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Thermal insulation potential of non-industrial hemp (Moroccan cannabis sativa L.) fibers for green plaster-based building materials

机译:非工业大麻(Moroccan Cannabis Sativa L.)纤维的绝热潜力用于绿色石膏的建筑材料

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Hemp, or industrial cannabis, is on a massively growing trend as a natural additive for high-performance bio-based building materials. However, thousands of stems from vernacular cannabis cultivation in developing countries, such as Morocco, are overlooked and regarded as biomass waste used for rural household purposes. The objective of this paper is to assess the potential use of Moroccan cannabis fibers in the manufacture of local bio-insulating plasterboards. Firstly, the study focuses on the mineralogical, morphological, and chemical characterization of used fibers using X-ray diffraction (XRD), thermogravimetric analysis (TGA), scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). Secondly, the impact of fiber addition on the thermal performance of plaster was experimentally studied using Hot Disk and flash methods. For this study, one hundred local fibro-plasterboards were developed by adding Moroccan Hemp Fibers (MHFs) to local plaster at different weight replacement ratios: 0, 2, 4, and 6% in order to evaluate the effect of fiber content on the thermal insulation quality of plaster and the variation of the thermal capacity of developed bio-composites. The experimental tests demonstrate the effectiveness of Moroccan hemp stems in improving the thermal transport properties of plaster and making it more thermally efficient. The incorporation of 6% in weight of MHFs in plaster matrix considerably reduced the density, enhanced the thermal insulation and slowed the heat transfer rate respectively by 24.5%, 31.3% and 8.5% when compared to plaster without fibers. The addition of 2% in weight of MHFs showed the best results in terms of thermal heat capacity. Finally, to evaluate the energy performance of developed plasterboards at building scale, annual simulations using EnergyPlus for a residential building located in two different semi-arid climates of Morocco were carried out. The results indicate that buildings with 40 mm Moroccan hemp plasterboard (MHP) have a considerable potential to reduce the energy consumption of buildings and provide passive thermal comfort for occupants, especially during summer periods. Therefore, non-industrial hemp is a good candidate for the development of local lightweight low-environmental impact (LLL) construction materials with contributions for building energy efficiency. ? 2021 Elsevier Ltd. All rights reserved.
机译:大麻或工业大麻,是一种大规模不断增长的趋势,作为高性能生物建材的天然添加剂。然而,在发展中国家(如摩洛哥)的春季大麻种植中的成千上万的茎被忽视并被视为用于农村家庭目的的生物量垃圾。本文的目的是评估摩洛哥大麻纤维在局部生物绝缘石膏板制造中的潜在使用。首先,该研究侧重于使用X射线衍射(XRD),热重分析(TGA),扫描电子显微镜(SEM)和能量分散光谱(EDS)使用X射线衍射(XRD)的矿物学,形态学和化学表征使用的纤维的化学表征。其次,使用热盘和闪光法通过实验研究了纤维添加对石膏热性能的影响。对于本研究,通过将摩洛哥HEMP纤维(MHFS)添加到不同体重置换比:0,2,4和6%的局部石膏来开发一百份局部纤维层,以评估纤维含量对热量的影响绝缘质量的石膏和发育生物复合材料的热容量的变化。实验试验证明了摩洛哥HEMP茎改善石膏热传输性能并使其更热效率的有效性。在石膏基质中,掺入6%的MHFS在膏状基质中显着降低了密度,增强了热绝缘,并分别减慢了与没有纤维的石膏的24.5%,31.3%和8.5%。加入2%的MHFS的MHF在热量热容量方面显示出最佳结果。最后,为了评估建筑规模开发的石膏板的能量性能,进行了使用位于摩洛哥两种不同半干旱气候的住宅建筑的EnergyPlus的年度模拟。结果表明,具有40毫米摩洛哥大麻石膏板(MHP)的建筑具有相当大的潜力,可降低建筑物的能源消耗,并为居住者提供被动热舒适性,特别是在夏季期间。因此,非工业大麻是局部轻质低环境影响(LLL)建筑材料的良好候选者,为建筑能效提供贡献。还2021 Elsevier Ltd.保留所有权利。

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