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Bio-Waste Thermal Insulation Panel for Sustainable Building Construction in Steady and Unsteady-State Conditions

机译:在稳态和非稳态条件下可持续建筑施工的生物废物隔热面板

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摘要

Apart from being used as an oil stock for bio-fuels production, an annual crop plant Brassica napus, thought to be an agro-waste, and used either as an animal feed, soil fertilizer or biomass for combustion and thermal energy production. Alternatively, as a bio-based and locally bio-sourced cellulosic material, it could be used as a thermal insulation in sustainable building fabrication, likewise woodchips, a bio-waste from the wood industry. In this study, the above-mentioned bio-waste materials’ thermal properties were identified using a sandwich panel from medium density fibreboard (MDF) and wood studs. Premanufactured panels have been filled in with randomly oriented short-cut rapeseed and with short-cut woodchips. A modified guarded hot box method was used to designate steady and un-steady state thermo-physical parameters of such insulation panels. The examined bio-waste materials absorbed thermal fluctuations of the exterior environment and kept the indoor building environment at constant temperature regardless of such fluctuations. The ability of bio-based sandwich panels to store heat energy was found to be similar to mineral wool. Additionally, VOC (volatile organic compound) emissions of tested materials were identified using gas chromatography-mass spectrometry (GC-MS) combined with headspace solid-phase microextraction (HS-SPME) to declare materials’ harmlessness to indoor environmental quality and human wellbeing. In conclusion, bio-based short-cut materials proved to be a viable environmentally friendly and energy efficient alternative to conventionally used thermal insulations.
机译:除了用作生物燃料生产的油料外,一年生作物油菜(Brassica napus)被认为是一种农业废料,并用作动物饲料,土壤肥料或生物质,用于燃烧和热能生产。或者,作为生物基和本地生物来源的纤维素材料,它可以用作可持续建筑制造中的绝热材料,例如木片,木材工业的生物废料。在这项研究中,使用中密度纤维板(MDF)和木钉制成的夹芯板确定了上述生物废料的热性能。在预制面板上填充了随机定向的短切菜籽和短切木片。使用改良的防护热箱方法来指定此类隔热板的稳态和非稳态热物理参数。被检查的生物废料吸收了外部环境的热波动,并且不管这种波动如何,都将室内建筑环境保持在恒定温度下。发现基于生物的夹心板存储热能的能力类似于矿棉。此外,使用气相色谱-质谱(GC-MS)结合顶空固相微萃取(HS-SPME)鉴定了被测物质的VOC(挥发性有机化合物)排放量,从而证明了该物质对室内环境质量和人体健康无害。总之,基于生物的捷径材料被证明是替代传统绝热材料的一种可行的环保和节能方式。

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