制氢发电,H2 and power generation
1)H2 and power generation制氢发电
英文短句/例句

1.ANALYSIS OF PROCESS SCHEME FOR PURIFICATION UNIT OF IGCC H_2 AND POWER GENERATION PLANTIGCC制氢发电装置净化单元工艺方案分析
2.Research and Application of the Large Capacity Hydrogen-Cooling Generator H_2 Control System;大型氢冷发电机氢气控制系统的研究和应用
3.Design of digital trigger for hydrogen manufacture by electrolysis based on single-chip computer;基于单片机的制氢电源数字触发器设计
4.The cause analysis of hydric humidity superscale and its control for Steam-turbine generator汽轮发电机氢气湿度超标的原因分析及控制
5.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
6.Biohydrogen Production from Simulated Starch Wastewater by Anaerobic Fermentative and Fuel Cell Electricity Generation Integration;模拟淀粉废水厌氧发酵制氢与燃料电池发电一体化
7.Design of hydrogen generation systems for fuel cells by using hydrolysis of sodium borohydride基于硼氢化钠制氢燃料电池供氢系统设计
8.Safety Analysis on Vacuum Method Putting Hydro-gen In and Out for Hydrogen Cooled Generator氢冷发电机真空法投排氢的安全分析
9.DISPOSAL OF HYDROGEN LEAKAGE FROM 300 MW HYDROGEN COOLED TURBO-GENERATOR SET300MW氢冷汽轮发电机组漏氢处理
10.Hydrogen Leakage Treatment of 600 MW Hydrogen-cooling Generator and Its Precautionary Measure600MW氢冷发电机漏氢处理及预防措施
11.Oxygen / Hydrogen Electrolytic Gas Generation Apparatus氧/氢电解气体制造装置
12.Technology of Photoelectrochemical Cells Hydrogen Production from Decomposition Water Using Solar Energy and Status of Research;太阳能光电化学电池分解水制氢技术及其研究发展
13.ECU Development and Idle Control Strategy Research for Hydrogen-fueled Engine氢燃料发动机电控单元开发与怠速控制策略的研究
14.The Research on Adsorption/Desorption Properties and Electronic Mechanism of Magnesium and Its Alloy Hydrides镁及其合金氢化物吸放氢性能及电子机制研究
15.Hydrogen Source for Fuel Cell--Optimization of Ethanol Reforming for Hydrogen Production through Double-sector Fixed Bed燃料电池氢源——双段固定床优化乙醇重整制氢
16.Hydrogen Generation from Methanol Decomposition with Corona Discharge and Its Modeling Study;电晕放电甲醇分解制氢及其模拟研究
17.Study on high power Ni-MH battery for hybrid electric vehicles混合电动车用高功率氢镍电池的研制
18.Design of Fuzzy Control Loop on Temperature for Hydrogen Generation System by Water Electrolysis水电解制氢温度模糊控制系统的设计
相关短句/例句

fermentative hydrogen production发酵制氢
1.Research on the potential of fermentative hydrogen production from pineapple peels at room temperature;在室温(15~23℃)条件下,采用批量发酵工艺进行菠萝皮渣厌氧发酵制氢的试验研究。
3)hydrogen power氢能发电
1.At the same time, the AC motor in the air supply system of the hydrogen power based on the PEMFC to adopt .为了使空气供给系统供气量满足发电系统发电量随负荷变化的要求,在分析感应电机变频调速控制原理的基础上,提出了基于PEMFC氢能发电装置空气供给驱动系统采用交流感应电机和矢量控制变频调速技术。
2.The hydrogen power system consists of hydrogen feeding unit, fuel cells, power transformer and the control systems.氢能发电系统由氢源、燃料电池和电力变换器及其控制系统组成。
4)hydrogen power generation氢能发电
1.Solid oxide fuel cell is one of the important way to realize efficient and economic hydrogen power generation.固体氧化物燃料电池 (SOFC)是实现氢能发电经济有效的重要途径之一。
5)hydrogen production with electrolysis电解制氢
6)hydrogen preparation power supply制氢电源
1.This paper introduces a new control method for intelligent hydrogen preparation power supply by using AT89C51 and CAN bus technology.介绍了一种采用 AT89C5 1单片机和 CAN bus技术的智能制氢电源的新型控制方法 ,重点分析了控制器及主电路的原理和结
延伸阅读

JIT准时制生产(及时制生产)JIT准时制生产(及时制生产):是应用拉引式生产物流控制原理的方法。在生产系统中任何两个相邻工序即上下工序之间都是供需关系,如何处理这种关系,就是生产物流所要研究的问题。按照传统的生产计划组织生产(包括MRP),物料根据预定的计划时间由供方向需方逐个工序流动。需求方根据上一工序送来物料的数量和到达时间进一步加工。需求方接受物料完全是被动的,如果出现不可预料的因素,物料可能提前或延迟到达。延迟到达将使生产中断,必须在生产计划中留有余地,以避免这种现象的发生。这样一来,必然存在或多或少、提前到达的现象,从而导致系统中库存量的上升,产生种种库存多余的弊病。JIT的方法改变了传统的思路,由需方起主导作用,需方决定供应物料的品种、数量、到达时间和地点。供方只能按需方的指令(一般用看板)供应物料。送到的物料必须保证质量,无残次品。这种思想就是以需定供,可以大大提高工作效率与经济效益。