绿色交易阴影下的生物经济:系统动态方法

IF 1.4 Q4 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
K. Dolge, Ģirts Bohvalovs, V. Kirsanovs, A. Blumberga, D. Blumberga
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引用次数: 1

摘要

2019年底,欧盟委员会推出了一项名为“欧洲绿色协议”(GD)的新增长战略,旨在“将欧盟(EU)转变为一个公平繁荣的社会,拥有现代化、资源高效、有竞争力的经济,到2050年实现零温室气体净排放,经济增长与资源利用脱钩”。本研究开发了系统动态(SD)工具,用于确定到2030年的生物经济发展,以及不同的GD战略活动对取得进展的影响。创建并使用生物经济指数来衡量所有情景下的生物经济进展。在实现气候目标和增加农业、林业和渔业资源价值之间确定了最佳情景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioeconomy in the Shade of Green Deal: The System Dynamic Approach
Abstract At the end of 2019, the European Commission launched a new growth strategy called ‘The European Green Deal’ (GD), which aims to ‘transform the European Union (EU) into a fair and prosperous society with a modern, resource-efficient a competitive economy with no net greenhouse gas emissions in 2050 and where economic growth is decoupled from resource use’. This study present developed system dynamic (SD) tool for determining bioeconomy development until 2030 and impact of different GD strategy activities on achieved progress. The bioeconomy index the created and used to measure bioeconomy progress for all scenarios. The optimal scenario was identified between reaching climate goals and adding value to the agricultural, forestry and fisheries resources.
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来源期刊
Environmental and Climate Technologies
Environmental and Climate Technologies GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY-
CiteScore
3.10
自引率
28.60%
发文量
0
审稿时长
16 weeks
期刊介绍: Environmental and Climate Technologies provides a forum for information on innovation, research and development in the areas of environmental science, energy resources and processes, innovative technologies and energy efficiency. Authors are encouraged to submit manuscripts which cover the range from bioeconomy, sustainable technology development, life cycle analysis, eco-design, climate change mitigation, innovative solutions for pollution reduction to resilience, the energy efficiency of buildings, secure and sustainable energy supplies. The Journal ensures international publicity for original research and innovative work. A variety of themes are covered through a multi-disciplinary approach, one which integrates all aspects of environmental science: -Sustainability of technology development- Bioeconomy- Cleaner production, end of pipe production- Zero emission technologies- Eco-design- Life cycle analysis- Eco-efficiency- Environmental impact assessment- Environmental management systems- Resilience- Energy and carbon markets- Greenhouse gas emission reduction and climate technologies- Methodologies for the evaluation of sustainability- Renewable energy resources- Solar, wind, geothermal, hydro energy, biomass sources: algae, wood, straw, biogas, energetic plants and organic waste- Waste management- Quality of outdoor and indoor environment- Environmental monitoring and evaluation- Heat and power generation, including district heating and/or cooling- Energy efficiency.
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