COMMERCIAL AND FIELD FACTORS OF SELECTING KENAF FIBERS AS ALTERNATIVE MATERIALS IN INDUSTRIAL APPLICATIONS

R. Salih, Ekhlass Mamand Hamad, T. N. Ismail
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引用次数: 3

Abstract

This work was carried out from 15 July 2021 in Grdarasha Field, College of Agricultural Engineering Sciences, Salahaddin University-Erbil. It aims to show the impact of using kenaf fibers as alternative materials in manufacturing. Global climate change and environment pollution cause to do this kind of researching. Kenaf (Hibiscus cannabinus L.) is a fast growing natural crops, belongs to the Malvaceae family. It is an industrial crop has high potential for cultivation in a tropical climate and also which resistance to various soil types and climate. Selecting the raw materials for industrial applications is more important. Actually, kenaf fibers have many advantages to use in wade range of applications, also it’s fibers not just a part of plant useful as raw material but also leaves and seeds have many other advantages and uses. The results show that there is a significant between varieties on growth and fiber yield properties. The highest plant high was of FH952 by (368.33 cm), while the best values of total fresh and dry stem yields were found of HC2 and V36, by almost (219.33 and 60.93 t/ha), respectively. Providing these results through kenaf plant could be considered as substitute materials for timber and other biocomposite manufactures, and also it causes to safe environment by absorption optimal value of carbon dioxide (CO2), then cutting of woodland trees will be decreased. Finally recommended to cultivation fiber crops (kenaf) globally to conserve environment.
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工业应用中红麻纤维替代材料选择的商业和现场因素
这项工作于2021年7月15日在埃尔比勒萨拉哈丁大学农业工程科学学院Grdarasha Field进行。它旨在展示使用红麻纤维作为制造替代材料的影响。全球气候变化和环境污染导致了这种研究。红麻(Hibiscus cannabinus L.)是一种快速生长的天然作物,属于锦葵科。它是一种经济作物,在热带气候下具有很高的种植潜力,并且对各种土壤类型和气候具有抗性。为工业应用选择原材料更为重要。事实上,红麻纤维在广泛的应用中有许多优点,而且它的纤维不仅是植物的一部分,而且它的叶子和种子也有许多其他的优点和用途。结果表明,品种间在生长和产量性状上存在显著差异。株高最高的是FH952高(368.33 cm),而总鲜干产量最高的是HC2和V36,分别接近219.33 t/ha和60.93 t/ha。通过红麻植物提供这些结果,可以考虑作为木材和其他生物复合材料的替代材料,并且通过吸收二氧化碳(CO2)的最佳值来实现环境安全,从而减少林地树木的砍伐。最后建议在全球范围内种植纤维作物(红麻)以保护环境。
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