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Multi-System Urban Waste-Energy Self-Circulation: Design of Urban Self-Circulation System Based on Emergy Analysis

机译:多系统城市废物 - 能源自循环:基于闻名分析的城市自循环系统设计

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摘要

The current worldwide state of energy scarcity and low waste utilization has led to a decrease in the supply of ecological services, something that seriously affects the development of cities. In this study, we propose an urban self-circulation design based on multiple systems within the traditional biogas, wetland, rainwater, solar power, and urban farm systems framework to achieve effective improvements in urban waste utilization and the optimization of the urban waste–energy flow cycle. Emergy conversion is used to evaluate system optimization, and the simulation results show that the novel proposed system can effectively improve urban waste utilization with an energy output rate of 3.18 × 10, an environmental load of 4.27 × 10−2, and a sustainability index of 7.45 × 102 in the core system; additionally, it can improve resource utilization of small-scale cities with an energy output rate of 1.85 × 100, an environmental load of 1.20 × 100, and a sustainability index of 1.54 × 100 in the total system. The inter-system energy flow model can significantly optimize urban energy systems based on ecological models with low-emergy resource input, including biogas systems and urban farm systems. This model can reduce the environmental load and effectively compensate for the reduced supply capacity of ecosystem services caused by urbanization, making it suitable for extension to other small-scale built environments that are relatively independent and rich in natural resources.
机译:目前的全球能源稀缺和低垃圾利用状态导致了生态服务供应的减少,这严重影响了城市的发展。在这项研究中,我们提出了一种基于传统沼气,湿地,雨水,太阳能和城市农场系统框架内的多种系统的城市自循环设计,以实现城市废物利用的有效改进和城市垃圾能量的优化流循环。智能转换用于评估系统优化,仿真结果表明,新颖的提出的系统可以通过3.18×10的能量输出率有效地提高城市废物利用,环境负荷为4.27×10-2,以及可持续性指数核心系统中7.45×102;此外,它可以提高能量输出率为1.85×100,环境载荷为1.20×100的小规模城市的资源利用率,总系统中的1.54×100的可持续性指数。系统间能量流模型可以基于具有低智能资源输入的生态模型来显着优化城市能源系统,包括沼气系统和城市农用系统。该模型可以减少环境负荷,有效地弥补了城市化引起的生态系统服务的供应能力,适用于扩展到其他小型建筑环境,相对独立和丰富的自然资源。

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