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61.
氢的存储是车载燃料电池发展的关键环节。甲醇在室温下呈液态并且储氢量达12.6wt%,然而分解甲醇制氢需要较高的温度(超过200℃)和压强(25~50bar)。最近研究者报道了利用单核钌(Ru)基化合物作催化剂,在常温常压条件下可以将甲醇分解成CO_2和H_2;利用双核Ru基化合物作催化剂,可以将多聚甲醛或甲醛与水的混合溶液有选择性地脱氢生成H_2和CO_2,但是关于Ru基化合物微观层次的催化机制还需要进一步研究。本文综述了不同配体构型和不同种类配体对催化剂活性的影响及其脱氢路径,以及催化剂的催化活性和溶液的pH值之间的关系,阐明如何改进现有单核Ru基钳型化合物和双核Ru基化合物催化剂的性能,设计催化活性更优良的新型催化剂。  相似文献   
62.
使用偏光显微镜(POM)和扫描电子显微镜(SEM)等测试手段,研究了PVDF/PCL共混体系在不同配比和结晶温度下晶型结构、球晶和片晶形貌的变化规律。结果表明:PVDF在低温下形成α型球晶,在高温下形成γ型球晶;两种不同晶型的球晶尺寸均随着结晶温度的升高而增大;α型PVDF环带球晶的环带间距随着体系内PCL含量的增多而增大。此外,共混体系内γ型PVDF球晶的含量也随着PCL含量的增大而增大。  相似文献   
63.
在pH 7.4、0.1 mol·L-1 Hepes条件下,由Tb3+荧光测得Tb-EHPG条件稳定常数log K为13.95±0.13;EHPG与金属离子结合后分子内O…H-O型氢键断裂而导致荧光被淬灭;HBED与金属离子结合后分子内N…H-O型氢键断裂而导致荧光增强,荧光变化均与结合的金属离子的原子量成反比.由此总结了稀土离子与HBED,EHPG结合的规律.并用荧光方法推断了脱铁伴清蛋白N-,C-端结合部位酪氨酸残基的分子内氢键类型.  相似文献   
64.
Piperidine absorbs CO2 and H2O in air to form a molecular complex: piperidium-l-piperidinecarboxylate-H2O. The structure of the complex was characterized by X-ray single crystal diffraction. The crystal structure was determined to be triclinic, space group P1^-with a=0.648 6(8) nm, b=0.809 200) nm, c= 1.357 1(16) nm, a=96.96706)°, β =102.506(15)°,γ=104.202 05)°, Z=2. The complex is stabilized via five hydrogen bonds between the three components, N-O electrostatic interaction and O-O interaction (electron transfer) betweenl-piperidinecarboxylate and H2O. Due to electron transference of carbamate ion, the oxygen atom in water molecule is strongly negatively charged and the O-H bond is considerably shorter than that of the free molecule of water. The formation of the molecular complex is a reversible process and will decompose upon heating. The mechanism of formation and stabilization is further investigated herein.  相似文献   
65.
二硫基二苯并噻唑的绿色合成   总被引:1,自引:0,他引:1  
以2-巯基苯并噻唑(M)为原料,于水相(含少量丙酮)体系中,在过氧化氢的氧化下发生反应,高产率获得二硫基二苯并噻唑(DM)。  相似文献   
66.
利用微扰论,精确求解了氢原子在无外场时n=4的16重简并态能级波函数;并对处在电场中的氢原子n=4能级斯塔克效应进行了计算和分析.  相似文献   
67.
Coalbed methane (CBM) accumulation models include continuous gas accumulation and staged gas accumulation.However,studied on the geochemical characteristics and indices to evaluate staged accumulation CBM are lacking.This study for the first time obtained the carbon and hydrogen isotopic compositions of methane and ethane generated at different evolution stages using thermal simulation of samples prepared by treating an herbaceous swamp peat at different temperatures.The results showed that the carbon isotopic compositions of methane and ethane were obviously affected by the thermal evolution level of the starting sample,while the hydrogen isotopic compositions were closely related to the maturity of gases.The carbon and hydrogen isotopic compositions of gases generated by coal-forming organic matter with Ro values from 1.2%,1.7%,2.4%,3.2% and 3.7% to 5.2% were determinated.The relationship between Ro values and the carbon and hydrogen isotopic compositions of gases generated by coal-forming organic matter at different evolution stages as well as the carbon or hydrogen isotopic relationships between methane and ethane were established.The results provide a scientific basis for studying the genesis of CBM generated at different maturity intervals and understanding the geochemical characteristics of staged accumulation CBM.These results were applied to a case study on CBM from the southern Qinshui basin,and it was found that the CBM accumulated after the Middle Jurassic and was characteristic of staged gas accumulation.This is consistent with the result of geological studies,and further showed that the results of thermal simulation experiments are very important for evaluating the genesis of natural CBM.  相似文献   
68.
Almost half of the total rural area of Guizhou Province and many regions within the 11 adjacent provinces in southwestern China have a long history(at least 70 years) of endemic fluorosis,including dental fluorosis and osteofluorosis along with its associated deformities and disabilities.Over decades of research,this specific type of endemic fluorosis has been defined as coal-burning fluorosis,which is distinct from drinking-water fluorosis.It is generally acknowledged that indoor burning and combustion of high-fluorine coal leads to food contamination,and fluorine then enters the human body.However,the exact chemical form of fluorine during its release and transfer to the body is still unknown.In the present study,21 domestic coal samples from outcrop and semi-outcrop coal collected in five villages with fluorosis were analyzed by time-of-flight secondary ion mass spectrometry(TOF-SIMS).The total mass fraction of sulfur in the samples ranged from 0.24%-5.58% and total fluorine content ranged 90.2-149.2 mg/kg.H3O+,H2SO4+ and HSO4-were detected in the samples by TOF-SIMS,which indicated that sulfuric acid hydrate(H2SO4.H2O) was present in the samples.F-was detected in all of these,which suggested the samples contain ionic fluorine compounds.Under certain circumstances,such as heating or burning,the prevalence and coexistence of the acid(H2SO4.H2O) and base(F-) would lead to a neutralization reaction producing volatile hydrogen fluoride(HF,bp = 19.5℃).This would be the chemical form of fluorine released from the coal.Further studies using HF and SO2 test tubes on headspace gas over coal samples heated to 200℃ in the laboratory and on headspace gas over stoves or chimney tops at rural residences confirmed the release of HF.  相似文献   
69.
 以Kumada偶联反应为关键步骤首次合成了未见文献报道的2,4-二胺基-6-(4,5-二癸基噻吩)-1,3,5-三嗪 (T),并制备了在多重氢键作用下T与全氟链苯甲酸(A)形成的超分子液晶复合物.红外光谱(IR)与偏光显微镜(POM)研究表明T与A形成的等摩尔复合物可呈现液晶柱相,其原因可能是T与A通过氢键形成的二聚超分子的中心极性区域由于氢键的存在其极性得到加强,以及全氟链的引入提高了分子内的极性对比,利于微观相分离及分子进行有序自组装.  相似文献   
70.
碳纳米管储氢性能及H2分子扩散现象的分子动力学研究   总被引:1,自引:1,他引:0  
本文采用Brenner及LJ混合势对H2在C纳米管的吸附及H2分子在C纳米管中的扩散性质进行了分子动力学模拟. 通过模拟轨迹的分析,分别计算了C-H之间的径向分布函数、H2分子在单壁C纳米管的均方位移及通过对H2分子的均方位移的分析,计算了不同温度下的H2分子在C纳米管中的扩散系数,分析了温度对扩散系数的影响.  相似文献   
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