发展边缘土地生物经济系统——基于生物价值链和网络的设计与开发方法

IF 5.9 3区 工程技术 Q1 AGRONOMY
Valentin Schlecht, Ricardo Vargas-Carpintero, Moritz von Cossel, Iris Lewandowski
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引用次数: 0

摘要

在边际土地上种植的工业作物为生物基工业提供了低iluc原料的潜在来源,支持可持续的生物经济发展。然而,边缘土地生物经济系统在早期阶段面临着重大的不确定性,例如有限的数据、农民对采用新作物的犹豫、不发达的市场和不成熟的技术。本研究实施了一个集成的多标准框架,作为一个结构化的、多步骤的方法,在研究层面上连接边缘土地生物经济系统中基于生物的价值链组成部分和利益相关者。该框架在欧盟地平线项目MIDAS中得到应用,用于识别、评估和组合生物基价值链组件,并在斯瓦本Alb(德国南部)进行了案例研究,展示了其设计适合区域条件的可扩展生物基价值链的潜力。主要研究结果强调了利益相关者合作、迭代设计过程和解决技术、经济、社会和监管方面的具体环境标准的重要性。该方法基于定性数据和利益相关者的意见,提供了对生物质到产品途径可行性的关键见解,并为高级研究奠定了基础。未来的研究需要侧重于扩大数据的可用性,结合定量方法,并解决经济和市场因素,如利益相关者生产原料的意愿,以增强研究结果的可扩展性和稳健性,并促进在边缘土地上建立可持续的生物经济系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Developing Marginal-Land-Based Bioeconomy Systems—A Design and Development Approach for Bio-Based Value Chains and Webs

Developing Marginal-Land-Based Bioeconomy Systems—A Design and Development Approach for Bio-Based Value Chains and Webs

Industrial crops grown on marginal lands offer a potential source of low-iLUC feedstock for bio-based industries, supporting sustainable bioeconomic development. However, marginal-land-based bioeconomy systems face significant uncertainties at early stages, such as limited data, farmers' hesitancy to adopt novel crops, undeveloped markets and immature technologies. This study implements an integrated multi-criteria framework as a structured, multi-step approach to connect bio-based value chain components and stakeholders in marginal-land-based bioeconomy systems at the research level. The framework was applied within the EU Horizon project MIDAS to identify, evaluate and combine bio-based value chain components, with a case study in the Swabian Alb (southern Germany) demonstrating its potential for designing scalable bio-based value chains tailored to regional conditions. Key findings emphasise the importance of stakeholder collaboration, iterative design processes and context-specific criteria that address technical, economic, social and regulatory aspects. The approach, based on qualitative data and stakeholder input, offers critical insights into the feasibility of biomass-to-product pathways and serves as a foundation for advanced research. Future research needs to focus on expanding data availability, incorporating quantitative methods, and addressing economic and market factors, such as stakeholder willingness to produce feedstocks, to enhance the scalability and robustness of the findings and facilitate the establishment of sustainable bioeconomy systems on marginal lands.

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来源期刊
Global Change Biology Bioenergy
Global Change Biology Bioenergy AGRONOMY-ENERGY & FUELS
CiteScore
10.30
自引率
7.10%
发文量
96
审稿时长
1.5 months
期刊介绍: GCB Bioenergy is an international journal publishing original research papers, review articles and commentaries that promote understanding of the interface between biological and environmental sciences and the production of fuels directly from plants, algae and waste. The scope of the journal extends to areas outside of biology to policy forum, socioeconomic analyses, technoeconomic analyses and systems analysis. Papers do not need a global change component for consideration for publication, it is viewed as implicit that most bioenergy will be beneficial in avoiding at least a part of the fossil fuel energy that would otherwise be used. Key areas covered by the journal: Bioenergy feedstock and bio-oil production: energy crops and algae their management,, genomics, genetic improvements, planting, harvesting, storage, transportation, integrated logistics, production modeling, composition and its modification, pests, diseases and weeds of feedstocks. Manuscripts concerning alternative energy based on biological mimicry are also encouraged (e.g. artificial photosynthesis). Biological Residues/Co-products: from agricultural production, forestry and plantations (stover, sugar, bio-plastics, etc.), algae processing industries, and municipal sources (MSW). Bioenergy and the Environment: ecosystem services, carbon mitigation, land use change, life cycle assessment, energy and greenhouse gas balances, water use, water quality, assessment of sustainability, and biodiversity issues. Bioenergy Socioeconomics: examining the economic viability or social acceptability of crops, crops systems and their processing, including genetically modified organisms [GMOs], health impacts of bioenergy systems. Bioenergy Policy: legislative developments affecting biofuels and bioenergy. Bioenergy Systems Analysis: examining biological developments in a whole systems context.
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