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Sulphur dioxide has a serious impact on the environment, and international action has been taken to limit emissions. The number of countries imposing specific limits on emission from existing and new plant is growing. The European Commission has a Large Combustion Plants Directive, the United Nations has a sulphur protocol, the USA its Clean Air Act and the UK the Environmental Protection Act. This collection of papers reflects the interest in political, regulatory and economic aspects of desulphurization activities in Europe and USA, the impact of desulphurization on the oil industry and the challenges in the UK. There is a section on what has been happening in planning, design, construction, commissioning and operation at the large British power stations at Drax and Ratcliffe.
Intended primarily for undergraduate chemical-engineering students, this book also includes material which bridges the gap between undergraduate and graduate requirements. The introduction contains a listing of the principal types of reactors employed in the chemical industry, with diagrams and examples of their use. There is then a brief exploration of the concepts employed in later sections for modelling and sizing reactors, followed by basic information on stoichiometry and thermodynamics, and the kinetics of homogeneous and catalyzed reactions. Subsequent chapters are devoted to reactor sizing and modelling in some simple situations, and more detailed coverage of the design and operation of the principal reactor types.
As regulations push the fossil fuel industry toward increasing standards of eco-friendliness and environmental sustainability, desulfurization (the removal of SO2 from industrial waste byproducts) presents a new and unique challenge that current technology is not equipped to address. Advances in nanotechnology offer exciting new opportunities poised to revolutionize desulfurization processes. Applying Nanotechnology to the Desulfurization Process in Petroleum Engineering explores recent developments in the field, including the use of nanomaterials for biodesulfurization and hydrodesulfurization. The timely research presented in this volume targets an audience of engineers, researchers, educators as well as students at the undergraduate and post-graduate levels.
"Titles of chemical papers in British and foreign journals" included in Quarterly journal, v. 1-12.