fluorinated
简明释义
英[ˈflʊərɪˌneɪtɪd]美[ˈflʊərɪneɪtɪd]
adj. 氟化的
英英释义
Chemically treated or modified with fluorine or fluorine-containing compounds. | 用氟或含氟化合物进行化学处理或改性的。 |
单词用法
氟化油 | |
氟化表面活性剂 | |
氟化溶剂 | |
对环境有害的氟化物质 | |
可生物降解的氟化材料 | |
无毒的氟化替代品 |
同义词
氟化的 | Fluorinated compounds are widely used in industrial applications. | 氟化化合物广泛用于工业应用中。 | |
氟处理的 | Fluorine-treated materials exhibit enhanced chemical resistance. | 氟处理的材料表现出增强的化学耐受性。 | |
氟碳化合物 | 氟碳化合物常用作制冷剂。 |
反义词
例句
1.A new olefination methodology based on the nucleophile attacking fluorinated phosphonates.
亲核试剂对全氟酰基膦酸酯进攻为基础的新合成方法学。
2.Introduces the structure and properties of diamond-like fluorinated carbon film, as well as the fields of its application and developing trend.
本文介绍了氟化类金刚石膜的结构、性能、应用领域和发展趋势。
3.Some primary study on synthesis and performance of non-fluorinated SPEEK PEM and SPEEK self-humidifying membrane was carried out.
对非氟speek磺酸质子交换膜制备和性能进行了初步研究,并对自增湿speek膜进行了尝试研究。
4.Novel oil and alcohol repellent fluorinated surfactant, intermediates, producing process and application thereof.
新型憎醇-憎油含氟表面活性剂,其中间体,制备方法及应用。
5.The flame retardant additives could be classified in two classes: one was fluorinated ether and ester, the other was organic phosphorus.
阻燃添加剂主要分为两大类:一类是含氟的醚类和酯类,另一类是有机磷系。
6.The research on the synthesis of fluorinated phosphonate is ongoing.
我们对氟化膦酸酯的合成研究还在进行中。
7.Fluorinated activated carbon fibers (FACF) were prepared from activated carbon fiber (ACF) reacting directly with fluorine.
将活性炭纤维(acf)和氟气反应制备了氟化活性炭纤维(FACF)。
8.The fluorinated finish provided suede leather with better oil and waterproof properties, also raised the utility of suede leather.
经该涂饰剂处理后,能赋予绒面革较好的防油、疏水性能,提高了绒面革的实用价值。
9.The paper introduced the technical progress in air curing fluorinated polyurethane coatings.
介绍了常温固化含氟聚氨酯涂料的研究进展。
10.The new refrigerant is a fluorinated compound that reduces greenhouse gas emissions.
这种新型制冷剂是一种氟化的化合物,可以减少温室气体排放。
11.Many non-stick cookware items are made with fluorinated polymers.
许多不粘锅具是由氟化的聚合物制成的。
12.The fluorinated surfactants help improve the wetting properties of paints.
这些氟化的表面活性剂有助于改善油漆的润湿性能。
13.Researchers are studying the effects of fluorinated compounds on human health.
研究人员正在研究氟化的化合物对人类健康的影响。
14.The use of fluorinated gases in industrial applications is heavily regulated.
