Assessment of energy properties of maize and multi-crop pellets and environmental impact of their combustion

A. Jasinskas, Rita Petlickaitė, E. Jotautienė, E. Lemanas, J. Souček
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Abstract

. Biomass resources are very important raw materials for energy purposes in many countries of the world, and these renewable local sources of energy can replace fossil fuels, whose resources are decreasing and they have a negative impact on the environment. The presented paper provides new research results of multi-crop plants, such as herbaceous, fibrous and leguminous plants growing, harvesting and utilization for energy purposes. Maize biomass can be used not only for the production of fodder or biogas, but also for the production of solid biofuels. In this work were investigated these plants: maize, which is grown as a high-biomass perennial herbaceous plant, together with field beans, accumulating nitrogen in the roots and soil, and the third multi-crop plant was fibrous hemp, which overgrows weeds and contributes significantly to the reduction of CO 2 in the environment. At the beginning plants were harvested and biofuel was prepared by drying, chopping, milling and production of biofuel pellets. The most important properties of pellets made from multi-crop plants and their mixtures, which are influencing the preparation and use of biofuels for energy, were investigated and determined. Investigations were carried out in the fields and laboratories of the Vytautas Magnus University Agriculture Academy and in the Lithuanian Energy Institute. After investigation of biomass pellet qualitative properties, it was determined that the density of all investigated sorts of pellets varied from 1106.5 to 1161.3 kg m -3 dry matter (DM), and pellet moisture content reached 6.9 ± 1.6%. A lower heat value (LHV) was sufficiently high and varied from varied from 16.8 to 17.0 MJ kg -1 . Additionally, there were investigated the harmful emissions of gases CO 2 , CO, NO x and C x H y when these pellets were burned. All these results are in accordance with the requirements of standards.
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玉米和多种作物颗粒的能量特性评估及其燃烧对环境的影响
。在世界上许多国家,生物质资源是非常重要的能源原料,这些可再生的当地能源可以取代化石燃料,化石燃料的资源正在减少,对环境产生负面影响。本文介绍了草本、纤维和豆科植物等多作物植物的生长、收获和能源利用方面的新研究成果。玉米生物质不仅可用于生产饲料或沼气,还可用于生产固体生物燃料。在这项工作中,我们研究了这些植物:玉米,作为一种高生物量的多年生草本植物,与菜豆一起生长,在根和土壤中积累氮;第三种多作物植物是纤维大麻,它杂草丛生,对减少环境中的CO 2有显著贡献。一开始,植物被收割,生物燃料是通过干燥、切碎、碾磨和生产生物燃料颗粒来制备的。研究并确定了由多种作物植物及其混合物制成的颗粒的最重要特性,这些特性正在影响能源生物燃料的制备和使用。调查是在维陶塔斯马格努斯大学农业学院和立陶宛能源研究所的田野和实验室进行的。通过对生物质颗粒的定性研究,确定了所研究颗粒的密度在1106.5 ~ 1161.3 kg m -3干物质(DM)之间,颗粒含水量达到6.9±1.6%。较低的热值(LHV)足够高,变化范围从16.8到17.0 MJ kg -1。此外,还研究了这些颗粒燃烧时的有害气体co2、CO、nox和cxhy的排放。这些结果均符合标准要求。
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