Membrane separations: from purifications, minimisation, reuse and recycling to process intensification

Darrell Patterson, Chris Davey, Rosiah Rohani

Research output: Chapter in Book/Report/Conference proceedingChapter

LanguageEnglish
Title of host publicationChemical Processes for a Sustainable Future
EditorsT. Letcher, J. Scott, D. A. Patterson
Place of PublicationCambridge, U. K.
PublisherRoyal Society of Chemistry
Pages467-497
Number of pages504
ISBN (Print)9781849739757
StatusPublished - 16 Dec 2014

Cite this

Patterson, D., Davey, C., & Rohani, R. (2014). Membrane separations: from purifications, minimisation, reuse and recycling to process intensification. In T. Letcher, J. Scott, & D. A. Patterson (Eds.), Chemical Processes for a Sustainable Future (pp. 467-497). Cambridge, U. K.: Royal Society of Chemistry.

Membrane separations : from purifications, minimisation, reuse and recycling to process intensification. / Patterson, Darrell; Davey, Chris; Rohani, Rosiah.

Chemical Processes for a Sustainable Future. ed. / T. Letcher; J. Scott; D. A. Patterson. Cambridge, U. K. : Royal Society of Chemistry, 2014. p. 467-497.

Research output: Chapter in Book/Report/Conference proceedingChapter

Patterson, D, Davey, C & Rohani, R 2014, Membrane separations: from purifications, minimisation, reuse and recycling to process intensification. in T Letcher, J Scott & DA Patterson (eds), Chemical Processes for a Sustainable Future. Royal Society of Chemistry, Cambridge, U. K., pp. 467-497.
Patterson D, Davey C, Rohani R. Membrane separations: from purifications, minimisation, reuse and recycling to process intensification. In Letcher T, Scott J, Patterson DA, editors, Chemical Processes for a Sustainable Future. Cambridge, U. K.: Royal Society of Chemistry. 2014. p. 467-497
Patterson, Darrell ; Davey, Chris ; Rohani, Rosiah. / Membrane separations : from purifications, minimisation, reuse and recycling to process intensification. Chemical Processes for a Sustainable Future. editor / T. Letcher ; J. Scott ; D. A. Patterson. Cambridge, U. K. : Royal Society of Chemistry, 2014. pp. 467-497
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