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Which has substituted such traditional technologies as Zinc electroplating, Chromium electroplating, Zinc hot-dipping , Zinc hot spraying, phosphorize etc

取代了电镀、电镀镉、热浸、热喷、磷化等传统工艺技术

By knowing development situation domestically and abroad of coagulant, we have prepared two kinds of inorganic polymer flocculant which is polysilicic-acid containing aluminum sulfate and zinc sulfate and Polysilicic acid containing magnesium sulfate and zinc sulfate on the basis of preparing the polysilicic acid.

本文通过较全面的分析国内外絮凝剂的发展情况,在制备聚硅酸的基础上,制备了两种新型的系无机高分子絮凝剂(聚硅酸铝和聚硅酸镁)。

The identified proteins are involved in a variety of cellular process including several zinc finger proteins relevant to transcription regulation, such as zinc finger 198, 263, 14, 224, zf6, novel protein similar to transcriptional represser CTCF, and kruppel-like zinc finger protein; two members of the ADAMs (a disintegrin and metalloprotease domain) family; two members of integrin family; several proteins involved in the signal transduction, cell-cycle control, chromatin remodeling and transcription repression; and also some proteins of cell skeleton and some with unknown functions.

鉴定出 的蛋白包括多个与转录调控相关的指蛋白,如指蛋白198、263、14、224、zf6、转录抑制因子cTcF样蛋白、幻肚pple样指蛋白等:两个含金属蛋白酶结构域和整合素结合结构域的家族成员ADAM28和ADAM17;两个整合素家族成员pZ整合素和含十个EGF样结构域的整合素;与细胞信号转导通路有关的蛋白;与细胞周期调控有关的蛋白;与染色体重塑和基因转录抑制有关的蛋白;细胞骨架蛋白以及其他功能未明的蛋白等。

By SEM, different component have great effect on flocculent structure. Zn have trend to form network, Al and Mg form sheetlike to around. Structure characterizations of PSAZ and PSMZ is different of common IPF, it has nicer flocculation efficiency and stability.

扫描电镜分析表明不同组分对絮凝剂结构具有较大的影响,发现增加的含量,有利于生成网状物,铝、镁的向四周发展的片状结构,聚硅酸铝和聚硅酸镁的结构不同于一般的絮凝剂,其特殊的片状结构决定了絮凝的优良的絮凝效果。

Using sodium silicate solution as the binder of zinc-rich coating ,zinc powder as the filler,distilled water as the solvent,and adding thicker,solidifier,sodium silicate inorganic zinc-rich coating s were prepared.

以硅酸钠溶液为成膜基料,粉为颜填料,去离子水为溶剂,加入增稠剂,固化剂等助剂,制备钠水玻璃富涂料;应用红外光谱分析、流变学测量和耐液性观察,研究钠水玻璃富涂料的固化机理。

The Ni and Zn-doped spiculate α-FeOOH were prepared by the coprecipitation method and citric acid method using FeCl2、Zn(NO3)2、Ni(NO3)2 and NaOH as raw material and spiculate α-FeOOH as intermediate. Then they successively were enwraped by citric acid complex of the Ni and Zn and heat treated to get spiculate nano-Ni0.5Zn0.5Fe2O4. The particles size and slenderness ratio of spiculate nano-Ni0.5Zn0.5Fe2O4 were successfully controlled by the doped mass of Ni and Zn in the coprecipitation process.

以FeCl2、Zn(NO3)2、Ni(NO3)2和NaOH为原料,借助针状α-FeOOH做为中间体,有效的把共沉淀法和柠檬酸法相结合,制得掺有镍和的针状纳米α-FeOOH,在其表面包裹镍和的柠檬酸络合物后,经热处理制得了针状的纳米Ni0.5Zn0.5Fe2O4 ,并通过控制共沉淀法过程中镍和的掺入量,有效的控制了针状纳米Ni0.5Zn0.5Fe2O4 的粒径和长径比。

Bile and gastric and pancreatic secretions are re- sponsible for zinc excretion, and once in the intestine this endog- enous zinc behaves just like the dietary zinc.

胆汁、胃液和胰腺分泌物有排泄元素的功能,一旦吸收进入肠道,这些外源的元素和饮食中的有相同的表现。

The said new technology will raise the Zinc concentration in the teated liquid to be higher than 30 g/L,and therefore the treated liquid can be reused as a process solution in a Zinc plant.The liquid permeating the membrane,with Zinc less than 0.1 g/L,is neutralis...

电解废水经膜分离处理后,浓缩液中浓度可达30 g/L以上,回收后全部进冶炼系统,透过液中浓度在0.1 g/L以下,用碱调节pH 5~6后可回用于电解工序洗板,实现了废水资源化和车间废水零排放目标,具有显著的经济效益和环境效益。

A new anticorrosive pigment based on potassium zinc phosphate and zinc phosphate tetrahydrate was synthesized and characterized by XRD,FT-IR and laser nano-granulometer.

合成了一种含磷酸钾和四水磷酸的新型活性超细磷酸颜料。

The powder of zinc oxide was synthesized in hydrothermal conditions with Zn(NO_3)_2·6H_2O as zinc source,and tetrapropylammonium hydroxideand tetramethylammonium hydroxideas alkaline source.

以六水硝酸源,氢氧化四丙基铵和氢氧化四甲铵分别为碱源,进行了氧化粉末的水热制备。

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This one mode pays close attention to network credence foundation of the businessman very much.

这一模式非常关注商人的网络信用基础。

Cell morphology of bacterial ghost of Pasteurella multocida was observed by scanning electron microscopy and inactivation ratio was estimated by CFU analysi.

扫描电镜观察多杀性巴氏杆菌细菌幽灵和菌落形成单位评价遗传灭活率。

There is no differences of cell proliferation vitality between labeled and unlabeled NSCs.

双标记神经干细胞的增殖、分化活力与未标记神经干细胞相比无改变。