Simulation of the Impact of Waste Batteries on Ecosystem Reliability

A. Petrov, V. Pohrebennyk, A. Shybanova, M. Ruda
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Abstract

To assess the impact of not just the battery as such but its multi-element composition on the state of the environment, a new approach is proposed through the determination of the reliability of ecosystems, which makes it possible to obtain quantitative indexes of the stability and losses of natural ecosystems. These data can be used as indicators of the state of the environment, and hence as the assessment of an environmental component that is important for determining the actual impact of the multi-element composition of batteries. On the basis of such indicators, which can be obtained using the SimaPro software, it is possible to calculate thresholds beyond which negative phenomena occur, as well as to predict and simulate situations, to carry out the mapping of sources of risks, to monitor changes, and this will allow identifying the causes of these changes or determining the factors that slow down or retard the approach of ecosystems to a critical state, i.e. to develop preventive measures to avoid disasters. The eco-indicator 99 is one of the methods that allows us to accept one estimate for the whole product - the so-called ecological index. It is the sum of all individual eco-points or partial indexes for all life-cycle processes. The computational procedure is carried out by summing up the results of weighing the phases of the life cycle.
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废电池对生态系统可靠性影响的仿真研究
为了评估电池本身及其多元素组成对环境状态的影响,提出了一种通过确定生态系统可靠性的新方法,使获得自然生态系统稳定性和损失的定量指标成为可能。这些数据可以作为环境状况的指标,因此可以作为环境成分的评估,这对于确定电池的多元素组成的实际影响很重要。利用SimaPro软件可以获得这些指标,在这些指标的基础上,可以计算出发生负面现象的阈值,以及预测和模拟情况,绘制风险来源的地图,监测变化,这将有助于确定这些变化的原因或确定减缓或延缓生态系统接近临界状态的因素,即制定预防措施以避免灾害。生态指标99是一种方法,它使我们能够接受对整个产品的一个估计,即所谓的生态指数。它是所有生命周期过程的所有单个生态点或部分指标的总和。计算过程是通过对生命周期各阶段的加权结果进行求和来完成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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