trihydrate

简明释义

[traɪˈhaɪdreɪt][traɪˈhaɪdreɪt]

n. 三水合物

英英释义

A trihydrate is a chemical compound that contains three molecules of water (H2O) for each molecule of the compound.

三水合物是指每个化合物分子与三个水分子(H2O)结合的化学物质。

单词用法

trihydrate compound

三水合物

trihydrate form

三水合形式

trihydrate crystal

三水合晶体

sodium sulfate trihydrate

硫酸钠三水合物

calcium chloride trihydrate

氯化钙三水合物

magnesium sulfate trihydrate

硫酸镁三水合物

同义词

trihydrate

三水合物

Calcium sulfate trihydrate is commonly used in plaster and drywall.

硫酸钙三水合物常用于石膏和干墙。

hydrate

水合物

Many salts can form hydrates, including trihydrates.

许多盐可以形成水合物,包括三水合物。

反义词

anhydrate

无水物

Calcium sulfate can exist as both dihydrate and anhydrate forms.

硫酸钙可以以二水合物和无水物的形式存在。

例句

1.This paper reports the experiment on the heat storage-release property of the trihydrate sodium acetate system.

报道了三水合醋酸钠体系蓄放热性能的实验研究。

2.Magnesium phosphate dibasic trihydrate;

磷酸氢镁三水合物;

3.Flame retardant of aluminium trihydrate must be modified to improve the compatibility with non-polar polymer.

为改善氢氧化铝阻燃剂与聚合物材料之间结合力差的现状,必须对其进行表面改性。

4.The preparation method prepares the potassium trimolybdate trihydrate nanowires through the reaction of hexaammonium molybdate tetrahydrate and potassium ions in water.

本发明通过四水合七钼酸铵在水中和钾离子反应制备三水合三钼酸钾纳米线。

5.The solubility of such a solvate may markedly differ from the nonsolvated form; eg, anhydrous ampicillin has a greater rate of dissolution and absorption than its corresponding trihydrate.

例如,无水氨苄西林的溶解速率和吸收比其它相应水合物的溶解吸收速率都要快得多。

6.Lead(II) acetate trihydrate;

乙酸铅(II)三水合物;

7.The solubility of such a solvate may markedly differ from the nonsolvated form; eg, anhydrous ampicillin has a greater rate of dissolution and absorption than its corresponding trihydrate.

例如,无水氨苄西林的溶解速率和吸收比其它相应水合物的溶解吸收速率都要快得多。

8.Aim To synthesize meropenem trihydrate, a carbapenem antibiotic.

目的合成碳青霉烯类抗生素美罗培南。

9.A method for increasing the floccule size and volume of alumina trihydrate during the Bayer processing of bauxite ore using a flocculant in conjunction with a water continuous polymer.

为提高在拜耳的铝土矿资源利用与水一起一连续的聚合物絮凝剂的絮凝处理规模和氢氧化铝体积的方法。

10.The effect of grain size of the bauxite on the sintering performance was studied by using a high iron trihydrate bauxite as raw material.

以某高铁三水铝石型铝土矿为原料,研究了铝土矿粒度对烧结矿产质量指标的影响。

11.When heated, the trihydrate will lose its water content and convert into anhydrous form.

加热时,三水合物会失去其水分并转化为无水形式。

12.The chemical compound was identified as a trihydrate which means it contains three molecules of water.

该化合物被确定为三水合物,这意味着它含有三个水分子。

13.The pharmaceutical company developed a new medication in trihydrate form to improve solubility.

制药公司开发了一种新的药物,采用三水合物形式以提高溶解度。

14.In the laboratory, we used a trihydrate form of the salt for our experiments to ensure accurate results.

在实验室中,我们使用了盐的三水合物形式,以确保结果准确。

15.The trihydrate of magnesium sulfate is commonly known as Epsom salt.

