Evaluation of the Hemp Shive (Cannabis sativa L.) Energy Requirements Associated with the Biocomposite Compaction Process

被引:3
作者
Nowakowski-Palka, Jakub [1 ]
Roman, Kamil [2 ]
机构
[1] Warsaw Univ Life Sci SGGW, Fac Wood Technol, 166 Nowoursynowska St, PL-02787 Warsaw, Poland
[2] Warsaw Univ Life Sci, Inst Wood Sci & Furniture, 166 Nowoursynowska St, PL-02787 Warsaw, Poland
关键词
biofuel; ecology; hemp; pellets; MECHANICAL-PROPERTIES; PLA;
D O I
10.3390/en16186591
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The main purpose of the present study was to develop an environmentally friendly and economical biocomposite that can be used to make hemp shive (Cannabis sativa L.) chipboard. The study involved the creation of a sample made of hemp shives and PLA (Polylactide) thermoplastic with varying amounts of concentrations of this plastic (25 and 50%) following a series of testing studies. The variabilities were differentiated fractions at four different levels (f(1), f(2), f(3), and f(4)) ranging from 0-2 mm, 2-4 mm, 4-6 mm, and 6-8 mm. In this light, the purpose of this research was to optimize the parameters that will affect the compaction process and strength of the biocomposites the researchers tested, which were made from shredded hemp residues and PLA (polylactide). According to this hypothesis, the quality of the biocomposite produced depends on the variation of fractions that constitute the composite. This study aims to provide insight into the energy requirements associated with the production of a biocomposite from hemp scraps and PLA thermoplastic, in order to determine its feasibility. The study compared the densities of different hemp fraction mixtures. The conversion factor (chi) was used while calculating the specific density of the fractions, f(1), f(2), f(3), and f(4), which came to 1377.33 kg center dot m(-3), 1122.27 kg center dot m(-3), 1071.26 kg center dot m(-3), and 1275.31 kg center dot m(-3), respectively. The specific density of blends containing 50% PLA material was calculated to be 1326.32 kg center dot m(-3). For blends containing 50% PLA, by taking into account the conversion factor, the density fractions were 1324.29 kg center dot m(-3), 1428.34 kg center dot m(-3), and 1479.36 kg center dot m(-3). Using different types of mixtures and fractions to analyze the total compaction work values: Based on the addition of 50% PLA to fractions f(3) (4 divided by 6) and f(4) (6 divided by 8), bulk density ranged between 221.09 kg center dot m(-3) and 305.31 kg center dot m(-3). Based on the compaction process results, the density values for the various fractions ranged from 1101.28 kg center dot m(-3) to 1292.40 kg center dot m(-3). Depending on what density is desired, the amount of compaction work required, on average, ranges from 1.1 x 10(-5) J to 4.5 x 10(-5) J.
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页数:18
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