首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Evaluating Biochar Impact on Topramezone Adsorption Behavior on Soil under No-Tillage and Rotary Tillage Treatments: Isotherms and Kinetics
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Evaluating Biochar Impact on Topramezone Adsorption Behavior on Soil under No-Tillage and Rotary Tillage Treatments: Isotherms and Kinetics

机译:在免耕和轮耕处理下评估生物炭对土壤Topramezone吸附行为的影响:等温线和动力学

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摘要

The evaluation of biochar application on the adsorption behavior of topramezone on soil under no-tillage (NT) and rotary tillage treatments (RT) has been assessed. Fourier Transform Infra-Red Spectrometry (FTIR), scanning electron microscopy (SEM), and Brunauer–Emmett–Teller) (BET) were used for the biochar characterization. Batch experiments were carried out in a laboratory to assess the adsorption of topramezone on soil through equilibrium and kinetic modeling under biochar addition. The clay content has been found to be higher under NT (18.24 ± 0.01) than under RT (15.91 ± 0.02). The total organic carbon was higher under NT. The topramezone adsorption equilibrium reached after 8 and 12 h, for NT and RT, respectively. The kinetic and thermodynamic analyses showed the adsorption under both treatments matched with pseudo-second-order kinetic and Langmuir models, respectively. After biochar addition, the pesticide adsorption capacity (40 < 25 < 15 °C) increased with decreasing temperature suggesting an exothermic adsorption process while negative values of Gibbs free energy (ΔG); −1848.07 and −366.531 J mol ; for the soil under NT and RT at 25 °C, respectively, indicated spontaneous adsorption. Negative entropy values (ΔS); −21.92 and −78.296 J mol K , for NT and RT, respectively, explained a decreased randomness process. The enthalpy was higher ( < 0.05) under RT (−23,274.6 J mol ) than under NT (−1313.73 J mol ). Conclusively, it was shown that the topramezone adsorption capacity was higher under NT, and biochar addition increased more pesticide adsorption under NT than under RT.
机译:评估了生物炭对免耕(NT)和旋转耕作(RT)处理下对pra草酮在土壤上的吸附行为的评价。傅里叶变换红外光谱(FTIR),扫描电子显微镜(SEM)和Brunauer-Emmett-Teller(BET)用于生物炭表征。在实验室中进行了批处理实验,以通过添加生物炭的平衡和动力学模型来评估托普拉美在土壤上的吸附。发现在NT下(18.24±0.01),粘土含量高于RT下(15.91±0.02)。在NT下,总有机碳较高。 NT和RT分别在8和12 h后达到了topramezone的吸附平衡。动力学和热力学分析表明,两种处理下的吸附分别与拟二阶动力学模型和Langmuir模型匹配。添加生物炭后,农药的吸附量(40 <25 <15°C)随着温度降低而增加,这表明放热吸附过程,而吉布斯自由能(ΔG)为负值; −1848.07和−366.531 J mol;在25°C下在NT和RT下对土壤的吸附表示自发吸附。负熵值(ΔS);对于NT和RT,分别为-21.92和-78.296 J mol K解释了减少的随机过程。在室温(−23,274.6 J mol)下,焓比在NT下(-1313.73 J mol)高(<0.05)。结论是,在NT下对托拉me的吸附能力更高,在RT下生物炭的添加增加了农药的吸附。

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