Riding towards a sustainable future: an evaluation of bike sharing’s environmental benefits in Xiamen Island, China

IF 8 1区 环境科学与生态学 Q1 GEOGRAPHY, PHYSICAL
Jianxiao Liu , Meilian Wang , Pengfei Chen , Chaoxiang Wen , Yue Yu , KW Chau
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Abstract

In the pursuit of sustainable urbanization, Bike-Sharing Services (BSS) emerge as a pivotal instrument for promoting green, low-carbon transit. While BSS is often commended for its environmental benefits, we offer a more nuanced analysis that elucidates previously neglected aspects. Through the Dominant Travel Distance Model (DTDM), we evaluate the potential of BSS to replace other transportation modes for specific journey based on travel distance. Utilizing multiscale geographically weighted regression (MGWR), we illuminate the relationship between BSS’s environmental benefits and built-environment attributes. The life cycle analysis (LCA) quantifies greenhouse gas (GHG) emissions from production to operation, providing a deeper understanding of BSS’s environmental benefits. Notably, our study focuses on Xiamen Island, a Chinese “Type II large-sized city” (1–3 million population), contrasting with the predominantly studied “super large-sized cities” (over 10 million population). Our findings highlight: (1) A single BSS trip in Xiamen Island reduces GHG emissions by an average of 19.97 g CO2-eq, accumulating monthly savings of 144.477 t CO2-eq. (2) Areas in the southwest, northeast, and southeast of Xiamen Island, characterized by high population densities, register significant BSS environmental benefits. (3) At a global level, the stepwise regression model identifies five key built environment factors influencing BSS’s GHG mitigation. (4) Regionally, MGWR enhances model precision, indicating that these five factors function at diverse spatial scales, affecting BSS’s environmental benefits variably.

Abstract Image

骑向可持续的未来:中国厦门岛共享单车的环境效益评估
在追求可持续城市化的过程中,共享单车服务(BSS)成为促进绿色、低碳交通的重要工具。虽然共享单车服务因其环境效益而备受赞誉,但我们提供了更细致的分析,阐明了以前被忽视的方面。通过主导旅行距离模型(DTDM),我们根据旅行距离评估了 BSS 在特定旅程中替代其他交通方式的潜力。利用多尺度地理加权回归(MGWR),我们阐明了 BSS 的环境效益与建筑环境属性之间的关系。生命周期分析(LCA)量化了从生产到运营过程中的温室气体(GHG)排放,从而更深入地了解了 BSS 的环境效益。值得注意的是,我们的研究重点是厦门岛,一个中国的 "二类大型城市"(1-3 百万人口),与主要研究的 "超大型城市"(超过 1 千万人口)形成鲜明对比。我们的研究结果强调:(1)厦门岛内单次 BSS 行程平均减少 19.97 克 CO2-eq,每月累计节省 144.477 吨 CO2-eq。(3) 在全球层面,逐步回归模型确定了影响 BSS 温室气体减排的五个关键建筑环境因素。(4) 在区域层面上,MGWR 提高了模型的精度,表明这五个因素在不同的空间尺度上发挥作用,对 BSS 的环境效益产生不同的影响。
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来源期刊
Geography and Sustainability
Geography and Sustainability Social Sciences-Geography, Planning and Development
CiteScore
16.70
自引率
3.10%
发文量
32
审稿时长
41 days
期刊介绍: Geography and Sustainability serves as a central hub for interdisciplinary research and education aimed at promoting sustainable development from an integrated geography perspective. By bridging natural and human sciences, the journal fosters broader analysis and innovative thinking on global and regional sustainability issues. Geography and Sustainability welcomes original, high-quality research articles, review articles, short communications, technical comments, perspective articles and editorials on the following themes: Geographical Processes: Interactions with and between water, soil, atmosphere and the biosphere and their spatio-temporal variations; Human-Environmental Systems: Interactions between humans and the environment, resilience of socio-ecological systems and vulnerability; Ecosystem Services and Human Wellbeing: Ecosystem structure, processes, services and their linkages with human wellbeing; Sustainable Development: Theory, practice and critical challenges in sustainable development.
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