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Influence of the chip format on the development of mass loss, moisture content and chemical composition of poplar chips during storage and drying in open-air piles

机译:木屑形式对杨木屑在露天堆贮藏和干燥过程中质量损失,水分含量和化学成分发展的影响

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摘要

In order to use wood chips from short-rotation coppices cost-efficiently, it is necessary to optimise the storage process depending on the planned use of the chips. The goal of all storage is to ensure low dry matter losses. Wood chips intended for energy-related use should have low moisture and ash contents, as well as a low fines fraction. If wood chips are to be put to material use, e.g. as peat substitute, a reduction of the C:N ratio during storage is necessary.The objective of this study was to identify favourable storage conditions to ensure low dry matter losses and high quality of wood chips for energy-related use. Furthermore, the study aimed to examine, whether disintegration processes during storage change the C:N ratio to such an extent that wood chips can be used as raw material for plant substrates.Three wood chip piles with different chip formats (small, medium, large - produced with a forage harvester and a mower chipper) were stored for seven months and compared regarding storage properties and physicochemical parameters.After seven months, medium wood chips displayed with a moisture content of 26w-%, dry matter losses of only 17% and a fines fraction of <5w-% the best results for energy-related use. Small chips with dry matter losses of 19%, moisture contents of 34w-% and a fines fraction of 12.6w-% displayed very unfavourable conditions for energy-related use. However, small chips showed the highest reduction of the C:N ratio (from 145:1 to 57:1) due to the storage process.
机译:为了经济高效地使用短时间旋转的木片,有必要根据木片的计划使用来优化存储过程。所有储存的目的是确保低的干物质损失。打算用于能源相关用途的木片应具有较低的水分和灰分含量,以及较低的细粉含量。如果要使用木片作为原料,例如作为泥炭替代品,必须降低储存过程中的C:N比。本研究的目的是确定有利的储存条件,以确保减少干物质损失和与能源有关的木片的高质量。此外,该研究旨在检查储存过程中的崩解过程是否改变了C:N比例,以至于可以将木屑用作植物基质的原料。三种木屑堆,具有不同的木屑形式(小,中,大) -用草料收割机和割草机生产的)储存了七个月,并比较了储存性能和理化参数。七个月后,中等木片的水分含量为26w%,干物质损失仅为17%,小于5w%的罚款分数是与能源相关的最佳使用效果。干物质损失为19%,水分含量为34w-%,细粉含量为12.6w-%的小碎屑显示了与能源相关的使用非常不利的条件。但是,由于存储过程的原因,小芯片显示出C:N比的最大降低(从145:1降至57:1)。

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