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赤铁矿

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He found that the red pigment proved to be iron oxide, hematite; a yellow consisted of clay containing iron or yellow ochre; a blue color was a finely powdered glass; and a pale blue was a copper carbonate, probably azurite; green were malachite; black was charcoal or boneblack; gray, a limestone mixed with charcoal; and a quantity of pigment remaining in a paint pot used in the decoration, contained a mixture of hematite with limestone and clay.

他发现红颜料是铁的氧化物赤铁矿;黄色颜料由含有铁或黄赭色粘土组成;蓝颜色为细微的玻璃粉;而普蓝就是碳酸铜,或许是蓝铜矿;绿颜料为孔雀石;黑色为木炭或骨黑;灰色,石灰石混合木炭而成;而一些颜料残留在用于彩绘装饰的颜料瓶里,含有赤铁矿与石灰石及粘土的混合物。

The delay time, generation time, specific growth rate, output and its constant are separately 8h, 0.87h, 0.79/h, 69183/h and 5322/. The hematite domesticator depresses the growth of the bacterium, but it can improve the selectivity to hematite.

驯化剂赤铁矿对草分枝杆菌的生长具有抑制作用,可使它的生长参数降低,但可明显提高它对赤铁矿的选择性捕收作用。

Geomorphic features relating to the formation of the inner plain west to the Fan-Gong dike, include (1) A series of surrounding rocky hills forming an arc-shaped embayment.

粘土矿物包括伊利石、蒙脱石、斜绿泥石和高岭石;碳酸盐矿物有文石、方解石和白云石;氧化物为刚玉、磁赤铁矿赤铁矿

The beheviour of four low-molecule weight organic acid lactic acid,hydroxy-acetic acid,mercapto-acetic acid,glyconic acid as iron-containing silicate-aegirines depressants on the hematite direct flotation is investigated in this paper.The results of flota

本文研究了四种小分子有机酸抑制剂乳酸、羟基乙酸、巯基乙酸、葡糖酸在赤铁矿正浮选中对含铁硅酸盐脉石霓石的抑制行为,纯矿物、人工混合矿与实际矿石浮选实验均证明了它们具有良好的选择性抑制作用,可以成功地实现赤铁矿与霓石的浮选分离。

Based on a brief analysis of the genesis of hematite, the authors hold that hematite in red granite was mostly produced under the condition of high oxygen fugacity.

本文对赤铁矿的成因作了简要分析,认爲红色花岗岩中的赤铁矿大多为高氧逸度条件下的产物。

The hydrophobicity of hematite surface and its gathering is greater with increase of the usage of M. phlei.

赤铁矿表面的润湿性及形成的赤铁矿聚团均随着草分枝杆菌用量的增大而增大。

Clay minerals in PM〓 collected during dust storm reached 40.3% and hornblende could been found in this kind sample, but in no-dust storm PM〓 just had a percentage of 29% and hematite could been found.

沙尘暴PM〓样品中粘土矿物的含量高达40.3%,含有角闪石没有赤铁矿;非沙尘暴PM〓样品中粘土矿物的含量为29%,没有角闪石却有赤铁矿

The results show that the perfect strength can be obtained under oxygen partial pressure about 20% O2, overhigh or low oxygen partial pressure is unfavorable for recrystallization of Fe2O3, which causes a decrease of pellet strength. The original hematite will be transformed into magnetite on reduction firstly when carbon-burdened hematite pellet is roasted in oxidizing atmosphere, and then the magnetite will be oxidized to secondary hematite, which is more active than original hematite, therefore, the induration strength of pellet is able to be enhanced.

研究结果表明:内配碳赤铁矿氧化球团在接近空气配比(氧含量约20%,体积分数)的氧化性气氛中焙烧强度最大,氧含量过高或过低都会影响Fe2O3的再结晶,使球团强度降低;在氧化性气氛中焙烧含碳赤铁矿球团时,原生赤铁矿先还原为磁铁矿,磁铁矿再氧化成活性较高的次生赤铁矿,提高了赤铁矿焙烧固结性能和球团强度。

From the results of IR and XPS spectrocopy. The cationic sol components H〓SiO〓 and 〓 of the solution trend to adsorp on the surface of electronegative aegirine because of electrostatic acctraction each other, and interrupted the collector's reaction with Fe〓 on the surface. Hence the flotation of aegirine was decreased, on the other hand, there is electrostatic repulsion between the surface of hematite and the cationic sol H〓SiO〓.〓, Which has advantage to dispersion of hematite particles, therefore, the hematite flotation is achieved sucessfully with anionic collector.

根据红外光谱和XPS测试结果可知,在弱酸性介质中,活性硅酸胶体抑制剂中荷正电的胶团H〓SiO〓及〓由于电性吸引而选择性地覆盖在荷负电的钠辉石表面,从而阻碍了阴离子捕收剂与表面Fe〓的配位作用,导致钠辉石的浮游被抑制;而赤铁矿表面由于荷正电,与矿浆中的H〓SiO〓、〓等硅酸胶团存在着电性排斥作用,有利于赤铁矿颗粒的稳定分散,所以赤铁矿能够被脂肪酸捕收剂吸附而选择性上浮。

It is the fluorosilicic ion that exsits in the slurry and plays an important role in flotation, fluorosilicic ion not only reacted with Fe〓 on the surface of aegirine to form ionic compound, but also formed stable Si-F bond in Si-O etching reaction. Only ionic compound was obtained when it was attached to hematite surface according to the theories of coordination chemistry, Compared with SiF〓, Fatty acid ion preferentially acts with Fe〓 on the minerals surface, therefore, SiF〓 Can't obstruct the adsorption of collector on the surface of hematite completly, but can reduce the flotation recovery of aegirine selectively.

运用FTIR、XPS等测试方法仔细研究了氟硅酸盐抑制剂对含铁硅酸盐钠辉石的选择性抑制作用机理,氟硅酸盐在弱酸性条件下对赤铁矿浮选的抑制作用很微弱,而对含铁硅酸盐钠辉石强烈抑制,从而扩大了两者之间的浮选差异;SiF〓是矿浆中起抑制作用的主要成分,SiF〓不仅与钠辉石表面的Fe〓形成离子型配合物,而且还与Si-O键形成稳定的Si-F共价键,而与赤铁矿表面只能形成离子型配合物,根据晶体配位场理论,与SiF〓相比较羧酸根离子将优先与矿物表面Fe〓发生配位作用,因此SiF〓的存在并不能完全阻碍捕收剂在赤铁矿表面的吸附作用,却能够选择性地抑制钠辉石的上浮。

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