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Formaldehyde Release from Chekiang Lambskin, Characteristic Parameter Determination and Influencing Factors

机译:浙小羊皮甲醛释放特性参数测定及影响因素

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摘要

VOC emissions may cause poor indoor (vehicle cabins included) air quality (IAQ). Recent studies have been conducted on the characteristics of volatile organic compounds (VOCs) emissions, most of them are focused on wood-based building materials, fur or fur imitations are scarcely mentioned. However, formaldehyde or formaldehyde-containing chemicals are often used in the production of fur, resulting in a certain amount of formaldehyde remaining in the finished product. This paper takes formaldehyde (FA) as an example to study its diffusion in fur. In order to understand and control the behaviour of the formaldehyde emission characteristics. Based on detailed mass transfer analysis of the emission process in a ventilated chamber, this paper measured the three emission characteristic parameters, i.e., the initial emittable concentration (C-0), the diffusion coefficient (D-m) and the partition coefficient (K). The influence of different factors on the release parameters was also studied, as well as the time required for the emission of formaldehyde under different ventilation rates; we also compared the formaldehyde results of different test methods. The results showed that both D-m and C-0 increased as temperature rose, but C-0 increase is significant. With the increase of relative humidity, D-m decreased but C-0 increased. In addition, the prediction model agrees well with the experimental data. The greater the ventilation rate, the faster the improvement of air quality standards in the cabin; The initial concentration was less than 43% of the formaldehyde content obtained through the extraction method and less than 4.6% of the formaldehyde content obtained by the distillation method.
机译:VOC排放可能导致室内(包括车厢)空气质量(IAQ)变差。最近对挥发性有机化合物(VOC)排放的特性进行了研究,其中大多数集中在木质建筑材料上,几乎没有提到毛皮或仿毛皮。然而,在毛皮的生产中经常使用甲醛或含甲醛的化学药品,导致成品中残留一定量的甲醛。本文以甲醛(FA)为例研究其在毛皮中的扩散。为了了解和控制甲醛释放行为的特性。基于对通风室内排放过程的详细传质分析,本文测量了三个排放特征参数,即初始可排放浓度(C-0),扩散系数(D-m)和分配系数(K)。还研究了不同因素对释放参数的影响,以及在不同通风速率下甲醛释放所需的时间。我们还比较了不同测试方法的甲醛结果。结果表明,D-m和C-0均随温度升高而增加,但C-0的增加却很明显。随着相对湿度的增加,D-m降低,但C-0升高。另外,预测模型与实验数据吻合良好。通风率越大,机舱内空气质量标准的改善速度越快;初始浓度小于通过萃取方法获得的甲醛含量的43%,并且小于通过蒸馏方法获得的甲醛含量的4.6%。

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    Shaanxi Univ Sci & Technol Coll Bioresources Chem & Mat Engn Xian 710021 Shaanxi Peoples R China|Shaanxi Univ Sci & Technol Xian Natl Demonstrat Ctr Expt Light Chem Engn Educ Xian 710021 Shaanxi Peoples R China;

    ECT Testing Chongqing Co Ltd PR China Chongqing 404100 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
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  • 正文语种 eng
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