303 resultados para ni??o problema


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Two new metal-ore supported transition metal complexes, E{M(phen)(2)}(2)(Mo8O26) (M = Ni or CO; phen = 1,10-phenanthroline) are synthesized by a hydrothermal method and characterized by X-ray crystallography, showing that the octamolybdate possesses a novel unprecedented structure and that [M(phen)(2)](2+) units are covalently bonded to the [Mo8O26](4-) cluster.

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The catalytic partial oxidation of methane to syngas over Ni/Al2O3, Pt/Al2O3 and a series of Pt - Ni/Al2O3 catalysts was investigated. It was found that Pt - Ni/Al2O3 catalysts exhibit higher activity and stability than Ni/Al2O3 and Pt/Al2O3. TPR and TPD methods were used to characterize Pt - Ni bimetallic interactions in the catalysts. A series of Pt - Ni/Al2O3 catalysts and unsupported Pt - Ni samples were studied by XRD and XPS. It was found the formation of Pt - Ni alloy in the Pt - Ni/Al2O3 catalysts and the enrichment of platinum on the surface of the catalysts. It is concluded that the higher activity and stability of Pt - Ni/Al2O3 catalysts were caused by Pt - Ni bimetallic interactions.

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The crystal structure of the title compound, bis[tris(2,2'-bipyridyl-N,N')nickel(II)] cyclo-tetravanadate undecahydrate, contains a centrosymmetric [V4O12](4-) anion, which has an eight-membered ring structure formed by four VO4 tetrahedra sharing vertices, and two complex cations containing octahedrally-coordinated Ni-II ions. The anion and coordinated Ni-II ions are isolated and make up anion and cation layers, respectively. The Ni-N distances range from 2.077(3) to 2.112(2)Angstrom and the V-O distances range from 1.621(2) to 1.803(2)Angstrom.

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The production of synthesis gas by partial oxidation bf methane in oxygen has been examined over Ni/alpha-Al2O3 catalyst promoted by noble metals(Rh, Ru, Pt and Pd), especially with Pt. The reactivity is considered in conjunction with the result of H-2-TPR, CO-TPD, SEM and XRD. It is found that small amount of Pt results in a great improvement of activity for the Ni/alpha-Al2O3 catalyst. The activity order is : Rh-Ni>Pt-Ni approximate to Ru-Ni>Pd-Ni, meantime the Pt improves the stability of Ni/alpha-Al2O3 catalyst except for Pd which is easy to he deactivated by carbon deposition. The results of TPD, SEM and XRD indicate that there is an interaction between Ni and Pt metals in the catalyst. The interaction increases the dispersions of Pt and Nit the presence of Pt suppresses the growth and the migration of Ni grains over the surface of the catalyst.

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合成了具有钙钛石ABO3结构的LaNiO3和La0.1Sr0.9NiO3及具有类钙钛石A2BO4结构的La2NiO4和LaSrNiO4等四个Ni系复合氧化物催化剂.研究了该系列复合氧化物的晶体结构,缺陷结构,B位Ni离子的价态,氧化还原性能及对NO分子的吸附性能等固态物化性质.考察了它们对NO+CO反应的催化性能,并与NO直接分解进行了对比研究.探讨了结构因素对Ni系复合氧化物催化剂的固态物化性质及催化性能的影响.提出了NO+CO反应的反应机理

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甲烷部分氧化制合成气因其高空速、高转化率、低H2/CO比而引起人们的重视[1~5].本文研究了在Ni/α-Al2O3催化剂中添加的Rh、Ru、Pt和Pd等贵金属在甲烷部分氧化制合成气反应中的催化作用,重点研究了添加Pt对Ni/α-Al2O3催化剂反应…

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研究了Ni/Al_2O_3,Pt/Al_2O_3和一系列Pt-Ni/Al_2O_3催化剂对甲烷部分氧化制合成气的催化作用,发现Pt-Ni/Al_2O_3催化剂显示了比Ni/Al_2O_3和Pt/Al_2O_3更高的活性和稳定性.H_2-TPR,CO-TPD,CO_2-TPD,SEM,XPS和XRD等结果证明:Pt和Ni之间存在较强的相互作用,Pt和部分Ni形成固溶体合金并且Pt在催化剂表面富集.Pt和Ni之间的相互作用提高了催化剂的活性和稳定性,甲烷在Pt-Ni/Al_2O_3上的催化部分氧化具有不同于在Pt/Al_2O_3和Ni/Al_2O_3上的反应性能.

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应用介电描述的复杂晶体化学键理论,给出计算Ni2+和Er3+在固体中的电子云扩大效应的新方法.

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采用XRD、UV-DRS、XPS、TPR、H2-O2滴定和吡啶吸附-红外光谱等技术,研究了负载于具有不同酸碱性的γ-Al2O3、SiO2、MgO载体上的镍催化剂表面物理化学性质,及其对甲烷与二氧化碳重整制取合成气反应催化活性的影响.结果表明,在上述负载型镍催化剂上,影响重整反应活性和积炭量的主要原因不是催化剂表面酸碱性,而是金属镍在催化剂表面的分散度.金属与载体之间的相互作用强弱,影响金属的分散度和在反应过程中的抗烧结能力.即相互作用越强,催化剂越难还原,还原后金属在表面的分散度越大,而且在反应过程中的抗烧结能力越强,从而有利于提高催化剂在甲烷与二氧化碳重整反应中的活性和稳定性

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采用XRD、UV-DRS、H2-O2滴定、TPR、吡啶吸附红外光谱等技术,研究了La2O3助剂对La2O3-Ni/SrAl12O19催化剂的还原性、表面酸性、金属镍的分散度和抗烧结能力,以及对催化甲烷与二氧化碳重整制取合成气反应性能的影响.结果表明,在负载型的镍催化剂中,添加La2O3助剂,能够削弱金属组分与载体之间的相互作用,降低催化剂的还原性,提高金属镍在催化剂表面的分散度和在反应过程中的抗烧结能力,降低催化剂表面酸性.关联甲烷与二氧化碳重整反应活性的结果,发现影响负载型镍催化剂的反应活性、稳定性和积炭性质的主要因素是金属镍的分散状态,而不是催化剂表面酸性.La2O3主要是通过改变镍的分散度来影响催化甲烷与二氧化碳重整反应活性的.