硫酸镁的三水合物通常被称为泻盐。

作文

In the realm of chemistry, the term trihydrate refers to a specific type of hydrate that contains three molecules of water for every molecule of the compound. Hydrates are compounds that incorporate water molecules into their structure, and they play a crucial role in various chemical processes. Understanding the concept of trihydrate is essential for students and professionals alike, as it helps in comprehending how substances behave under different conditions. For instance, one common example of a trihydrate is copper(II) sulfate trihydrate, which is represented by the formula CuSO4·3H2O. This compound is often used in laboratories and educational settings to demonstrate various chemical reactions.The significance of trihydrate compounds extends beyond mere academic interest. In industries such as pharmaceuticals, construction, and agriculture, these compounds are utilized for their unique properties. For example, in the pharmaceutical industry, certain drugs may exist as trihydrates to enhance their stability and solubility. The presence of water molecules in the structure can influence the drug's release rate and overall efficacy. Similarly, in construction, materials like gypsum are often found in a trihydrate form, which contributes to the strength and durability of the final product.Moreover, the formation of trihydrate compounds is not just a static process; it can be dynamic and reversible. For instance, when a trihydrate is heated, it may lose its water molecules, transforming into an anhydrous form. This dehydration can lead to significant changes in the material's physical and chemical properties. Conversely, when the anhydrous form is exposed to moisture, it can rehydrate and revert to its original trihydrate state. This property is particularly useful in applications where controlled release of moisture is required, such as in desiccants or humidity-regulating materials.Additionally, studying trihydrate compounds can provide insights into broader scientific principles, such as thermodynamics and crystallography. Researchers often investigate how the presence of water molecules influences the stability and structure of crystalline solids. Through such studies, scientists can develop new materials with tailored properties for specific applications.In summary, the term trihydrate encapsulates a fundamental concept in chemistry that has far-reaching implications across various fields. From enhancing drug formulations to improving construction materials, understanding trihydrate compounds allows us to harness the power of water in chemical processes. As we continue to explore the intricacies of these compounds, we uncover new possibilities for innovation and advancement in science and technology. Therefore, grasping the importance of trihydrate is not merely an academic exercise; it is a gateway to understanding the complex interactions between water and matter, paving the way for future discoveries and applications.

在化学领域,术语trihydrate指的是一种特定类型的水合物,它含有三个水分子与每个化合物分子结合。水合物是将水分子纳入其结构的化合物,它们在各种化学过程中发挥着至关重要的作用。理解trihydrate的概念对学生和专业人士来说都是必不可少的,因为它有助于理解物质在不同条件下的行为。例如,一个常见的trihydrate例子是硫酸铜三水合物,其化学式为CuSO4·3H2O。该化合物通常用于实验室和教育环境中,以演示各种化学反应。trihydrate化合物的重要性超出了单纯的学术兴趣。在制药、建筑和农业等行业,这些化合物因其独特的性质而被广泛应用。例如,在制药行业,某些药物可能以trihydrate形式存在,以增强其稳定性和溶解性。水分子的存在可以影响药物的释放速率和整体有效性。同样,在建筑中,石膏等材料通常以trihydrate形式存在,这有助于最终产品的强度和耐久性。此外,trihydrate化合物的形成不仅仅是一个静态过程;它可以是动态且可逆的。例如,当trihydrate受热时,它可能会失去水分子,转变为无水形式。这种脱水会导致材料的物理和化学性质发生显著变化。相反,当无水形式暴露于潮湿环境中时,它可以重新水合并恢复到原始的trihydrate状态。这一特性在需要控制水分释放的应用中尤为有用,例如在干燥剂或调节湿度的材料中。此外,研究trihydrate化合物可以提供对更广泛科学原理的洞察,例如热力学和晶体学。研究人员通常会探讨水分子的存在如何影响晶体固体的稳定性和结构。通过这样的研究,科学家可以开发出具有特定应用所需特性的全新材料。总之,术语trihydrate概括了化学中的一个基本概念,这在各个领域都有深远的影响。从增强药物配方到改善建筑材料,理解trihydrate化合物使我们能够利用水在化学过程中的作用。随着我们继续探索这些化合物的复杂性,我们发现了科学和技术创新与进步的新可能性。因此,掌握trihydrate的重要性不仅仅是学术练习;它是理解水与物质之间复杂相互作用的门户,为未来的发现和应用铺平道路。