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Feeding and housing the urban population: Environmental impacts at the peri-urban interface under different land-use scenarios

机译:为城市人口提供食物和住房:在不同土地利用情景下,城郊交界处的环境影响

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The environmental consequences of the decision to urbanise and displace pen-urban (PU) food production are not typically evaluated within a comprehensive, cross-sectoral approach. Using a novel application of life cycle assessment (LCA) within exploratory scenarios, a method for integrating housing and food production land uses in PU regions is proposed, based on relative environmental impacts. Using two housing types (greenfield and infill) and two types of food production (field and high-technology greenhouse (HTG) lettuce production), environmental impacts for five exploratory land-use scenarios are compared for PU land in a developed and growing city. Each scenario is able to house an equivalent residential population whilst delivering equal quantities of fresh food to a city market. The results clearly indicate that infill housing and food production has less environmental impact than greenfield development. The environmental impact categories of climate change, freshwater eutrophication, photochemical oxidant formation, particulate matter formation and human toxicity are reduced by 25-43 percent under infill scenarios. Sparing PU land through infill housing development combined with sustainable food intensification using HTG production, enabled multifunctional PU land-use including food production, housing and afforestation while delivering lower relative environmental impacts. Urban afforestation on PU land made available by these measures reduces the effect of climate change by up to 5 percent per hectare per year. (C) 2015 Elsevier Ltd. All rights reserved.
机译:城市化和取代城市郊区食品生产的决策对环境的影响通常不会在综合的跨部门方法中进行评估。在探索性场景中使用生命周期评估(LCA)的新颖应用,基于相对环境影响,提出了一种在PU地区整合住房和粮食生产土地用途的方法。使用两种住房类型(未开发的土地和填充物)和两种类型的食品生产(田间和高技术温室(HTG)生菜生产),比较了发达和成长中城市的PU土地对五个探索性土地利用情景的环境影响。每种情况都能够容纳相等的居民,同时向城市市场提供等量的新鲜食物。结果清楚地表明,填充式房屋和食品生产对环境的影响要小于新建项目。在填充方案下,气候变化,淡水富营养化,光化学氧化剂形成,颗粒物形成和人类毒性的环境影响类别降低了25-43%。通过填充住房开发节省PU土地,并使用HTG生产实现可持续的食品集约化,从而实现了多功能PU土地使用,包括食品生产,住房和绿化,同时对环境的影响较小。通过这些措施在PU土地上进行城市绿化,每年每公顷可减少高达5%的气候变化影响。 (C)2015 Elsevier Ltd.保留所有权利。

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