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An article by Andrew Connor, Robert Lillywhite and Matthew Cooke (2010) using component analysisto analysethe carbon footprint of a renal service. Results suggested a number of carbon-reduction…
This article by Andrew Connor, Robert Lillywhite and Matthew Cooke (2011), discusses the differentcarbon footprints associated to differingtreatment modalities and regimes used to deliver maintenance…
ABSTRACT
High-technology medicine saves lives and produces waste; this is the case of dialysis. The increasing amounts of waste products can be biologically dangerous in different ways: some…
Key learning point
The case study and discussion outlined above includes most of the information required to develop a sound business case for a programme to retro-fit heat exchangers to existing…
Created on
17 May 2023 •
by
Steve Milne, East Kent Hospitals University NHS Foundation Trust
Key learning point
“Finding money for green initiatives is always difficult, It would be wonderful if the Unit would re-invest some of its cost savings into more carbon reductions, for example to…
Created on
15 May 2023 •
by
Simeon Edwards, Renal Unit Manager, Royal Cornwall Hospitals NHS Trust
Summary
Background and objectivesHemodialysis resource use—especially water and power, smarter processing and reuse of postdialysis waste, and improved ecosensitive building design, insulation, and…
Chen, M., Zhou, R., Du, C. et al. Int Urol Nephrol (2016). doi:10.1007/s11255-016-1418-5
This study aimed to determine the carbon footprints of peritoneal dialysis (PD) with the different…
Nephrol. Dial. Transplant. (2015) 30 (6): 1018-1027.
Approximately 2 million chronic haemodialysis patients produce over 2 000 000 tons of waste per year that includes about 600 000 tons of…
Dialysis units can make big carbon and £ savings by slimming down their use of dialysis consumables. This guide suggests how you can spot opportunities and measure savings. It's easy!
“But…