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Removal ratio of gaseous toluene and xylene transported from air to root zone via the stem by indoor plants

机译:通过茎通过室内植物从空气输送到根区的气态甲苯和二甲苯的去除率

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This work was designed to investigate the removal efficiency as well as the ratios of toluene and xylene transported from air to root zone via the stem and by direct diffusion from the air into the medium. Indoor plants (Schefflera actinophylla and Ficus benghalensis) were placed in a sealed test chamber. Shoot or root zone were sealed with a Teflon bag, and gaseous toluene and xylene were exposed. Removal efficiency of toluene and total xylene (m, p, o) was 13.3 and 7.0 mu g center dot m(-3)center dot m(-2) leaf area over a 24-h period in S. actinophylla, and was 13.0 and 7.3 mu g center dot m(-3)center dot m(-2) leaf area in F. benghalensis. Gaseous toluene and xylene in a chamber were absorbed through leaf and transported via the stem, and finally reached to root zone, and also transported by direct diffusion from the air into the medium. Toluene and xylene transported via the stem was decreased with time after exposure. Xylene transported via the stem was higher than that by direct diffusion from the air into the medium over a 24-h period. The ratios of toluene transported via the stem versus direct diffusion from the air into the medium were 46.3 and 53.7 % in S. actinophylla, and 46.9 and 53.1 % in F. benghalensis, for an average of 47 and 53 % for both species. The ratios of m,p-xylene transported over 3 to 9 h via the stem versus direct diffusion from the air into the medium was 58.5 and 41.5 % in S. actinophylla, and 60.7 and 39.3 % in F. benghalensis, for an average of 60 and 40 % for both species, whereas the ratios of o-xylene transported via the stem versus direct diffusion from the air into the medium were 61 and 39 %. Both S. actinophylla and F. benghalensis removed toluene and xylene from the air. The ratios of toluene and xylene transported from air to root zone via the stem were 47 and 60 %, respectively. This result suggests that root zone is a significant contributor to gaseous toluene and xylene removal, and transported via the stem plays an important role in this process.
机译:这项工作旨在探讨通过杆和通过从空气中的直接扩散到介质中从空气传输到根区的甲苯和二甲苯的去除效率和二甲苯的比例。将室内植物(Schefflera Actinophylla和Ficus Benghalensis置于密封的测试室中。用Teflon袋密封芽或根区,暴露气态甲苯和二甲苯。甲苯和总二甲苯(M,P,O)的去除效率为13.3和7.0μg中心点M(-3)中心点M(-2)叶片面积在S.Actinophylla的24-H期间,是13.0在F.Benghalensis中,7.3μg中心点M(-3)中心点M(-2)叶片区域。腔室中的气态甲苯和二甲苯被叶片吸收并通过杆运输,最后达到根区,并且还通过从空气中的直接扩散到培养基中运输。通过茎传输的甲苯和二甲苯随着暴露后的时间而降低。通过茎传输的二甲苯高于通过从空气中直接扩散到24-H周期中的介质中的二甲苯。通过茎与空气中的直接扩散输送的甲苯的比例在S.猕猴桃中的46.3和53.7%,46.9和53.1%,平均两种物种平均为47%和53%。通过茎与空气进入培养基的直接扩散超过3至9小时的M,p-二甲苯的比例为58.5%和41.5%,在F.Benghalensis中的60.7和39.3%。两种物种60和40%,而通过茎与空气中的直接扩散到培养基中运输的O-二甲苯的比例为61%和39%。 S.Actinophylla和F.Benghalensis从空气中除去甲苯和二甲苯。通过茎从空气输送到根区的甲苯和二甲苯的比例分别为47和60%。该结果表明,根区是对气态甲苯和二甲苯的显着作用子,并通过杆运输在该过程中起重要作用。

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