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首页> 外文期刊>Fruits >Assessing enset fibre yield and quality for a wide range of enset [Ensete ventricosum (Welw.) Cheesman] landraces in Ethiopia
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Assessing enset fibre yield and quality for a wide range of enset [Ensete ventricosum (Welw.) Cheesman] landraces in Ethiopia

机译:评估ensEC纤维产量和质量的广泛恩迹[Ensete entricoSum(Welw。)Cheesman]埃塞俄比亚的地位

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摘要

Introduction - Numerous natural fibres are widely used at industrial scales. Fibres extracted as a by-product of food or feed crops reduce the need for additional land. Enset fibre is a by-product obtained during pseudostem/leaf sheath processing. Enset fibre is currently used for making ropes (e.g., for mud house construction or tethering domestic animals), ground and table mats, coffee bags and as a reinforcement in gypsum room decorations and panels. Materials and methods - The aim of the current study was to assess enset fibre quantity and quality of a wide range of enset landraces and compare fibre tensile strength with that of banana (of which leaf sheaths also contain fibre), of abaca (of which fibre is the main product) and over 20 other types of natural fibres, to identify possible additional enset fibre uses/value chains. Quantity of fibre in enset is dependent on landrace while fibre tensile strength is mostly similar across enset landraces. Results and discussion - Results from the current study and literature indicated that enset fibre tensile strength (9.8-17.5 kg g(-1) m(-1)) is slightly inferior to or comparable with abaca fibre (15.4 kg g(-1) m(-1)), while it is of higher quality than banana fibre (9.8-10.8 kg g(-1) m(-1)) for most of the assessed enset landraces. Abaca fibre is utilized by the pulp, cordage and fibre craft industries. It is also used in reinforced composite materials. Conclusion - Due to its comparable fibre quality in terms of tensile strength, enset fibre could be used at an industrial scale for pulp and paper processing, and in composite materials. However, processing tests would need to be carried out to confirm its suitability for these additional value chain options. Additional fibre analysis would also need to include cellulose content and fibre thickness of a wide range of enset landraces.
机译:介绍 - 许多天然纤维广泛用于工业秤。作为食品或饲料作物的副产物提取的纤维可降低额外土地的需求。 ensEC纤维是在假索德/叶鞘处理期间获得的副产物。恩斯塞纤维目前用于制作绳索(例如,用于泥浆房建筑或家畜),地面和台式垫,咖啡袋和石膏室装饰品和面板中的钢筋。材料和方法 - 目前研究的目的是评估恩术纤维数量和各种敌人样板的质量,并比较纤维拉伸强度与香蕉(其中叶护套也含有纤维)的纤维拉伸强度(其中纤维)是主要产品)和20多种其他类型的天然纤维,以识别可能的额外敌人光纤使用/值链。敌对纤维的数量取决于地兰,而纤维拉伸强度大多相似朝向敌对地位。结果与讨论 - 目前的研究和文献结果表明,野生纤维拉伸强度(9.8-17.5 kg(-1)m(-1))略微不等或与ABACA纤维相当(15.4kg g(-1) M(-1)),虽然大多数评估的敌人样板,但它的质量高于香蕉纤维(9.8-10.8 kg(-1)m(-1))。纸浆,缆绳和纤维工艺行业使用亚马逊纤维。它还用于增强复合材料。结论 - 由于其在拉伸强度方面具有相当的纤维质量,因此孔纤维可用于纸浆和纸张加工的工业规模,以及复合材料。但是,需要进行处理测试以确认其适用于这些额外的价值链选项。额外的纤维分析还需要包括纤维素含量和纤维厚度的宽范围的敌意体重体。

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