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首页> 外文期刊>Particulate Science and Technology: An International Journal >High efficiency of methylene blue removal using a novel low-cost acid treated forest wastes,Cupressus sempehrens cones:Experimental results and modeling
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High efficiency of methylene blue removal using a novel low-cost acid treated forest wastes,Cupressus sempehrens cones:Experimental results and modeling

机译:使用新型低成本酸处理的森林废物,Cupressus sempehrens锥体高效率 - 亚甲基蓝色去除:实验结果和造型

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The removal of methylene blue(MB) from aqueous solutions using sulfuric acid modified Cupressus semperirens cones(H2SO4-CSC),was investigated.Results showed that a pH value of 12 was favorable for the adsorption of MB and that the moisture and ash yields are suitable for industrial exploitation.A high porosity value was found,68.1%.In agreement with its low content of basicity compared to its acidity,the H2SO4-CSC absorbent had an acidic behavior.Rate constants of pseudo-first-order,pseudo-second-order,and nth kinetic model were determined to analyze the dynamic of the biosorption process;they showed that adsorption kinetics followed a pseudo-second-order and nth kinetic models,ionic strength was shown to have a negative impact on the biosorption of MB onto H2SO4-CSC.The Sips isotherm model was found to be the most relevant to describe MB biosorption onto H2SO4-CSC with a correlation factor R~2 > 0.999.The biosorption capacity of H2SO4-CSC was found to be 460 mg g^1 at 10°C and 590 mg g^1 at 25°C,confirming biosorbent efficiency for the removal of MB dye from aqueous solutions.Thermodynamic parameters indicated that the biosorption process of MB was endothermic and more effective at high temperatures.The values of ΔG° and ΔH° confirmed that the biosorption of MB onto H2SO4-CSC was spontaneous and endothermic in nature.An irregular increase in randomness at the H2SO4-CSC-solution interface during the biosorption process was suggested by the positive values of AS”.
机译:研究了使用硫酸修饰的upressus semperirens(H2SO4-CSC)的水溶液中除去亚甲基蓝(Mb)。结果表明,pH值为12的吸附MB,水分和灰分也是有利的适用于工业利用。发现高孔隙率值,与其酸度相比,其碱度低的碱性含量低68.1%,H2SO4-CSC吸收剂具有酸性行为。持续一阶的常数,伪秒决定了第n个动力学模型分析了生物吸附过程的动态;他们表明,吸附动力学遵循伪二阶和第n个动力学模型,显示离子强度对MB的生物吸附产生负面影响H2SO4-CSC。发现SIPS等温模型是最相关的,以描述MB生物吸附于H2SO4-CSC,相关因子R〜2> 0.999。发现H2SO4-CSC的生物吸收能力为460mg g ^ 1 10°C和590 mg G ^ 1在25℃下,确认从水溶液中除去Mb染料的生物动力学参数表明MB的生物吸收过程在高温下吸热和更有效。ΔG°和ΔH°的值证实了Mb的生物吸附于H 2 SO 4-CSC上是自然的,本质上的自发性和吸热。通过作为“的正值”提出了在生物吸附过程中H2SO4-CSC-溶液界面随机性的不规则增加。

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