• 磷酸赤红潜在之一。

    Ferric phosphate is one of the potentially phosphorous source in lateritic soils.

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  • 真空回转窑生产磷酸材料工艺方法

    The invention relates to a technique method for producing lithium iron phosphate material in a vacuum rotary kiln.

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  • E6使用的是“电池”,即比亚迪磷酸锂电池

    The E6 uses the "Fe," BYD's lithium-ion ferrous phosphate battery.

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  • 发明生产磷酸材料能耗、效率产品品质

    The lithium iron phosphate material produced by the invention has low energy consumption, high efficiency and good product quality.

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  • 公司代理的磷酸铁系列圆柱形锂电池锰。

    This the LiFePo4 lot battery cells are agented by our company. NO lead, NO manganese.

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  • 发明涉及一种离子电池用正极材料磷酸制备方法

    The invention relates to a preparation method of lithium iron phosphate as cathode material of lithium ion battery.

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  • 研究结果表明,碱式磷酸铁复合络合物一种稳定性能很好的

    The results predict that it will be a good stability flocculating agent.

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  • 一种磷酸锂锂离子电池包括正极负极隔膜电解电池外壳

    The invention discloses a lithium iron phosphate li-ion battery, comprising an anode, a cathode, a separator, an electrolyte and a battery shell.

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  • 采用化学研磨法制备了磷酸对其结构电化学性能进行了研究。

    LiFePO4 is synthesized by chemical grinding method, and the structure and electrochemical performances are studied.

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  • 介绍新型离子动力电池材料——磷酸铁大规模连续制备设备

    The article introduces a kind of continuous pattern preparation equipment in large-scale production of LiFePO4, which is a new type of Cathode Material for Lithium-ion-drive Batteries.

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  • 发明制备磷酸方法制备工艺简 单,可操作性容易实现大规模生产

    The preparation method of lithium iron phosphate has the advantages of simple preparation process, strong operability and easy realization of large-scale production.

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  • 至此开始形成的只会是磷酸铁通过控制环境研究人员能够使球体表面为玻璃质晶质

    From then on the growing sphere is just lithium phosphate and, by manipulating the conditions, the researchers were able to make the coating glassy rather than crystalline.

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  • 硬件上设计较为完善结构电路软件嵌入了针对磷酸铁电池制约对策

    Hardware has complete structure and circuit. The control strategy of LiFePO4 battery is embedded in the software.

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  • 适用范围技术规格书仅适用AT-K1212 - 1550s磷酸铁电池保护板。

    SCOPE: This specification applies to Li-ion battery protection module, AT-K1212-1550S.

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  • 适用范围技术规格书仅适用AT-K1208 - 1550s磷酸铁电池保护板。

    SCOPE: This specification applies to Li-ion battery protection module, AT-K1208-1550S.

    youdao

  • 适用范围技术规格书仅适用AT-K1616 - 2080s磷酸铁电池保护板。

    SCOPE: This specification applies to Li-ion battery protection module, AT-K1616-2080S.

    youdao

  • 综述了高温相反应溶胶-凝胶法、微波合成法、水热合成法共沉淀法制备磷酸铁锂的方法

    The synthetic methods of LiFePO4, such as high temperature solid state reaction method, sol-gel method, microwave radiation method, hydrothermal method and co-precipitation method, were summarized.

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  • 结果表明VA菌根真菌磷酸二钙、磷酸八钙、磷酸铁磷酸铝均促进了玉米植株生长增加了植株含率和吸磷总量。

    The results showed that VA mycorrhizal fungi and dicalcium phosphate, octocalcium phosphate, iron phosphate, aluminium phosphate promoted growth and increased phosphorus content of corn plant.

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  • 本文主要根据锂电池的特性,设计磷酸锂电池的充电电路保护电路,通过实验验证了本文设计的充电电路的正确性

    This paper designed the charge circuit and protection circuit of phosphoric acid iron battery, and verified the effectiveness of the charge circuit.

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  • 与锂-磷酸盐一样,其他新型材料已经到了电池三个主要部件阳极阴极电解液

    As well as lithium-iron phosphate, other innovative materials have been used for the three main battery components of anode, cathode and electrolyte.

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  • 目的测定血清脱金属传递蛋白裂解磷酸反应速率常数

    Objective: To determine the rate constants for the cleavage of pyrophosphate to phosphate by human serum apo-transferrin.

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  • 海洋硝酸盐、磷酸硅酸盐都可能成为浮游植物生长限制因子

    Phosphate, silicate, iron or nitrate can be limiting factor in the process of phytoplankton growing.

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  • 过程海洋传送高浓度磷酸盐、从而刺激浮游植物生长

    The process transfers to the Marine high concentration of phosphate nitrogen and iron, which stimulate the growth of the phytoplankton.

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  • 蛋白自身结构外加的磷酸均能影响蛋白释放速率并不改变反应级数。

    The self-structure of iron core of horse spleen ferritin and the extra phosphate had an effect upon the rate of iron release, but none change of the reaction order was observed.

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  • 蛋白结构外加的磷酸均能影响蛋白释放速率并不改变反应级数。

    The structure of iron core from horse spleen ferritin and the extra phosphate had an effect upon the rate of iron release, but the reaction order was not changed.

    youdao

  • 蛋白结构外加的磷酸均能影响蛋白释放速率并不改变反应级数。

    The structure of iron core from horse spleen ferritin and the extra phosphate had an effect upon the rate of iron release, but the reaction order was not changed.

    youdao

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