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Augmenting low-carbon sustainable cities using transit-linked mixed-use designs: A quasi-experimental regression of travel and emission outcomes

类型学 公交导向发展 运输工程 多元统计 一套 位于 建筑环境 回归分析 持续性 环境经济学 城市设计 土地利用 可持续运输 公共交通 过境(卫星) 可行走性 城市轨道交通 环境规划 业务 计算机科学 可持续设计 旅游行为 计量经济学 可持续发展 回归 空气污染 地理 工程类 区域科学 交通系统
作者
Justice P. Tuffour,Reid Ewing,Guang Tian
出处
期刊:Sustainable Cities and Society [Elsevier BV]
卷期号:135: 107024-107024 被引量:1
标识
DOI:10.1016/j.scs.2025.107024
摘要

• We introduce TOD-MXDs – a novel hybrid design typology leveraging the strengths of TODs and MXDs. • TOD-MXDs remain rare in the U.S., with only 10.7 % of the 710 sampled developments fitting the criteria. • TOD-MXDs achieve 20 % lower VMT than MXDs and even fewer than comparable conventional designs. • TOD-MXDs generate about 19.7 % less CO₂ emissions compared to typical mixed-use developments. • Transit proximity (within a half-mile radius) matters for low-impact sustainable design outcomes. Cities today continue to struggle with the converging twin crises of rising vehicular air pollution and emission-intensive land use, prompting a renewed urgency for climate-smart urban designs such as mixed-use (MXDs) and transit-oriented developments (TODs). Yet, not all developments are designed to have a transit-focused orientation, and even if they are, individual lifestyle choices confound their true effects. This study investigates whether those MXDs situated near high-frequency transit ( a design typology we call Transit-Oriented Mixed-Use Developments (TOD-MXDs)) represent a more sustainable antidote to the environmental and mobility crises afflicting cities. Leveraging the largest geo-spatially harmonized database of individual-level and built environment characteristics across 36 diverse U.S. regions, we employ a mix of quasi-experimental design and advanced multivariate regression modeling to estimate travel characteristics and emissions outcomes. Results showed that although TOD-MXDs remain relatively scarce, they consistently outperform their non-transit-oriented counterparts, generating about 20 % less VMT, higher walking (87.6 %) and biking (83 %) trip shares, and significantly lower CO 2 e emissions, even after accounting for residential self-selection and the full suite of 7-D built environment variables. Furthermore, a unit increase in the presence of transit around mixed-use designs was associated with a ∼13.8 % reduction in VMT, suggesting that coupling land-use diversity with transit integration produces a synergistic effect that advances low-carbon and sustainable city outcomes. As conventional planning and policymakers strive for climate-resilient and healthy communities, this study makes a bold case: TOD-MXDs are not just better, they may be essential to the future of climate adaptation in cities through built-environment design.
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