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吸附作用

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Requires that adsorbate be adsorbed by the sample, at some reduced temperature, as a

需要在降低的温度下,由样品吸附吸附质作为纯吸附作用的函数。

The adsorption of the materials on both resins showed a favorable characteristic, and adsorption capacity increased with the increase of equilibrium concentration, and decreased with the increase of solution temperature.

本研究主要从吸附热力学和动力学方等方面就苯酚、水杨酸、对羟基苯甲酸和2,6-二羟基苯甲酸等有机物质在NDA-800和NDA-90超高交联吸附树脂上的吸附作用及传质过程进行了研究,以期为超高交联吸附树脂在该类精细化工生产废水治理与资源化中的应用提供一定理论基础。

The adsorption equilibrium constants K1 and K2 were calculated by the isothermal equation of surface stepwise ion exchange.

用分级离子交换等温式求出了平衡常数K1和K2.pH值是影响吸附作用的主要因素,随着pH值的增大沉积物与稀土离子的交换吸附作用相应增强。

And adsorption of jack bean proteins onto the amphoteric resin was studied in this paper. The amphoteric resin was in innersalt form. The results of adsorption experiments show that when the proteins are adsorpted into the amphoteric resin in the neutral phosphate buffer solution, the diffusion coefficient of protein is near twofold in 0.4 mol/L NaCl phosphate buffer solution than that in solution without salt, and the adsorption capacity of protein also rises at the same ti...

通过盐浓度对吸附的动力学和热力学影响的研究,结果表明,在中性磷酸盐缓冲液中,两性树脂吸附刀豆蛋白,有盐( 0 。4mol/L Na Cl)的比无盐的扩散系数提高将近一半,且吸附量增加,其吸附等温线的效率在最初始部分高于无 Na Cl时的;随着盐浓度( 0~ 1 mol/L Na Cl)的提高,树脂对蛋白的吸附量也变大,盐浓度提高时树脂膨胀体积的增大与蛋白吸附量的增加呈线性关系,内盐型两性树脂对大分子蛋白质的吸附作用与小分子高价离子的相似,同样是通过内盐键破裂吸附。

The exchange adsorption effect between sediments and praseodymium .

p H值是影响吸附作用的主要因素,随着 p H值的增大沉积物与稀土离子的交换吸附作用相应增

The analyses of electronic structures shows that the catalytic reactivities for H2 adsorption of the different surfaces are dependent on the numbers of s orbital bonding electrons around Fermi level for the uppermost layer metal atoms which interact directly with H2. It is easy to form vacancy for hydrogen atoms next to iron atom, which indicates that hydrogen atom cannot be escaped, but it is difficult to from vacancy for hydrogen atoms next to magnesium atom, which indicates that hydrogen atom can be escaped. Hence it is thought that the change of dehydrogenating properties of MgH2 with or without a little iron addition attributes to the weakened bonding between magnesium and hydrogen.

分析电子结构发现:空位缺陷有助H2吸附于Mg表面,与Mg(0001)表面最上层与H2直接产生吸附作用的金属原子在费米能级附近s轨道的成键电子数密切相关;在Fe合金化MgH2体系中,与合金化元素Fe近邻的H原子形成空位的难度增加,H原子较难释放;与Mg近邻的H原子形成空位的难度减少,H原子容易释放;Fe合金化导致Mg-H之间存在较弱的成键作用,因此,MgH2体系的解氢性能得到提高。

The effects of magnetic seed, aluminum sulphate and pH value on phosphorus adsorption, precipitation and coagulation were surveyed. The results made it clear that Al ion as precipitant and coagulant was the main effect factor on P removal; as adsorbent magnetic seed had little effect on P removal, but made the phosphate precipitate sink faster; pH value had effect on both precipitation and adsorption.

研究了磁种、硫酸铝、pH值等对磷的吸附、沉淀、凝聚的影响,结果表明:铝离子的沉淀作用是除磷的主要原因;磁种的吸附作用对除磷的贡献较小,但使磷酸盐沉淀物的沉降性能大大提高;pH值既影响沉淀作用,也影响吸附作用

Chitosan coagulates fine flocci together into lager, impact floccules and greatly strengthens the polymerization degree and coacervation force. The sedimentation rate and adsorption efficiency rise greatly. So the flocculation efficiency of this composite flocculant is superior to the single one.

无机絮凝剂CF-PAC、铝交联蒙脱石主要起吸附作用,而壳聚糖和PAM等有机高分子絮凝剂主要起吸附桥连作用,将细小的絮粒凝结在一起形成更大更致密的絮体,并使聚合度和凝聚力大大增强,从而使其沉降速度和吸附效率大大提高,起到优于单一絮凝剂的絮凝效果。

Inorganic flocculant CF-PAC、Al-pillared rectorite act as sorption mostly ; Meanwhile organic flocculant chitosan acts as the adsorption bridge mainly. Chitosan coagulates fine flocci together into lager、impact floccules and greatly strengthens the polymerization degree and coacervation force. The sedimentation rate and adsorption efficiency rise greatly. So the flocculation efficiency of this composite flocculant is superior to the single one.

无机絮凝剂CF-PAC、铝交联累托石主要起吸附作用,而壳聚糖主要起吸附桥连作用,将细小的絮粒凝结在一起形成更大更致密的絮体,并使聚合度和凝聚力大大增强,从而使其沉降速度和吸附效率大大提高,起到优于单一絮凝剂的絮凝效果。

Four different sorbents (CaSO4, kaoline, CaCO3 and bauxite) were used to make the control test of heavy metals; and different sorbents were found to have different adsorption of heavy metal. These sorbents not only had physical adsorption of heavy metals but also had chemical reaction between sorbents and heavy metals.

添加无水CaSO4,高岭土,铝土矿,无水CaCO3 4种不同的吸附剂,发现不同的吸附剂对不同的重金属有不同的吸附作用。4种吸附剂对重金属元素的吸附既有物理吸附,又有吸附剂与重金属之间的化学反应。

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但我们并不在乎沙场中的显露。

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啊!不用提了。提到肉,真是糟透了。

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