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Adsorption of Phosphate Ions on Chicken Feather Hydrochar and Hydrochar-Soil Mixtures

机译:磷离子对鸡池液和液体混合物的吸附

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The potential for hydrochar to adsorb phosphate ions (P) is important for understanding the influence of this material when added to soils, as it can amend and prevent nutrient leaching. In this study, the adsorption mechanism of P onto chicken feather hydrochar (CFH) and hydrochar mix alkaline soils was investigated. Batch experiments were conducted to discover the actual P adsorption process parameters of chicken feather hydrochar, incorporating initial P concentration, contact time, pH, and temperature of P solution. All experimental P adsorption data of hydrochar and hydrochar mix soils were better explained when using the Langmuir isotherm model compared to the Freundlich isotherm. The P adsorption capacities of CFH-soil 1, CFH-soil 2, CFH-soil 3, and CFH-soil 4 mixer were 21.93, 20.2, 19.2, and 20.7 mg/g, respectively. Temperature greatly improved P adsorption capacity of the chicken feather hydrochar and its adsorption capacities were 27.10, 29.7, and 33.4 m/g at 30, 40, and 50 degrees C, respectively. The adsorption kinetic data are best described using the pseudo-second order model. These results strongly suggest that the CFH has a lot of potential as a cost-effective material for adsorbing P and helping remediate environmental pollutants.
机译:对磷酸盐离子进行氢乙酸的可能性对于了解在加入土壤时理解这种材料的影响是重要的,因为它可以修改和预防营养浸出。在本研究中,研究了P上P上的吸附机制(CFH)和氢丙烯酸氢碱土壤。进行批量实验以发现鸡羽氨基的实际P吸附过程参数,含有初始P浓度,接触时间,pH和P溶液的温度。与Freundlich等温线相比,使用Langmuir等温线模型更好地解释了氢乙烯和氢丙烷混合物土壤的所有实验P吸附数据。 CFH - 土壤1,CFH - 土壤2,CFH-土壤3和CFH-土壤4混合器的P吸附容量分别为21.93,20.2,19.2和20.7mg / g。温度大大提高了鸡羽氨基的P吸附容量分别为30,40和50℃的吸附容量分别为27.10,29.7和33.4 m / g。使用伪二阶模型最佳地描述吸附动力学数据。这些结果强烈表明CFH具有大量潜力作为吸附P的成本效益,并帮助修复环境污染物。

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