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Life cycle cost and economic assessment of biochar-based bioenergy production and biochar land application in Northwestern Ontario, Canada

机译:加拿大安大略省西北部基于生物炭的生物能源生产和生物炭土地应用的生命周期成本和经济评估

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Background:Replacement of fossil fuel based energy with biochar-based bioenergy production can help reduce greenhouse gas emissions while mitigating the adverse impacts of climate change and global warming.However,the production of biochar-based bioenergy depends on a sustainable supply of biomass.Although,Northwestern Ontario has a rich and sustainable supply of woody biomass,a comprehensive life cycle cost and economic assessment of biochar-based bioenergy production technology has not been done so far in the region.Methods:In this paper,we conducted a thorough life cycle cost assessment (LCCA) of biochar-based bioenergy production and its land application under four different scenarios:1) biochar production with low feedstock availability;2) biochar production with high feedstock availability;3) biochar production with low feedstock availability and its land application;and 4) biochar production with high feedstock availability and its land application-using SimaPro(R),EIOLCA(R) software and spreadsheet modeling.Based on the LCCA results,we further conducted an economic assessment for the break-even and viability of this technology over the project period.Results:It was found that the economic viability of biochar-based bioenergy production system within the life cycle analysis system boundary based on study assumptions is directly dependent on costs of pyrolysis,feedstock processing (drying,grinding and pelletization) and collection on site and the value of total carbon offset provided by the system.Sensitivity analysis of transportation distance and different values of C offset showed that the system is profitable in case of high biomass availability within 200 km and when the cost of carbon sequestration exceeds CAD S60 per tonne of equivalent carbon (CO2e).Conclusions:Biochar-based bioenergy system is economically viable when life cycle costs and environmental assumptions are accounted for.This study provides a medium scale slow-pyrolysis plant scenario and we recommend similar experiments with large-scale plants in order to implement the technology at industrial scale.
机译:背景:以生物炭为基础的生物能源生产替代化石燃料为基础的能源可以帮助减少温室气体排放,同时减轻气候变化和全球变暖的不利影响。然而,生物炭为基础的生物能源的生产取决于生物质的可持续供应。 ,安大略省西北部拥有丰富且可持续的木质生物质供应,到目前为止,该地区尚未进行全面的生命周期成本和基于生物炭的生物能源生产技术的经济评估。方法:本文进行了详尽的生命周期在四种不同情况下基于生物炭的生物能源生产及其土地应用的成本评估(LCCA):1)具有低原料利用率的生物炭生产; 2)具有高原料利用率的生物炭生产; 3)具有低原料利用率的生物炭生产及其土地应用;以及4)使用SimaPro(R),EIOLCA(R)sof生产具有高原料利用率的生物炭及其土地应用软件和电子表格建模。基于LCCA的结果,我们进一步对该技术在项目期内的收支平衡和可行性进行了经济评估。结果:发现基于生物炭的生物能源生产系统在经济范围内具有经济可行性。基于研究假设的生命周期分析系统边界直接取决于热解,原料处理(干燥,研磨和制粒)和现场收集的成本以及系统提供的总碳补偿值。运输距离和不同值的敏感性分析C抵消的结果表明,在200公里以内的高生物量利用率以及每吨当量碳(CO2e)的固碳成本超过CAD S60的情况下,该系统是有利的。结论:基于生物炭的生物能源系统在生命周期内具有经济可行性考虑到成本和环境假设。本研究提供了中等规模的慢热解工厂方案和e建议对大型工厂进行类似的实验,以在工业规模上实施该技术。

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  • 来源
    《中国林学(英文版)》 |2017年第1期|12-21|共10页
  • 作者单位

    Faculty of Natural Resources Management,Lakehead University,955 Oliver Rd.,Thunder Bay,ON P7B 5E1,Canada;

    Faculty of Natural Resources Management,Lakehead University,955 Oliver Rd.,Thunder Bay,ON P7B 5E1,Canada;

    Faculty of Natural Resources Management,Lakehead University,955 Oliver Rd.,Thunder Bay,ON P7B 5E1,Canada;

    Ontario Forest Research Institute,1235 Queen Street E,Sault Ste.Marie,ON P6A 2E5,Canada;

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  • 正文语种 eng
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  • 入库时间 2022-08-19 04:07:07
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