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sorbitol相关的网络例句

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与 sorbitol 相关的网络例句 [注:此内容来源于网络,仅供参考]

Sorbitol acetal s is the most one kind of the nucleating agents for polypropylene crystallization.

山梨醇缩醛是最重要的聚丙烯成核剂之一。

The polyol pathway, including aldose reductase and sorbitol dehydrogenase, can be activated under hyperglycaemic conditions.

在高血糖状态下,包括醛糖还原酶和山梨醇脱氢酶在内的多元醇通路能够被激活。

The experiment results showed that at the beginning of diapause, some inhibition existed in the metabolism of converting glycogen to sorbitol and glycerol in the artificially synthesized hormone induced diapause eggs and it led to increment of trehalose, sorbitol and glycerol in the eggs and advancement of diapause termination in them. As a result, some eggs could not complete fetation and died before hatching.

试验结果表明,合成滞育激素诱导形成的滞育卵在滞育初期糖原向山梨醇和甘油的代谢反应中存在某种障碍,使卵内海藻糖、山梨醇和甘油含量减少,蚕卵滞育不深,滞育提前解除,以致胚胎发育中能量供应不足,部分卵不能完成胚胎发育而在孵化前死亡。

Systematic isopiestic determinations have been made at the temperature 298.15 K for the mixed nonelectrolyte aqueous solution saturated with an electrolyte and a nonelectrolyte {water (A1)+sodium chloride〓(A2)+glycine〓(A3)+sorbitol+ sucrose}, the mixed nonelectrolyte solution saturated with two electrolytes {water (A1)+sodium chloride〓(A2)+barium chloride〓(A3)+sorbitol +sucrose}, and the mixed electrolyte solution saturated with another electrolyte and a nonelectrolyte {water (A1)+barium chloride〓(A2)+mannitol〓(A3)+ sodium chloride +ammonium chloride}, taking sodium chloride or calcium as the reference standard.

以NaCl或CaCl〓为参考物,系统地测定了298.15K时一种电解质和一种非电解质饱和的混合非电解质溶液{H〓O(A1)+NaCl〓(A2)+甘氨酸〓(A3)+山梨醇+蔗糖}、两种电解质饱和的混合非电解质溶液{H〓O(A1)+NaCl〓(A2)+BaCl〓(A3)+山梨醇+蔗糖}以及一种电解质和一种非电解质饱和的混合电解质溶液{H〓O(A1)+BaCl〓(A2)+甘露醇〓(A3)+NaCl+NH〓Cl}的等压平衡。

In addition, when the microorganism grows in sorbitol culture without Mg(superscript +), and its non-growing cells oxidate sorbitol without Mg(superscript +) sorbitol oxidation does not take place.

另外,在该菌的生长和其静息细胞转化山梨醇时,都不加入镁离子,该菌静息细胞对山梨醇无转化。

With the increasing demand of sorbitol,the biological production of sorbitol attracted a lot of attention in recent years.

山梨醇在食品添加剂、医药及其他化工领域有着广泛的应用,随着需求量的增加,近年来山梨醇的生物法生产逐渐受到了关注。

Fructose , syrup fructose , acesulfame-k, AK, potassium, synthetic sweetener , sucralose , sweetener, sugar replacer , sugar substitute , intense sweetener , disaccharide, non-reducing sugar , moisture retention,moistrure agent ,starch sugar , isomalt , palatinit , isomaltitol, Polyols,, sugar polyol , xylitol ,sorbitol ,mannitol , xylitol ,sugar ,syrup glucose, polydextrose , erythritol , sorbitol syrup , lactose , stevia , Puer Tea , Liupu Tea, Fructooligosaccharides, sweeting agent, trehalose , syrup trehalose, Stevioside

果糖,果糖糖浆,安赛蜜-钾,支ak ,钾,合成甜味剂,三氯蔗糖,糖,糖替代品,食糖替代品,激烈糖,双糖,非还原糖,保湿,水分剂,淀粉糖,异麦芽, palatinit , isomaltitol ,多元醇,糖醇,木糖醇,山梨醇,甘露醇,木糖醇,糖,糖浆中的葡萄糖,聚葡萄糖,赤藓糖醇,山梨醇糖浆,乳糖,甜菊糖,普洱茶, liupu茶叶,低聚果糖, sweeting剂,海藻糖,糖浆海藻糖,甜菊糖

Trehalase plays an important role in glycogen accumulation in the formarion of diapaused eggs. At the beginning of diapause, glycogen phosphorylase is the key enzyme to glycogen decomposition and the formation of sorbitol and glycerol, whereas at the stage of diapause termination, NAD-sorbitol dehydrogenase is the key enzyme to sorbitol decomposition and glycogen re-synthesis.

在滞育卵形成过程中,海藻糖酶对糖原的积累起着重要的作用;在滞育开始时,糖原的分解与山梨醇、甘油的形成,糖原磷酸化酶是关键酶;在滞育解除时,山梨醇的分解与糖原的再生成时山梨醇脱氢酶(NAD-sorbito1 dehydrogenase)是关键酶。

Synthetic progresses of the sorbitol acetals in process routes, the molar ratios of aldehyde to sorbitol, the reaction temperature, the types and the amount of acid catalysts, the types of acromatic aldehyde, reaction solvents and purification methods of products were reviewed at domestic and aboard with 46 references.

讨论了缩醛反应机理。从反应工艺路线、反应物醛与醇物质的量比、反应温度、酸催化剂的种类和用量、芳香醛的种类、反应溶剂及产物的纯化方法等方面全面综述了国内外山梨醇缩醛类成核剂合成研究进展。

Summarized the sorbitol use, in the rose family plant's distribution, the content and metabolism, the physiological function, the cultivation measure according to the related literature to the sorbitol content influence, sorbitol in rose family fruit tree tissue culture application as well as sorbitol aspect and so on determination method research developments.

根据有关文献综述了山梨醇的利用、在蔷薇科植物中的分布、含量与代谢、生理功能、栽培措施对山梨醇含量的影响、山梨醇在蔷薇科果树组织培养中的应用以及山梨醇的测定方法等方面的研究进展。

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