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Thermodynamic and kinetic insights into plant-mediated detoxification of lead, cadmium, and chromium from aqueous solutions by chemically modified Salvia moorcroftiana leaves

机译:通过化学修饰的丹参乳酪乳液从水溶液中介导植物介导的铅,镉和铬的热力学和动力学见解

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摘要

Thermodynamic and kinetic aspects for the biosorptive removal of Pb, Cd, and Cr metals from water using Chemically Modified Leaves of Salvia moorcroftiana (CMSML) were determined. Different parameters including pH, temperature, metal's initial concentration, biomass dosage, and contact time were optimized. Optimum biosorptions of Pb, Cd, and Cr were attained at pH values of 6.0, 7.0, and 3.0 respectively. Batch experiments showed maximum removal of both Pb and Cd at 40 degrees C and that of Cr at 30 degrees C. Biosorption capability of CMSML was observed to decrease with raising temperature. Optimal equilibrium times for Pb, Cd, and Cr uptake were 120, 60, and 120 min respectively. Based on the values of regression correlation coefficients (R-2), the current data is explained better by applying Langmuir isotherms than the Freundlich model. Maximum biosorbent capabilities (q(max)) for Pb, Cd, and Cr were approximately 270.27, 100.00, and 93.45 mg/g respectively. Thermodynamically, removal of all the three metal ions was shown to be exothermic and spontaneous.
机译:确定热力学和动力学方面用于使用化学改性丹参(CMSML)的水化学改性叶片的Pb,Cd和Cr金属的生物成分去除。不同的参数包括pH,温度,金属的初始浓度,生物质剂量和接触时间。 Pb,Cd和Cr的最佳生物素分别在6.0,7.0和3.0的pH值下获得。批量实验表明,在40℃下最大地除去Pb和Cd,并且在30摄氏度下的Cr的CMS的生物吸附能力下降以随着提高温度降低。 PB,Cd和Cr摄取的最佳平衡时间分别为120,60和120分钟。基于回归相关系数(R-2)的值,通过应用Langmuir等温比Freundlich模型更好地解释电流数据。 Pb,Cd和Cr的最大生物吸附能力(q(max))分别为约270.27,100.00和93.45 mg / g。热力学上,显示所有三个金属离子的除去是放热和自发的。

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