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生态设计和运营策略以降低 MRI 的碳足迹以节省能源成本。

Ecodesign and Operational Strategies to Reduce the Carbon Footprint of MRI for Energy Cost Savings.

机构信息

From the Department of Radiology and Biomedical Imaging, University of California-San Francisco, 505 Parnassus Ave, San Francisco, CA 94143 (S.A.W., A.E.B., A.J.M., C.P.H.); Siemens Healthineers, Erlangen, Germany (R.K.); Siemens Smart Infrastructure, Fremont, Calif (V.L.); Siemens Smart Infrastructure, Austin, Tex (J.F.); and Siemens Healthineers, Malvern, Pa (C.E., V.D.).

出版信息

Radiology. 2023 May;307(4):e230441. doi: 10.1148/radiol.230441. Epub 2023 Apr 25.

Abstract

Background Radiology is a major contributor to health care's climate footprint due to energy-intensive devices, particularly MRI, which uses the most energy. Purpose To determine the energy, cost, and carbon savings that could be achieved through different scanner power management strategies. Materials and Methods In this retrospective evaluation, four outpatient MRI scanners from three vendors were individually equipped with power meters (1-Hz sampling rate). Power measurement logs were extracted for 39 days. Data were segmented into off, idle, prepared-to-scan, scan, or power-save modes for each scanner. Energy, cost (assuming a mean cost of $0.14 per kilowatt hour), and carbon savings were calculated for the lowest scanner activity modes. Data were summarized using descriptive statistics and 95% CIs. Results Projected annual energy consumption per scanner ranged from 82.7 to 171.1 MW-hours, with 72%-91% defined as nonproductive. Power draws for each mode were measured as 6.4 kW ± 0.1 (SD; power-save mode), 7.3 kW ± 0.6 to 9.7 kW ± 0.2 (off), 9.5 kW ± 0.9 to 14.5 kW ± 0.5 (idle), 17.3 kW ± 0.5 to 25.6 kW ± 0.6 (prepared-to-scan mode), and 28.6 kW ± 8.6 to 48.3 kW ± 11.8 (scan mode). Switching MRI units from idle to off mode for 12 hours overnight reduced power consumption by 25%-33%, translating to a potential annual savings of 12.3-21.0 MW-hours, $1717-$2943, and 8.7-14.9 metric tons of carbon dioxide (CO) equivalent (MTCOeq). The power-save mode further reduced consumption by 22%-28% compared with off mode, potentially saving an additional 8.8-11.4 MW-hours, $1226-$1594, and 6.2-8.1 MTCOeq per year for 12 hours overnight. Implementation of a power-save mode for 12 hours overnight in all outpatient MRI units in the United States could save U.S. health care 58 863.2-76 288.2 MW-hours, $8.2-$10.7 million, and 41 606.4-54 088.3 MTCOeq. Conclusion Powering down MRI units made radiology departments more energy efficient and showed substantial sustainability and cost benefits. © RSNA, 2023 See also the article by Vosshenrich and Heye in this issue.

摘要

背景 由于设备能源密集,尤其是 MRI 能耗最高,放射科在医疗保健的碳足迹中占很大比重。目的 确定不同的扫描仪功率管理策略可以实现的能源、成本和碳节约。材料和方法 在这项回顾性评估中,从三家供应商的四台门诊 MRI 扫描仪中分别配备了功率计(1Hz 采样率)。为每台扫描仪提取了 39 天的功率测量记录。将数据分为关闭、空闲、准备扫描、扫描或省电模式。为最低扫描仪活动模式计算了能源、成本(假设每千瓦时 0.14 美元的平均成本)和碳节约。使用描述性统计和 95%CI 汇总数据。结果 每台扫描仪的年预计能耗范围为 82.7 至 171.1 兆瓦时,其中 72%-91%被定义为非生产性的。每种模式的功耗分别测量为 6.4kW±0.1(标准差;省电模式)、7.3kW±0.6 至 9.7kW±0.2(关闭)、9.5kW±0.9 至 14.5kW±0.5(空闲)、17.3kW±0.5 至 25.6kW±0.6(准备扫描模式)和 28.6kW±8.6 至 48.3kW±11.8(扫描模式)。将 MRI 单元从空闲模式切换到关闭模式,夜间关闭 12 小时,可减少 25%-33%的功耗,这意味着潜在的年节约量为 12.3-21.0 兆瓦时,节约 1717-2943 美元,以及 8.7-14.9 公吨二氧化碳当量(MTCOeq)。与关闭模式相比,省电模式进一步降低了 22%-28%的能耗,潜在地每年可节省 8.8-11.4 兆瓦时,节约 1226-1594 美元,以及 6.2-8.1 公吨二氧化碳当量,夜间关闭 12 小时。如果美国所有门诊 MRI 机组都在夜间启用省电模式 12 小时,美国医疗保健系统可节约 58863.2-76288.2 兆瓦时,节约 8200-10700 万美元,以及 41606.4-54088.3 公吨二氧化碳当量。结论 关闭 MRI 机组使放射科部门更节能,并显示出显著的可持续性和成本效益。©RSNA,2023 请参阅本期 Vosshenrich 和 Heye 的文章。

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