ulexite
简明释义
n. 硼钠钙石;钠硼解石
英英释义
Ulexite is a naturally occurring mineral composed of hydrated sodium calcium borate, typically found in evaporite deposits. | 乌莱克石是一种天然矿物,主要由水合钠钙硼酸盐组成,通常在蒸发岩沉积物中发现。 |
单词用法
ulexite矿物 | |
ulexite矿床 | |
ulexite晶体 | |
在自然界中发现 | |
用于硼的生产 | |
以其独特的光学特性而闻名 |
同义词
硼矿物 | Ulexite is a boron mineral used in the production of glass and ceramics. | 乌来克石是一种用于玻璃和陶瓷生产的硼矿物。 | |
矿物棉 | Mineral wool, often derived from ulexite, is used for insulation purposes. | 矿物棉,通常来源于乌来克石,用于绝缘目的。 |
反义词
例句
1.The calcium borate product was prepared with natural ulexite powder, through hydrothermal depolymerization and phase inversion.
以钠硼解石天然矿粉为原料,经水热解聚和相转化制备出硼酸钙产品。
2.The calcium borate product was prepared with natural ulexite powder, through hydrothermal depolymerization and phase inversion.
以钠硼解石天然矿粉为原料,经水热解聚和相转化制备出硼酸钙产品。
3.Some artists use ulexite for crafting unique sculptures that reflect light beautifully.
一些艺术家使用ulexite制作独特的雕塑,能够美丽地反射光线。
4.The discovery of ulexite deposits has led to increased interest in boron-related industries.
对ulexite矿床的发现引发了对与硼相关产业的兴趣增加。
5.The mineral known as ulexite is often referred to as 'TV rock' due to its unique optical properties.
这种被称为ulexite的矿物因其独特的光学特性而常被称为“电视岩”。
6.In geology classes, students learn about the formation of ulexite and its significance in boron mining.
在地质课上,学生们学习ulexite的形成及其在硼矿开采中的重要性。
7.Due to its fibrous structure, ulexite can be used in various industrial applications.
由于其纤维状结构,ulexite可用于多种工业应用。
作文
Ulexite, a fascinating mineral, is often referred to as "TV rock" due to its unique optical properties. This borate mineral, primarily composed of sodium, calcium, and boron, is typically found in evaporite deposits and has garnered attention for its fibrous structure that allows it to transmit light. The remarkable feature of ulexite (尤来克石) is its ability to act like a natural fiber optic cable, which means that it can bend and transmit light over long distances. This property has made ulexite (尤来克石) not only a subject of interest for mineral collectors but also for scientists and engineers exploring new technologies in optics.The origins of ulexite (尤来克石) can be traced back to arid regions where evaporation processes lead to the concentration of boron-rich minerals. Some of the most significant deposits of ulexite (尤来克石) are located in places like the Mojave Desert in California and parts of Argentina. These locations provide the perfect conditions for the formation of ulexite (尤来克石), which crystallizes in a way that creates its distinct fibrous appearance.In addition to its optical properties, ulexite (尤来克石) has several industrial applications. It is used in the production of glass and ceramics, where its boron content helps to lower melting points and improve thermal shock resistance. Furthermore, ulexite (尤来克石) is also utilized in agriculture as a micronutrient in fertilizers, providing essential boron to plants, which is crucial for their growth and development.The study of ulexite (尤来克石) has also opened up avenues for research in materials science. Scientists are investigating how the unique properties of ulexite (尤来克石) can be harnessed in creating new materials that mimic its light-transmitting abilities. This could lead to advancements in telecommunications and lighting technologies, where efficient light transmission is paramount.Moreover, the aesthetic appeal of ulexite (尤来克石) cannot be overlooked. Its translucent fibers can create stunning displays when cut and polished, making it a popular choice for jewelry and decorative items. Collectors often seek out high-quality specimens of ulexite (尤来克石) for their unique visual qualities and rarity.In conclusion, ulexite (尤来克石) is much more than just a mineral; it is a bridge between nature and technology. Its unique properties not only contribute to various industrial applications but also inspire innovative research in material sciences. As we continue to explore the potential uses of ulexite (尤来克石), it reminds us of the wonders of the natural world and the endless possibilities that arise from understanding and utilizing these natural resources responsibly.