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Under the same condition,the maxi-um 〓 adsorption for goethite was 3,3.5,and 8 times as kaolinite,bayeriteand gibbsite respectively,and also the maxium 〓 adsorption of YB colloid was1.4,3,and 7 times as that of 〓 LR colloids respectively.
同样条件下针铁矿对〓的最大吸附量分别相当于高岭石、三羟铝石、三水铝石的3,3.5,8倍;黄棕壤胶体对〓的最大吸附量相当于红壤胶体〓的1.4倍,红壤胶体〓的3倍,砖红壤的7倍。
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However the addition order of tartrate and phosphate on activity of enzyme adsorbed by goethite produced the greatest impact.
胶体表面类型(硅氧烷表面或羟基化表面)及阴离子配体对胶体表面负电荷的贡献量在酶的吸附及活性保持中的重要性;B阴离子配体后加入时酶的吸附量一般比配体先加入时的高;C)配体加入顺序对二氧化锰的影响最显著,对砖红壤和高岭石的居中;对针铁矿的次之;对黄棕壤的最小。D)乙酸或草酸加入顺序对高岭石上固定化酶比活性的影响最大,而酒石酸或磷酸则对针铁矿影响最大。
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The effect of the concentration, pH of several ligands such as acetate, oxalate, tartrate and phosphate solution and their orders added on the adsorption and activity of BSA and acid phosphatase on yellow brown soil, latosol, kaolinite, goethite and -MnO2 was first systematically studied by using batch and FTIR methods after analyzed and studied the relative literature that reported in the world.
论文在分析总结了国内外有关研究的基础上,用批量法和傅立叶变换红外光谱法首次系统地研究了乙酸、草酸、酒石酸和磷酸几种配体的浓度、pH及加入顺序对牛血清白蛋白、酸性磷酸酶在黄棕壤、砖红壤、高岭石、针铁矿和二氧化锰表面的吸附行为及活性的影响,探讨了这些配体对蛋白吸附机理及二级结构的影响。
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The effect of the concentration, pH of several ligands such as acetate, oxalate, tartrate and phosphate solution and their orders added on the adsorption and activity of BSA and acid phosphatase on yellow brown soil, latosol, kaolinite, goethite and δ-MnO〓 was first systematically studied by using batch and FTIR methods after analyzed and studied the relative literature that reported in the world. The impact of these ligands on the adsorption mechanism and secondary structure of protein was simultaneously engaged.
论文在分析总结了国内外有关研究的基础上,用批量法和傅立叶变换红外光谱法首次系统地研究了乙酸、草酸、酒石酸和磷酸几种配体的浓度、pH及加入顺序对牛血清白蛋白、酸性磷酸酶在黄棕壤、砖红壤、高岭石、针铁矿和二氧化锰表面的吸附行为及活性的影响,探讨了这些配体对蛋白吸附机理及二级结构的影响。
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The experiment result shows that if Iron in the pickle of copper-smelting smoke ash is removed by Oxygen or oxidation combined with Hydrogen peroxide, Iron removing rate is 90%.
常用除铁方法主要有 [1 ,2 ] :(1 )直接鼓风氧化生成针铁矿的形式除铁;(2 )用生成磷酸盐沉淀的方法除铁;(3 )用黄钾铁矾法除铁;(4)用过氧化氢氧化除铁;(5 )采用溶剂萃取法分离铁。
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The adsorption of goethite, hematite and amorphous ferrihydrite for phosphate was studied through the isothermal adsorption experiment.
本文通过铁氧化物对水溶液中磷酸根的等温吸附实验,初步对比研究了针铁矿、合成氧化铁黄、赤铁矿和无定形氢氧化铁对水中低浓度磷的吸附作用。
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Isothermal adsorption of phosphate on goethite, hematite and amorphous ferrihydrite is in accordance with the Freundlich equation.
几种铁氧化物对磷吸附容量的差别主要受比表面积控制。无定形氢氧化铁、合成氧化铁黄、针铁矿、赤铁矿对磷的吸附符合Freundlich等温方程。
- 更多网络解释与黄针铁矿相关的网络解释 [注:此内容来源于网络,仅供参考]
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pyrrhotine; pyrrhotite:磁黄铁矿
"pyrrhosiderite; goethite","针铁矿" | "pyrrhotine; pyrrhotite","磁黄铁矿" | "pyrrhotite peridotite","磁黄铁橄榄岩"
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xanthosiderite:黄针铁矿
xanthopsy 黄视症 | xanthosiderite 黄针铁矿 | xanthosis 黄肤症
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xanthosis:黄肤症
xanthosiderite 黄针铁矿 | xanthosis 黄肤症 | xanthospermous 有黄色种子的