首页> 外文期刊>Saudi Journal of Biological Sciences >The effects of biochars produced in different pyrolsis temperatures from agricultural wastes on cadmium uptake of tobacco plant
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The effects of biochars produced in different pyrolsis temperatures from agricultural wastes on cadmium uptake of tobacco plant

机译:农业废弃物不同皮层温度产生的生物谱对烟草植物镉吸收的影响

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Abiotic stresses caused by cadmium (Cd) contamination in soil retard plant growth and decline the quality of food. Amendment of biochar was reported effective in reduction of mobility, plant uptake and toxicity of Cd in plants. The aim of this study was to investigate the effect of biochar applications produced from corn cob and rice husk at three different pyrolysis temperatures (400, 500 and 600?°C) on Cd uptake of tobacco plants. The results showed that the shoot Cd concentration and content of tobacco plants significantly increased with the application of Cd in increasing doses. The results showed that increasing Cd dosescaused significant increase (P??0.01) in shoot Cd concentration and content of the tobacco plant at three different pyrolysis temperatures of both corn cob and rice husk biochars. The concentration of Cd was 0.48?mg?kg ?1 in Cd0 dose of corn cob biochar produced at 500?°C and increased to 61.6?mg?kg ?1 at Cd5, while Cd concentration increased to 72.3?mg?kg ?1 with rice husk biochar. Despite the increase in Cd concentrations and content, shoot Cd concentrations and contents were significantly (P??0.01) reduced with the treatments of corn cob and rice husk biochars produced at different pyrolysis temperatures. The Cd concentration at Cd5 dose in the absence of biochar addition was 90.5?mg?kg ?1 , while Cd concentration at Cd5 dose in 400, 500 and 600?°C treatments of corn cob biochar was reduced to 66.5, 61.6 and 67.3?mg?kg ?1 respectively, and to 77.0, 72.3 and 70.2?mg?kg ?1 in rice husk biochar. The results also revealed that corn cob biochar treatments were more effective in reducing Cd uptake of tobacco plants compared to rice husk biochar. Higher specific surface area of corncob biochar compared to rice husk biochar caused to the difference between two biochar sources on Cd uptake of tobacco plants.
机译:由镉(CD)污染在土壤延迟植物生长中引起的非生物胁迫,并拒绝食物质量。据报道,生物炭修正案有效减少植物中CD的迁移力,植物摄取和毒性。本研究的目的是调查在烟草植物的CD吸收的三种不同热解温度(400,500和600°C)中从玉米棒和稻壳生产的生物炭和稻壳产生的影响。结果表明,在增加剂量时,CD的施用显着增加了射击Cd浓度和烟草含量显着增加。结果表明,在玉米棒和稻壳生物谱两种不同热解温度下,增加CD上的CD DoseSusused在芽Cd浓度和烟草植物的含量中的显着增加(p≤0.01)。 Cd的浓度为0.48Ω·kgα1,在CD0的CD0剂量下在500Ω·℃下产生,并在CD5上升高至61.6Ω·kg≤1,而Cd浓度增加至72.3Ω·mg?kg?1用米壳生物炭。尽管Cd浓度和含量增加,但芽CD浓度和含量显着(p≤≤0.01),随着在不同热解温度的处理中产生的玉米棒和稻壳生物谱处理。在没有生物炭加成的情况下CD5剂量的Cd浓度为90.5Ω·kg?1,而CD5剂量的CD浓度在400,500和600Ω·℃的玉米棒炭处理中减少到66.5,61.6和67.3?分别为77.0,72.3和70.2?mg?kg?1在稻壳biochar中的mg?1分别为77.0,72.3和70.2?结果还表明,与稻壳生物炭相比,玉米玉米棒生物炭治疗在减少烟草植物的CD摄取方面更有效。康斯科尔生物炭的较高比表面积与稻壳生物炭相比,对烟草植物的镉吸收的两个生物炭源之间的差异。

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