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Contributions of Local Farming to Urban Sustainability in the Northeast United States

机译:美国东北部当地农业对城市可持续发展的贡献

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摘要

Food consumption is an important contributor to a city's environmental impacts (carbon emissions, land occupation, water use, etc.) Urban fanning (UF) has been advocated as a means to increase urban sustainability by reducing food-related transport and tapping into local resources. Taking Boston as an illustrative Northeast U.S. city, we developed a novel method to estimate sub-urban, food-borne carbon and land footprints using multiregion-input-output modeling and nutritional surveys. Computer simulations utilizing primary data explored UF's ability to reduce these footprints using select farming technologies, building on previous city-scale UF assessments which have hitherto been dependent on proxy data for UF. We found that UF generated meagre food-related carbon footprint reductions (1.1-2.9% of baseline 2211 kg CO_2 equivalents/capita/annum) and land occupation increases (<1% of baseline 9000 m~2 land occupation/capita/annum) under optimal production scenarios, informing future evidence-based urban design and policy crafting in the region. Notwithstanding UF's marginal environmental gains, UF could help Boston meet national nutritional guidelines for vegetable intake, generate an estimated $160 million U.S. in revenue to growers and act as a pedagogical and community building tool, though these benefits would hinge on large-scale UF proliferation, likely undergirded by environmental remediation of marginal lands in the city.
机译:食品消费是造成城市环境影响(碳排放,土地占用,用水等)的重要因素。人们一直倡导城市扇动(UF)是通过减少与食物相关的运输并利用当地资源来提高城市可持续性的一种手段。 。我们以波士顿作为美国东北部城市的例证,开发了一种新颖的方法,可以使用多区域投入产出模型和营养调查来估算郊区,食物传播的碳和土地足迹。利用原始数据进行计算机模拟,探索了用友利用选定的耕作技术来减少这些足迹的能力,它是建立在以前城市规模用友评估的基础上的,而迄今为止,这些评估都依赖于用友的代理数据。我们发现,在以下条件下,超滤产生了与食物相关的微弱碳足迹减少(占基线2211 kg CO_2当量/人均/年的1.1-2.9%)和土地占用增加(占基线9000 m〜2人均/年的基线的<1%)最佳生产方案,为该地区未来基于证据的城市设计和政策制定提供信息。尽管用友的环境收益微不足道,但用友可以帮助波士顿达到国家蔬菜摄入营养指导方针,为种植者带来约1.6亿美元的收入,并作为教学和社区建设工具,尽管这些好处将取决于大规模用友的扩散,可能是由于城市边缘土地的环境修复所引起的。

著录项

  • 来源
    《Environmental Science & Technology》 |2017年第13期|7340-7349|共10页
  • 作者单位

    Technical University of Denmark, Quantitative Sustainability Assessment Division, Produktionstorvet, Building 424, Kongens Lyngby, 2800, Denmark;

    Technical University of Denmark, Quantitative Sustainability Assessment Division, Produktionstorvet, Building 424, Kongens Lyngby, 2800, Denmark;

    Massachusetts Institute of Technology, Department of Architecture, 77 Massachusetts Avenue, 5-419, Cambridge, 02139, United States;

    Technical University of Denmark, Quantitative Sustainability Assessment Division, Produktionstorvet, Building 424, Kongens Lyngby, 2800, Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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