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1)  erosion-dissolution process of drip water
滴(溶)蚀作用
2)  dissolution [英][,dɪsə'lu:ʃn]  [美]['dɪsə'luʃən]
溶蚀作用
1.
The effect of farm manure on the dissolution of carbonate rocks and its eco-environmental impact
施用农肥对岩溶溶蚀作用的影响及其生态环境意义
2.
Based on the study of the sedimentaiotn, diagenesis, tectonic burial history and the heat evolution of organic matter, the authors research the dissolution which is v.
通过对该区沉积发育史、成岩演化史、构造埋藏史和有机质热演化史分析,较深入研究了飞仙关组储层发育演化过程中的溶蚀作用。
3.
However,the simulative experiment reflects only the dissolution of tuff fillings under open water environment.
溶蚀模拟实验表明,在酸性水环境中,凝灰质填隙物发生明显溶蚀,并且酸性介质浓度越高溶蚀作用越强烈。
3)  corrosion [英][kə'rəuʒən]  [美][kə'roʒən]
溶蚀作用
1.
A lot of data from casting thin observation show that the pore spaces in the reservoir of Xiazijie-Mahu western slope in Junggar Basin are the pores resulted from corrosion of analcites, calcites and siderites.
方沸石的溶蚀作用发生于晚成岩阶段,纵向上随着埋深加大,其溶蚀作用有所增强。
2.
The forming times of reservoir corrosion and diagenetic clay minerals, as well as the diagenetic evolution indicated that the Mesozoic reservoir in Kuche Depression received three charges in the Late Paleogene, Late Kangcun Age of Neogene, and Kuche Age of Neogene.
根据储层溶蚀作用和自生粘土矿物的形成期次,结合成岩演化序列成果,确定了库车坳陷中生界储层曾在古近纪末期、新近纪康村末期以及新近纪库车期接受过3期油气充注。
3.
The results indicated that montmorillonite subjected to corrosion in alkaline solutions and produced SiO 2- 3 and AlO - 2 ions in the liquid phase.
蒙脱石在强碱和弱碱溶液中都发生了溶蚀作用。
4)  Karstification(Dissolution)
岩溶(溶蚀)作用
5)  burial dissolution
埋藏溶蚀作用
1.
Characteristics of burial dissolution in the Ordovician limestone of Tahe Oilfield;
塔河油田奥陶系灰岩埋藏溶蚀作用特征
2.
The comprehensive study of some samples from the Ordovician granule limestone in Tarim Basin showed that the burial dissolution could be classified as in-source dissolution and out-source dissolution based on the macro-microcosmic petrology and geochemistry features.
塔里木盆地奥陶系颗粒石灰岩的岩石学和地球化学综合研究表明,埋藏溶蚀作用可分为内源溶蚀和外源溶蚀两个作用阶段,这两种溶蚀作用的本质区别是酸性流体的来源和流体运移途径不同。
6)  secondary solution effect
次生溶蚀作用
补充资料:无柄液滴法、躺滴法、座滴法等
分子式:
CAS号:

性质:又称无柄液滴法、躺滴法、座滴法等。根据液面外形求算表(界)面张力的一种方法。当待测液液滴稳定地停在水平固体表面上,其外形与液体表面张力γ有关。根据巴什弗思–亚当斯(Bashforth-Adams)方程可有以下关系式ρ1和ρ2分别为待测液体及液滴外介质的密度,g为重力加速度,β为形状因子,b为大小因子。当液体与固体表面接触角大于90°时可根据测出的液滴的赤道半径及其与液滴顶点的垂直距离数值查表得出相应的β及b值,从而算出表面张力γ。本法简便,适用于吸附平衡时间长的体系和低表面张力的测定;也能用于测定界面张力及熔融金属的表(界)面张力。

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