γ-FeOOH,lepidocrocite
1)lepidocrocite[,lepid?u'kr?usait]γ-FeOOH
1.The photochemical bleaching for Orange I in the lepidocrocite-oxalate complex system;γ-FeOOH-草酸系统中橙黄I的光化学脱色
2.The preparation of different crystalline degree lepidocrocite (γ-FeOOH) from air oxidation of Fe(OH)2 under irradiation by visible light in the presence of trace EDTA at different temperatures (14~20 ℃) were described.进行了空气氧化Fe(OH)2悬浮液,EDTA作用下可见光诱导,不同温度(14~20℃)制备不同晶化度γ-FeOOH的研究,进行了其沸腾回流液相转化历程的探讨。
英文短句/例句

1.Preparation, Mechanism and Liquid Transformation of Products in the Presence of EDTA;EDTA作用下γ-FeOOH的合成及其液相转化研究
2.Preparation of Amorphous Feroxyhite Through Oxidation of Ferrous Sulfate Solution by Oxygen;FeSO_4溶液氧气氧化制备非晶δ-FeOOH的研究
3.Study on the Electrolytic Technology of Electrochemical Synthesis of Nano-sized FeOOH电化学合成纳米FeOOH的电解工艺研究
4.Particle Concentration Effect on Zn(Ⅱ) Adsorption at Water-Goethite InterfacesZn(Ⅱ)/α-FeOOH吸附体系的固体浓度效应
5.Study on FeOOH/TiO_2/Mmt Nanocomposite's Manufacture and Photocatalytic Degradation on Methyl Orange;负载纳米FeOOH/TiO_2/Mmt制备与光催化降解甲基橙研究
6.The Structure and Property Dependence on the Finite Size Effect for Nano α-Fe_2O_3 and α-FeOOH;纳米α-Fe_2O_3和α-FeOOH尺寸效应对结构及性质的影响
7.Catalytic Ozonation Degradation of Phenol in Water by Mesoporous α-FeOOH介孔结构的α-FeOOH对苯酚的催化臭氧化降解
8.Characterization and Self-assembly Synthesis of Biomineralized Nano-FeOOH and Its Environmental Significance;生物矿化纳米FeOOH的特征与自组装合成及其环境意义
9.Study on the Preparation of Iron Nanowire by Fluidized Reduction FeOOH Method and Its Properties;动态流化还原FeOOH法制备α-Fe纳米纤维及其性能研究
10.Studies of Oxidation Process of Fe(OH)_2 with O_2--Effect of Initial pH to Synthesis of δ-FeOOH;氧气氧化氢氧化亚铁过程的研究——初始pH值对δ-FeOOH形成的影响
11.Systhsis and Study of Nano-FeOOH/Mmt Composite Material on Removing Organic Pollutants纳米FeOOH/Mmt复合材料的制备和光催化氧化有机污染物研究
12.Preparation and Photocatalytic Activity of Nano-FeOOH/TiO_2/Mmt Composite蒙脱石基纳米FeOOH/TiO_2复合材料的制备与光催化活性研究
13.Spectral Analysis of FeOOH Prepared Through Hydrolysis and Neutralization of Ferric Solutions under Different Conditions不同因素影响下Fe(Ⅲ)水解中和法制备FeOOH矿相的光谱分析
14.Preparation of Nanocrystalline Goethite (α-FeOOH) by Gel-Network Precipitation Method and Spectral Propertiesα-FeOOH纳米微粒的凝胶网格沉淀法制备及光谱性质
15.Low Molecular Weight Oxidation By-products Produced During Catalytic Ozonation with Ferric Hydroxide of NOM Fractions Isolated from Filtrated WaterFeOOH催化臭氧氧化滤后水中NOM的小分子副产物的生成
16.Dark field image of γ′, γ″ phases can be obseved in the same time by using superposed superlattice spot of (110) reciprocal plane of γ′_a, γ″ phases.利用γ′、γ″在(110)倒易面上超结构斑点重合来同时显现γ′、γ″相。
17.β-FeOOH Nanospindles:Facile Synthesis and Their Transition to α-Fe_2O_3 Submicron/Micro-particles纺锤形β-FeOOH纳米结构和α-氧化铁亚微米/微米粒子的合成与转变(英文)
18.gamma motor neuronγ运动神经元 γ运动神经原
相关短句/例句

raft-like lepidocrocite筏状γ-FeOOH
1.The novelty of the article lies in the new style raft-like lepidocrocite prepared by O_3 oxidant, moreover, we firstly take into account.本文的创新之处在于采用O_3作氧化剂氧化Fe(OH)_2悬浮液并得到了一种新型的筏状γ-FeOOH,另外本文率先将可见光的影响引入实验体系,并对其影响机制进行了初步探讨。
3)In-situ formed γ-FeOOH filmγ-FeOOH锈膜
4)nano α-FeOOH纳米α-FeOOH
5)superfineα-FeOOH超细α-FeOOH
1.Reactionkineticsofsuperfineα-FeOOHpreparedwithairoxidationprocessintracealkalimedium isstudied.研究了微碱性介质中空气氧化法制备超细α-FeOOH反应的动力学过程。
6)acicular α-FeOOH针形α-FeOOH
延伸阅读

(γ-γ′)反应分子式:CAS号:性质:指γ光子与靶核作用,使其激发,然后以发射光子形式退激发的过程。出射光子的能量与受激靶核性质有关,为靶核激发态与基态这两个能级之差值。该反应截面很小,只有毫靶恩量级。