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首页> 外文期刊>Environmental Science and Pollution Research >Phytoremediation of Cadmium-Contaminated Soils by Rorippa globosa Using Two-Phase Planting
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Phytoremediation of Cadmium-Contaminated Soils by Rorippa globosa Using Two-Phase Planting

机译:两相种植法对球根草进行镉污染土壤的植物修复

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Background. Phytoextraction of contaminated soils by heavy metals can provide a great promise of commercial development. Although there are more than 400 species of hyperaccumulators found in the world, phytoremediation technology is rarely applied in field practice for remedying contaminated soils, partially due to low biomass and long growth duration for most of discovered hyperaccumulating plants. In order to enhance the metal-removing efficiency in a year, the two-phase planting coun-termeasure of phytoextraction by harvesting anthesis biomass was investigated on the basis of the newly found Cd-hyper-accumulator Rorippa globosa (Turcz.) Thell. with 107.0 and 150.1 mg/kg of the Cd accumulation in stems and leaves, respectively, when soil Cd added was concentrated to 25.0 mg/kg. Methods. The field pot-culture experiment was used to observe the distribution property of R. globosa aboveground biomass and to examine characteristics of accumulating Cd by the plant at different growth stages. The concentration of Cd in plants and soils was determined using atomic absorption spectropho-tometry (AAS). Results and Discussion. The results indicated that the total dry stem and leaf biomass of R. globosa harvested at the flowering phase was up to 92.3 percent of that at its full maturity and the concentration of Cd in stems and leaves harvested at the flowering phase was up to 73.8 percent and 87.7 percent of that at the mature phase, respectively. The Cd-removing ratio by shoots of R. globosa harvested at the flowering phase was up to 71.4 percent of that at the mature phase. It was also found, by observing the growth duration of R. globosa, that the frostless period at the experiment site was twice as long as the growth time from the seedling-transplanted phase to the flowering phase of the hyperaccumulator. Conclusion. R. globosa could be transplanted into contaminated soils twice in one year by harvesting the hyperaccumulator at its flowering phase based on climatic conditions of the site and traits of the plant growth. In this sense, the extraction efficiency of Cd in shoots of R. globosa increased 42.8 percent compared to that of at its single maturity when the plant was transplanted into contaminated soils after it had been harvested at its flowering phase and the plant accumulated Cd from soil at the same extraction ratio at its second flowering phase. Thus, the method of anthesis biomass regulation by the two-phase planting is very significant to increase the Cd-removing efficiency by phytoremediation used in practice over the course of a year. Recommendation and Outlook. As for some hyperaccumulators that the growth duration from the seedling-transplanted phase to the flowering phase are short and the concentrations of heavy metals accumulated in their shoots at the flowering phase are high, the efficiency of phytoremediation can greatly be improved using the method of the two-phase planting.
机译:背景。植物提取重金属污染的土壤可以为商业发展提供广阔的前景。尽管世界上发现了400多种超蓄积植物,但植物修复技术很少在野外实践中用于修复受污染的土壤,部分原因是大多数发现的超蓄积植物的生物量低且生长持续时间长。为了提高一年中的金属去除效率,在新发现的镉超积累型Rorippa globosa(Turcz。)Thell的基础上,研究了通过收获花药生物量进行植物提取的两阶段种植对策。当添加的土壤Cd浓缩至25.0 mg / kg时,茎和叶中Cd的累积量分别为107.0和150.1 mg / kg。方法。田间盆栽试验用于观察球状红景天地上生物量的分布特性,并考察植物在不同生长阶段对镉的累积特征。使用原子吸收分光光度法(AAS)测定植物和土壤中Cd的浓度。结果与讨论。结果表明,在开花期收获的红球菌干茎和叶片总生物量高达成熟期的92.3%,在开花期收获的茎叶中Cd的含量高达73.8%。和成熟阶段分别为87.7%。开花期收获的球茎芽的Cd去除率高达成熟期的71.4%。通过观察球形红球藻的生长持续时间,还发现在实验部位的无霜期是从超级蓄积苗移植到开花期的两倍。结论。根据现场的气候条件和植物生长的特性,可以通过在开花期收获高蓄积体,在一年内两次将球状体移入受污染的土壤中。从这个意义上讲,球根红球菌的芽中Cd的提取效率比单成熟时将其在开花期收获并从土壤中积累Cd的植物移植到受污染的土壤中时提高了42.8%。在第二个开花阶段以相同的提取比例。因此,在一年的实践中,通过两阶段种植来调节花药生物量的方法对于通过植物修复来提高Cd去除效率非常重要。建议和展望。对于一些高蓄积植物,从幼苗移植期到开花期的生长时间短,并且在开花期芽中积累的重金属浓度很高,因此使用这种方法可以大大提高植物修复的效率。两期种植。

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