{"title":"长者生活计划中的数字健康和福祉服务对环境的影响","authors":"Raphael Ricardo Zepon Tarpani, Alejandro Gallego-Schmid","doi":"10.1016/j.cesys.2023.100161","DOIUrl":null,"url":null,"abstract":"<div><p>Over the past decade, digitalization and digital technologies (DTs) have undergone rapid evolution, transforming how goods and services are produced and consumed in modern societies. Health and well-being sectors have embraced this digital revolution. Besides the economic and social benefits, digitalization can significantly enhance patient diagnostics and prognostics while improving overall service efficiency. To ensure long-term sustainability, it is important to assess and reduce the environmental impacts of digital services. This article examines the life cycle impacts of a digital service implemented in three elderly living schemes (ELSs) located in the United Kingdom (UK). The digital service consists of six electronic devices (EDs) that enable communication between residents, visitors, staff, and offsite monitoring (OM). The equipment is connected using Power over Ethernet (PoE) technology, which includes smart network switch and uninterruptable power supply units. The digital service's global warming potential (GWP) was estimated at 718–741 kg CO<sub>2</sub> eq./resident for two of the ELSs and 1509 kg CO<sub>2</sub> eq./resident for a third ELS, considering a service period of 20 years. The reason for the significant difference is the greater use of air conditioner (A/C) units to cool down server rooms and fewer residents in the third scheme. The consumption of electricity was found to be the main contributor to most of the environmental impacts. However, in certain categories such as mineral resource scarcity, freshwater eutrophication, and freshwater and marine ecotoxicity potentials, printed circuit boards (PCBs) were the main contributors. A sensitivity analysis considering different national electricity mixes demonstrated that the French electricity grid promoted the reduction in 14 impact categories, whereas the German, Italian, Spanish and Japanese grids increased on average impacts on most categories. Another sensitivity analysis demonstrates that reducing A/C unit running time by 28% resulted in an average impact reduction of 5.5%, becoming equivalent to the results obtained for the French electricity grid. Finally, extending the expected lifespan of electronic equipment by 20% yielded the highest average decrease in environmental impacts (8.1%). While digitalization has the potential to enhance patient healthcare and reduce costs, it is crucial to carefully assess its environmental impacts and implement mitigation strategies to ensure sustainable development in the healthcare sector.</p></div>","PeriodicalId":34616,"journal":{"name":"Cleaner Environmental Systems","volume":null,"pages":null},"PeriodicalIF":6.1000,"publicationDate":"2023-12-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.sciencedirect.com/science/article/pii/S2666789423000557/pdfft?md5=6b95d7cf07efee9df5aa82733de2de80&pid=1-s2.0-S2666789423000557-main.pdf","citationCount":"0","resultStr":"{\"title\":\"Environmental impacts of a digital health and well-being service in elderly living schemes\",\"authors\":\"Raphael Ricardo Zepon Tarpani, Alejandro Gallego-Schmid\",\"doi\":\"10.1016/j.cesys.2023.100161\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p>Over the past decade, digitalization and digital technologies (DTs) have undergone rapid evolution, transforming how goods and services are produced and consumed in modern societies. Health and well-being sectors have embraced this digital revolution. Besides the economic and social benefits, digitalization can significantly enhance patient diagnostics and prognostics while improving overall service efficiency. To ensure long-term sustainability, it is important to assess and reduce the environmental impacts of digital services. This article examines the life cycle impacts of a digital service implemented in three elderly living schemes (ELSs) located in the United Kingdom (UK). The digital service consists of six electronic devices (EDs) that enable communication between residents, visitors, staff, and offsite monitoring (OM). The equipment is connected using Power over Ethernet (PoE) technology, which includes smart network switch and uninterruptable power supply units. The digital service's global warming potential (GWP) was estimated at 718–741 kg CO<sub>2</sub> eq./resident for two of the ELSs and 1509 kg CO<sub>2</sub> eq./resident