回收生物固体以改善乌克兰生物能源原料生产的边际土地

N. Didenko, Y. Mosiichuk, M. Zosymchuk, M. Kharytonov, M. Babenko, B. Mazurenko, S. Lavrenko, M. Rahman, K. R. Islam
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摘要

能源独立是乌克兰目前面临的国家优先事项之一。植物原料有可能通过减少对石油能源的依赖、减少温室气体排放、扩大可再生燃料产业和创造就业机会,使乌克兰的能源独立多样化。然而,生物原料需要在可用性、性能和价格上具有竞争力,才能生产、销售和生产燃料。我们假设,从甜高粱中生产国内原料,在大片退化和边缘土地上积极回收富含营养的生物固体,可能是乌克兰双赢的能源独立战略。我们的目标是创造一个稳定的生物原料来源,并向客户传播基于科学的知识和培训。具体目标是:(1)在乌克兰Rivne、Kherson、Dnipro和Kyiv地区退化和边缘土地上建立研究,以评估使用生物固体施肥的甜高粱的生长和原料生产率、养分去除和原料特性;(2)确定生物固体和甜高粱对土壤质量的影响。收集的有关甜高粱生长、原料生产、原料特性、燃料潜力、高价值副产品(生物炭)和土壤质量的数据将通过多元统计进行评估。将对投入、产出和外联数据进行技术经济分析,以评价项目的经济可行性、环境兼容性和社会可接受性。将利用传统和电子出口活动来传播成果和产出并评价项目影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RECYCLING BIOSOLIDS TO IMPROVE MARGINAL LANDS FOR BIOENERGY FEEDSTOCK PRODUCTION IN UKRAINE
Energy independence is one of the national priorities facing Ukraine today. Plant-based feedstocks have the potential to diversify Ukraine’s energy independence by decreasing dependence on petroleum-based energy, reducing greenhouse gas emissions, expanding renewable fuel industries and creating job opportunities. However, biofeedstock needs to be competitive on availability, performance, and price to produce, market, and produce fuels. We hypothesize that domestically produced feedstocks from sweet sorghum, using proactive recycling of nutrient-rich biosolids on vast areas of degraded and marginal lands, could be a win-win energy independence strategy in Ukraine. Our goal is to create for generating a steady-state source of biofeedstock and disseminate science-based knowledge and training to the clientele. Specific objectives are to: (1) establish research studies to evaluate growth and feedstock productivity, nutrient removal, and feedstock characteristics of sweet sorghum fertilized with biosolids on degraded and marginal lands in Rivne, Kherson, Dnipro, and Kyiv regions of Ukraine; and (2) determine the impact of biosolids and sweet sorghum on soil quality. Data collected on growth, feedstock production, feedstock characteristics, fuel potential, and high-value co-products (biochar) of sweet sorghum and soil quality will be evaluated by multivariate statistics. Input, output, and outreach data will be subject to techno-economic analyses to evaluate the economically viability, environmentally compatibility, and social acceptability of the project. Traditional and electronic outlet activities will be utilized to disseminate outcomes and outputs and to evaluate project impacts.
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