
PDF Publication Title:
Text from PDF Page: 243
Mulroy, W., Kauffeld, M., McLinden, M., Didion, D. 1988. Experimental Evaluation of two Refrigerant Mixtures in A Breadboard Air Conditioner. Proceeding of the IIR Conference, Purdue University, West Lafayette, IN, 1988 NEA, 2017. Norwegian Environment Agency, Study on environmental and health effects of HFO refrigerants, December, 22, 2017, publication number M-917 NRW, 2018: https://wv-n.de/wasserguete/informationen-zu-tfa-spuren-im-trinkwasser/ Ozone, 2017. Ozone Action website http://web.unep.org/ozonaction/what-we-do/refrigerant- management Papasavva, S., Hill, W.R., Andersen, S.O. 2010. GREEN-MAC-LCCP: A Tool for Assessing the Life Cycle Climate Performance of MAC Systems. Environmental Science and Technology 44(19): 7666-7672. DOI: 10.1021/es100849g. Papasavva, S., Moomaw, W. 2014. Comparison between HFC-134a and Alternative Refrigerants in Mobile Air Conditioners using the GREEN-MAC-LCCP© Model, 15th International Refrigeration and Air Conditioning Conference at Purdue, July 14-17, 2014 Qiaoyun, W., et.al.: Rainwater trifluoroacetic acid (TFA) in Guangzhou, South China: Levels, wet deposition fluxes and source implication, Science of the Total Environment 468–469 (2014) 272–279 REN, 2018. RENEWABLES 2018 GLOBAL STATUS REPORT, www.ren21.net RRA, 2017. Refrigerant Reclaim Australia, Potential Recovery 2017. Retrieved from URL https://refrigerantreclaim.com.au/program-performance/potential-recovery/ RSES, 2011. Hydrocarbon Training Program, See http://www.rses.org/hydrocarbons.aspx Scheurer, M. et.al.: Small, mobile, persistent: Trifluoroacetate in the water cycle - Overlooked sources, pathways, and consequences for drinking water supply, Water Res., 2017. Dec 1;126:460-471 Soloman, K., Velders, G., et.al.: Sources, fates, toxicity, and risks of trifluoroacetic acid and its salts: Relevance to substances regulated under the Montreal and Kyoto Protocols, JOURNAL OF TOXICOLOGY AND ENVIRONMENTAL HEALTH, PART B, 2016, VOL. 19, NO. 7, 289– 304 TEAP, 2016. XXVII/4 TEAP Task Force Report, September 2016, Volume I, Further Information on Alternatives to Ozone-Depleting Substances, UNEP Nairobi (first version published March 2016, last/update version September 2016), ISBN 978-9960-076-17-5 TEAP, 2018. May 2018 Report, Volume 5, Decision XXIX/10 Task Force Report on issues related to energy efficiency while phasing down hydrofluorocarbons, UNEP, Nairobi, ISBN: 978- 9966-076-42-7 Troch, S. and Hwang, Y. 2015. IIR Working Group Life Cycle Climate Performance Guideline. Retrieved from URL http://www.iifiir.org/userfiles/file/about_iir/working_parties/WP_LCCP/07/LCCP- WP_YHwang_2015-08.pdf UN, 1987. Report of the World Commission on Environment and Development: Our Common Future, http://www.un-documents.net/our-common-future.pdf UNEP, 2015. 2014 Report of the Refrigeration, Air Conditioning and Heat Pumps Technical Options Committee, Nairobi, 2015. http://ozone.unep.org/sites/ozone/files/documents/RTOC- Assessment-Report-2014.pdf 230 2018 TOC Refrigeration, A/C and Heat Pumps Assessment ReportPDF Image | Heat Pumps Technical Options
PDF Search Title:
Heat Pumps Technical OptionsOriginal File Name Searched:
RTOC-assessment-report-2018_0.pdfDIY PDF Search: Google It | Yahoo | Bing
CO2 Organic Rankine Cycle Experimenter Platform The supercritical CO2 phase change system is both a heat pump and organic rankine cycle which can be used for those purposes and as a supercritical extractor for advanced subcritical and supercritical extraction technology. Uses include producing nanoparticles, precious metal CO2 extraction, lithium battery recycling, and other applications... More Info
Heat Pumps CO2 ORC Heat Pump System Platform More Info
| CONTACT TEL: 608-238-6001 Email: greg@infinityturbine.com | RSS | AMP |