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Complex Dynamics Induced by Nonlinear Pollution Absorption, Pollution Emission Rate and Effectiveness of Abatement Technology in an OLG Model

机译:OLG模型中非线性污染吸收,污染排放率和减排技术的有效性引起的复杂动力学

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In this work, nonlinear pollution absorption, emission rate, and effectiveness of abatement technology are incorporated into the classic overlapping generation model. Within this framework, we analyze the macroeconomic effects of pollution emission and abatement technology on the economy. Our findings reveal that different levels of pollution emission rates from per capita income and the effectiveness of abatement technology could induce complex dynamical behavior, including the occurrence of a stable equilibrium, cycles, and chaos. Our analysis shows that either the pollution emission rate per capita income should be controlled to be small enough or the effectiveness of abatement technology should be large enough to maintain a stable system yielding high level of per capita income. A high level of pollution emission rate per capita income and a low level of effectiveness of abatement technology can lead to a stable economy, but with a low level of per capita income. In the case that the pollution emission rate and the effectiveness of abatement technology vary in a certain range, the economy would become unstable, and cycles and chaos would emerge.
机译:在这项工作中,将非线性污染吸收,排放率和减排技术的有效性纳入了经典的重叠发电模型。在此框架内,我们分析了污染排放和减排技术对经济的宏观经济影响。我们的研究结果表明,人均收入和减排技术的有效性所产生的污染排放率水平不同,可能会诱发复杂的动力学行为,包括稳定平衡,周期和混乱的发生。我们的分析表明,要么应将人均收入的污染排放率控制在足够小的水平,要么应将减排技术的有效性控制在足够大的水平,以维持产生高水平人均收入的稳定系统。人均收入的高污染排放率水平和减排技术的低水平可导致经济稳定,但人均收入水平低。在污染排放率和减排技术的有效性在一定范围内变化的情况下,经济将变得不稳定,并会出现循环和混乱。

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