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carbureted hydrogen相关的网络例句

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Now hydrogen is widely used in our life, such as hydrogen bomb and hydrogen car.

它在我们生活中用途十分广泛,有氢弹、氢能汽车等。

The main products are: calcium sulfate / calcium nitrate / calcium carbonate / copper sulfate / chloride, copper / zinc sulfate / nitric acid zinc / zinc chloride / potassium sulfate / potassium chloride / potassium bromide / potassium aluminum sulfate / potassium dihydrogen phosphate / 2 of potassium hydrogen phosphate / sodium bromide / sodium chloride / sodium nitrate / sodium fluoride / trisodium phosphate / sodium dihydrogen phosphate / disodium hydrogen phosphate / crystallization of sodium carbonate / anhydrous sodium carbonate / aluminum sulfate / nitrate aluminum / crystallization of aluminum chloride / aluminum hydroxide / nitrate Fe / hydrobromide / oxalic acid / boric acid / citric acid / barium chloride / Azone / magnesium sulfate / magnesium nitrate / magnesium chloride / ammonium chloride / ammonium sulfate / Bifluoride ammonium / ammonium aluminum sulfate / ferrous ammonium sulfate / ammonium dihydrogen phosphate / diammonium hydrogen phosphate / bromide / tetrabutylammonium bromide / chloride, nickel / nickel nitrate / sulfate nickel / cadmium chloride / cadmium sulfate / nitrate Cadmium / Cadmium Carbonate / Strontium / strontium nitrate / sulfuric acid manganese / manganese chloride / 50% manganese nitrate solution / stannous chloride / zinc chloride, such as crystallization of the four largest packing of chemical reagents AR and CP level.

主要产品有:硫酸钙/硝酸钙/碳酸钙/硫酸铜/氯化铜/硫酸锌/硝酸锌/氯化锌/硫酸钾/氯化钾/溴化钾/硫酸铝钾/磷酸二氢钾/磷酸氢二钾/溴化钠/氯化钠/硝酸钠/氟化钠/磷酸三钠/磷酸二氢钠/磷酸氢二钠/结晶碳酸钠/无水碳酸钠/硫酸铝/硝酸铝/结晶三氯化铝/氢氧化铝/硝酸铁/氢溴酸/草酸/硼酸/柠檬酸/氯化钡/氮酮/硫酸镁/硝酸镁/氯化镁/氯化铵/硫酸铵/氟化氢铵/硫酸铝铵/硫酸亚铁铵/磷酸二氢铵/磷酸氢二铵/溴化铵/四丁基溴化铵/氯化镍/硝酸镍/硫酸镍/氯化镉/硫酸镉/硝酸镉/碳酸镉/碳酸锶/硝酸锶/硫酸锰/氯化锰/50%硝酸锰溶液/氯化亚锡/结晶四氯化锌等大包装化学试剂的AR和CP级别。

Hydrogenases are key enzyme for bio-hydrogen production, most of them were rapidly inactivated by oxygen. It is important to bio-hydrogen production and hydrogen application that improve the O2-tolerance of hydrogenase.

氢酶是生物制氢的关键酶,大多数氢酶因对氧极敏感而易失活,因此提高氢酶的氧耐受性对生物制氢有重要意义。

The analysis of hydrogen-producing nature was presented through the point of catalysis of hydrogenase, the production of energy and its transportation. From author's view, the course of de-hydrogen from pyruvic acid to acetyl-CoA was the chief determinant for hydrogen producing. And the balance and adjustment of NADH/NAD〓 was just the necessary condition, not the foundation reason.

本文从产氢反应的催化体系、能量产生和传递等不同角度对产氢本质进行了系统的理论分析,认为产氢发酵的第一判定条件(即产氢发酵的充分必要条件)是丙酮酸-乙酰CoA脱氢过程;而NADH/NAD〓的平衡调节机制只是必要条件,不是产氢发酵的根本动力。

Above all, schematic ground introduced the development existing state of affairs of economy of foreign hydrogen the sources of energy, right the United States, Canada, Europe, Japan, Korea, Brazil, Icelandic the existing state of affairs of hydrogenous economy progress that waits for different type country and area with Norway undertook an analysis, the characteristic; that pointed out they are respective next, review and analysed economy of our country hydrogen to develop course and current situation, the place; that summed up inadequacy is final, on the foundation of afore-mentioned analysises, put forward to suggested at 5 o'clock to the development of economy of our country hydrogen.

