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1.
The Organism-organic Matter-fluid Metallogenetic Study on Shihongtan Uranium Deposit in Turpan-Hami Basin Xinjiang;
新疆吐哈盆地十红滩铀矿床的流体—有机质—生物成矿作用研究
2.
Biogenetic mineralization of Ni-Mo polymetallic ores in Lower Cambrian black shales,Zunyi,Guizhou Province
遵义下寒武统黑色岩系Ni-Mo多金属矿的生物成矿作用
3.
The order in which a formation of associated minerals is generated.
共生次序相关矿物生成时的顺序
4.
At pegmatite contacts the composition changes to chalcopyrite, millerite, pyrite, and violarite accompanied by magnetite and hematite.
在伟晶岩接触带,硫化物成分变为黄铜矿、针镍矿、黄铁矿及硫镍铁矿,伴生有磁铁矿和赤铁矿。
5.
Studies of the Biomineralization Synthesis of Spherical Hydroxyapatite;
球状羟基磷灰石的生物矿化合成研究
6.
To develop or hasten mineral formation.
成矿,矿化发展或加速矿物质的形成
7.
Authigenic Pyrite and Gypsum from ODP Leg 204 Sediments on Hydrate Ridge and Their Significances;
东太平洋水合物海岭自生矿物成因及意义
8.
Glauconite, hematite-limonite and some chlorite are formed in syndiagenesis.
形成于同生成岩期的自生矿物有海绿石,赤铁矿~褐铁矿和部分绿泥石。
9.
Preliminary Study on Microbe Groups in the Shihongtan Uranium Deposit in Xinjiang and Their Mineralization;
新疆十红滩铀矿床中微生物类群及其成矿作用初探
10.
Bioleaching, involves the biological oxidation of copper present in these ores to produce soluble copper sulfate.
生物萃取包括把含在这些矿石中的铜生物氧化并生成可溶的CuS04。
11.
a mineral consisting of tantalum oxide of iron and manganese that occurs with niobite or in coarse granite; an ore of tantalum.
一种由铁和锰的钽氧化物组成的矿物,与铌铁矿共生,亦见于粗糙的花岗岩中,是一种钽矿石。
12.
a red to reddish brown mineral consisting of iron oxide hydroxide (FeO(HO)); often found in iron ores together with goethite.
一种红色至红褐色矿物,由铁的氢氧化物组成(FeO(HO)),常与针铁矿共生于铁矿中。
13.
Organic mineralization in Jinding lead-zinc deposit,Yunnan,China:the evidence from biomarker of organic matter of wall rock and ores
云南金顶铅锌矿床的有机成矿作用——来自围岩、矿石中有机质生物标志化合物的证据
14.
The mineral composition of a sample of igneous rock.
火成岩样品的矿物构成
15.
A group of volcanic vents will produce a lava of the same mineral composition.
一群火山口将产生相同矿物成份的熔岩。
16.
Authigenic mineral assemblage formed in different ambients is distinct to each other.
两种环境下形成的自生矿物组合截然不同。
17.
Genetic Mineralogical Study of the Wild Carps' Otoliths from Heilongjiang Province;
黑龙江地区野生鲤鱼耳石的成因矿物学研究
18.
Formation of Phosphorite Deposit, Breakup of Rodinia Supercontinent and Biology Explosion;
磷矿的形成与Rodinia超大陆裂解、生物爆发的关系