...有介孔结构的二氧化硅(SBA-15)、纳米粉体二氧化硅(SiO2)、NaY型纳米沸石分子筛、纳米碳酸钙(Nano-CaCO3)以及纳米氧化锌(Nano-ZnO)作为改性材料,通过相转化法分别制备了不同纳米材料的聚偏氟乙烯改性超滤膜。
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选用多壁纳米碳管(MWCNTs)、纳米氧化硅(NanosiliconOxide,Nano-SiOx)和纳米氧化锌(NanozincOxide,Nano-ZnO)三种纳米材料,以小麦、油菜和遏兰菜Thlaspicaerulescens为供试植物,在营养液培养的条...
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nano ZnO 纳米ZnO
nano-ZnO-TiO2 纳米ZnO
active nano-ZnO 活性纳米氧化锌
nano ZnO ceramic 纳米氧化锌陶瓷
aligned nano-ZnO 阵列纳米ZnO
Decorated nano-ZnO 修饰纳米ZnO
aligned nano-ZnO arrays 纳米ZnO阵列
nano ZnO-H2O suspension 纳米ZnO
In-situ created nano-ZnO 原位生成纳米ZnO
In order to associate standard molar formation enthalpy of nano ZnO with bulk ZnO,the relationship of standard molar formation enthalpy between nano ZnO and bulk ZnO was obtained by designing a thermochemical cycle according to thermodynamic potential function method.
基于将纳米ZnO与块体ZnO的标准摩尔生成焓相关联,依据热力学势函数法设计热化学循环,获得了纳米ZnO与块体ZnO标准摩尔生成焓的关系。
参考来源 - 纳米氧化锌的标准摩尔生成焓·2,447,543篇论文数据,部分数据来源于NoteExpress
New type flashing-speed dynamic calcination technology is used for the production of active nano-ZnO.
采用新型闪速动态煅烧技术装备,在活性纳米氧化锌生产中应用。
Different prepared conditions, microstructure and morphology of nano-ZnO were investigated by means of XRD and TEM.
借助于XRD、TEM等测试手段,对纳米氧化锌粉体的制备条件和其对粒度、形貌的影响进行了分析研究。
The influence of the mixing temperature, mixer and processing technology on the dispersibility of nano-ZnO in BR compound was investigated.
研究不同的加工温度、混炼设备、加工工艺对纳米氧化锌在BR胶料中分散性的影响。
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