评估用于能源转换的蒿属植物生物质的生产力和利用潜力

Plants Pub Date : 2024-04-22 DOI:10.3390/plants13081158
A. Jasinskas, G. Šiaudinis, D. Karčauskienė, R. Bielska, Marek Marks, S. Bielski, Ramūnas Mieldažys, K. Romaneckas, E. Šarauskis
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引用次数: 0

摘要

自 2018 年以来,在 LAMMC 的 Vėžaičiai 分部对大茎蒿进行了实地研究。根据三年的实验结果,年干物质(DM)产量从 7.94 吨/公顷到 10.14 吨/公顷不等。生长条件、施氮水平和收获时间对杜父鱼产量有显著的统计学影响。本文最重要的任务是研究和确定影响杜父鱼植物生物质生产率的因素,以及评估利用植物生物质进行能源转化和生产高质量固体生物燃料颗粒的技术、动力和环境参数。在实验中,使用了 2021 年生长的六种杜父鱼样本。植物被砍伐三次,使用了两种施肥方案:(1)不施肥;(2)施 180 千克/公顷氮肥。这些收获的植物被切碎、碾碎并压制成颗粒。研究调查了杜父鱼颗粒的物理机械特性(含水量、密度和强度)。研究发现,颗粒的干重(DM)密度在 1119.86 至 1192.44 kg m-3 之间。颗粒含水量在 8.80% 到 10.49% 之间。测试颗粒强度后发现,由植物生物质 PK-1-1(第一次收获,未施用氮肥)制成的颗粒抗压性最强,可承受 560.36 N 的压力。颗粒燃料的干燃料低热值(LHV)很高,与松木锯屑颗粒燃料的干燃料低热值(LHV)非常接近;从 17.46 ± 0.25 MJ kg-1 到 18.14 ± 0.28 MJ kg-1 不等。燃烧颗粒的灰分含量从 3.62 ± 0.02% 到 6.47 ± 0.09% 不等。有害污染物 - 二氧化碳、一氧化碳、氮氧化物和未燃烧碳氢化合物 (CxHy) - 的排放量均未超过最高允许水平。综上所述,可以得出结论,这种生物燃料可用于生产压榨生物燃料,其特点是质量足够高、燃烧效率高,并允许向环境排放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of the Productivity and Potential Utilization of Artemisia dubia Plant Biomass for Energy Conversion
Field studies with the large-stemmed plant Artemisia dubia (A. dubia) have been carried out at the Vėžaičiai Branch of LAMMC since 2018. According to three years of experimental results, annual dry matter (DM) yield varied from 7.94 to 10.14 t ha−1. Growing conditions, nitrogen application level, and harvesting time had statistically significant impacts on A. dubia productivity. The most important tasks of this article were to investigate and determine the factors influencing A. dubia plant biomass productivity and the evaluation of technological, power, and environmental parameters of plant biomass utilization for energy conversion and the production of high-quality solid biofuel pellets. For the experiments, six variants of A. dubia samples were used, which were grown in 2021. Plants were cut three times and two fertilization options were used: (1) no fertilization and (2) fertilization with 180 kg ha−1 of nitrogen fertilizer. These harvested plants were chopped, milled, and pressed into pellets. The physical–mechanical characteristics (moisture content, density, and strength) of the A. dubia pellets were investigated. During this study, it was found that the density in the dry mass (DM) of the pellets ranged from 1119.86 to 1192.44 kg m−3. The pellet moisture content ranged from 8.80 to 10.49%. After testing pellet strength, it was found that the pellets which were made from plant biomass PK-1-1 (first harvest without N fertilization) were the most resistant to compression, and they withstood 560.36 N of pressure. The dry fuel lower heating value (LHV) of the pellets was sufficiently high and was very close to that of the pine sawdust pellets; it varied from 17.46 ± 0.25 MJ kg−1 to 18.14 ± 0.28 MJ kg−1. The ash content of the burned pellets ranged from 3.62 ± 0.02% to 6.47 ± 0.09%. Emissions of harmful pollutants—CO2, CO, NOx, and unburnt hydrocarbons (CxHy)—did not exceed the maximum permissible levels. Summarizing the results for the investigated properties of the combustion and emissions of the A. dubia pellets, it can be concluded that this biofuel can be used for the production of pressed biofuel, and it is characterized by sufficiently high quality, efficient combustion, and permissible emissions to the environment.
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