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Under the condition, the anolyte of Na2FeO4 in the concentration range from 0.39-0.47mol/L could be obtained by electrolyzing the iron anode in 16mol/LNaOH solution during 4-6h in the temperature of 308K.

通过研究固体和液体高铁酸盐以及它们的绿色分解产物的化学以及电化学性能,得出以下结论:一、当FeO_4~(2-)溶液的碱浓度越小,加热温度越高时,生成绿色溶液的时间越短。

This has positive meanings to practical application of ferrate.

对高铁酸盐的实际应用有积极的意义。

This offers a new understanding for the decomposition conversion of ferrate in the solution.

从而为高铁酸盐在溶液中的分解反应提供了新的认识。

The results greatly promote the development of industrial production of ferrate materials and super-iron batteries.

通过本研究可以大大推进高铁酸盐材料的制备技术和超铁电池工业化生产的步伐。

However, the instability of ferrate which is unlikethe stable chlorine stopped its applications on a large scale.

但是高铁酸盐不像液氯那样稳定,其不稳定性限制了它的大规模应用。

In order to using theferrate widely in reality, the fundamental studies about the ferrate is veryimportant.

为了更好地利用高铁酸盐,对它的基础研究显得尤为重要。

H4Fe6, a white unstable acid formed from ferrocyanide salts.

一种白色的不稳定酸,由氰亚铁酸盐形成。

In this paper, recent development of ferrates and the history of batteries were summarized. It indicates that the super-iron batteries have a huge potential.

本文综述了高铁酸盐的研究现状和电池的发展历史,表明了绿色高能超铁电池具有诱人的发展潜力。

Two ferrates, K2FeO4 and BaFeO4, had been prepared and characterized by XRD, IR and SEM.

目前试用于超铁电池的高铁酸盐电极材料主要有 K2FeO4、BaFeO4,在其中添加一些固体盐类以提高其放电比容量已有一些报道[8~12]。

An extremely brittle Fe-Cr phase that can form at elevated temperatures in austenitic and ferritic stainless steels.

奥氏体和铁酸盐不锈钢在高温下形成的非常易碎的铁-铬相位。

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Do you know, i need you to come back

你知道吗,我需要你回来

Yang yinshu、Wang xiangsheng、Li decang,The first discovery of haemaphysalis conicinna.

1〕 杨银书,王祥生,李德昌。安徽省首次发现嗜群血蜱。

Chapter Three: Type classification of DE structure in Sino-Tibetan languages.

第三章汉藏语&的&字结构的类型划分。