Green Chemical Syntheses and Processes

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Date: June 11, From: Science Vol. Publisher: American Association for the Advancement of Science.

Ionic Liquids and Green Chemistry

Document Type: Book review. Length: 1, words.

  • 3. Less Hazardous Chemical Syntheses?
  • Main content.
  • Green chemistry.
  • Holdings information at British Library.

Oxford University Press, Oxford, Driving innovative performance and function through the transformational power of Green Chemistry. Call today!

Green Chemistry: Frontiers in Benign Chemical Syntheses and Processes

Green Chemistry. Prevention It is better to prevent waste than to treat or clean up waste after it has been created. Atom Economy Synthetic methods should be designed to maximize the incorporation of all materials used in the process into the final product.

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  4. Less Hazardous Chemical Syntheses Wherever practicable, synthetic methods should be designed to use and generate substances that possess little or no toxicity to human health and the environment. Designing Safer Chemicals Chemical products should be designed to effect their desired function while minimizing their toxicity. Safer Solvents and Auxiliaries The use of auxiliary substances e.

    Design for Energy Efficiency Energy requirements of chemical processes should be recognized for their environmental and economic impacts and should be minimized. If possible, synthetic methods should be conducted at ambient temperature and pressure. Use of Renewable Feedstocks A raw material or feedstock should be renewable rather than depleting whenever technically and economically practicable.

    This topical volume provides an in-depth profile of the science in this cutting edge area of investigation. Rather than focusing on current techniques, it emphasizes likely future developments in environmentally benign chemical synthesis. Topics include carbon dioxides as alternative solvents, biosynthesis for improved industrial processes and products, alkynes and atom economical reactions, supercritical CO[2 assisted aerosolization for thin film deposition, fine powder generation and drug delivery, the design of green oxidants, indium-promoted carbon-carbon bond-forming reactions in water, and synthesis of pharmaceutical building blocks.