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1.
本文提出了锌精矿通过微波消解,上ICP-MS测试得到铟和锗含量的方法。通过对样品分解方式的选择和质谱干扰扣除以及加标回收实验,得到铟的回收率在96.26%-98.70%,锗的回收率在99.6%-101%。通过检出限实验得到铟的检出限为0.001ug/g,锗的检出限为0.02ug/g。验证了本方法的可靠性。  相似文献   

2.
建立了用硝酸、氢氟酸、磷酸溶解样品,电感耦合等离子体发射光谱法测定锗精矿中锗量的方法。试验选择209.426nm作为最优分析谱线,锗的检出限为0.006μg/mL,测定下限为0.020 μg/mL,在磷酸基体匹配的条件下测定,测定范围为1%-15%,与经典碘酸钾滴定法对比,数据一致,相对标准偏差<3%(n=11),加标回收率98%~101%,能够满足快速测定及批量处理锗精矿中1%-15%的锗含量的需求。  相似文献   

3.
应用氢化物发生-原子荧光光谱法同时测定家禽内脏中的硒和锗含量。采用微波消解法用硝酸和过氧化氢对样品进行消解,以硫脲作为预还原剂,以溶于5g·L-1氢氧化钾溶液中的20g·L-1硼氢化钾溶液作为还原剂。硒、锗的质量浓度均在500μg·L-1范围内与其荧光强度呈线性关系,检出限(3s/k)分别为0.001 08μg·L-1和0.017 1μg·L-1。硒、锗的加标回收率分别在98.9%~102%,97.4%~102%之间。  相似文献   

4.
建立铅精矿、锌精矿、混合铅锌矿中铊的分析方法。试样采用盐酸、硝酸、硫酸消解,挥发除去硫,沉淀除去大部分铅和硅,用电感耦合等离子质谱(ICP–MS)法测定样品溶液中铊的含量。对基体及主要杂质元素的干扰情况及消除方法进行试验,优化了分析方法。铊含量在0.01~10μg/L的范围内具有良好的线性关系,线性相关系数大于0.999 9,检出限为0.001 8μg/L。测定结果的相对标准偏差为1.42%~3.96%(n=11),加标回收率为92.7%~106.8%。该方法简单、快速、准确,可用于铅锌精矿、混合铅锌矿中铊的测定。  相似文献   

5.
建立了氢化物发生-原子荧光光谱法测定铀矿石中锗元素的方法,使用HNO_3-HF-H_2SO_4-H_3PO_4混酸体系消解样品,对铀矿石中的微量Ge元素进行分析,方法检出限为0.024μg/g,样品相对标准偏差(RSD)为3.4%。通过与标准值比对,结果准确度令人满意,未知样品加标回收率在98.4%~103%。可以作为实验室日常分析含铀矿石中微量Ge元素的参考方法。  相似文献   

6.
建立了用硝酸、氢氟酸、磷酸溶解样品,电感耦合等离子体发射光谱法测定锗精矿中锗量的方法。通过对溶样方法、称样量、磷酸添加量的选择、酸度、干扰以及与国家标准方法比对等实验,选择209.426nm作为最优分析谱线,锗的检出限为0.006μg/mL,测定下限为0.020μg/mL,在磷酸基体匹配的条件下测定,与经典碘酸钾滴定法对比,测定范围为1%~15%,数据一致,相对标准偏差3%(n=11),加标回收率为98.6%~101%,能够满足快速测定及批量处理锗精矿中1%~15%的锗含量需求。  相似文献   

7.
建立了电感耦合等离子体原子发射光谱(ICP-AES)法测定铅精矿中Sb元素的分析方法。实验中对难溶解的样品,确定了采用硝酸、硫酸、酒石酸溶样的方法,并选择了最佳工作条件。实验结果表明检出限为0.005μg/mL,加标回收率为99.0%~102%,相对标准偏差为1.5%~3.2%。该方法快速准确,适用于铅精矿难溶解样品中锑含量的测定。  相似文献   

