Energy Costs andGreenhouse Gas Emissions of Giant Reed (Arundodonax L.) Production for Use as a Bioenergy Vector

Q2 Economics, Econometrics and Finance
E. Santalla, Juan Ressia, V. Córdoba, Laura Lázaro
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Abstract

This study estimates the energy costs and greenhouse gas emissions for the production and the processing for thermal use of Giant reed ( Arundo donax L.), a second-generation perennial energy crop. The agronomic study took place in Buenos Aires (Argentina) under humid to subhumid climatic conditions. Rhizomes and in vitro micropropagated plantlets were employed and cultivated under both fertilization and rainfed conditions during 2018–2022. The yield demonstrated a substantial increase from 3.8 t/ha to 23.1 t/ha from implantation to crop setting. Throughout this period, the energy input escalated from 23 to 70 GJ/ha, with the planting phase exhibiting the highest energy intensity. This surge can be attributed to the use of herbicides, accounting for 44.1%–61.3% of the energy consumed. Energy outputs were 17 (±0.19) MJ/kg as the low heating value obtained from the biomass elemental composition. The net energy yield for the 10-year lifecycle resulted in 2851.3 (±20.2) GJ/ha, and the output/input ratio varied from 41 (for pellets) to 126 (for chips). Carbon emissions ranged from 343.9 (for plantlets) to 371.9 (for rhizomes) kg CO2e/ha during the implantation stage, resulting in 208.3, 397.6, and 859.6 kg CO2e/ha for chips, bales, and pellets, respectively. This study reinforced the knowledge about the farming of this energy crop and displayed a promising scenario for the sustainable development of the Arundo donax L. based value chain. JEL Classification Q4, Q43, Q56
生产用作生物能源载体的大芦苇(Arundodonax L.)的能源成本和温室气体排放
本研究估算了第二代多年生能源作物大芦苇(Arundo donax L.)的生产和热能利用加工过程中的能源成本和温室气体排放量。农艺学研究在布宜诺斯艾利斯(阿根廷)进行,气候条件为湿润至亚湿润。2018-2022 年期间,在施肥和雨水灌溉条件下,采用根茎和体外微繁殖小苗进行栽培。从种植到结实,产量从 3.8 吨/公顷大幅增加到 23.1 吨/公顷。在此期间,能源投入从 23 千兆焦耳/公顷上升到 70 千兆焦耳/公顷,其中种植阶段的能源强度最高。这一激增可归因于除草剂的使用,占能源消耗的 44.1%-61.3%。由于从生物质元素组成中获得的热值较低,能量产出为 17 (±0.19) 兆焦耳/千克。10 年生命周期的净能源产量为 2851.3 (±20.2) GJ/公顷,产出/投入比从 41(颗粒)到 126(木片)不等。在种植阶段,碳排放量从 343.9 千克二氧化碳/公顷(小植株)到 371.9 千克二氧化碳/公顷(根茎)不等,因此木片、包和颗粒的碳排放量分别为 208.3 千克二氧化碳/公顷、397.6 千克二氧化碳/公顷和 859.6 千克二氧化碳/公顷。这项研究加强了人们对这种能源作物种植的认识,并为以 Arundo donax L. 为基础的价值链的可持续发展提供了一个前景广阔的方案。JEL 分类 Q4, Q43, Q56
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来源期刊
Global Journal of Emerging Market Economies
Global Journal of Emerging Market Economies Economics, Econometrics and Finance-Economics, Econometrics and Finance (miscellaneous)
CiteScore
2.70
自引率
0.00%
发文量
27
期刊介绍: Global Journal of Emerging Market Economies is a peer-reviewed journal. The aim of the journal is to provide an international platform for knowledge sharing, discussion and networking on the various aspects related to emerging market economies through publications of original research. It aims to make available basic reference material for policy-makers, business executives and researchers interested in issues of fundamental importance to the economic prospects and performance of emerging market economies. The topics for discussion are related to the following general categories: D. Microeconomics E. Macroeconomics and Monetary Economics F. International Economics G. Financial Economics H. Public Economics I. Health, Education, and Welfare J. Labor and Demographic Economics L. Industrial Organization O. Economic Development, Innovation, Technological Change, and Growth Q. Agricultural and Natural Resource Economics • Environmental and Ecological Economics R. Urban, Rural, Regional, Real Estate, and Transportation Economics Additionally, the journal would be most interested to publish topics related to Global Financial Crisis and the Impact on Emerging Market Economies Economic Development and Inclusive Growth Climate Change and Energy Infrastructure Development and Public Private Partnerships Capital Flows to and from Emerging Market Economies Regional Cooperation Trade and Investment and Development of National and Regional Financial Markets The Belt and Road Initiative.
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