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Development of the new desiccator system for measuring the removal effect of the formaldehyde as an indoor air pollutant by the adsorbent

机译:研发新型干燥器系统,用于测量吸附剂对室内空气污染物甲醛的去除效果

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摘要

The new desiccator system with measures for the prevention of dew drops and the processing of the formaldehyde (FA) gas discharged from the final desiccator was produced, and the FA removal rate for various adsorbents was examined. For the prevention of dew drops in the desiccator, a hygroscopic bottle containing silica gel was used next to the FA gas generator, and humidity was adjusted by adjusting the interval between the FA gas outlet (a) and the desiccant (b). The removal of the harmful FA gas discharged from the final desiccator (n=5) is an important in the environmental preservation. To solve this problem, the FA gas was passed through an oxidation bottle containing KMnO(4)-H(2)SO(4) solution, and it was possible to confirm the complete decomposition of the FA by increase of the CO(2) and elimination of the FA. For the determination of the FA concentration in the desiccator, 100 ml air was beforehand collected using a gas collector into a 100 ml vial bottle containing 2 ml distilled water, and 50 ml of air from each desiccator was injected using a glass syringe. This was left under a slightly reduced pressure for 20 min, and the FA concentration was determined by the AHMT method. The FA removal rate after 1 h for each adsorbent (0.5 g) was 50% or more for chitin, KIMCO and silica gel. The removal efficacy for activated carbon was higher for fine particles than for coarse particles, and a dose-response relationship was established.
机译:生产了一种新的干燥器系统,该系统具有防止露滴的措施和从最终干燥器中排出的甲醛(FA)气体的处理方法,并检查了各种吸附剂的FA去除率。为了防止干燥器中的露滴,在FA气体发生器旁边使用装有硅胶的吸湿瓶,并通过调节FA气体出口(a)和干燥剂(b)之间的间隔来调节湿度。从最终干燥器中排出的有害FA气体(n = 5)的去除对于环境保护至关重要。为了解决此问题,使FA气体通过装有KMnO(4)-H(2)SO(4)溶液的氧化瓶,并且可以通过增加CO(2)来确认FA的完全分解。和取消FA。为了确定干燥器中的FA浓度,预先使用气体收集器将100ml空气收集到装有2ml蒸馏水的100ml小瓶瓶中,并使用玻璃注射器从每个干燥器中注入50ml空气。将其在稍微减压下放置20分钟,并且通过AHMT方法确定FA浓度。对于几丁质,KIMCO和硅胶,每种吸附剂(0.5 g)在1 h后的FA去除率为50%或更高。细颗粒的活性炭去除效果比粗颗粒高,并且建立了剂量反应关系。

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