1)Chalcogenidometalate金属硫属化合物
1.Solvothermal Syntheses, Crystal Structures and Properties of Main Group Chalcogenidometalates;主族金属硫属化合物的溶剂热合成、结构及性能
英文短句/例句
1.Solvothermal Syntheses, Crystal Structures and Properties of Main Group Chalcogenidometalates;主族金属硫属化合物的溶剂热合成、结构及性能
2.Preparation of SbSn Intermetallic Compound and Its Desulfurization Application;SbSn金属间化合物的制备及其脱硫应用
3.Mechanical Alloying Preparation and Desulfurization Property of SbSn Intermetallic Compound;SbSn金属间化合物的机械合金化制备及脱硫性能
4.Studies on Synthesis, Characterization of ⅠB-ⅡB Metals Chalcogenides Coordination Compound;ⅠB,ⅡB族金属硫属配合物的合成与表征
5.Microwave Synthesis and Properties of Metal Sulfides and Oxide;金属硫化物和氧化物的微波合成及性能研究
6.Metal Oxide and Sulfide Nanomaterials: Synthesis and Characterization;金属氧化物和硫化物纳米材料的合成与表征
7.Low-Temperature Solid-State Synthesis of Metal Oxide and Sulfide Nanomaterials金属氧化物硫化物纳米材料的低温固相合成
8.Effect of Alkali Metals on Hyhrodesulfurization Performance of Transition Metal Sulfides碱金属对过渡金属硫化物加氢脱硫反应的影响
9.The Synthesis and Characteristic of Heterocyclic Aromatic Selenium(Sulfur) Compound;硒(硫)杂环化合物与金属离子的合成与表征
10.Solid State Synthsis and Characterizations of Muti-Compound Metal Chalcogenides;多元金属硫族化合物的固体合成和表征
11.Controllable Synthesis of Metal Sulfide-polymer Composite Microspheres Structures金属硫化物-高分子复合微球的控制合成研究
12.Effect of Metal Compound on the Transformation of Coal-N and Coal-S during Coal Pyrolysis;金属化合物对煤热解过程中氮、硫转化的影响
13.Chemical Bath Depositon for Metal Chalcogenide Photoelectric Functional Thin Films;化学浴沉积制备金属硫族化合物光电功能薄膜
14.Analysis on feasibility of removing sulfur from metal sulfide ores with microorganism金属硫化矿的微生物脱硫可行性分析
15.Functional Modification and Transition Metal Complexes of Thiacalixarene;硫代杯芳烃的功能化修饰和金属络合物的研究
16.Desulfurization in Petroleum Using Intermetallic Compound SbSn Prepared by Fusion-spraying;熔融喷雾制备SbSn金属间化合物用于石油的脱硫
17.Study on Complex Metal Oxide Adsorbent of FCC Gasoline Adsorption DesulfurizationFCC汽油吸附脱硫复合金属氧化物吸附剂研究
18.Antioxidant activity of the complexes of sulfation chitosan with metalion壳聚糖硫酸酯金属配合物的抗氧化活性
相关短句/例句
metal chalcogenide金属硫族化合物
1.The present thesis aimed to explore a low-energy, environmental amiably synthesis route, Chemical Bath Deposition, for depositing metal chalcogenide photoelectric functional thin films, and characterize the structure, morphology and optical properties of obtained thin films.本文主要探索通过一种低能、环境友好的合成路线一化学浴沉积,制备金属硫族化合物光电功能薄膜,并对所获得的薄膜样品的结构、形貌、光学性质进行表征。
2.Metal chalcogenides are important functional materials with wide applications in the optical,electronic and optoelectronic field.金属硫族化合物是一类重要的功能材料,在光学、电子学及光电领域都有着重要的应用。
3)Transitional metal chalcogenides过渡金属硫属化合物
4)metal sulfides金属硫化物
1.The structure, properties, and applications of transition metal sulfides IF nano-materi- als, i.系统的介绍无机类富勒烯金属硫化物纳米管、纳米洋葱及其纳米复合物的结构、性质和应用。
2.Metal deposit environmental pollution originates from the oxidation and decomposition reaction of metal sulfides , particularly pyrite(FeS 2) and pyrrhotite (FeS).金属矿山环境污染源于金属硫化物特别是黄铁矿、磁黄铁矿的氧化分解。
3.Based on the principles of thermodynamic coupled reaction and the data of solution freeenergy,the essay explains the causes of solubility of metal sulfides.采用热力学偶合反应的原理和溶解自由能数据,简明了金属硫化物溶于不同溶剂[水(如硫化钠),稀酸(如硫化锌),氧化性硝酸(如硫化铜),王水(如硫化汞)]的原因。
5)metal sulfide金属硫化物
1.Removing molybdenum from tungstate solution with metal sulfides;不同金属硫化物从钨酸盐溶液中除钼的效果
2.The dissolution of the metal sulfides in polymetallic mines not only produces acid mining drainage (AMD),but also releases the abundant heavy metals into the surroundings,which results in serious environmental contamination.在总结微生物分解矿物的机制、微生物–矿物界面作用及生物膜在矿物分解过程中所起的作用基础上,概述了酸矿水中微生物群落的特征和种系演化,对矿山环境金属硫化物生物氧化释放的有害元素的微生物地球化学循环过程以及重金属元素对微生物氧化作用的影响做了系统的论述并讨论了微生物在环境修复中的作用。
3.Along with the development of science, metal sulfides are used in environmental protection, optics and catalysis, especially in optics which develops rapidly.金属硫化物最早用于古代炼丹术中做长生不老的仙药 ,随着科学的发展 ,近年来它在环保、光学和催化等方面的应用引起了广泛的关注 ,尤其是光学方面的应用发展迅
6)metallic sulfide金属硫化物
1.Seven metallic sulfide minerals were tested with the NEXUS679 FTIR.利用NEXUS670型傅立叶变换红外光谱仪测定了7种金属硫化物矿物的远红外光谱,结果发现金属硫化物矿物因其晶体结构和内部M-S化学键的不同,具有明显不同的谱形和振动频率。
延伸阅读
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