首页> 外文期刊>Water, Air, and Soil Pollution >THE POTTED-PLANT MICROCOSM SUBSTANTIALLY REDUCES INDOOR AIR VOC POLLUTION: Ⅱ. LABORATORY STUDY
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THE POTTED-PLANT MICROCOSM SUBSTANTIALLY REDUCES INDOOR AIR VOC POLLUTION: Ⅱ. LABORATORY STUDY

机译:盆栽的微宇宙基本上减少了室内空气中的VOC污染:Ⅱ。实验室研究

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Indoor air-borne loads of volatile organic compounds (VOCs) are usually significantly higher than those outdoors, and chronic exposures can cause health problems. Our previous laboratory studies have shown that the potted-plant microcosm, induced by an initial dose, can eliminate high airborne VOC concentrations, the primary removal agents being potting-mix microorganisms, selected and maintained in the plant/root-zone microcosm. Our office field-study, reported in the preceding paper, showed that, when total VOC (TVOC) loads in reference offices (0 plants) rose above about 100 ppb, levels were generally reduced by up to 75% (to < 100 ppb) in offices with any one of three planting regimes. The results indicate the induction of the VOC removal mechanism at TVOC levels above a threshold of about 100 ppb. The aims of this laboratory dose-response study were to explore and analyse this response. Over from 5 to 9 days, doses of 0.2, 1.0, 10 and 100 ppm toluene and m-xylene were applied and replenished, singly and as mixtures, to potted-plants of the same two species used in the office study. The results confirmed the induction of the VOC removal response at the lowest test dosage, i.e in the middle of the TVOC range found in the offices, and showed that, with subsequent dosage increments, further stepwise induction occurred, with rate increases of several orders of magnitude. At each dosage, with induction, VOC concentrations could be reduced to below GC detection limits (< 20 ppb) within 24 h. A synergistic interaction was found with the binary mixtures, toluene accelerating m-xylene removal, at least at lower dosages. The results of these two studies together demonstrate that the potted-plant microcosm can provide an effective, self-regulating, sustainable bioremediation or phytoremediation system for VOC pollution in indoor air.
机译:室内空气中的挥发性有机化合物(VOC)负载通常明显高于室外负载,长期暴露会导致健康问题。我们以前的实验室研究表明,由初始剂量诱导的盆栽植物微观世界可以消除空气中挥发性有机化合物的高浓度,主要去除剂是盆栽混合微生物,并在植物/根区的微观世界中得以选择和维持。我们在上一篇论文中报告的办公室实地研究表明,当参考办公室(0家工厂)中的总VOC(TVOC)负载上升到大约100 ppb以上时,该水平通常降低多达75%(至<100 ppb)在具有三种种植制度之一的办公室中。结果表明,在高于约100 ppb阈值的TVOC浓度下,VOC去除机制的诱导。这项实验室剂量反应研究的目的是探索和分析这种反应。在5到9天的时间内,将0.2、1.0、10和100 ppm的甲苯和间二甲苯的剂量分别和以混合物形式分别补充到办公室研究中使用的两种相同的盆栽植物中。结果证实在最低测试剂量下(即在办公室内的TVOC范围的中间)诱导了VOC去除反应,并表明,随着剂量的增加,进一步的逐步诱导发生,速率增加了几个数量级。大小。在每种剂量下,通过诱导,VOC浓度可在24小时内降至GC检测限以下(<20 ppb)。发现与二元混合物具有协同相互作用,至少在较低剂量下甲苯加速了间二甲苯的去除。两项研究的结果共同表明,盆栽植物的缩影可以为室内空气中的VOC污染提供有效,自我调节,可持续的生物修复或植物修复系统。

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