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中国农学通报 ›› 2013, Vol. 29 ›› Issue (13): 150-152.doi: 10.11924/j.issn.1000-6850.2012-3288

所属专题: 园艺

• 林学 园艺 园林 • 上一篇    下一篇

室内观赏植物甲醛吸收特性研究

张鑫鑫 丰震 谷衍川 钱见平   

  • 收稿日期:2012-10-07 修回日期:2012-10-22 出版日期:2013-05-05 发布日期:2013-05-05

Research on Absorptive Characteristic of Indoor Ornamental Plant on Formaldehyde

  • Received:2012-10-07 Revised:2012-10-22 Online:2013-05-05 Published:2013-05-05

摘要: 为了确定不同植物吸收甲醛的能力大小,为采用植物治理居室内有害物质的方法提供科学依据,选用4种常用的植物材料,将盆土与植物地上部分隔开,放入自行研制的甲醛熏蒸箱内,进行甲醛熏蒸,单位叶面积吸收甲醛量为标准,进行排序比较,选出对甲醛敏感的植物。结果表明,(1)植物吸收甲醛能力大小依次为:碰碰香(Plectranthus tomentosa)、豆瓣绿(Peperomia tetraphylla)、吊竹梅(Tradescantia zebrine)、文竹(Aspargus plumosus)。(2)文竹对甲醛感应敏感,可作为甲醛监测植物。(3)在甲醛浓度为6 mg/m3和12 mg/m3时,碰碰香、豆瓣绿、吊竹梅吸收甲醛的量随着甲醛浓度的倍增而倍增。在甲醛浓度为24 mg/m3以上时,碰碰香、吊竹梅对甲醛的吸收率逐渐下降,而豆瓣绿对甲醛的吸收率保持在稳定状态,无很大变化。

关键词: 北京地区, 北京地区

Abstract: In order to provide the scientific evidence for the method to determine different absorption capacity on formaldehyde of indoor ornamental plants. The author chose 4 species of indoor ornamental plants. Pot and soil were separated from the haulm and put into a self-designed fumigating box to conduct formaldehyde experiment. The author measured the change of formaldehyde and the plant leaf area before and after the experiment, and compared the ability of the 4 plants to absorb formaldehyde based on the reduction of formaldehyde in the unit leaf area. The results showed that: (1) their absorption capacity was as follows: Plectranthus tomentosa>Peperomia tetraphylla>Aspargus plumosus. (2) Tradescantia zebrine was particularly sensitive to formaldehyde, which could be used for monitoring formaldehyde. (3) When the formaldehyde concentration of 6 mg/m3 and 12 mg/m3, Plectranthus tomentosa, Peperomia tetraphylla and Aspargus plumosus absorbed the amount of formaldehyde with formaldehyde concentration multiply and multiply. But when the formaldehyde concentration was 24 mg/m3, Plectranthus tomentosa and Tradescantia zebrine on formaldehyde absorption rate declined gradually. While the Peperomia tetraphylla of formaldehyde absorption rate remained at a steady state.