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1)  leaching [英][li:tʃ]  [美][litʃ]
溶浸
1.
The 740 uranium deposit ore is sandy conglomrate type uranium ore with easyleaching.
为探索对其地浸的可行性,笔者从铀矿石水冶性质的角度,进行了溶浸条件实验和小型模拟场的溶浸试验,取得了一些进展,为进一步溶浸研究提供了一个方面的依据。
2.
In-situ leaching(ISL) is a typical flow process coupled with chemical reaction and solute transport.
原地溶浸采矿过程是一个典型受化学反应、流体流动以及物质迁移等多种因素非线性耦合作用的复杂过程。
2)  solution leaching
溶浸
1.
Round the theme of solution leaching mining, this paper expounds the natural geological conditions of the Dabu uranium deposit on the following hands: the compositions of rock and ore, the ore texture and structure , the uranium element existing form, the physical and mechmical parameters of rock and ore, the shape, attitude and size of orebody, and also the deposit hydrogeological conditions.
围绕溶浸采矿这个主题 ,从岩、矿石的物质成分 ,矿石结构构造 ,铀的存在形式 ,岩、矿石物理力学参数 ,矿体形态、产状、规模及矿床水文地质等诸多方面阐述了大布铀矿床溶浸的天然地质条件 ,并通过一系列矿石铀浸出工艺试验 ,获得大量溶浸工艺参数 ,提出大布铀矿床以原地破碎浸出辅以堆浸为最佳采矿方案。
3)  solution mining
溶浸
1.
An optimizing model of RE in-situ solution mining;
稀土原地溶浸采矿注-收液关系的一个优化模型
4)  Leaching [英][li:tʃ]  [美][litʃ]
浸溶
1.
The kinetics of sulfuric acid leaching chalcopyrite in the microwave field was studied.
研究了微波场中硫酸浸溶黄铜矿的动力学,结果表明微波加热提高了铜浸溶速率和浸出率。
5)  solution impregnation
溶液浸渍
1.
A 3D C/SiC-(W-C)composite was prepared by combining chemical vapor infiltration(CVI)technology with solution impregnation method.
采用化学气相渗透(CVI)结合溶液浸渍法制备3D-C/SiC-(W-C)多元基复合材料,利用XRD、SEM技术对材料烧蚀前后的物相组成及微观结构进行表征,并讨论了复合材料的烧蚀性能。
6)  leaching solution
溶浸液
1.
The infiltrating problem of leaching solution in heap leaching technology;
论堆浸工艺中溶浸液的渗透问题
2.
Using the electro-dynamic effect in porous media,the novel method for enhancement of seepage of leaching solution in ion-absorbed rare earth deposits under the effect of electric field was put forward,and some experiments and its mechanism of the method were introduced.
根据多孔介质中电动渗流效应,在离子型稀土矿浸出过程中,提出了利用电场强化浸矿溶浸液渗流能力的方法,通过机制分析和电动渗流试验,探讨了电场作用对溶浸液的渗流特性的影响。
3.
In the process of bioleaching of ore dump,a novel method for enhancing mass transfer of oxygen in leaching solution under electric field was put forward,and some experiments were performed to study its mechanism.
在排土场微生物浸出过程中,通过电场作用下的气泡受力分析和强化传质实验,首次提出了利用电场强化氧气向溶浸液中传质过程的方法,结果表明:电场能够强化氧气向溶浸液中的传质过程,而且效果和电场的强弱以及浸矿溶浸液的性质有关;实验中所加电场强度和溶浸液浓度越高,电场强化传质的效果越明显。
补充资料:环氧无溶剂浸渍漆
分子式:
CAS号:

性质:是一种以环氧树脂为主要成膜物质的无溶剂绝缘漆。该漆分为两种类型。一是纯环氧型,特点是黏结强度高,收缩率小,固化后不易开裂。吸水性小、耐热防潮性好,防霉。缺点是贮存期短、稳定性差,但可用低黏度环氧树脂,以双官能活性稀释剂及潜固化剂相配合加以解决。二是环氧聚酯型,这类浸渍漆吸收了环氧树脂和不饱和聚酯的优点,改进了贮存期和应用工艺。若聚酯组分选用甲基丙烯酸聚酯树脂或蓖麻油改性不饱和聚酯,可配制快干无溶剂漆、适用于滴落法浸渍。两种类型均用于浸涂物件、电器、变压器、电机等线圈绕组

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