Martín-Cabezuelo Rubén, Vilariño-Feltrer Guillermo, Campillo-Fernández Alberto J, Lorenzo-Zúñiga Vicente, Pons Vicente, López-Muñoz Pedro, Tort-Ausina Isabel
Centre for Biomaterials and Tissue Engineering, CBIT, Universitat Politècnica de València, 46022 València, Spain.
Department of Gastroenterology, La Fe Health Research Institute-IIS La Fe, 46026 València, Spain.
ACS Environ Au. 2023 Dec 29;4(1):42-50. doi: 10.1021/acsenvironau.3c00044. eCollection 2024 Jan 17.
Ironically, healthcare systems are key agents in respiratory-related diseases and estimated deaths because of the high impact of their greenhouse gas emissions, along with industry, transportation, and housing. Based on safety requirements, hospitals and related services use an extensive number of consumables, most of which end up incinerated at the end of their life cycle. A thorough assessment of the carbon footprint of such devices typically requires knowing precise information about the manufacturing process, which is rarely available in detail because of the many materials, pieces, and steps involved during the fabrication. Yet, the tools most often used for determining the environmental impact of consumer goods require a bunch of parameters, mainly based on the material composition of the device. Here, we report a basic set of analytical methods that provide the information required by the software OpenLCA to calculate the main outcome related to environmental impact, greenhouse gas emissions. Through thermogravimetry, calorimetry, infrared spectroscopy, and elemental analysis, we proved that obtaining relevant data for the calculator in the exemplifying case of endoscopy tooling or accessories is possible. This routine procedure opens the door to a broader, more accurate analysis of the environmental impact of everyday work at hospital services, offering potential alternatives to minimize it.
具有讽刺意味的是,医疗保健系统是导致呼吸道相关疾病和预估死亡的关键因素,原因在于其温室气体排放与工业、交通和住房一样具有很高的影响。基于安全要求,医院及相关服务使用大量消耗品,其中大部分在生命周期结束时最终被焚烧。对此类设备的碳足迹进行全面评估通常需要了解制造过程的精确信息,由于制造过程涉及众多材料、部件和步骤,此类详细信息很少可得。然而,最常用于确定消费品环境影响的工具需要一系列参数,主要基于设备的材料成分。在此,我们报告了一套基本分析方法,这些方法可提供软件OpenLCA计算与环境影响相关的主要结果(温室气体排放)所需的信息。通过热重分析、量热法、红外光谱和元素分析,我们证明了在内窥镜工具或配件的示例情况下,为计算器获取相关数据是可行的。这一常规程序为更广泛、更准确地分析医院服务日常工作的环境影响打开了大门,并提供了将其降至最低的潜在替代方案。