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脉冲电场作用对植物释放负离子的影响

吴仁烨1,邓传远2,杨志坚3,翁海勇4,朱帖俊容3,郑金贵3**   

  1. (1福建农林大学作物科学学院,  福州 350002; 2福建农林大学园林学院, 福州 350002; 3福建农林大学农产品品质研究所, 福州 350002; 4福建农林大学机电工程学院, 福州 350002)
  • 出版日期:2015-02-18 发布日期:2015-02-18

Negative air ions generated by plants upon pulsed electric field stimulation applied to soil.

WU Ren-ye1, DENG Chuan-yuan2, YANG Zhi-jian3, WENG Hai-yong4, ZHU Tie-jun-rong3, ZHENG Jin-gui3   

  1. (1College of Crop Science, Fujian Agriculture and Forestry University, Fuzhou 350002, China; 2College of Landscape Architecture, Fujian Agriculture and Forestry University, Fuzhou 350002, China; 3Agricultural Product Quality Institute, Fujian Agriculture and Forestry University, Fuzhou 350002, China; 4College of Mechanical and Electronic Engineering, Fujian Agriculture and Forestry University, Fuzhou 350002, China)
  • Online:2015-02-18 Published:2015-02-18

摘要:

在脉冲电场作用下对蟹爪兰等10种植物释放负离子的能力进行研究.结果表明:在自然状态下,10种植物释放负离子的能力很弱,吊兰和绯牡丹的24 h浓度均值最高,为43 ion·cm-3,金边龙舌兰最低,为19 ion·cm-3,当适当强度的脉冲电场作用在植物的根际土壤时,10种植物较自然状态下(未刺激)释放负离子的能力均大幅提高,以脉冲电压2.0×104 V、脉冲频率1 Hz、脉冲宽度50 ms的脉冲电场效果最佳,10种植物中释放负离子浓度最高的为寒兰,达1454967 ion·cm-3,是自然状态下的48498.9倍;最低为蟹爪兰为34567 ion·cm-3,是自然状态下的843.1倍.在不同强度脉冲电场作用下,植物释放负离子的能力差异显著.
 

Abstract: This paper investigated the capacity of plants (Schlumbergera truncata, Aloe vera var. chinensis, Chlorophytum comosum, Schlumbergera bridgesii, Gymnocalycium mihanovichii var. friedrichii, Aspidistra elatior, Cymbidium kanran, Echinocactus grusonii, Agave americana var. marginata, Asparagus setaceus) to generate negative air ions (NAI) under pulsed electric field stimulation. The results showed that single plant generated low amounts of NAI in natural condition. The capacity of C. comosum and G. mihanovichii var. friedrichii generated most NAI among the above ten species, with a daily average of 43 ion·cm-3. The least one was A. americana var. marginata with the value of 19 ion·cm-3. When proper pulsed electric field stimulation was applied to soil, the  NAI of ten plant species were greatly improved. The effect of pulsed electric field u3(average voltage over the pulse period was 2.0×104 V, pulse frequency was 1 Hz, and pulse duration was 50 ms) was the greatest. The mean NAI concentration of C. kanran was the highest  1454967
ion·cm-3, which was 48498.9 times as much as that in natural condition. The lowest one was S. truncata with the value of 34567 ion·cm-3, which was 843.1 times as much as that in natural condition. The capacity of the same plants to generate negative air ion varied extremely under different intensity pulsed electric fields.