Gao Naiyuan, Liu Xianbin, Zhao Xingru. Influence of oil in soil on growth and physiological indexes of suaeda heteroptera and plant-microbial remediation[J]. Chinese Journal of Environmental Engineering, 2013, 7(4): 1578-1582.
Citation: Gao Naiyuan, Liu Xianbin, Zhao Xingru. Influence of oil in soil on growth and physiological indexes of suaeda heteroptera and plant-microbial remediation[J]. Chinese Journal of Environmental Engineering, 2013, 7(4): 1578-1582.

Influence of oil in soil on growth and physiological indexes of suaeda heteroptera and plant-microbial remediation

  • Received Date: 29/02/2012
    Accepted Date: 28/12/2011
    Available Online: 09/04/2013
    Fund Project:
  • The pot experiment was conducted to investigate the physiological indexes of Suaeda heteroptera and biodegradation of petroleum hydrocarbon contamination in sediments. The results showed that the antioxidant enzymes of Suaeda heteroptera could improve the activity rapidly to against adversity and it could also increase its chlorophyll content in leaves to adapt or compensate for the losses. The distribution results (root>stem>leaf) also showed that the distribution of pollutants in plant was different from nature circumstance(stem>leaf>root)which could be used as a basis for determining whether the sediments had been polluted. Biodegradation rates for adding plants and bacteria group, adding bacteria group, and adding plants group were 70.87%, 63.66%, and 60.26%, respectively. Suaeda heteroptera-microbial combined remediation got the highest biodegradation.
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Influence of oil in soil on growth and physiological indexes of suaeda heteroptera and plant-microbial remediation

Fund Project:

Abstract: The pot experiment was conducted to investigate the physiological indexes of Suaeda heteroptera and biodegradation of petroleum hydrocarbon contamination in sediments. The results showed that the antioxidant enzymes of Suaeda heteroptera could improve the activity rapidly to against adversity and it could also increase its chlorophyll content in leaves to adapt or compensate for the losses. The distribution results (root>stem>leaf) also showed that the distribution of pollutants in plant was different from nature circumstance(stem>leaf>root)which could be used as a basis for determining whether the sediments had been polluted. Biodegradation rates for adding plants and bacteria group, adding bacteria group, and adding plants group were 70.87%, 63.66%, and 60.26%, respectively. Suaeda heteroptera-microbial combined remediation got the highest biodegradation.

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