8.
为了寻求一种更加适宜测定土壤中汞含量的测试方法,将检出限低、精密度高的冷原子吸收光谱法与便捷、高效的王水水浴消解土壤处理方式相结合,建立了王水消解-冷原子吸收光谱法测定土壤中汞。通过测定方法的线性相关性、方法检出限、准确度、精密度、加标回收率,并与原子荧光光谱法进行对比实验来评价该方法的有效性。王水消解-冷原子吸收光谱法在汞质量浓度0.0~1.0μg/L范围内线性良好,相关系数可以达到0.9999,方法检出限为0.00075 mg/kg,土壤标准样品测试的相对标准偏差为4.0%~10.7%,实际样品加标回收率分别为93%~104%。采用原子荧光光谱法进行对比测试,原子荧光光谱法的方法检出限为0.0025 mg/kg,相对标准偏差为4.8%~13.5%,加标回收率为104%~107%。结果表明,对于王水水浴消解土壤的方法不仅适用于原子荧光光谱法测定汞含量,同样可以应用于冷原子吸收光谱法中。所建立的王水消解-冷原子吸收光谱法具有更低的检出限,更优的准确度和精密度,有利于提高土壤样品测试的工作效率,值得推广。  相似文献   

9.
用硝酸-过氧化氢作消解液,用微波消解法处理样品,采用电感耦合等离子体原子发射光谱法测定了鲍鱼中锌、铁、锰和铜的含量。测定结果的相对标准偏差RSD<4%,加标回收率在97.4%~105.0%之间,检出限在0.764~1.539μg/L之间。该法快速、稳定、准确,结果令人满意。  相似文献   

10.
建立了微波消解-碰撞池-电感耦合等离子体质谱法测定芝麻中痕量锗元素的测定方法。在线引入内标元素铑(Rh),同时消解液中加入正戊醇(3%)作为增敏剂。结果显示,正戊醇(3%)可使74Ge的上机检测信号强度提高2.85倍,74Ge校正曲线线性相关系数为1.000,检出限为0.056μg/kg,加标回收率为92.0%~106%,相对标准偏差(RSD)为2.6%~4.3%。采用建立的方法测定7种国家标准物质,检测结果均在认定值范围内,RSD为2.5%~8.8%。方法灵敏度高、准确,可实现批量检测,适用于芝麻中痕量锗的检测。  相似文献   

11.
Preparation, Crystal Structures, Vibrational Spectra, and Normal Coordinate Analysis of four Linkage Isomeric Trichlorotrirhodanoosmates(IV) By treatment of fac-[OsCl3I3]2? with (SCN)2 in dichloromethane the linkage isomers fac-[OsCl3(NCS)3]2? ( 1 ), mer-[OsCl3(NCS)2c(SCN)]2? ( 2 ), mer-[OsCl3(NCS)(SCN)2t]2? ( 3 ), and mer-[OsCl3(NCS)(SCN)2c]2? ( 4 ) are formed which have been separated by ion exchange chromatography on diethylaminoethyl cellulose. X-Ray structure determinations have been performed on single crystals of fac-(Ph4As)2[OsCl3(NCS)3] (triclinic, space group P1 , a = 12.142(5), b = 13.233(5), c = 19.300(5) Å, α = 98.642(5)º, β = 100.509(5)º, γ = 112.514(5)º, Z = 2), mer-(Ph4As)2[OsCl3(NCS)2c (SCN)] · acetone (triclinic, space group P1 , a = 11.707(5), b = 13.238(5), c = 19.048(5) Å, α = 75.960(5)º, β = 88.981(5)º, γ = 69.999(5)º, Z = 2), mer-(Ph4As)2[OsCl3(NCS)(SCN)2 t] (triclinic, space group P1, a = 10.6861(12), b = 11.6587(5), c = 12.5232(5) Å, α = 112.069(8)º, β = 95.052(8)º, γ = 92.559(7)º, Z = 1) and mer-(Ph4As)2[OsCl3(NCS)(SCN)2 c] · 2acetone (triclinic, space group P1 , a = 11.444(5), b = 14.661(5), c = 15.830(5) Å, α = 75.790(5)º, β = 80.273(5)º, γ = 75.205(5)º, Z = 2). The complex anions are completely ordered. The via N or S coordinated thiocyanate groups are located nearly direct above one of the cis-positioned Cl ligands with Os? N? C angles of 169.1º, 171.5º, 175.7º ( 1 ), 175.6º, 178.6º ( 2 ), 172º ( 3 ), and 173.1º ( 4 ) and Os? S? C angles of 106.2º ( 2 ), 106.1º, 106.6º ( 3 ), 105.1º, and 108.2º ( 4 ). Using the molecular parameters of the X-Ray determinations the low temperature (10 K) IR and Raman spectra of the (n-Bu4N) salts of all four linkage isomers have been assigned by normal coordinate analyses based on a modified valence force field. The valence force constants are fd(OsN) = 1.71 ( 1 ), 1.46 and 1.62 ( 2 ), 1.69 ( 3 ), and 1.61 ( 4 ), fd(OsS) = 1.27 ( 2 ), 1.36 ( 3 ), 1.32, and 1.49 mdyn/Å ( 4 ). Taking into account increments of the trans influence a good agreement between observed and calculated frequencies is achieved.  相似文献   

