1) metaboric acid lithium solvent
偏硼酸锂熔剂
3) Lithium metaborate fusion
偏硼酸锂熔样
1.
The lithium metaborate fusion decomposing technique used in the Inductively Coupled Plasma-Atomic Emission Spectrometry (ICP-AES) can determine all-components of limestone.
采用偏硼酸锂熔样,电感耦合等离子体原子发射光谱(ICP-AES)法对石灰石实现了一次熔样,全组分同时分析。
2.
It is reported this paper that the lithium metaborate fusion method decompose technique is used in the Inductively Coupled Plasma-Atomic Emission Spectromtry(ICP-AES) method determination of all-components of clay minerals.
采用偏硼酸锂熔样 ,电感耦合等离子体原子发射光谱 (ICP -AES)法对粘土矿物实现了一次熔样 ,全组分同时分析。
3.
It is reported in this paper that the lithium metaborate fusion sample preparation technique is used in the Inductively Coupled Plasma-Atomic Emission Spectrometry (ICP-AES) method for simultaneous determination of all-components of fly ash.
采用偏硼酸锂熔样电感耦合等离子体原子发射光谱法对粉煤灰实现了一次熔样,全组分同时分析。
4) lithium meta-borate melt
偏硼酸锂熔融
5) lithium metaborate
偏硼酸锂
1.
Samples were decomposed with lithium metaborate and dissolved with ultrasonic extraction.
采用偏硼酸锂熔矿分解样品,超声波振动提取,电感耦合等离子体发射光谱法同时测定同一份溶液中的硅、铝、铁、钙、镁、钾、钠、磷、锰、钛等组分。
2.
Therefore,a method for the determination of major components in silicate phase of sulphide ores,including SiO2,Al2O3,CaO,MgO,K2O,Na2O,TiO2,MnO and P2O5 by inductively coupled plasma-atomic emission spectrometry(ICP-AES) with lithium metaborate fusion sample pretreatment was proposed.
通过实验发现偏硼酸锂不能有效分解硫化物矿,但可有效分解其中以氧化物存在的造岩元素,从而可测定硫化物矿中硅酸盐相的二氧化硅、三氧化二铝、氧化钙、氧化镁、氧化钾、氧化钠、二氧化钛、氧化锰、五氧化二磷共9个主要组分。
6) Lithium me taborate (LiBO 2)
偏硼酸锂(LiBO_2)
补充资料:偏硼酸
分子式:HBO2
分子量:43.82
有三种晶体:变体III 疏松的白色粉末斜方晶体。相对密度1.78,熔点176度。变体II 单斜晶体.相对密度2.04,熔点200.9℃。 变体I 是三种变体中最稳定的一种,白色立方晶体,相对密度2.486,熔点236℃.上述三种变体溶于水均变为硼酸,偏硼酸烧灼时生成三氧化二硼。将硼酸在干燥空气流中或在80-140℃空气中脱水而制得。
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