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But it inhibits the production of hydrogen,accelerates silver electrode process,and increases the degree of reversibility of electrode process.

深入理解添加剂对金属电沉积和析氢过程的影响,获得添加剂在金属电极表面的吸附作用及电化学行为的信息是很有必要的。

With the improvement of Si/Al ratio, total BET surface area decreased and mesopore volume increased, which favored the diffusion of feed/isomerized products, avoided too much secondary reaction and improved the selectivity of isomers.

磷钨酸可以使得分子筛的孔道阻塞,使其内部的酸中心和金属中心无法得到体现,因此,催化剂的金属功能受到限制,烷烃的氢解反应减少,产物中的甲烷和庚烷量下降。

Chapter 2: Four sulfur-containing D-glucosamine metal complexes have been synthesized M-GLUS,M = Co, Cu, Ni, Zn)and characterized by elementary analysis, molar conductance, and proton nuclear magnetic resonance.

第二章:合成了四种含硫氨基葡萄糖金属配合物(M-GLUS,M = Co, Cu, Ni, Zn),利用元素分析,摩尔电导,核磁共振氢谱进行了结构表征,结果表明含硫配体与这四种二价金属离子均形成了2:1型非电解质配合物。

The analysis of decomposition mechanisms of the catalyst surface revealed that one of the mechanisms is that activated gas phase O2 captures the hydrogen of the organic pollutants to produce free radicals, which then initiate the catalytic reaction, and produce CO2 and H2O ultimately; and the other mechanism is that the activated organic compounds attack the crystal lattice oxygen, which reduces the valances of the transition metals, then the oxidant of the oxygen oxidizes the transition metals to high valances, which realize the self oxidation-reduction of the catalyst.

催化剂表面有机物降解的机理分析表明,一种反应机理为气相中的O2活化后直接夺取有机污染物的氢,产生自由基,并引发催化反应,最终生成CO2和H2O;另一种反应机理为活化后的有机物直接进攻催化剂的晶格氧,并且使得过渡金属由高价态变为低价态,反应气中的O2再将低价态的金属氧化为高价态,实现催化剂自身的氧化还原循环。

Metal oxides which are present on the catalyst surface are converted in a conditioning step into metal sulphides, which provide the hydrogenation component of the bi-functional catalyst.

出现在催化剂表面的金属氧化物在预处理阶段转化为金属硫化物,该硫化物提供双功能催化剂的加氢成份。

Kinetic investigation about Pt/TiO〓 catalyst and adding transition metal, rare-earth metal to Pt/TiO〓 catalyst on the hydrogenation of CNB.

初步探讨了Pt/TiO〓催化剂以及添加过渡金属和稀土金属催化剂上氯代硝基苯催化加氢的反应动力学。

The cause of weldmetal porosity is the contaminations of hydrogen in the weld metal.

焊接金属中的氢污染是造成焊接金属的多孔性的原因。

The thesis are divided into two parts. In the first part, we used 2,4,6-trichloro-1,3,5-triazine as the precursor to react with sodium which have been achieved by decomposing sodium hydrate at 623 K. At a low reaction temperature of 623 K, carbon nitride nanosphere、porous carbon nitride material and byproduct sodium chloride, would be produced.

本研究将分成两部份,第一部分是在低温下(623 K)将氢化钠粉末热裂解,生成表面积较大的熔融态金属钠,使气态的氰尿醯氯通入与熔融态金属钠在623 K反应,生成奈米氮化碳球、奈米孔洞性氮化碳材料及副产物氯化钠。

In this dissertation, a kind of MPc and five metallonaphthalocyanine were synthesized. The molecular structure of the compounds were characterized by means of the elemental analysis, the infrared spectrum and the nuclear magnetic resonance spectrum, which proved that the topical compounds were successfully synthesized.

本文设计并合成了五种叔丁基取代的金属萘酞菁化合物和一种金属酞菁化合物,通过元素分析、红外光谱分析、核磁共振氢谱分析等对目标产物进行了结构表征,验证了所合成化合物的结构。

The metals, such as Fe, Cu and Co, which can be reduced by KBH〓, can not change the catalytic properties obviously if only small amount of them are added to Ni-B alloys; those who can not react with KBH〓, such as Zn〓, are washed out during the preparation, so they also can not change the catalytic properties; while addition of the elements in VIB group, such as Cr, Mo and W, can increase the hydrogenation activity magnificently.

同样,我们通过添加第三组分来修饰Ni-B合金,可以被还原的金属,如Fe、Co、Cu等,少量添加并不能明显改变其反应性能;而与KBH〓不发生反应的金属,如Zn,以离子形式加入后,除了少量离子被吸附在催化剂表面外,基本不残留在催化剂里,因此对反应性能也没有太大的改变;只有VIB族元素,如Cr、Mo、W的加入才会很大改进Ni-B催化剂在蒽醌加氢中的催化性能,尤以Cr的修饰作用最好。

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According to the clear water experiment, aeration performance of the new equipment is good with high total oxygen transfer coefficient and oxygen utilization ratio.

曝气设备的动力效率在叶轮转速为120rpm~150rpm时取得最大值,此时氧利用率和充氧能力也具有较高值。

The environmental stability of that world - including its crushing pressures and icy darkness - means that some of its most famous inhabitants have survived for eons as evolutionary throwbacks, their bodies undergoing little change.

稳定的海底环境─包括能把人压扁的压力和冰冷的黑暗─意谓海底某些最知名的栖居生物已以演化返祖的样态活了万世,形体几无变化。

When I was in school, the rabbi explained everythingin the Bible two different ways.

当我上学的时候,老师解释《圣经》用两种不同的方法。