12.
Preparation, Crystal Structures, Vibrational Spectra, and Normal Coordinate Analysis of Four Linkage Isomeric Tetrachlorodirhodanoosmates(IV) By treatment of cis- or trans-[OsCl4I2]2? with (SCN)2 in dichloromethane the linkage isomers cis-[OsCl4(NCS)2]2? ( 1 ), trans-[OsCl4(NCS)(SCN)]2? ( 2 ), cis-[OsCl4(NCS)(SCN)]2? ( 3 ) and trans-[OsCl4(SCN)2]2? ( 4 ) are formed which have been separated by ion exchange chromatography on diethylaminoethyl cellulose. The X-Ray structure determinations on single crystals of cis-(Ph4As)2[OsCl4(NCS)2] (triclinic, space group P1 , a = 10.019(5), b = 11.702(5), c = 21.922(5) Å, α = 83.602(5)°, β = 85.718(5)°, γ = 73.300(5)°, Z = 2), trans-(Ph4As)2[OsCl4 · (NCS)(SCN)] (monoclinic, space group P21/c, a = 18.025(5), b = 11.445(5), c = 23.437(5) Å, β = 94.208(5)°, Z = 4), cis-(Ph4As)2[OsCl4(NCS)(SCN)] (triclinic, space group P1 , a = 10.579(5), b = 11.682(5), c = 22.557(5) Å, α = 81.073(5)°, β = 85.807(5)°, γ = 87.677(5)°, Z = 2) and trans-(Ph4As)2 · [OsCl4(SCN)2] (triclinic, space group P1 , a = 10.615(5), b = 11.691(5), c = 11.907(5) Å, α = 111.314(5)°, β = 96.718(5)°, γ = 91.446(5)°, Z = 1) reveal the complete ordering of the complex anions. The via N or S coordinated thiocyanate groups are located nearly direct above one of the cis-positioned Cl ligands with Os? N? C angles of 171.2° and 174.3° ( 1 ), 162.3° ( 2 ), 172° ( 3 ) and Os? S? C angles of 108.3° ( 2 ), 105.7° ( 3 ) and 105.5° ( 4 ). Using the molecular parameters of the X-Ray determinations the low temperature (10 K) IR and Raman spectra of the (n-Bu4N) salts of all four linkage isomers are assigned by normal coordinate analyses based on a modified valence force field. The valence force constants are fd(OsN) = 1.59 ( 1 ), 1.67 ( 2 ), 1.60 ( 3 ) and fd(OsS) = 1.27 ( 2 ), 1.31 ( 3 ) and 1.32 mdyn Å?1 ( 4 ). Taking into account increments of the trans influence a good agreement between observed and calculated frequencies is achieved.  相似文献   

