mineralize

简明释义

[ˈmɪnərəˌlaɪz][ˈmɪnərəlˌaɪz]

v. 使含无机化合物;使矿物化,石化;给(有机物或水等)加入矿物质:采集矿物

第 三 人 称 单 数 m i n e r a l i z e s

现 在 分 词 m i n e r a l i z i n g

过 去 式 m i n e r a l i z e d

过 去 分 词 m i n e r a l i z e d

英英释义

To convert into a mineral or to deposit minerals in something.

将某物转化为矿物或在某物中沉积矿物。

To supply or enrich with minerals.

提供或富含矿物质。

单词用法

mineralize bones

矿化骨骼

mineralize water

矿化水

mineralize nutrients

矿化营养物质

mineralize soil

矿化土壤

mineralize food

矿化食物

mineralize waste

矿化废物

同义词

fossilize

化石化

The remains of the ancient organism began to fossilize over millions of years.

古代生物的遗骸在数百万年中开始化石化。

calcify

钙化

Calcium can cause tissues to calcify, making them harder.

钙会导致组织钙化,使其变得更硬。

harden

硬化

The clay will harden when exposed to heat.

粘土在加热时会硬化。

反义词

dissolve

溶解

The salt will dissolve in water.

盐会在水中溶解。

decompose

分解

Organic matter tends to decompose over time.

有机物通常会随着时间的推移而分解。

例句

1.Through level division of the predict result which favorable for mineralize district in the studied areas . We put up a graduate method which is used to divide graduations of statistical result .

通过对研究区成矿有利区预测成果的级别划分,提出用结果分布统计图辅助分段的方法对结果值进行分段。

2.These mineral and microelement are beneficial to people's health and are helpful to mineralize about changing the water's quality.

通过这些有益人体健康的矿物质和微量元素,对改变水质起到了很好的矿化作用。

3.Calculus - If left alone long enough, plaque begins to mineralize and harden into calculus or tartar because the plaque absorbs calcium, phosphorus and other minerals from saliva.

牙结石—如果菌斑呆的时间足够长,它就开始矿化变硬形成牙石或牙垢,因为菌斑从唾液中吸收了钙,磷和其他矿物质。

4.From the study of sulfur isotope, I know that it is muti-mineralize feature, and mainly comes from magma sulfur.

对硫同位素研究显示出多期矿化特征,但硫源则均以岩浆硫为主。

5.This paper discuss the difference of main mineral in different mineralize stage at mineralogy angle.

文章从矿物学角度对银山西区铜金矿床主要矿物在不同成矿阶段上的差异进行了论述。

6.Through level division of the predict result which favorable for mineralize district in the studied areas . We put up a graduate method which is used to divide graduations of statistical result .

通过对研究区成矿有利区预测成果的级别划分,提出用结果分布统计图辅助分段的方法对结果值进行分段。

7.Soil fungi can both fix and mineralize soil nutrients and also play an active part in soil aggregate formation, which should be very important in paddy soil system.

真菌能够固结、矿化土壤养分,促进土壤团聚体的形成,它在水稻土中有很重要的作用。

8.Some water treatment processes aim to mineralize drinking water to enhance its nutritional value.

一些水处理过程旨在矿化饮用水,以提高其营养价值。

9.The geologist explained how sedimentary rocks can mineralize over time, turning into hard stone.

地质学家解释了沉积岩如何随着时间的推移而矿化,变成坚硬的石头。

10.Certain diets encourage the consumption of foods that help mineralize bones and teeth.

某些饮食鼓励摄入有助于矿化骨骼和牙齿的食物。

11.In the process of fossilization, organic materials can mineralize and preserve the shape of the original organism.

在化石化过程中,有机材料可以矿化并保留原始生物的形状。

12.The company developed a method to mineralize waste materials for use in construction.

