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RESOURCE, OZONE, AND GLOBAL WARMING IMPLICATIONS OF REFRIGERANT SELECTION FOR LARGE CHILLERS

机译:大型制冷机的制冷剂选择的资源,臭氧和全球变暖影响

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This paper examines current refrigerant options for centrifugal chillers, the type most widely applied in capacities of 1-9 MW (300-2500 RT) though available in capacities as small as 300 kW and as large as 35 MW (90-10,000 RT). The examination addresses global environmental impacts and specifically those for stratospheric ozone depletion, climate change, and similar but still uncertain future issues. It also addresses efficiency and resulting implications for energy use, both at full (peak) load and on a seasonal basis, as well as other resources. The focus includes chlorofluorocarbon (CFC), hydrochlorofluorocarbon (HCFC), and hydrofluorocarbon (HFC) refrigerants as well as alternatives such as ammonia, hydrocarbons (HCs), carbon dioxide, and water, for which selection influences the environment directly and through the resulting efficiency indirectly. Analyses summarized in this paper indicate significant reductions in energy-related greenhouse gas emissions and atmospheric pollutants with upgrading efficiency levels to the best available. The analyses also indicate opportunity to reduce peak electricity demand, potentially avoiding the need for 13 additional gas, 2 coal, or 1 nuclear generating unit(s) per year on a worldwide basis. Additionally, the upgrades identified reduce water usage, chemical treatment for cooling towers, and required fuel imports.
机译:本文介绍了对离心式冷却器的现有制冷剂选择,最广泛应用于1-9 MW(300-2500 RT)的类型,虽然小于300千瓦,但大至35兆瓦(90-10,000型RT)。考试解决了全球环境影响,特别是平流层臭氧消耗,气候变化和类似但仍然不确定的未来问题。它还解决了效率并导致能源使用的影响,全面(高峰)负载和季节性基础以及其他资源。焦点包括氯氟烃(CFC),盐酸氟碳(HCFC)和氢氟烃(HFC)制冷剂以及诸如氨,烃(HCS),二氧化碳和水的替代品,其中选择直接影响环境和通过所产生的效率间接的。本文总结的分析表明,能源相关温室气体排放和大气污染物的升级效率水平升高至最佳可用。分析还表示减少峰值电力需求的机会,可能避免在全球范围内每年需要13个额外的气体,2个煤炭或1个核生成单位。此外,升级确定了降低水的使用,冷却塔的化学处理,以及所需的燃料进口。

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    《》|2007年||共9页
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    JAMES M.CALM;

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