从森林树突中提取林木绿色植物的最佳工艺选择

S. Ljubojević, L. Vasilišin, G. Vučić
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摘要

波斯尼亚-黑塞哥维那的森林和林地面积为3 231 500公顷,其中128万公顷。其中一个属于塞族共和国(RS)实体,其余的属于B&H联邦实体。在RS的森林里,每年大约有294万棵树被砍伐。M3的树突。其中,约有15-20%(12.75万至17万立方米)是木质绿色植物——带针或叶子的细枝,粗端直径10毫米,用树皮测量。根据其他人的经验,首先是来自俄罗斯,波罗的海和斯堪的纳维亚国家,我们知道,木质绿色植物代表了不同经济部门的宝贵原料:农业,制药和化妆品工业等。整个木质绿色植物的年度攻击仍然未被利用,与我们。造成这种情况的原因至少有两个:a)因为仍然没有详细和经过验证的合理收集和集中原材料到加工厂的做法;b)因为我们对木材绿色植物的加工方法不够熟悉。对我国林业实践中木材分拣生产技术进行了详细的分析。在此基础上,提出了包括林木绿化在内的森林综合利用模式。从机械干燥分馏工艺、化学提取工艺、经典加热工艺和微波电磁场能源利用工艺及其组合:机械化学法和热化学法等方面分析了绿色木材加工技术。最后,根据以下标准,选择这种木材绿化加工技术以最佳地配合森林资源的综合利用:对环境的负面影响最小,工作时最大限度的安全,主要来自可再生资源的低能源消耗,最终产品的最高质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The choice of optimal technology for extracting wood greenery from forest dendromass
Forests and forest land in Bosnia and Herzegovina encompass an area of 3,231,500 ha out of which 1.28 mill. ha is in the Republika Srpska (RS) entity and the rest in the B&H Federation entity. In the forests of RS each year are cut down around 2.94 mill. m3 of dendromass. Of these, about 15-20% or 127,500 to 170,000 m3 makes wood greenery - twigs with needles or leaves, with 10 mm diameter at thick end, measured with bark. Based on the experience of others, first of all from Russia, the Baltic and Scandinavian countries, it is known that wood greenery represents valued raw material in different sectors of economy: agriculture, pharmaceutical and cosmetics industry and others. The entire annual attack of wood greenery remains unused, with us. There are at least two reasons for this: a) because there are still no elaborated and proven practices of rational collection and concentration of raw materials to processing plants; and b) because we are not familiar enough with the methods of wood greenery processing. A detailed analysis of the technology of wood assortment production in our forestry practice has been carried out. Based on these findings, a model of integrated forest utilization was conceived, including wood greenery. Then, the technology of wood greenery processing were analyzed in the following sense: mechanical drying and fractionation processes, chemical extraction processes, thermal processes by classical heating and energy use of the microwave electromagnetic field and their combinations: mechanical-chemical methods and thermo-chemical methods. Finally, such technology of wood greenery processing has been selected to optimally matches with the integrated use of forest resources, in terms of the following criteria: minimal negative environmental impact, maximum safety at work, low energy consumption, primarily from renewable sources, maximum quality of final products.
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