thermolysis
简明释义
n. [化学] 热解;散热作用
英英释义
Thermolysis is the process of breaking down a compound or substance through the application of heat. | 热解是通过加热来分解化合物或物质的过程。 |
单词用法
热分解 | |
吸热热解 | |
热解热解 | |
通过热分解 | |
热解反应 | |
热解温度 | |
热解产物 | |
热解过程 | |
热解机制 | |
热解动力学 |
同义词
热分解 | Thermal decomposition is often used in the analysis of complex organic compounds. | 热分解常用于复杂有机化合物的分析。 | |
热解 | Pyrolysis is a key process in converting biomass into biofuels. | 热解是将生物质转化为生物燃料的关键过程。 |
反义词
合成 | The synthesis of new compounds is essential in drug development. | 新化合物的合成在药物开发中至关重要。 | |
形成 | 水结冰时会发生冰的形成。 |
例句
1.TiN nanorods were synthesized using electrospinning technique followed by thermolysis in different atmospheres. A dimethyl formamideCethanol solution of poly-(…
王兴雪,王海涛,钟伟,杜强国,许元泽,静电纺丝纳米纤维的方法与应用…
2.The thermolysis of organometallic precursors in combined solvents is one of the most effective methods for preparing highly crystalline and size-controlled nanocrystals.
在混合溶剂中热解金属有机前驱体是制备尺寸可控、高度晶化的纳米材料的一个有效的方法。
3.In this paper, low ash content anthracite was taken as the investigated subject, thermolysis process of anthracite and petroleum coke were investigated at the same time.
本文以低灰无烟煤为研究对象,对无烟煤和石油焦的热解进行了考察。
4.Theory and practice of thermolysis process to produce bamboo carbon and bamboo distillate, as well as their production technology, physical and chemical properties are summarized.
简述了竹炭的热解过程和原理 ,竹炭生产技术以及竹炭的一些理化性质。
5.The result showed that the atomization of molybdenum on the graphite probe surface originates from the thermolysis of his carbide compands.
结果表明:钼的原子化源于它的碳化物的热离解。
6.Among hydrogen donors tested, tetralin has the biggest effect on super heavy oil aqua-thermolysis.
供氢剂中四氢萘对超稠油水热裂解影响最大。
7.Preparation and thermolysis of the copolymer.
共聚树脂的合成及热分解性能。
8.The main factors and rules in aqua-thermolysis reaction were analyzed through comparison of viscosity, asphaltene and sulfur content before and after super heavy oil upgrading.
通过超稠油水热裂解反应前后黏度、沥青质、硫质量分数等性质的变化,研究了超稠油进行水热裂解的主要影响因素及规律。
9.Furthermore, the change law and correlative theory of powder size and morphology were studied on the process thermolysis.
此外,还研究了沉淀物在热分解过程中颗粒粒度与形貌的变化规律及相关机理。
10.Theory and practice of thermolysis process to produce bamboo carbon and bamboo distillate, as well as their production technology, physical and chemical properties are summarized.
简述了竹炭的热解过程和原理 ,竹炭生产技术以及竹炭的一些理化性质。
11.During thermolysis 热解, the molecular structure of the material is altered significantly.
在thermolysis 热解过程中,材料的分子结构会发生显著变化。
12.In laboratories, scientists often study thermolysis 热解 to understand how different compounds break down under heat.
在实验室中,科学家们经常研究thermolysis 热解以了解不同化合物在热作用下如何分解。
13.The process of thermolysis 热解 occurs when organic materials are heated to high temperatures in the absence of oxygen.
有机材料在缺氧的高温下加热时,会发生thermolysis 热解过程。
14.Researchers are exploring the potential of thermolysis 热解 for waste management solutions.
研究人员正在探索thermolysis 热解在废物管理解决方案中的潜力。
15.The thermolysis 热解 of plastics can lead to the production of useful fuels and chemicals.
塑料的thermolysis 热解可以产生有用的燃料和化学品。
作文
Thermolysis is a fascinating process that involves the decomposition of substances through the application of heat. This thermochemical reaction is essential in various fields, including chemistry, environmental science, and even in our daily lives. To better understand the concept of thermolysis (热解), we can explore its applications, significance, and underlying mechanisms.In chemistry, thermolysis (热解) is often utilized to break down complex molecules into simpler ones. For instance, when organic materials are subjected to high temperatures, they undergo thermal decomposition, resulting in the formation of gases, liquids, and solid residues. This process is crucial in the production of biofuels, where biomass is converted into usable energy sources through pyrolysis, a type of thermolysis (热解).Moreover, thermolysis (热解) plays a significant role in environmental science, particularly in waste management. The thermal treatment of waste materials can help reduce their volume and toxicity. By applying heat to municipal solid waste, harmful substances can be broken down, leading to less pollution and more efficient waste disposal methods. This technique not only minimizes landfill use but also allows for the recovery of energy from waste, showcasing the dual benefits of thermolysis (热解) in promoting sustainability.In addition to its industrial applications, thermolysis (热解) occurs naturally in various processes. For example, during wildfires, organic matter such as trees and vegetation undergoes thermolysis (热解), releasing carbon dioxide and other gases into the atmosphere. This natural phenomenon highlights the importance of understanding thermolysis (热解) in the context of climate change and ecosystem dynamics. By studying how heat affects organic materials, scientists can better predict the impacts of wildfires on air quality and global warming.Furthermore, the study of thermolysis (热解) extends beyond just chemical reactions; it also involves understanding the physical properties of materials. Different substances exhibit varying degrees of thermal stability, which influences their behavior during thermolysis (热解). For instance, some polymers may decompose at lower temperatures than others, making them more suitable for specific applications where heat resistance is crucial. This knowledge is vital in material science, as it informs the development of new materials that can withstand extreme conditions.In conclusion, thermolysis (热解) is a critical process with wide-ranging implications across various disciplines. From its role in renewable energy production to its applications in waste management and environmental conservation, understanding thermolysis (热解) is essential for addressing contemporary challenges. As we continue to explore the intricacies of this thermochemical reaction, we gain valuable insights that can lead to innovative solutions and a more sustainable future.