for a third ELS, considering a service period of 20 years. The reason for the significant difference is the greater use of air conditioner (A/C) units to cool down server rooms and fewer residents in the third scheme. The consumption of electricity was found to be the main contributor to most of the environmental impacts. However, in certain categories such as mineral resource scarcity, freshwater eutrophication, and freshwater and marine ecotoxicity potentials, printed circuit boards (PCBs) were the main contributors. A sensitivity analysis considering different national electricity mixes demonstrated that the French electricity grid promoted the reduction in 14 impact categories, whereas the German, Italian, Spanish and Japanese grids increased on average impacts on most categories. Another sensitivity analysis demonstrates that reducing A/C unit running time by 28% resulted in an average impact reduction of 5.5%, becoming equivalent to the results obtained for the French electricity grid. Finally, extending the expected lifespan of electronic equipment by 20% yielded the highest average decrease in environmental impacts (8.1%). 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引用次数: 0
摘要
过去十年来,数字化和数字技术(DTs)经历了快速发展,改变了现代社会生产和消费商品与服务的方式。卫生和福利部门也开始了这场数字化革命。除了经济和社会效益之外,数字化还能显著提高病人诊断和预后能力,同时提高整体服务效率。为确保长期可持续性,必须评估和减少数字化服务对环境的影响。本文研究了在英国三个老年人生活计划(ELS)中实施的数字化服务对生命周期的影响。该数字服务由六个电子设备(ED)组成,可实现住户、访客、工作人员和异地监控(OM)之间的通信。设备采用以太网供电(PoE)技术连接,包括智能网络交换机和不间断电源装置。据估算,考虑到 20 年的服务期,两个 ELS 的数字服务全球变暖潜势(GWP)为 718-741 千克二氧化碳当量/住户,第三个 ELS 为 1509 千克二氧化碳当量/住户。造成这一显著差异的原因是,第三个方案中使用了更多的空调设备来冷却服务器机房,而且住户较少。电力消耗是造成大多数环境影响的主要因素。然而,在某些类别中,如矿产资源稀缺、淡水富营养化、淡水和海洋生态毒性潜力,印刷电路板 (PCB) 是主要影响因素。一项考虑到不同国家电力组合的敏感性分析表明,法国电网促进了 14 个影响类别的减少,而德国、意大利、西班牙和日本电网则平均增加了大多数类别的影响。另一项敏感性分析表明,将空调设备的运行时间减少 28% 可使平均影响降低 5.5%,与法国电网的结果相当。最后,将电子设备的预期寿命延长 20%,对环境影响的平均降幅最高(8.1%)。虽然数字化具有提高患者医疗保健水平和降低成本的潜力,但仔细评估其对环境的影响并实施减缓战略以确保医疗保健行业的可持续发展至关重要。
Environmental impacts of a digital health and well-being service in elderly living schemes
Over the past decade, digitalization and digital technologies (DTs) have undergone rapid evolution, transforming how goods and services are produced and consumed in modern societies. Health and well-being sectors have embraced this digital revolution. Besides the economic and social benefits, digitalization can significantly enhance patient diagnostics and prognostics while improving overall service efficiency. To ensure long-term sustainability, it is important to assess and reduce the environmental impacts of digital services. This article examines the life cycle impacts of a digital service implemented in three elderly living schemes (ELSs) located in the United Kingdom (UK). The digital service consists of six electronic devices (EDs) that enable communication between residents, visitors, staff, and offsite monitoring (OM). The equipment is connected using Power over Ethernet (PoE) technology, which includes smart network switch and uninterruptable power supply units. The digital service's global warming potential (GWP) was estimated at 718–741 kg CO2 eq./resident for two of the ELSs and 1509 kg CO2 eq./resident for a third ELS, considering a service period of 20 years. The reason for the significant difference is the greater use of air conditioner (A/C) units to cool down server rooms and fewer residents in the third scheme. The consumption of electricity was found to be the main contributor to most of the environmental impacts. However, in certain categories such as mineral resource scarcity, freshwater eutrophication, and freshwater and marine ecotoxicity potentials, printed circuit boards (PCBs) were the main contributors. A sensitivity analysis considering different national electricity mixes demonstrated that the French electricity grid promoted the reduction in 14 impact categories, whereas the German, Italian, Spanish and Japanese grids increased on average impacts on most categories. Another sensitivity analysis demonstrates that reducing A/C unit running time by 28% resulted in an average impact reduction of 5.5%, becoming equivalent to the results obtained for the French electricity grid. Finally, extending the expected lifespan of electronic equipment by 20% yielded the highest average decrease in environmental impacts (8.1%). While digitalization has the potential to enhance patient healthcare and reduce costs, it is crucial to carefully assess its environmental impacts and implement mitigation strategies to ensure sustainable development in the healthcare sector.