双阳极电化学氢化物发生,bi-anode electrochemical hydride generation
1)bi-anode electrochemical hydride generation双阳极电化学氢化物发生
英文短句/例句

1.Determination of Antimony by Bianode Electrochemical Hydride Generation-Atomic Fluorescence Spectrometry土壤中锑的双阳极电化学氢化物发生-原子荧光光谱法测定
2.Ion Chromatography Coupled with Bi-anode Electrochemical Hydride Generation-Atomic Fluorescence Spectrometry for Determination of Arsenic Species in Dental Pulp Inactivative Agent Type Ⅰ离子色谱-双阳极电化学氢化物发生-原子荧光光谱法测定Ⅰ型牙髓失活材料中的砷形态
3.Preparation, Optimization and Hydrogen Oxidation Kinetics of Solid Oxide Fuel Cell Anodes;固体氧化物燃料电池阳极制备、优化和氢氧化动力学研究
4.Study on Electrochemical Oxidization Effect of BH_4~- in DBFC with Cu Anode;铜阳极DBFC硼氢根离子电化学氧化行为的研究
5.Electrocatalysis Study of Hydrogen Peroxide and Small Organic Matters on Chemically Modified Electrode;化学修饰电极电催化过氧化氢、有机及生物小分子的研究
6.Preliminary Studies on Oxidation Kinetics of BH_4~- on Cu Anode in an Alkaline Solution碱性介质中硼氢化物铜阳极氧化动力学初探
7.Study on Synthesis and Electrochemical Characteristics of Au Anode Catalyst for Direct Borohydride Fuel Cell直接硼氢化钠燃料电池Au阳极催化剂制备及电化学性能研究
8.Electrochemical behavior of tin,manganese,and ruthenium oxide anodes based on titanium钛基锡锰钌氧化物阳极的电化学性能
9.Intermediate temperature solid oxide fuel cells with Cu-CeO_2-ScSZ anode for direct hydrocarbon fuels中温直接碳氢化合物固体氧化物燃料电池Cu-CeO_2-ScSZ阳极的研究
10.A Direct Borohydride Fuel Cell with FeCoPc_2-Catalysed Cathode双核双金属酞菁(FeCoPc_2)阴极催化直接硼氢化物燃料电池
11.Study on Preparation and Electrochemical Performance of Positive Active Material in Ni/MH Battery;镍氢电池正极活性物质制备及电化学行为研究
12.Preparation of the Hydrogen Evolution Electrode in Aluminum-Water Hydrogen Generator System;电化学铝—水制氢体系析氢阴极的制备
13.Determination of Sb in Environment Samples by Atomic Fluorescence Spectrometry Coupled with Electrochemical Hydride Generation电化学氢化物发生原子荧光法测定环境样品中的锑
14.Determination of Se(Ⅳ) and Se(Ⅵ) in environmental samples by atomic fluorescence spectrometry with electrolytic hydride generation电化学氢化物发生-原子荧光法测定环境样品中的Se(Ⅳ)和Se(Ⅵ)
15.Progress of Electrochemical Biosensors Based on Nicotinamide Adenine Dinucleotide(phosphate)-Dependent Dehydrogenases脱氢酶电化学生物传感器的研究进展
16.Electrochemical Process and Electrocatalytic Properties of Hydrogen Storage Alloy for Replacing Pt as the Anode Catalytic Material in PEMFC and AFC;储氢合金代铂作为PEMFC和AFC阳极催化材料的电化学过程与电催化特性研究
17.For power generation, the researchers employed compounds used in common alkaline batteries, with zinc as the anode material and manganese dioxide as the cathode.而在产生电能方面,研究人员采用一般硷性电池中的化学物质,用锌做阳极,锰做阴极。
18.Our work focus on the research field of Photobiological hydrogen production, fermentative hydrogen production, dispose and resource utilization of organic waste, application of microorganism resource.主要从事太阳能生物制氢、物质发酵制氢、机废物处置与资源化利用、源微生物应用等研究。
相关短句/例句

