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Development of a life cycle assessment tool for the assessment of food production systems within the energy, water and food nexus

机译:开发生命周期评估工具,用于评估能源,水和食物关系中的粮食生产系统

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摘要

© 2015 The Institution of Chemical Engineers.As the demand for services and products continues to increase in light of rapid population growth, the question of energy, water and food (EWF) security is of increasing importance. The systems representing the three resources are intrinsically connected and, as such, there is a need to develop assessment tools that consider their interdependences. Specifically when evaluating the environmental performance of a food production system, it is necessary to understand its life cycle. The objective of this paper is to introduce an integrated energy, water and food life cycle assessment tool that integrates EWF resources in one robust model and at an appropriate resolution. The nexus modelling tool developed is capable of providing an environmental assessment for food production systems utilising a holistic systems approach as described by a series of subsystems that constitute each of the EWF resources. A case study set in Qatar and characterised by an agriculture sub-system, which includes the production and application of fertilisers and the raising of livestock, a water sub-system represented by mechanical and thermal desalination processes and an energy sub-system, which includes fossil fuel in the form of combined cycle natural gas based energy production and solar renewable energy is used to illustrate the model function. For the nexus system analysed it is demonstrated that the food system is the largest contributor to global warming. The GWP can be reduced by up to 30% through the utilisation of solar energy to substitute fossil fuels, which, however, comes with a significant requirement for land investment.
机译:©2015化学工程师学会。随着人口的快速增长,对服务和产品的需求持续增长,能源,水和食品(EWF)安全问题变得越来越重要。代表这三种资源的系统是内在联系的,因此,有必要开发考虑其相互依赖性的评估工具。特别是在评估食品生产系统的环境绩效时,有必要了解其生命周期。本文的目的是介绍一种综合的能源,水和食物生命周期评估工具,该工具将EWF资源整合到一个可靠的模型中并以适当的分辨率进行整合。开发的联系建模工具能够利用整体系统方法为食品生产系统提供环境评估,如构成各个EWF资源的一系列子系统所描述的那样。以卡塔尔为例的案例研究,其特征在于农业子系统,其中包括化肥的生产和应用以及牲畜的饲养;以机械和热脱盐过程为代表的水子系统;以及包括以下内容的能源子系统:以天然气为基础的联合循环能源生产和太阳能可再生能源的形式的化石燃料用于说明模型功能。对于所分析的联系系统,表明食物系统是全球变暖的最大贡献者。通过利用太阳能替代化石燃料,可将全球升温潜能值降低多达30%,但这对土地投资提出了很高的要求。

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