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研究了Ni/Al2O3催化剂对甲烷部分氧化制合成气的反应性能.结果表明,催化剂在其活性组份Ni为10%时反应性能最好.条件实验表明,在600~900℃范围内,甲烷转化率和CO、H2的选择性随温度升高而增加;转化率和选择性在甲烷空速≤1.5×105h-1时基本不变,空速>1.5×105h-1时,转化率和选择性有所下降.随着压力的增加(0.05~0.40MPa),转化率和选择性下降.SEM和化学分析结果证明在反应过程中,Ni组份存在烧结和流失现象.

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研究了稀土金属氧化物(La2O3,CeO2,Pr6O11和Nd2O3)对Ni/α-Al2O3催化剂上甲烷部分氧化制合成气反应的影响.X光粉末衍射和活性考察结果表明,稀土氧化物使Ni/α-Al2O3催化剂的稳定性有显著提高.稀土氧化物与活性组份Ni之间的相互作用抑制了催化剂表面Ni晶粒的生长和迁移,由于这种作用也抑制了催化剂表面积炭的生成.在实验中还发现CeO2容易进行Ce3+Ce4+氧化还原反应而对反应具有催化活性.

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Reaction of [Ph(4)P]2WS4 With NiCl2 in methanol solution in the presence of NaOCH3 leads to the formation of [Ph(4)P](2) [S2W(mu-S)(2)Ni(S-2)] (I) A Similar reaction between (NH4)(2)WS4 and NiCl2 under O-2 atmosphere in the presence of Ph(4)PCl or (n)Bu(4)NCl affords [Ph(4)P](2)([(S-2)W(O)(mu-S)(2)]Ni-2] (IIa) and [(n)Bu(4)N](2)([(S-2)W(O)(mu-S)(2)]Ni-2} (IIb) Under argon the same reaction gives [Ph(4)P](2)[Ni(WS4)(2)] (IIIa) and [(n)Bu(4)N](2)[Ni(WS4)(2)] (IIIb). [Ph(4)P](2)[Ni(WOS3)(2)] (IV) and [Ph(4)P](2)[Ni(WO2S2)(2)] (V) can be prepared from the reaction of [Ph(4)P]2WOS3 and [Ph(4)P]2WO2S2 with NiCl2. Treatment of (NH4)(2)WS4 with CuCl in the presence of PPh(3) in boiling pyridine produces W(mu-S)(4)Cu-2(PPh(3))(3) (VI), which can further react with excess PPh(3) to give W(mu-S)(4)Cu-2(PPh(3))(4) . py (VII). Complex I crystallizes in the space group P2(1)/n with the cell parameters: a = 20.049(4), b = 17.010(4), c = 14.311(7) Angstrom; beta = 110.24(3)degrees and Z = 4; R = 0.058 for 4267 independent reflections. The structural study confirms that complex I contains two terminal sulfide ligands, two bridging sulfide ligands, a side-on disulfide ligand, and a planar central W(mu-S)(2)Ni four membered ring. Complex VII crystallizes in the space group C2/c with the cell parameters: a = 26.436(8), b = 20.542(6), c = 19.095(8) Angstrom; beta = 125.00(3)degrees and Z = 4; R = 0.080 for 3802 independent reflections. The structural study reveals a perfect linear arrangement of the three metal atoms Cu-W-Cu.

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With XRD, R-T, and ac chi measurements a comparative study on the doping effects of 3d elements in Bi(1.5)Pb(0.2)Sr(2)Ca(2)Cu(2.8)M(0.2)O(y) (M = Sc, Ti, V, Cr, Mn, Fe, Co, Ni, or Zn) has been carried out. The effects of the former five members are significantly different, both on phase formed and on T-c, from the latter four. It seems that the effect on phase stabilization correlates with the valency of the doped cation. In connection with the instability of the 2223 phase, the correlation has been discussed.

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The mixed oxides LaNiO3, La0.1Sr0.9NiO3, La2NiO4 and LaSrNiO4 with perovskite (ABO(3)) and related(A(2)BO(4)) structures were prepared and the adsorption property for NO and the catalytic activity for NO decomposition over these oxidse were also tested. The catalysts were characterized by means of BET surface measurement, chemical analysis, NO-TPD etc.. It was shown that the adsorption amount of NO is correlated with the concentration of oxygen vacancy formed and the adsorption type and strength of NO are related to the valence of metallic ion. Generally there are three kinds of adsorption species, NO-, NO+ and NO on the mixed oxides, among them the negative adsorpion species (NO-) are active for NO decomposition. The weaker the adsorption of oxygen on the catalyst is, the faster the mobility of oxygen is and the easier the redox process takes place in reproducing the active sites in which the oxygen species (O-, O2-) would participate.