在工业应用中使用氟化的气体受到严格监管。
作文
In recent years, the term fluorinated has gained significant attention in discussions surrounding environmental science and public health. The process of fluorinated compounds involves the introduction of fluorine atoms into organic molecules, which can greatly enhance their chemical stability and resistance to degradation. This property makes fluorinated substances particularly useful in various industrial applications, including the production of non-stick coatings, refrigerants, and even pharmaceuticals. However, the very characteristics that make fluorinated compounds attractive also raise concerns about their environmental impact and potential health risks. One of the most widely recognized examples of fluorinated compounds is perfluorooctanoic acid (PFOA), which has been used in the manufacturing of Teflon. Although Teflon is celebrated for its non-stick properties, studies have shown that PFOA can persist in the environment and accumulate in living organisms. This persistence is a result of the strong carbon-fluorine bonds in fluorinated compounds, making them resistant to natural degradation processes. Consequently, there are growing calls for stricter regulations on the use of fluorinated chemicals, particularly those that are known to be harmful. The debate surrounding fluorinated compounds highlights a broader issue in chemistry and environmental science: the balance between functionality and safety. While the unique properties of fluorinated substances can lead to innovations in technology and product development, they also pose risks that must be carefully managed. For instance, alternatives to traditional fluorinated products are being explored, such as those made from biodegradable materials or less harmful chemical structures. These alternatives aim to provide similar benefits without the associated environmental and health risks. Moreover, the implications of fluorinated compounds extend beyond just industrial applications. In the realm of public health, research has suggested links between exposure to certain fluorinated chemicals and adverse health effects, including hormonal disruptions and increased cholesterol levels. This has led to heightened scrutiny from regulatory agencies and advocacy groups, who are pushing for more comprehensive studies to better understand the long-term effects of these substances on human health. As consumers become more aware of the potential dangers of fluorinated compounds, there is a growing demand for transparency in product labeling. Many individuals are now seeking out products that are free from these chemicals, prompting manufacturers to reconsider their formulations. This shift in consumer behavior reflects a broader trend towards sustainability and environmental responsibility, as people increasingly prioritize products that are safe for both themselves and the planet. In conclusion, the term fluorinated embodies a complex intersection of innovation, risk, and environmental stewardship. Understanding the implications of fluorinated compounds is crucial for navigating the challenges posed by modern chemistry. As we continue to explore the benefits and drawbacks of these substances, it is essential to strike a balance that allows for technological advancement while safeguarding public health and the environment. By fostering a dialogue around the use of fluorinated chemicals, we can work towards a future that embraces both progress and sustainability.
近年来,术语氟化在环境科学和公共健康讨论中引起了显著关注。氟化化合物的过程涉及将氟原子引入有机分子中,这可以大大增强其化学稳定性和抗降解能力。这种特性使得氟化物质在各种工业应用中尤为有用,包括不粘涂层、制冷剂甚至药品的生产。然而,正是这些使氟化化合物具有吸引力的特性也引发了对其环境影响和潜在健康风险的担忧。 一个被广泛认可的氟化化合物的例子是全氟辛酸(PFOA),它曾用于特氟龙的制造。尽管特氟龙因其不粘特性而受到赞誉,但研究表明,PFOA可以在环境中持久存在并在生物体内积累。这种持久性是由于氟化化合物中强碳-氟键的存在,使其对自然降解过程具有抵抗力。因此,越来越多的人呼吁对使用已知有害的氟化化学物质实施更严格的监管。 围绕氟化化合物的辩论突显了化学和环境科学中的一个更广泛问题:功能性与安全性之间的平衡。虽然氟化物质的独特性质可以导致技术和产品开发的创新,但它们也带来了必须谨慎管理的风险。例如,正在探索传统氟化产品的替代品,例如由可生物降解材料或较少有害的化学结构制成的产品。这些替代品旨在提供类似的好处,而不带来相关的环境和健康风险。 此外,氟化化合物的影响不仅限于工业应用。在公共健康领域,研究表明某些氟化化学物质的暴露与不良健康影响之间存在关联,包括激素干扰和胆固醇水平升高。这导致监管机构和倡导团体加强了审查,推动进行更全面的研究,以更好地了解这些物质对人类健康的长期影响。 随着消费者对氟化化合物潜在危险的认识提高,对产品标签透明度的需求也在增长。许多人现在寻求不含这些化学物质的产品,促使制造商重新考虑他们的配方。这种消费行为的转变反映了向可持续性和环境责任的更广泛趋势,因为人们越来越重视对自己和地球安全的产品。 总之,术语氟化体现了创新、风险和环境管理的复杂交汇点。理解氟化化合物的影响对于应对现代化学所带来的挑战至关重要。在我们继续探索这些物质的利弊时,找到一个既能促进技术进步又能保护公共健康和环境的平衡至关重要。通过围绕氟化化学物质的使用展开对话,我们可以朝着一个既拥抱进步又注重可持续发展的未来迈进。
文章标题:fluorinated的意思是什么
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