chlorite
简明释义
n. [矿物] 绿泥石;[无化] 亚氯酸盐
英英释义
单词用法
亚氯酸钠 |
同义词
氯化矿物 | 氯化矿物通常在变质岩中发现。 | ||
氯化物组 | The chlorite group includes several important minerals used in geology. | 氯化物组包括几种在地质学中重要的矿物。 |
反义词
硅酸盐 | Silicates are the most abundant minerals in the Earth's crust. | 硅酸盐是地壳中最丰富的矿物。 | |
氧化物 | 氧化物通常在各种矿石中发现。 |
例句
1.Ore-bearing rocks in the deposit are mainly actinolite tremolite and chlorite tremolite.
矿床含矿岩石主要为阳起透闪岩、绿泥透闪岩等。
2.Of these minerals kaolinite illite and chlorite are commonest.
在这些矿物中,高岭石,伊利石和绿泥石最常见。
3.Common bleaching agents are hydrogen peroxide, sodium hypochlorite, sodium chlorite and sodium perborate.
常用的漂白剂有过氧化氢、次氯酸钠、氯化钠以及过硼酸钠。
4.The study results show that the thicker chlorite films is, the smaller the saturation of movable fluid will be.
结果表明:绿泥石薄膜厚度越大往往可动流体饱和度越小。
5.Their mineral weathering degree is relatively low and the clay minerals are mainly composed of illite, chlorite and kaolinite.
矿物风化度低,粘土矿物组成以伊利石,绿泥石为主。
6.X-ray diffraction and SEM indicate that the main types of clay mineral is chlorite, kaolinite and illite.
射线衍射和SEM观察表明,粘土矿物类型主要有绿泥石、高岭石和伊利石。
7.No sodium chlorite bleaching allowed by us.
允许非亚氯酸钠漂白。
8.Chlorite in Furong tin allotment can be divided into two stages of mineralization.
芙蓉锡矿田中的绿泥石可分为两个矿化阶段。
9.During the analysis, we noticed that the chlorite (绿泥石) had a greenish color.
在分析过程中,我们注意到chlorite(绿泥石)呈现出绿色。
10.The presence of chlorite (绿泥石) can indicate low-grade metamorphic conditions.
存在chlorite(绿泥石)可能表明低级变质条件。
11.The geologist identified the mineral as chlorite (绿泥石) during the field study.
地质学家在野外研究中将该矿物鉴定为chlorite(绿泥石)。
12.Minerals like chlorite (绿泥石) are often found in schist.
像chlorite(绿泥石)这样的矿物通常可以在片岩中找到。
13.In the laboratory, we tested the chlorite (绿泥石) samples for their chemical composition.
在实验室,我们测试了chlorite(绿泥石)样本的化学成分。
作文
Chlorite is a term that refers to a group of minerals that are often found in metamorphic rocks. These minerals are typically green in color and are composed mainly of magnesium, iron, and aluminum silicate. The significance of chlorite (绿泥石) in geology cannot be understated, as it plays an essential role in understanding the conditions under which certain rocks were formed. For instance, chlorite (绿泥石) can provide insights into the temperature and pressure conditions during metamorphism, making it a valuable tool for geologists studying the Earth's crust.In addition to its geological importance, chlorite (绿泥石) also has various industrial applications. It is used as a filler in paints, plastics, and rubber products due to its fine particle size and chemical stability. Furthermore, the presence of chlorite (绿泥石) in certain clays can enhance their plasticity and workability, making them more suitable for pottery and ceramics.The formation of chlorite (绿泥石) occurs under specific conditions, often in the presence of water and at moderate temperatures. This mineral typically forms from the alteration of other minerals, such as biotite or garnet, during the metamorphic process. The transformation involves the breakdown of these minerals and the recombination of their elements to create chlorite (绿泥石). Understanding this process is crucial for geologists who aim to reconstruct the history of rock formations.One interesting aspect of chlorite (绿泥石) is its layered structure, which can be observed under a microscope. This layering is indicative of the mineral's formation and can reveal much about the environmental conditions at the time. The study of chlorite (绿泥石) and its properties can help scientists make predictions about the behavior of rocks under different conditions, contributing to our overall understanding of geology.Moreover, chlorite (绿泥石) is often associated with other minerals, creating a complex interplay of geological processes. For example, the presence of chlorite (绿泥石) alongside quartz or feldspar can indicate specific metamorphic environments. By analyzing these associations, geologists can infer the history of the rock and the geological events that have shaped it over millions of years.In conclusion, chlorite (绿泥石) is more than just a mineral; it is a key component in the study of geology and the history of our planet. Its unique properties and formation processes offer valuable insights into the Earth's crust and the dynamic processes that occur within it. Whether in the context of industrial applications or geological research, understanding chlorite (绿泥石) is essential for anyone interested in the natural world.