该公司开发了一种方法,将废料矿化以用于建筑。

作文

The process of mineralize is crucial in various fields, including geology, biology, and even archaeology. To mineralize means to convert organic material into a mineral form, which can occur naturally over time or through specific processes. This transformation is significant because it helps preserve the remains of living organisms, allowing scientists to study them long after they have died. For instance, when an animal dies, its body may be buried under layers of sediment. Over thousands of years, the organic materials in the body can gradually mineralize, turning into fossils. These fossils provide valuable insights into the Earth's history, climate changes, and the evolution of species.In geology, the mineralize process can also refer to how certain rocks and minerals are formed. When magma cools and solidifies, it can create various types of igneous rocks. Similarly, sedimentary rocks can form from the compaction and cementation of sediments, where minerals precipitate out of water and bind the particles together. Understanding how minerals mineralize helps geologists learn about the conditions that existed on Earth millions of years ago.Moreover, in the field of biology, mineralize plays a vital role in the formation of bones and teeth. In humans and many other organisms, the process of mineralize involves the deposition of minerals like calcium phosphate in the organic matrix of bones, providing them with strength and rigidity. This biological mineralize process is essential for maintaining healthy skeletal structures.Archaeologists also benefit from understanding mineralize. When they excavate sites, they often find artifacts that have undergone mineralize. For example, wooden tools or structures can become mineralized over time, preserving their shape and details, which can offer clues about past human activities and cultures. By studying these mineralized remains, archaeologists can reconstruct ancient environments and lifestyles.The implications of mineralize extend beyond just scientific curiosity. The knowledge gained from studying mineralize processes can be applied to modern technology and medicine. For instance, bio-mineralization, a process similar to mineralize, is being researched for developing new materials and treatments. Scientists are exploring how to mimic natural mineralize processes to create biocompatible materials for implants and prosthetics.In conclusion, the term mineralize encompasses a wide range of processes that are fundamental to our understanding of the natural world. From the preservation of ancient life forms to the formation of rocks and the development of strong bones, mineralize plays a pivotal role in many scientific disciplines. As we continue to explore and uncover the mysteries of our planet, the significance of mineralize will undoubtedly grow, leading to new discoveries and innovations that can enhance our lives and deepen our appreciation for the complexity of nature.

“矿化”这一过程在地质学、生物学,甚至考古学等多个领域中都至关重要。“矿化”意味着将有机物质转化为矿物形式,这一过程可以自然发生,也可以通过特定的过程实现。这种转变非常重要,因为它有助于保存生物体的遗骸,使科学家能够在生物死亡后很长时间内研究它们。例如,当一只动物死亡时,其尸体可能会被埋在沉积物层下。经过数千年,有机材料可以逐渐“矿化”,变成化石。这些化石为我们提供了关于地球历史、气候变化和物种演化的宝贵见解。在地质学中,“矿化”过程也可以指某些岩石和矿物的形成。当岩浆冷却并固化时,可以形成各种类型的火成岩。同样,沉积岩可以通过沉积物的压实和胶结形成,其中矿物从水中沉淀并将颗粒结合在一起。理解矿物如何“矿化”有助于地质学家了解数百万年前地球上存在的条件。此外,在生物学领域,“矿化”在骨骼和牙齿的形成中发挥着重要作用。在人类和许多其他生物中,“矿化”过程涉及矿物如磷酸钙在骨骼有机基质中的沉积,为其提供强度和刚性。这一生物“矿化”过程对于维持健康的骨骼结构至关重要。考古学家也受益于理解“矿化”。当他们挖掘遗址时,常常会发现经历了“矿化”的文物。例如,木制工具或结构随着时间的推移可能会矿化,从而保留其形状和细节,这可以提供有关过去人类活动和文化的线索。通过研究这些矿化的遗骸,考古学家可以重建古代环境和生活方式。“矿化”的意义不仅限于科学好奇心。从研究“矿化”过程获得的知识可以应用于现代技术和医学。例如,生物矿化,与“矿化”过程类似,正在被研究用于开发新材料和治疗方法。科学家们正在探索如何模仿自然“矿化”过程,以创造生物相容性材料用于植入物和假肢。总之,“矿化”这一术语涵盖了一系列对我们理解自然世界至关重要的过程。从古代生命形式的保存到岩石的形成以及强健骨骼的发展,“矿化”在许多科学学科中发挥着关键作用。随着我们继续探索和揭示我们星球的奥秘,“矿化”的重要性无疑会不断增长,带来新的发现和创新,增强我们的生活并加深我们对自然复杂性的欣赏。