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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Isolation of a wide range of minerals from a thermally treated plant: Equisetum arvense, a Mare's tale
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Isolation of a wide range of minerals from a thermally treated plant: Equisetum arvense, a Mare's tale

机译:从热处理过的植物中分离出多种矿物质:木贼Equi木,马雷的故事

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摘要

Silica is the second most abundant biomineral being exceeded in nature only by biogenic CaCO3. Many land plants (such as rice, cereals, cucumber, etc.) deposit silica in significant amounts to reinforce their tissues and as a systematic response to pathogen attack. One of the most ancient species of living vascular plants, Equisetum arvense is also able to take up and accumulate silica in all parts of the plant. Numerous methods have been developed for elimination of the organic material and/or metal ions present in plant material to isolate biogenic silica. However, depending on the chemical and/or physical treatment applied to branch or stem from Equisetum arvense; other mineral forms such glass-type materials (i.e. CaSiO3), salts (i.e. KCl) or luminescent materials can also be isolated from the plant material. In the current contribution, we show the chemical and/or thermal routes that lead to the formation of a number of different mineral types in addition to biogenic silica.
机译:二氧化硅是仅由生物成因的碳酸钙才能超过的第二大生物矿物。许多陆地植物(例如大米,谷物,黄瓜等)都会大量沉积二氧化硅,以增强其组织,并作为对病原体侵袭的系统反应。木贼科植物是最古老的维管植物物种之一,也能够在植物的所有部位吸收和积累二氧化硅。已经开发出许多方法来消除植物材料中存在的有机材料和/或金属离子,以分离生物硅。但是,取决于对白木贼科的枝干进行化学和/或物理处理;还可以从植物材料中分离出其他矿物形式,例如玻璃型材料(即CaSiO3),盐(即KCl)或发光材料。在当前的贡献中,我们显示了化学和/或热途径,这些途径除了导致生物生成的二氧化硅外,还导致形成多种不同的矿物类型。

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