electrochemical hydride generation电化学氢化物发生
1.The speciation of inorganic arsenic can be performed by controlling the electrolytic currents with electrochemical hydride generation coupled to atomic absorption spectrometry.06mol/L硫酸电解质中,不同价态的无机砷具有较高的电化学氢化物发生效率,同时又存在较为明显的差异。
3)noble polarization curve电化学阳极极化
4)Anodic electrochemistry阳极电化学
5)metal hydride electrode氢化物电极
1.The electrochemical characteristics of Mg2Ni alloy synthesized by mechanical alloying with SPEX-8000 used as metal hydride electrode in MH-Ni battery of high capacity have been investigated in details at different temperatures and preliminarily explained from thermodynamics.利用高能球磨方法制备纳米Mg2Ni储氢合金,用于高容量MH/Ni电池氢化物电极电化学性能研究。
2.MgNi alloy synthesized by mechanical alloying has been used as metal hydride electrode and the electrochemical characteristics have been investigated in details at different temperatures to determine the possibility used as negative electrode material in MH-Ni battery used for EV , MgNi alloy is nanocrystallite and the average size isunder 10nm examined by TEM.本文采用机械合金化方法制备MgNi合金,用作MH/Ni电池金属氢化物电极,研究了温度对其电化学性能的影响,探索MgNi合金作为MH/Ni动力电池负极材料的可能性。
6)hydride electrode氢化物电极
1.In the Part I, we study the well-posedness for the single phase and two phase mathematical models resulting from the charge & discharge process of hydride electrode of MH/Ni cell.第一篇,我们研究MH/Ni电池氢化物电极的充放电过程单相和二相数学模型解的适定性问题。
延伸阅读

氢化物发生—冷原子吸收法测定食品中的汞摘要汞是有毒元素之一,如果食品中含汞超标对人体非常有害,造成疾病,有的甚至死亡,故对食品中Hg的测定十分重视,决不可以超标,以免对人体健康带来威协。测定Hg的方法有很多,如专用测汞仪,化学法,原子荧光,冷原子吸收以及氢化发生—冷原子吸收法等,比较各种方法,我们认为氢化物发生—冷原子吸收法较好,具有灵敏度高,精度好,方法简便,操作基本上自动化等优点。关键词食品汞氢化物发生—冷原子吸收法1实验部分1.1仪器与试剂1.1.1TAS—986原子吸收光谱仪(北京普析通用仪器有限责任公司)WHG—102A2型氢化物发生器(北京瀚时制作所)纯水器,电阻率18.3M俜cm-1(韩国HUMAN公司制造,北京普析通用仪器公司中国总代理)1.1.2试剂:混酸HNO3+HClO4=5+1(V/V)高锰酸钾1%(W/V)载流1%HCl(V/V)介质4%H2SO4(V/V)参照物:大米中HgGBW—08508S,(购自国家标准物质中心)1.2实验步骤:1.2.1样品预处理称取大米(广州来样)3g左右(准确至0.0001g)置于放有3~4粒玻璃珠的三角烧瓶中,加入混酸10mL,过夜,次日置于电热板上缓缓加热(经常摇动一下三角瓶)。加热约3h,驱除NO2,到瓶口冒HClO4白烟,浓缩至1~2mL小体积,取下冷却。用4%H2SO4转移至20mL具塞试管中,加几滴1%的高锰酸钾呈紫红色,用4%H2SO4稀至刻度,摇匀备用。1.2.2实验标准储备Hg溶液的浓度不能小于100靏/mL用此溶液逐级稀释配制成含汞100ng/mL的溶液,用此液配制Hg的标准系列。于6支25mL容量瓶中分别加入100ng/mL的Hg溶液0.0、0.25、0.5、1.5、2.0、2.5mL,配制成Hg的标准系列,其浓度为0.00、1.0、2.0、6.0、10.0ng/mL。用4%H2SO4稀释(滴几滴1%高锰酸钾)至刻度,使溶液呈粉紫色。工作曲线见图1相关系数r=0.99971.2.3测定条件:仪器测定条件见表1表1仪器条件分析波长光谱带宽灯电流负高压测定方式积分时间253.7nm0.4nm3.0mA235.5V峰高18.0s氢化物发生条件见表2表2氢化物发生条件载气(氩气)载流石英管KBH4浓度160mL/min1%HCl不加热1.5%(含0.5NaOH)2结果与讨论