Recoverable and Recyclable Catalysts

Recoverable and Recyclable Catalysts
Author: Maurizio Benaglia
Publsiher: John Wiley & Sons
Total Pages: 500
Release: 2009-08-31
Genre: Science
ISBN: 0470682019

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Recoverable and Recyclable Catalysts There is continued pressure on chemical and pharmaceutical industries to reduce chemical waste and improve the selectivity and efficiency of synthetic processes. The need to implement green chemistry principles is a driving force towards the development of recoverable and recyclable catalysts. The design and synthesis of recoverable catalysts is a highly challenging interdisciplinary field combining chemistry, materials science engineering with economic and environmental objectives. Drawing on international research and highlighting recent developments, this book serves as a practical guide for both experts and newcomers to the field. Topics covered include: An introduction to the principles of catalyst recovery and recycling Catalysts on insoluble and soluble support materials Thermomorphic catalysts, self-supported catalysts and perfluorous catalytic systems The development of reusable organic catalysts Continuous flow and membrane reactors Each chapter combines principles with practical information on the synthesis of catalysts and strategies for catalyst recovery. The book concludes with a comparison of different catalytic systems, using case studies to illustrate the key features of each approach. Recoverable and Recyclable Catalysts is a valuable reference source for academic researchers and professionals from a range of pharmaceutical and chemical industries, particularly those working in catalysis, organic synthesis and sustainable chemistry.

Recoverable and Recyclable Catalysts

Recoverable and Recyclable Catalysts
Author: Maurizio Benaglia
Publsiher: John Wiley & Sons
Total Pages: 471
Release: 2009
Genre: Catalysis
ISBN: 1405184280

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Catalyst Separation Recovery and Recycling

Catalyst Separation  Recovery and Recycling
Author: David J. Cole-Hamilton,Robert P. Tooze
Publsiher: Springer Science & Business Media
Total Pages: 270
Release: 2006-01-13
Genre: Science
ISBN: 1402040865

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This book looks at new ways of tackling the problem of separating reaction products from homogeneous catalytic solutions. The new processes involve low leaching supported catalysts, soluble supports such as polymers and dendrimers and unusual solvents such as water, fluorinated organics, ionic liquids and supercritical fluids. The advantages of the different possibilities are discussed alongside suggestions for further research that will be required for commercialisation. Unlike other books, in addition to the chemistry involved, the book looks at the process design that would be required to bring the new approaches to fruition. Comparisons are given with existing processes that have already been successfully applied and examples are given where these approaches are not suitable. The book includes: - New processes for the separation of products from solutions containing homogeneous catalysts - Catalysts on insoluble or soluble supports – fixed bed catalysts - continuous flow or ultrafiltration - Biphasic systems: water - organic, fluorous - organic, ionic liquid – organic, supercritical fluids (monophasic or biphasic with water, organic or ionic liquid) - Comparisons with current processes involving atmospheric or low temperature distillation - Consideration of Chemistry and Process Design - Advantages and disadvantages of each process exposed - Consideration of what else is need for commercialisation

Author: David John Cole-Hamilton,Robert P. Tooze
Publsiher: Unknown
Total Pages: 248
Release: 2006
Genre: Chemical processes
ISBN: 7030211898

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本书内容包括:新工艺分离的产品解决方案,含有均相催化剂;催化剂对不溶性或可溶性支持—固定床催化剂连续流或超滤;双相系统:水—有机氟—有机液体,离子液体—有机液体等。

Recyclable Homogeneous Catalysis

Recyclable Homogeneous Catalysis
Author: Andrew K. King,Michael Findlater
Publsiher: American Chemical Society
Total Pages: 216
Release: 2023-06-20
Genre: Science
ISBN: 9780841299764

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The authors distill the most relevant applications of recyclable homogeneous catalysts rather than list every example found in the field. This provides a framework to the readers, allowing them to ask the most relevant questions about recyclable homogeneous catalysis applications in their area of interest. Recyclable Homogeneous Catalysis uses physical and chemical engineering methods specifically designed for high recoverability. Some of the recovery methods include the use of multi-phasic solvent systems, distillation, and extractions. In addition, by using careful catalyst design, the active metal center can be embedded onto a solid support or polymer to increase recoverability. The catalysts discussed in this primer are used in a range of reactions such as polymerization, CO2 capture, and amination. Graduate students and early career professionals who want to get into the field of recyclable catalysts will benefit from reading this work.

Catalytic Methods in Asymmetric Synthesis

Catalytic Methods in Asymmetric Synthesis
Author: Michelangelo Gruttadauria,Francesco Giacalone
Publsiher: John Wiley & Sons
Total Pages: 720
Release: 2011-09-27
Genre: Science
ISBN: 9780470641361

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This book covers advances in the methods of catalytic asymmetric synthesis and their applications. Coverage moves from new materials and technologies to homogeneous metal-free catalysts and homogeneous metal catalysts. The applications of several methodologies for the synthesis of biologically active molecules are discussed. Part I addresses recent advances in new materials and technologies such as supported catalysts, supports, self-supported catalysts, chiral ionic liquids, supercritical fluids, flow reactors and microwaves related to asymmetric catalysis. Part II covers advances and milestones in organocatalytic, enzymatic and metal-based mediated asymmetric synthesis, including applications for the synthesis of biologically active molecules. Written by leading international experts, this book consists of 16 chapters with 2000 References and illustrations of 560 schemes and figures.

Sustainable Catalysis in Ionic Liquids

Sustainable Catalysis in Ionic Liquids
Author: Pedro Lozano
Publsiher: CRC Press
Total Pages: 298
Release: 2018-09-03
Genre: Science
ISBN: 9781351372732

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Sustainable Catalysis in Ionic Liquids provides an up-to-date overview of the relatively underexplored area of the use of room temperature ionic liquids as organocatalysts for a range of organic reactions, including polymerizations. Using organic molecules to promote reactions is an attractive option as these organic molecules can be safer than metal-based options. However, it is still important to be able to recycle and reuse these organic promoters. Ionic liquids provide this opportunity.

Catalyst Separation Recovery and Recycling

Catalyst Separation  Recovery and Recycling
Author: David J. Cole-Hamilton,Robert P. Tooze
Publsiher: Springer Science & Business Media
Total Pages: 248
Release: 2006-10-12
Genre: Science
ISBN: 9781402040870

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This book looks at new ways of tackling the problem of separating reaction products from homogeneous catalytic solutions. The new processes involve low leaching supported catalysts, soluble supports such as polymers and dendrimers and unusual solvents such as water, fluorinated organics, ionic liquids and supercritical fluids. The advantages of the different possibilities are discussed alongside suggestions for further research that will be required for commercialisation. Unlike other books, in addition to the chemistry involved, the book looks at the process design that would be required to bring the new approaches to fruition. Comparisons are given with existing processes that have already been successfully applied and examples are given where these approaches are not suitable. The book includes: - New processes for the separation of products from solutions containing homogeneous catalysts - Catalysts on insoluble or soluble supports – fixed bed catalysts - continuous flow or ultrafiltration - Biphasic systems: water - organic, fluorous - organic, ionic liquid – organic, supercritical fluids (monophasic or biphasic with water, organic or ionic liquid) - Comparisons with current processes involving atmospheric or low temperature distillation - Consideration of Chemistry and Process Design - Advantages and disadvantages of each process exposed - Consideration of what else is need for commercialisation