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Impact of reaction products from building materials and furnishings on indoor air quality—A review of recent advances in indoor chemistry

机译:建筑材料和家具的反应产物对室内空气质量的影响—室内化学的最新进展回顾

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The variety of chemical substances present in modern building products, household products and furnishings provides potential for chemical reactions in the material (case 1), on the material surface (case 2) and in the gas phase (case 3). Such "indoor chemistry" is known as one of the main reasons for primary and secondary emissions. The conditions of production often cause unwanted side reactions and a number of new compounds can be found in finished products. Elevated temperatures are responsible for the degradation of cellulose, decomposition of non-heat-resistant additives and other thermally induced reactions like Diels-Alder synthesis. Heterogeneous chemistry takes place on the surface of materials. Well-known examples are the formation of aliphatic aldehydes from the oxidation of unsaturated fatty acids or the cleavage of photoinitiators under the influence of light. In case of composite flooring structures hydrolysis is one of the major pathways for the appearance of alcohols from esters. If different kinds of material are fixed together, emissions of new VOCs formed by inter-species reactions are possible. Other indoor air pollutants are formed by rearrangement of cleavage products or by metabolism. Compounds with -C = C- bonds like terpenes, styrene, 4-phenylcyclohexene, etc. undergo gas phase reactions with O_3, NO_x, OH and other reactive gases. It has been shown that such products derived from indoor-related reactions may have a negative impact on indoor air quality due to their low odor threshold or health-related properties. Therefore, the understanding of primary and secondary emissions and the chemical processes behind is essential for the evaluation of indoor air quality. This publication gives an overview on the current state of research and new findings regarding primary and secondary emissions from building products and furnishings.
机译:现代建筑产品,家用产品和家具中存在的各种化学物质为材料(案例1),材料表面(案例2)和气相(案例3)中的化学反应提供了潜力。这种“室内化学物质”被称为一次和二次排放的主要原因之一。生产条件通常会引起不良的副反应,并且成品中会发现许多新化合物。高温会导致纤维素降解,非耐热性添加剂分解以及其他热诱导反应(如狄尔斯-阿尔德合成)。异质化学发生在材料表面。众所周知的例子是在光的影响下由不饱和脂肪酸的氧化或光引发剂的裂解形成脂肪族醛。在复合地板结构的情况下,水解是从酯中出现醇的主要途径之一。如果将不同种类的材料固定在一起,则可能会因种间反应而排放出新的VOC。其他室内空气污染物是由裂解产物的重排或新陈代谢形成的。具有-C = C-键的化合物,如萜烯,苯乙烯,4-苯基环己烯等,会与O_3,NO_x,OH和其他反应性气体发生气相反应。业已表明,这类源自室内相关反应的产品由于其气味阈值低或与健康相关的特性,可能会对室内空气质量产生不利影响。因此,了解一次和二次排放以及背后的化学过程对于评估室内空气质量至关重要。该出版物概述了建筑材料和家具的主要和次要排放的研究现状和新发现。

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