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Chemical methods in the development of eco-efficient wood-based pellet production and technology

机译:开发生态高效的木质颗粒生产技术中的化学方法

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Up to 20 million tons of waste wood biomass per year is left unused in Finland, mainly in the forests during forestry operations, because supply and demand does not meet. As a consequence of high heat energy prices, the looming threat of climate change, the greenhouse effect, and due to global as well as national demands to considerably increase the proportion of renewable energy, there is currently tremendous enthusiasm in Finland to substantially increase pellet production. As part of this European objective to increase the eco- and cost-efficient utilization of bio-energy from the European forest belt, the aim of our research group is - by means of multidisciplinary research, especially through chemical methods - to promote the development of Nordic wood-based pellet production in both the qualitative and the quantitative sense. Wood-based pellets are classified as an emission-neutral fuel, which means that they are free from emission trading in the European Union. The main fields of pellet research and the chemical toolbox that has been developed for these studies, which includes a new specific staining and optical microscope method designed to determine the cross-linking of pellets in the presence of various binding compounds, are described in this paper. As model examples illustrating the benefits of this toolbox, experimental data is presented concerning Finnish wood pellets and corresponding wood-based pellets that include the use of starch-containing waste potato peel residue and commercial lignosulfonate as binding materials. The initial results concerning the use of the developed and optimized specific staining and microscopic method using starch-containing potato peel residue as binding material are presented.
机译:芬兰每年有多达2000万吨的废木材生物量闲置,主要是在林业生产过程中的森林中,因为供需不满足。由于高昂的热能价格,迫在眉睫的气候变化威胁,温室效应,以及全球和国家对大幅增加可再生能源比例的需求,芬兰目前对大幅提高颗粒生产具有极大的热情。作为提高欧洲森林带对生物能源的生态和成本效益利用的这一欧洲目标的一部分,我们研究小组的目标是-通过多学科研究,尤其是通过化学方法,来促进欧洲森林带的发展。在定性和定量两方面,北欧木质颗粒的生产。木质颗粒被归类为排放中性燃料,这意味着它们在欧盟中没有排放贸易。本文描述了颗粒研究的主要领域和为这些研究开发的化学工具箱,其中包括一种新的特定染色和光学显微镜方法,该方法旨在确定在存在各种结合化合物的情况下颗粒的交联。 。作为说明此工具箱好处的模型示例,我们提供了有关芬兰木颗粒和相应木基颗粒的实验数据,其中包括使用含淀粉的废土豆皮残渣和市售木质素磺酸盐作为粘结材料。提出了有关使用已开发和优化的特定染色和显微方法(使用含淀粉的马铃薯皮残留物作为结合材料)的初步结果。

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