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生物炭改良缓解辣椒镉胁迫及降低镉积累的效应。

Effects of biochar amendment on relieving cadmium stress and reducing cadmium accumulation in pepper.

机构信息

State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research, Beijing, 100038, China.

State Key Laboratory of Water Environment Simulation, School of Environment, Beijing Normal University, Beijing, 100875, China.

出版信息

Environ Sci Pollut Res Int. 2016 Jun;23(12):12323-31. doi: 10.1007/s11356-016-6264-6. Epub 2016 Mar 15.

Abstract

Biochar is widely used in agricultural soils or heavy metal-polluted soils to improve the quality of the soils, which would affect the growth of the plant. However, the information of biochars' effect on the plant growth was still lacking, especially for the physiological response of the plant. Pot experiments were used to examine the effect of willow-derived biochars at two temperatures (450 and 600 °C) on cadmium (Cd) accumulation in pepper and to reveal the response of physiological parameters to exogenous Cd stress (1 and 5 mg/kg). The results showed that the accumulation of Cd in pepper roots was higher than that in pepper shoots. For low level of Cd treatments, high additional rates of the biochars could obviously reduce the accumulation of Cd in the pepper roots. Moreover, there was a negative correlation between the C content of the biochar-amended soils and the Cd content of the pepper root, suggesting that the application of biochar to the soil decreased the Cd accumulation in the root. A positive relationship between the H/C ratios of biochar-amended soils and their corresponding Cd concentrations in pepper root indicated that low thermal temperature-derived biochar could play an important role in immobilizing Cd in the soil. Furthermore, on the condition of low Cd level of treatments, the malondialdehyde content decreased in biochar-amended soils, especially at high biochar application rate. The chlorophyll content increased with increasing the rates of the biochar application. The physiological parameters indirectly proved that the application of biochar did not always alleviate the toxic effects of Cd on pepper leaves at high Cd concentration.

摘要

生物炭广泛应用于农业土壤或重金属污染土壤中,以改善土壤质量,从而影响植物的生长。然而,生物炭对植物生长影响的信息仍然缺乏,特别是对植物的生理响应。盆栽实验研究了两种温度(450℃和 600℃)下柳树源生物炭对辣椒中镉积累的影响,并揭示了生理参数对外源镉胁迫(1 和 5mg/kg)的响应。结果表明,镉在辣椒根中的积累量高于辣椒茎中的积累量。对于低水平的镉处理,高添加率的生物炭可以明显减少镉在辣椒根中的积累。此外,生物炭添加土壤的 C 含量与辣椒根中镉含量呈负相关,表明生物炭的应用降低了根中镉的积累。生物炭添加土壤的 H/C 比值与辣椒根中相应镉浓度之间呈正相关,表明低热温度衍生的生物炭在土壤中固定镉方面发挥了重要作用。此外,在低镉处理条件下,生物炭添加土壤中的丙二醛含量降低,尤其是在高生物炭添加率下。叶绿素含量随着生物炭添加率的增加而增加。生理参数间接证明,在高镉浓度下,生物炭的应用并不总是能减轻镉对辣椒叶片的毒性影响。

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