Krieger School of Arts and Sciences (Advanced Academic Programs), Johns Hopkins University, 1717 Massachusetts Ave., N.W., Washington, DC, 20036, USA.
Sci Rep. 2022 Feb 9;12(1):2177. doi: 10.1038/s41598-022-05750-6.
The present paper develops a matrix framework to determine the sustainability of multiple activities simultaneously. We define an activity as an action or process involving multiple resources; each activity depends upon other activities at a higher level. First, the problem of sustainability is framed in the context of an input-output model. Later, an infinite layer approach is adopted to represent different sectors of the economy and both renewable and non-renewable resources. Using the infinite layer approach, the concentration of renewable energy usage is calculated for each activity. The conversion to productive use varies from one resource to another. The current endeavor also focuses on enhancing energy efficiency to reduce non-renewable resource dependency.
本文提出了一个矩阵框架来同时确定多个活动的可持续性。我们将活动定义为涉及多种资源的行动或过程;每个活动都依赖于更高层次的其他活动。首先,将可持续性问题框定为投入产出模型的背景下。后来,采用无限层方法来表示经济的不同部门以及可再生和不可再生资源。使用无限层方法,计算了每个活动中可再生能源使用的浓度。从一种资源到另一种资源,转换为生产用途的方式各不相同。目前的努力还侧重于提高能源效率,以减少对不可再生资源的依赖。