatment methods by providing higher removal efficiencies and broader contaminant coverage. AOTs are particularly valuable in addressing emerging contaminants and persistent organic pollutants, contributing to the enhancement of water quality and environmental sustainability. As we continue to confront challenges in water treatment, AOTs emerge as a promising frontier in the quest for cleaner and safer water resources for present and future generations.
Title : Eliminating implant failure in humans with nano chemistry: 30,000 cases and counting
Thomas J Webster, Brown University, United States
Title : Nutrient and heavy metal loads from the Ribeiras to Coastal zones: A land-ocean continuum perspective in Madeira Island
Aracelis Del Carmen Narayan Rajnauth, University of Porto, Portugal
Title : Prospective polyoxometalate-based covalent organic framework heterogeneous catalysts
Arash Ebrahimi, Comenius University Bratislava, Slovakia, Slovenia
Title : De novo molecular design and bioactivity prediction of novel hexahydroquinolines as transmission-blocking PfCDPK4 inhibitors
Gbolahan O Oduselu, University of Ghana, Ghana
Title : Expanding and improve the 2D periodic law of Менделееь elements, and construct the 3D periodic law of elements
Zhongsheng Lee, Zhengzhou Commercial Technician College, China
Title : Advances in plasma-based radioactive waste treatment
Hossam A Gabbar, Ontario Tech University, Canada