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An integrated decision support tool for more sustainable management of biomass resources in agricultural regions

机译:一种综合决策支持工具,可对农业地区的生物质资源进行更可持续的管理

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摘要

Agriculture currently faces a number of environmental sustainability issues. Three key issues that are the focus of this study are greenhouse gas emissions, depletion of mineral phosphorus resources and cadmium contamination in agricultural soil. Biomass can potentially be used as a renewable energy source and can also be returned to improve the nutrient and drainage structure of agricultural soils. Sustainable management of biomass and agriculture can have significant impacts on reducing greenhouse gas emissions from a region. Moreover, it reduces the demand for external energy supply, phosphorous (P) based fertilizer, and its associated Cadmium (Cd) impurity which can contaminate the soil, plant and food chains. These three issues have typically been considered separately, and managed by different agencies or organisations. The aim of this thesis is to develop an integrated decision support tool that can be used for evaluating alternative options for management and resource recovery from biomass for enhancing recovery of energy, returning carbon (C) and phosphorus (P) from biomass back to soil, reducing greenhouse gas emissions and also cadmium (Cd) contamination in an agricultural region. This research employed a combination of the tools of Material Flow Analysis (MFA), Geographic Information System (GIS) and Cost-Benefit Analysis (CBA). MFA is used as the primary tool for this research. GIS and CBA are combined with MFA in later stages of the overall procedure to develop an integrated decision support tool.This integrated tool has been applied to the Murrumbidgee Irrigation Area (MIA) in Australia. Tracking the flow of essential substances using MFA has identified current resource management efficiency and substances accumulation across the region. Integrating a spatial analysis tool (GIS) with MFA has provided a feedback driven monitoring tool for evaluating trends of spatial accumulation of substances on agricultural land. This enables the time remaining before acceptable limits are exceeded to be estimated on a spatial basis. Integrated MFA and CBA has been applied to evaluate the tradeoffs and potential synergies of alternative biomass management options. Overall the tool can assist in evaluating the effectiveness of alternative scenarios and visualise the results to stakeholders in a systematic way.
机译:农业目前面临许多环境可持续性问题。本研究重点关注的三个关键问题是温室气体排放,矿物质磷资源的枯竭和农业土壤中的镉污染。生物质可以潜在地用作可再生能源,也可以返回以改善农业土壤的养分和排水结构。生物量和农业的可持续管理会对减少该地区的温室气体排放产生重大影响。此外,它减少了对外部能源供应,磷(P)基肥料及其相关的镉(Cd)杂质的需求,这些杂质会污染土壤,植物和食物链。通常将这三个问题分开考虑,并由不同的机构或组织进行管理。本文的目的是开发一种集成的决策支持工具,该工具可用于评估生物质的管理和资源回收的替代方案,以增强能量的回收,将生物质中的碳(C)和磷(P)返回土壤,减少农业地区的温室气体排放以及镉(Cd)污染。这项研究采用了物料流分析(MFA),地理信息系统(GIS)和成本效益分析(CBA)工具的组合。 MFA被用作这项研究的主要工具。 GIS和CBA在整个程序的后期阶段与MFA结合使用,以开发集成的决策支持工具。此集成工具已应用于澳大利亚的Murrumbidgee灌溉区(MIA)。使用MFA追踪基本物质的流动已确定了当前资源管理效率和整个地区的物质积累。将空间分析工具(GIS)与MFA集成在一起,提供了一种反馈驱动的监视工具,用于评估农田上物质的空间累积趋势。这使得可以在空间上估计超出可接受的限制之前的剩余时间。集成的MFA和CBA已用于评估替代生物质管理方案的权衡和潜在协同作用。总体而言,该工具可以帮助评估替代方案的有效性,并以系统的方式向利益相关者可视化结果。

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