首先,概要地介绍了国外氢能源经济的发展目前状况,对美国、加拿大、欧洲、日本、韩国、巴西、冰岛和挪威等不同类型国家和地区的氢经济发展目前状况进行了分析,指出了他们各自的特色;其次,回顾并分析了我国氢经济发展历程和目前状况,总结了不足之处;最后,在上述分析的基础上,对我国氢经济的发展提出了5点建议。

By researching the catalysis action of metals in hydrogen storage materials, it is found that metal activators accelerate hydriding-dehydrding velocity of hydrogen storage materials in the process of grinding, and they also reduce the dehydriding temperature, enhance the hydrogen storage capacity of materials, and hasten the formation of similar-graphite microcrystal in the process of pretreatment.

通过对储氢材料中金属催化作用的研究发现,金属催化剂促进材料球磨过程中的快速吸氢,加快材料的放氢速度,降低材料的放氢温度,提高材料的储氢密度,促进无烟煤在预处理过程中类石墨微晶结构的形成。

In this paper, the current states of research about the basic theory of stationary state perturbation method are firstly reviewed, on base of them, and studied some physics issues mainly about hydrogen atom. The stark effect of the energy level (n = 4) of hydrogen atom is calculated and the stark effect of three dimensional hydrogen atom is discussed by the use of the parabolic coordinates, then the perturbative matrix elements for each energy level are given.

本文首先综述了关于定态微扰论基本理论的研究现状,在此基础上利用定态微扰论对某些物理问题,主要是对氢原子问题展开了研究,计算了氢原子n=4能级的斯塔克效应,并利用抛物线坐标法求解了三维氢原子的斯塔克效应,给出了氢原子斯塔克效应中微扰矩阵元的普遍公式。

To investigate the mechanisms of biohydrogen production by anerobic fermentation of solid organic waste, gas chromatography is used to analysis the biogas and volatile fatty acid in anaerobic bio-reactor. Firstly, the ability of hydrogen production by digested sludge from the West Lake, Enteobacter aerogences, digested sludge from sewage farm, the fluid of methane pool and dejecta have been studied. The rule of the ability of hydrogen production by different bacteria under different control condition. Simultaneity, the importance of the synergistic effect on hydrogen production has been proved.

本文首先选用西湖底的厌氧活性污泥、产气肠杆菌、污水处理厂的淤泥、沼气池发酵液以及猪粪等不同菌群对废弃食物——马铃薯进行厌氧发酵产氢特性实验研究,得到马铃薯在各不同菌群及工况下的发酵产氢能力,同时发现产氢菌间的协同作用很重要,在控制好发酵条件的情况下,产氢菌群发酵通常会好于单一产氢菌的发酵。

Anaerobic synecology of the hydrogen-producing fermentation system was investigated under certain test condition in this thesis. In the continuous flow system of anaerobic hydrogen-producing fermentation, the succession of hydrogen-producing acidogenic microbiology may be regressive process. By regressive process we means that the original community getting from nature which structure being complex with a high ability would degenerate gently to a certain climax community which structure being simple with less ability.

产氢发酵系统的微生物群落生态学研究证明,在连续流发酵产氢反应系统中产氢产酸发酵细菌群落的演替过程,是在人为控制的生境条件下,微生物从自然群落这种稳定性大、组成及生化反应过程复杂的生态群落,向稳定性小、组成和生化反应过程相对简单的某一产酸发酵顶极群落进行的"逆行演替"。

Palygorskite was a kind of mineral hydrogen storage material with strong adsorption capacity and structural nanochannels. If we could decorate hydrogen storage metal Pd to the surface of the Pal, this compared to the undecorated Pd to the Pal, the hydrogen storage content would maybe increase.

坡缕石矿物(Palygorskite,Pal)是一种具有一定氢吸附能力的具有纳米结构孔道的矿物储氢材料,如将储氢金属钯修饰在坡缕石表面,与未经钯修饰的坡缕石相比,其储氢量有望得到进一步提高。

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