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silicate相关的网络例句

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与 silicate 相关的网络例句 [注:此内容来源于网络,仅供参考]

The structure and ingredient of modified sodium silicate and silicate bonded sand were analyzed.

对经过改性后的水玻璃及水玻璃砂样结构、成分等进行了分析。

Sodium silicate is an important additive in paper recycling, the modulus of sodium silicate plays an important role in its application.

硅酸钠是一种重要的脱墨助剂,而硅酸钠的模数(产物内的二氧化硅与氧化钠的摩尔数比值)对脱墨过程有重要的作用。

Sodium Silicate Powder can be as the application scope of liquid sodium silicate.

粉状硅酸钠可用于液体硅酸钠所能适用的范围。

CaO was surrounded by tricalcium silicate and dicalcium silicate with a grain size of 40 μm.

CaO被硅酸三钙和硅酸二钙所包围,晶粒尺寸在40 μm左右。

SiO2 causes early decomposition of CaSO4 due to the formation of calcium silicate and dicalcium silicate during the reaction of CaO and SiO2 at high temperature, and the formation of calcium sulphosilicate above 1200℃ helps to retard CaSO4 decomposition.

SiO2在高温下易与CaO发生固相反应形成硅酸二钙和硅酸钙使得CaSO4的初始分解温度降低,在1200℃以后硫硅酸钙的形成对CaSO4的分解有一定的延缓作用。

Of Fe , Cu in the metal phase and Mg, Si in the silicate phases to understand the processes of mixing of metal and silicate phases and further decipher the mechanism of formation of mesosiderite;(2) to study in detail the geochemical characteristics of each phase in the meteorite, to provide necessaryevidence for the model of formation of mesosiderite;(3) to study and update in detail the composition of each phase in the meteorite, and provide a new and complete set of data for understanding the mechanism of formation of mesosiderite.

Cu和硅酸盐相中的Mg, Si等中等挥发性元素的稳定同位素进行分析,判断中铁陨石的金属相和硅酸盐相混合过程的环境特征,进而阐明中铁陨石的形成机制;(2)对这块陨石的各相进行详尽的地球化学分析,通过这些相的地球化学关系判断中铁陨石的形成机制,对中铁陨石的形成模型提供必要的制约和证据;(3)全面更新对中铁陨石各矿物相化学成份的认识,为中铁陨石的成因之谜的全面揭开提供最新最完整的数据。

Using sodium silicate solution as the binder of zinc-rich coating ,zinc powder as the filler,distilled water as the solvent,and adding thicker,solidifier,sodium silicate inorganic zinc-rich coating s were prepared.

以硅酸钠溶液为成膜基料,锌粉为颜填料,去离子水为溶剂,加入增稠剂,固化剂等助剂,制备钠水玻璃富锌涂料;应用红外光谱分析、流变学测量和耐液性观察,研究钠水玻璃富锌涂料的固化机理。

For further understanding the effect of the strain on K-bearing silicate mineral, an experiment with KO2 strain cultured in nitrogen-containing and nitrogen-free medium was conducted. By putting mineral powders into the medium and measuring the concentration of capsular polysaccharides, we concluded that the strain can accelerate the weathering rate of silicate minerals. The results showed that the polysaccharides secreted by the strain in the growth process could help the bacterial to adhere to the mineral surface effectively, and created the bacterium-mineral complex, which formed a mircro-enviorment avail the release of potassium. Another result was that there was higher level of Carbonic Anhydrase activity, which revealed that some exo-protein or enzyme produced by the bacterial had postive impact on the process of releasing potassium ion. We carried out the bacterial fermentation for larger scale production of the bacterial secretion, which was used to sperate, and identify the small molecules related to the mineral-bacterial interaction. After the analysis, it was found that the strain can produce many kinds of small molecules, such as 2-Hydroxybenzoic acid, 4-Hydroxyphenylacetic acid, methyl-4-hydroxybenzoate, etc.

分别将菌株接入含有不同矿粉的培养基中培养,检测其在有氮、无氮培养基中荚膜多糖含量的变化,并在以钾长石和黑云母为矿源的情况下,比较研究了菌株在有氮、无氮培养基中对矿物的风化能力,通过一系列的实验,证实胶质芽孢杆菌在生长过程中所分泌的粘稠胞外聚糖可帮助细菌有效黏附在矿物表面,形成细菌-矿物复合体,并改变及维持该复合体内部的微环境,有助于该菌的解钾作用,而且细菌分泌的胞外蛋白质在该菌对含钾硅酸盐矿物的解钾作用过程中发挥重要作用;将胶质芽孢杆菌接入以钾长石和黑云母为矿源的有氮、无氮培养基中培养,检测到该菌碳酸酐酶活性的变化,并进行批量发酵后小分子酸性分泌产物的提取、分离、纯化与鉴定等方面的研究,结果表明,该菌可产生2-羟基苯甲酸,4-羟基苯乙酸,4-羟基苯甲酸甲酯等小分子物质。

Research of minerals processing experiment suggested a flotation flowsheet,which consists of selective flotation of molybdenum sulfide using kerosene as collector,sodium-silicate as dispersant of slimes,then flotation of molybdenum oxide using modified sodium-silicate as depressant of gangue,Rt as collector.

研究表明,以水玻璃为矿泥分散剂、煤油为捕收剂浮选硫化矿,以改性水玻璃为脉石抑制剂、RT为氧化钼矿捕收剂优先浮选硫化矿再浮氧化矿,可从含Mo 0.34%原矿中,获得品位46.41%的硫化钼精矿,品位27.65%的氧化钼精矿;钼总回收率78.01%。

Different compound adsorbents thermal conductivities were measured at different adsorption capacities.It got these conclusions: At the same adsorption capacity,the compound adsorbents thermal conductivities increase with the quantities of the silicate sol contents increase.The compound adsorbents thermal conductivities increase sharply during the silicate sol contents vary between 0%~(7.5%).The therm...

试验结果表明:在同一吸附量的情况下,导热系数与其添加的粘结剂含量正相关,并且在w=0%~7.5%的添加粘结剂范围内导热系数随着粘结剂含量增加而显著增加;13X沸石原粉、复合吸附剂样品Z1和Z2的导热系数随其吸附量增加呈近似线性增长,当吸附量从0%增加到25%时,各吸附剂导热系数均增加了150%以上;配置出复合吸附剂Z1和Z2在分别添加w=5.0%和7.5%的添加剂下,平均导热系数分别为0.183和0.199 W/,比13X原粉分别提高65.4%和80.1%;将配置的复合吸附剂Z2应用于太阳能冷管,其制冷系数COP约为

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