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首页> 外文期刊>Environmental Science and Pollution Research >VOC and carbonyl compound emissions of a fiberboard resulting from a coriander biorefinery: comparison with two commercial wood-based building materials
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VOC and carbonyl compound emissions of a fiberboard resulting from a coriander biorefinery: comparison with two commercial wood-based building materials

机译:纤维板的VOC和羰基化合物排放由香菜生物颗粒产生的纤维板:与两种商业木材建筑材料的比较

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摘要

Indoor air quality is a major public health issue. It is related to the choice of construction materials and associated with VOC emissions. Two wood-based commercial panels were tested: a medium-density fiberboard (MDF) and a chipboard (CH), and they were compared to a material produced from a coriander biorefinery (COR). Indicators chosen to compare the materials were physical properties (density, bending properties, surface hardness, thickness swelling, and water absorption) and VOC emissions. Emissions were evaluated in an environmental chamber at 23 degrees C, 31 degrees C, and 36 degrees C, and during 28 days. Carbonyl emissions on day 1 at 23 degrees C were 74, 146, and 35 mu g m(-2) h(-1), respectively, for MDF, CH, and COR. Terpenic emissions were 12, 185, and 37 mu g m(-2) h(-1), respectively. Higher temperature resulted in higher emissions which decreased over time, except for formaldehyde. VOC emissions depended largely on material and temperature. Formaldehyde emission was 300 to 600 times lower for coriander boards (< 0.2 mu g m(-2) h(-1)), making them significantly more environmentally friendly materials in comparison with MDF and chipboard. These results highlight the interest of coriander by-products as raw materials for producing fiberboards with low impact on indoor air quality.
机译:室内空气质量是一个主要的公共卫生问题。它与建筑材料的选择有关,与VOC排放相关联。测试了两种基于木材的商业面板:中密度纤维板(MDF)和刨花板(CH),它们与来自香菜生物料理(COR)产生的材料进行比较。选择比较材料的指标是物理性质(密度,弯曲性能,表面硬度,厚度肿胀和吸水率)和VOC排放。在23摄氏度,31℃和36℃下,在23摄氏度和36℃下进行排放。对于MDF,CH和COR,分别为23℃的第1天的第1天的羰基排放分别为74,146和35μg(-1)。萜烯排放分别为12,185和37μgm(-2)h(-1)。除甲醛外,较高的温度导致较高的排放量减少,除了甲醛。 VOC排放在很大程度上取决于材料和温度。甲醛发射为甲醛电路板(<0.2μgm(-2)H(-1))为300〜600倍,使其具有与MDF和刨花板相比的更加环保的材料。这些结果突出了香菜副产品作为生产纤维板的原料的利益,对室内空气质量的影响低产生纤维板。

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