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stibio-kalium tartaricum的中文,翻译,解释,例句

stibio-kalium tartaricum

stibio-kalium tartaricum的基本解释
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酒石酸锑钾

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Tartaricum, moreover, it was much more obvious in tissues of F. tartaricum. EST-1 and EST-2 existed in leaf and caudex of F. cymosum 2. EST-3 and EST-5 were found in all the tested leaves and the bands in F. cymosum 1 were clearest. For CAT, only 3 bands were detected in all tissues, CAT-1 appeared in the leaves of three buckwheat and clearer in F. cymosum and F. cymosum 1. CAT-2 was detected in different location in leaves and caudexes. CAT-3 existed in the leaves though it was unclear.

EST-1及EST-2只出现在金荞麦2号茎和叶中,EST-3和EST-5只存在于叶片中,并且在金荞麦1号中的带最强,EST-4存在于茎和叶片,在金荞麦1号最强;CAT只有3条带,其中CAT-1出现在叶片中,在苦荞麦1号及金荞麦1号表达较强;CAT-2出在现在茎和叶片,并且茎,叶位置不同;CAT-3只存在于叶片中,非常微弱。

The results showed that five bands including POD-1, POD-2, POD-3, POD-4 and POD-5 were detected in the gel of POD as well as EST-1, EST-2, EST-3, EST4 and EST-5 for EST. POD-3 and POD-4 were common in all the tissues, but most intensive in F. tartaricum. POD-2 was only discovered in the leaves of F. cymosum and caudex of F. cymosum 1. Although there was some difference between the location, POD-2 appeared in the caudexes of three buckwheat and root of F. tartaricum. POD-5 was detected in all leaves and caudx of F.

结果显示,POD和EST都检测到5条谱带,包括POD-1,POD-2,POD-3,POD-4及POD-5,其中POD-3及POD-4在所有组织中都存在,但在苦荞麦1号中的带最强;POD-1只在金荞麦叶片及金荞麦1号茎中出现;POD-2在茎组织及苦荞麦1号根中存在,但在金荞麦及苦荞麦中的位置不同;POD-5存在于叶片及苦荞麦1号茎中,在苦荞麦的带较强。

Kalium and natrium erode into brick at a high temperature in the form of simple substance and result in expansion in self-baking carbon brick, and molten alkali metal oxides adsorbed on the face of brick react with SiO2 and obtain a eutectic mixture which causes expansion at a high temperature, while carbon deposition caused by the reaction of CO and simple substance of kalium and natrium as well as the soot deposition of CO contribute to the lower temperature expansion.

结果表明:膨胀率及碱含量都随温度和时间的增加而增加,膨胀率受时间影响较大,达到8%左右,而受温度影响较小,仅为1%左右;砖内K, Na元素质量分数受时间和温度的影响均较大,分别达到4.5%,5.33%,4.28%,4.46%,且Na侵蚀较K严重;在高温下K, Na是以单质形式侵入砖体内,而熔融碱是吸附在砖体表面并与SiO2:生成低共熔化合物引起高温膨胀,在低温下砖内K,Na单质与CO发生C沉积以及CO发生烟碳沉积反应引起低温膨胀。

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