scholarly journals Sustainability assessment of urban ecological-economic systems based on emergy analysis: A case study in Simao, China

2021 ◽  
Vol 121 ◽  
pp. 107157
Author(s):  
Yuxue Pan ◽  
Boya Zhang ◽  
Yang Wu ◽  
Yu Tian
2012 ◽  
Vol 32 (11) ◽  
pp. 3635-3644
Author(s):  
杨卓翔 YANG Zhuoxiang ◽  
高阳 GAO Yang ◽  
赵志强 ZHAO Zhiqiang ◽  
李双成 LI Shuangcheng

Author(s):  
Xiaorong Gu

This essay explores the theory of intersectionality in the study of youths’ lives and social inequality in the Global South. It begins with an overview of the concept of intersectionality and its wide applications in social sciences, followed by a proposal for regrounding the concept in the political economic systems in particular contexts (without assuming the universality of capitalist social relations in Northern societies), rather than positional identities. These systems lay material foundations, shaping the multiple forms of deprivation and precarity in which Southern youth are embedded. A case study of rural migrant youths’ ‘mobility trap’ in urban China is used to illustrate how layers of social institutions and structures in the country’s transition to a mixed economy intersect to influence migrant youths’ aspirations and life chances. The essay concludes with ruminations on the theoretical and social implications of the political-economy-grounded intersectionality approach for youth studies.


2020 ◽  
Vol 12 (6) ◽  
pp. 2208 ◽  
Author(s):  
Jamie E. Filer ◽  
Justin D. Delorit ◽  
Andrew J. Hoisington ◽  
Steven J. Schuldt

Remote communities such as rural villages, post-disaster housing camps, and military forward operating bases are often located in remote and hostile areas with limited or no access to established infrastructure grids. Operating these communities with conventional assets requires constant resupply, which yields a significant logistical burden, creates negative environmental impacts, and increases costs. For example, a 2000-member isolated village in northern Canada relying on diesel generators required 8.6 million USD of fuel per year and emitted 8500 tons of carbon dioxide. Remote community planners can mitigate these negative impacts by selecting sustainable technologies that minimize resource consumption and emissions. However, the alternatives often come at a higher procurement cost and mobilization requirement. To assist planners with this challenging task, this paper presents the development of a novel infrastructure sustainability assessment model capable of generating optimal tradeoffs between minimizing environmental impacts and minimizing life-cycle costs over the community’s anticipated lifespan. Model performance was evaluated using a case study of a hypothetical 500-person remote military base with 864 feasible infrastructure portfolios and 48 procedural portfolios. The case study results demonstrated the model’s novel capability to assist planners in identifying optimal combinations of infrastructure alternatives that minimize negative sustainability impacts, leading to remote communities that are more self-sufficient with reduced emissions and costs.


2021 ◽  
Vol 13 (14) ◽  
pp. 7990
Author(s):  
Suman Paneru ◽  
Forough Foroutan Jahromi ◽  
Mohsen Hatami ◽  
Wilfred Roudebush ◽  
Idris Jeelani

Traditional energy analysis in Building Information Modeling (BIM) only accounts for the energy requirements of building operations during a portion of the occupancy phase of the building’s life cycle and as such is unable to quantify the true impact of buildings on the environment. Specifically, the typical energy analysis in BIM does not account for the energy associated with resource formation, recycling, and demolition. Therefore, a comprehensive method is required to analyze the true environmental impact of buildings. Emergy analysis can offer a holistic approach to account for the environmental cost of activities involved in building construction and operation in all its life cycle phases from resource formation to demolition. As such, the integration of emergy analysis with BIM can result in the development of a holistic sustainability performance tool. Therefore, this study aimed at developing a comprehensive framework for the integration of emergy analysis with existing Building Information Modeling tools. The proposed framework was validated using a case study involving a test building element of 8’ × 8’ composite wall. The case study demonstrated the successful integration of emergy analysis with Revit®2021 using the inbuilt features of Revit and external tools such as MS Excel. The framework developed in this study will help in accurately determining the environmental cost of the buildings, which will help in selecting environment-friendly building materials and systems. In addition, the integration of emergy into BIM will allow a comparison of various built environment alternatives enabling designers to make sustainable decisions during the design phase.


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