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亚砷酸盐

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Examples are provided by the following preparations: arsenious sulphide from arsenious acid and hydrogen sulphide: gold or silver sols by reduction of the corresponding salts of gold or silver, silver chloride from very dilute solutions of silver nitrate and sodium chloride.

例子由以下准备提供:亚砷硫化物从亚砷酸和氢化硫:金或银sols 由金子或银,银色氯化物对应的盐的减少从非常硝酸银和氯化钠的稀溶液。

Ferric arsenite sulfate is also of recent interest and may prove to be useful in stabilizing arsenic.

含铁的亚砷酸盐和硫酸盐也是新近的关注点并且可以证明对使砷稳定有用。

The results demonstrate that a greatly increased bioavailability of As under the flooded conditions is the main reason for an enhanced As accumulation by flooded rice, and growing rice aerobically can dramatically decrease the As transfer from soil to grain.

这两种硅运输蛋白都在根部表达,其中一种称为Lsi1的蛋白是亚砷酸盐进入水稻的门户,而另一种称为Lsi2的蛋白控制着从根部到茎再到谷粒的流动。这组研究者还发现硅酸—含有硅、氢和氧—会干扰亚砷酸盐的摄取。他们提出,增加土壤中可利用的硅,可能会减少从土壤和灌溉用水到水稻的砷的运输。(生物谷Bioon.com

This anion pump is composed of two subunits, the catalytic 63KDa ArsA, a hydrophilic protein, when purified, exhibits oxyanion-stimulated ATPase activity, the hydrophobic 45. 5KDa ArsB protein, located in the inner membrane of E. coli, is the putative anion translocating channel and also serves as the anchor for ArsA to attach on the membrane.

ArsATP酶由水溶性的63KDa的ArsA蛋白和膜整合的46KDa的ArsB蛋白组成,ArsA蛋白是催化亚基,具有亚砷酸盐和亚锑酸盐激活的ATP酶活性,ArsB蛋白则构成转运亚砷酸盐和亚锑酸盐的阴离子通道,同时作为ArsA蛋白在膜上的结合位点。

The removal of arsenic from solution has relied mostly on precipitation and adsorption processes and it has been considered that arsenic is the oxidation state that leads to the most effective removal by precipitation since the simple metal arsenates generally have lower solubility than the arsenites, and also arsenate is more strongly adsorbed on certain substrates, but this is pH dependent.

从溶液中去除砷主要依赖沉淀和吸附过程,并且要考虑+5价砷是氧化态,会导致通过沉淀最有效去除砷,因为简单的金属砷酸盐比亚砷酸盐一般有更低的溶解度,并且砷酸盐在特定情况下有更强的吸附能力,但是这取决于 pH 值。

Arsenates, n.o.s., Arsenites, n.o.s.

亚砷酸盐,未另作规定的

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This one mode pays close attention to network credence foundation of the businessman very much.

这一模式非常关注商人的网络信用基础。

Cell morphology of bacterial ghost of Pasteurella multocida was observed by scanning electron microscopy and inactivation ratio was estimated by CFU analysi.

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