• 使用吸附等温线种方式

    Here are five ways to use sorption isotherms.

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  • 测定吸附等温线探讨吸附机理

    The adsorption isotherm and the mechanism for the adsorption were investigated respectively.

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  • 钼酸根铁矿吸附等温线S

    S shape isotherms were observed for the adsorption of molybdate on goethite.

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  • 吸附等温线平衡方程序

    The absorption isotherms are equilibrium equations.

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  • 染料吸附可以多层吸附等温线来描述

    Dye adsorption can be described by a multilayer adsorption isotherm curve.

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  • 研究磷酸盐沉积物吸附等温线

    The absorption isotherm of phosphate to sediment...

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  • 计算了相应吸附等温线参数吸附动力学参数。

    The parameters of adsorption isotherm and kinetics are calculated.

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  • 丝光沸石吸附符合朗格·缪尔吸附等温线

    The adsorption behavior of ammonia nitrogen by mordenite fits the Langmiur isotherm well.

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  • 论文最后的有关吸附等温线理论进行了探讨。

    The related theory of adsorptive isotherm was studied about columniation layer analyse in the last of thesis.

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  • 此外研究了吸附等温线吸附动力学吸附热力学

    In addition to this, the isotherms, kinetics and thermodynamics of the biosorption were also studied.

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  • 真空重量法测取了自制吸附NANB吸附等温线

    The adsorption isotherms of adsorbents (NA and NB) were obtained by high vacuum gravimetric method.

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  • 由于沸石扩张,脱附等温线与原先吸附等温线有所不同

    As a result of the expansion of micropore in zeolites, the desorption isotherm is different from the adsorption isotherm.

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  • 结果表明吸附等温线很好的符合兰缪尔模型佛兰德利希模型

    It was observed that the adsorption isotherms are well represented by both the Langmuir and Freundlich isotherm models.

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  • 前沿分析法测定吸附等温线较为准确、快速经济方法之一

    Frontal analysis method is one of the accurate, precise, fast and economic method to determine the adsorption isotherm.

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  • 前沿分析法测定吸附等温线较为准确、快速经济方法之一。

    Frontal analysis method is one of the most accurate, precise, fast and economic method to determine adsorption isotherm.

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  • 测定了几种具有代表性的标准蛋白质疏水色谱填料上的吸附等温线

    Adsorption isotherms of proteins on hydrophobic surface were measured by frontal chromatography.

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  • 吸附实验确定了HPW12载体吸附平衡时间吸附等温线方程

    The balance time and isotherm equation for the adsorption of HPW12 on the carrier are determined.

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  • 土壤对多环芳烃吸附去除效果明显,其中吸附等温线线性

    The sorption of acenaphthene and phenanthrene was characterized by linear isotherm indicating solute partition between water and the organic phase in soil.

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  • 浓度大于0.1%,油砂表面吸附脱附达成平衡,吸附等温线出现平台。

    When the concentration of surfactant is above 0.1%, the adsorption and desorption on the reservoir sand are balanced, in which the adsorption isotherm is level.

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  • 研究表明:12种芳香族酮类化合物吸附等温线线性非线性形式。

    The results showed that the sorption behaviors of 12 substituted aromatic ketone compounds could be characterized by linear and non-linear isotherms suggesting different sorption mechanisms.

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  • 实验测定了水和乙醇改性内的吸附等温线给出了膜的吸附选择系数;

    The sorption isotherm for the system water-ethanol-modified membrane were inverstigated. The sorption selectivity factors for water-ethanol mixture were obtained.

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  • 本文首次提出77K下CO_2空气吸附等温线,并给出了实验结果

    The adsorption isotherm of dry air on CO2 forst at 77k is presented with experimental results given.

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  • 测定酯化硅胶物理结构水蒸气吸附等温线润湿热热分析红外光谱

    The physical structure, water vapor adsorption isotherms, heat of wetting, DTA and IR for esterified silica gel were determined.

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  • 采用序贯实验设计正葵烷5A分子筛吸附等温线实验进行了实验设计。

    A sequential experimental design procedure was applied to optimize parameter estimation for adsorption isotherm of n -decane on 5A molecular sieves.

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  • 通过吸附-脱附试验获得了乙醇-二元混合气体中水玉米粉吸附等温线

    By adsorption-desorption experiments, adsorption isotherms of water on corn meal in the presence of ethanol-water vapor mixture were obtained.

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  • 吸附机理比较复杂离子交换密切关系,常用吸附等温线评价微生物对重金属吸附能力

    Mechanism of biosorption is complex, and it has intimate relation to ion-change. Biosorption capacity of heavy metal was evaluated by isotherm.

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  • 通过ACF与ACFP氮气吸附等温线的分析,表明ACFP的吸附机理仍然微孔体积填充

    The adsorption principle of ACFP is micropore volume filling according to Nitrogen adsorption isotherm plot.

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  • 吸附表面能量分布不均匀性导出一个吸附等温线方程形式简单符合分子吸附机理

    A new isotherm equation is derived from the heterogeneity of adsorbent surface. It is simple in form and compatible physically with the mechanism of monolayer adsorption.

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  • 吸附表面能量分布不均匀性导出一个吸附等温线方程形式简单符合分子吸附机理

    A new isotherm equation is derived from the heterogeneity of adsorbent surface. It is simple in form and compatible physically with the mechanism of monolayer adsorption.

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