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Zn相关的网络例句
与 Zn 相关的网络例句 [注:此内容来源于网络,仅供参考]

When the concentrations of tetrabutyl ammonium bromide and KI in solution were 5.0×10^(-4) mol/L and 3.0×10^(-3)mol/L at pH 3.0, Bi(superscript 3+) could be quantitatively separated from Mo, Ga(superscript 3+), Co(superscript 2+), Mn(superscript 2+), Zn(superscript 2+), Rh(superscript 3+), Al(superscript 3+), Cr, V, Ni(superscript 2+), Sn, W and Fe(superscript 2+).

当溶液中溴化四丁基铵和碘化钾的浓度分别为5.0×10^(-4) mol/L和3.0×10^(-3)mol/L和在PH3时,Bi(上标 3+)可与Mo,Ga(上标 3+),Co(上标 2+),Mn(上标 2+),Zn(上标 2+),Rh(上标 3+),Al(上标 3+),Cr,V,Ni(上标 2+),Sn,W和Fe(上标 2+)定量分离。

When the frequency is 15Hz and number of ampere turns is 20kA·turn, relative intracrytalline solubility of alloy elements (for Zn, Mg and Cu the solubility are 68.8%, 76.0% and 45.0%, respectively) is the highest; when the frequency is 15Hz and number of ampere turns is 20kA·turn, Vicker hardness is the highest of Hv160; when the frequency is 25Hz and number of ampere turns is 20kA·turn, ultimate tensile strength is the highest of 324MPa.

频率为15Hz,安匝数为20kA·turn时, Zn、 Mg和Cu元素相对溶质固溶百分数最高,分别为68.8%、 76.0%和45.0%;频率为15Hz,安匝数为20kA·turn时,锭坯维氏硬度最高为Hv160;频率为25Hz,安匝数为20kA·turn时,抗拉强度最高为324MPa。

When leaves cleared up in the aqua fortis and perchloric acid, the contents of Cu Zn and Mn can influence the measurement of flame spectrophotometry.

用浓硝酸与高氯酸消解树叶,Cu、Zn及Mn含量较高,可直接用火焰原子吸收法测定。

By using AAS and XRF, the contents of Cr, Pb, Mn, As, Se, Hg, Cd, Zn in raw coal, bottom ash and fly ashes are measured quantitatively in a 220 t/h pulverized coal boiler. Factors affecting the distribution of trace elements are investigated, including fly ash diameter, furnace temperature, oxygen content and trace elements' characters. The coefficient of Meij is also improved to more directly show element enrichment in combustion products. Elements may be classified into three groups according to volatility features of trace elements.

采用原子吸收分光光度计和X射线荧光光谱仪,定量测定了电厂煤粉炉中原煤、底渣、飞灰中Cr、Pb、Mn、As、Se、Hg、Cd、Zn等微量元素的含量,分析了飞灰粒径、炉膛温度、炉内含氧量、微量元素自身性质对微量元素赋存、挥发特性的影响,并根据元素的挥发特性将元素进行分类,得出表征微量元素排放特性的3种数值,并与我国和欧盟垃圾焚烧微量元索排放标准相对照。

ZA alloy is based on Zn and composed of Al, Cu, Mg added as alloying elements. It is a kindof environmental friendly material that possesses characteristics of high strength, better plasticity,excellent wear resisting property, low friction coefficient and high specific strength, low meltingpoint and no magnetic. ZA alloy has been widely applicated in the fabrication of mechanical partsand models, such as bearing, axle sleeve, pressing plate and turbine. However, the joiningproblem of ZA alloy that hasnt been solved has limited its application in some fields.

ZA合金是以Zn为基,添加了Al、Cu、Mg等合金元素,具有强度高、塑性好、耐磨性优良、摩擦系数低及较高的比强度、低的熔点、无磁性等特点的环保材料,广泛应用于制造轴承、轴瓦、压板、涡轮等机械零件及模具等,但由于连接问题没有解决限制了ZA合金在一些领域的应用,也因此成为ZA合金急亟待解决的问题之一。

The process, bath formula, coating quality and electrolyte performance of bright alkaline Zn-Al Alloy electroplating are studied.

研究了光亮碱性电镀Zn-Al合金的工艺配方、镀层质量和镀液性能。

Ni nanowire arrays compounded with Zn were fabricated by electrodeposition using porous anodic aluminum oxide membrane as templates in acidic coating bath at room temperature.

采用直流电化学沉积方法,在多孔阳极氧化铝模板纳米孔洞中制备出直径约90nm,长度超过10μm的金属Ni/Zn纳米线有序阵列。

The amount of Na(superscript +), NH4(superscript +), K(superscript +), Mg(superscript 2+), Ca(superscript 2+), Zn(superscript 2+) in fruits and juice (sports water, green tea , pear juice, carrot juice and carrot and orange juice) were respectively separated and detected by non-suppressed ion chromatography. And pyridine-2, 6-dicarbexylic was used as mobile phase to separated monovalent cations and pyridine-2, 6-dicarbexylic-ethylenedi-amine-oxalic acid was used as mobile phase to separated divalent cations.

采用非抑制型离子色谱法测定了水果以及饮料(运动型饮料、绿茶、水蜜桃汁、胡萝卜汁和胡萝卜橙汁)中Na、NH4、K、Mg(上标 2+)、Ca(上标 2+)、Zn(上标 2+)的含量,其中一价阳离子以吡啶-2,6-二羧酸为淋洗液测定,二价阳离子以吡啶-2,6-二羧酸+乙二胺+草酸为淋洗液测定。

The dual, ternary and quarternary alloy zinc powder of Zn, Pb, Bi, In were prepared by using the negative electrodeposition in the chloride electrolyte system in this paper.

本文采用阴极电沉积的方法在氯化物电解液体系中分别制备出Zn,Pb,Bi,In的二元,三元和四元合金锌粉。

The presence of Mg〓 will change the crystallization process of calcium carbonate and produce aragonite scale. The presence of Zn〓 can prevent the formation of the crystal nucleus of calcium carbonate and then prevent the scale.

当水的硬度、温度增加时,水的结垢速率增加;SO〓和NaCl含量增加,能使水的结垢速率略有增加;Mg〓能改变碳酸钙的结晶过程并产生文石状的水垢;Zn〓的参与能明显阻碍碳酸钙微晶核的生成,从而达到阻垢的目的。

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