Department of Civil and Environmental Engineering, University of Illinois at Urbana-Champaign, Urbana, IL, USA.
Center for Climate Systems Research, Columbia University, New York, NY, USA.
Nat Food. 2023 Jul;4(7):607-615. doi: 10.1038/s43016-023-00793-y. Epub 2023 Jul 20.
The agricultural and food systems of the United States are critical for ensuring the stability of both domestic and global food systems. Thus, it is essential to understand the structural resilience of the country's agri-food supply chains to a suite of threats. Here we employ complex network statistics to identify the spatially resolved structural chokepoints in the agri-food supply chains of the United States. We identify seven chokepoints at county scale: Riverside CA, San Bernardino CA, Los Angeles CA, Shelby TN, Maricopa AZ, San Diego CA and Cook IL; as well as seven chokepoints at freight analysis framework scale: Los Angeles-Long Beach CA, Chicago-Naperville IL, New York-New Jersey NJ, New York-New Jersey NY, Remainder of Texas, Remainder of Pennsylvania, and San Jose-San Francisco-Oakland CA. These structural chokepoints are generally consistent through time (2007, 2012, 2017), particularly for processed food commodities. This study improves our understanding of agri-food supply-chain security and may aid policies aimed at enhancing its resilience.
美国的农业和食品系统对于确保国内和全球食品系统的稳定性至关重要。因此,了解该国农业食品供应链对一系列威胁的结构弹性是必要的。在这里,我们采用复杂网络统计来识别美国农业食品供应链中空间分辨的结构瓶颈。我们在县规模上确定了七个瓶颈:加利福尼亚州里弗赛德、加利福尼亚州圣贝纳迪诺、加利福尼亚州洛杉矶、田纳西州谢尔比、亚利桑那州马里科帕、加利福尼亚州圣地亚哥和伊利诺伊州库克;以及在货运分析框架规模上确定了七个瓶颈:加利福尼亚州洛杉矶-长滩、伊利诺伊州芝加哥-内珀维尔、新泽西州纽瓦克、纽约州纽约-纽瓦克、德克萨斯州其余地区、宾夕法尼亚州其余地区和加利福尼亚州圣何塞-旧金山-奥克兰。这些结构瓶颈在时间上(2007 年、2012 年、2017 年)通常是一致的,特别是对于加工食品商品。这项研究提高了我们对农业食品供应链安全的理解,并可能有助于制定旨在增强其弹性的政策。