13.
Preparation and Crystal Structure of (n-Bu4N)3[Ir(NCS)(SCN)5] The evaporated ethanolic extrakt of the reaction product of K3[IrCl6] and HNO3, refluxed with an aqueous KSCN solution yields a mixture of the linkage isomers [Ir(NCS)n(SCN)6?-n]3?, n = 0? 2, and small amounts of linkage isomeric chloropentarhodanoiridates(III), from which [Ir(NCS)(SCN)5]3? has been isolated by ion exchange chromatography on DEAE-cellulose. The X-Ray structure determination on a single crystal of (n-Bu4N)3[Ir(NCS)(SCN)5] (monoclinic, space group P 21/a, a = 17.513(5), b = 32.607(5), c = 23.661(5) Å, β = 94.757(5)°, Z = 8) confirms the existance of a heteroleptic hexakis(thiocyanato(N)-thiocyanato(S))iridate(III) with an Ir? N distance of 2.03 Å and Ir? S bond lengths between 2.29 and 2.38 Å. The SCN groups with angles between 166 and 175° are nearly linear with Ir? S? C angles from 99.9 to 109.4°. The Ir? N? C angles of the two crystallographic independent anions are 166 and 174°.  相似文献   

14.
Thermogravimetry (TG) was employed to study the thermal degradation kinetics of poly(etherketone/sulfone)ethylimide (PEK-IE and PES-IE). The corresponding decomposition activation energies and reaction orders were obtained and the comparison was made with their parent polymerspoly(ether-ketone/sulfone) with Cardo group (PEK-C and PES-C). The results show that the degradation activation energies of PEK-IE and PES-IE were lower than that of PEK-C and PES-C; and two stages of the degradation process were found for all the four polymers. For PEK-IE and PES-IE, the activation energies in the first decomposition stage are much lower than that in the second stage and the two stages can be taken as slow induction and fast degradation, whereas for PEK-C and PES-C the activation energies in the first decomposition stage are larger than that in the second stage, and the two stages can both be taken as two fast degradation stages. The decomposition mechanism of the two stages was also speculated.This revised version was published online in November 2005 with corrections to the Cover Date.  相似文献   

15.
Abstract

The reaction, in water, of Co(II), Ni(II), Cu(II), Zn(II) and Cd(II) ions with sodium ampicillinate at room temperature has allowed isolation of dimers with the following general formula [M(amp)Cl]2 × nH2O (n = 1.5?3.2). The complexes were characterized by elemental analyses, conductivity measurements, magnetic susceptibilities and spectroscopic methods (IR, Raman, EPR and UV-Visible). A dinuclear structure based on octahedrally coordinated metal ions is proposed.  相似文献   

16.
高原  张茂根  王昉  王炳祥  沈健 《应用化学》2005,22(10):1096-1099
PMDA-BPDA-HAB聚苯并噁唑的合成及耐热性;均苯四甲酸二酐;联苯四羧酸二酐;二羟基联苯胺;聚酰亚胺;聚苯并噁唑;耐热性  相似文献   

17.
Summary: The thermal degradation behavior of poly(ε-caprolactone) (PCL) and poly(L-lactic acid) (PLA) have been studied in different environment. It was found that these polymers undergo completely different degradation processes in nitrogen and oxygen atmosphere. In oxygen environment PCL and PLA mainly decompose to CO2, CO, water and short-chain acids. In nitrogen atmosphere PCL releases 5-hexenioc acid, CO2, CO and ε-caprolactone, whereas PLA decomposes to acetaldehyde, CO2, CO and lactide. The polymer blends of poly(3-hydroxybutyrate) (PHB) with PCL and PLA decompose similar to the individual homopolymers with crotonic acid as the initial decomposition product of PHB.  相似文献   

18.
In this paper, we carry out the calculation on the system (X@C60)(X=Li, Na, K, Kb, Cs; F, Cl, Br, I), where the position of X changes along 5 typical symmetry directions. For the calculation of quantum chemistry we use EHMO/ASED method, for the calculation of molecular mechanics we use Buckingham potential (exp-6-1) function, and for the calculation of thermo-chemical cycle we use individually isolating the processes such as the structure variation, charge transfer and charge distribution, and their interactions etc. The calculation results show that (1) In the region of radius r≈0.2 nm of the Ceo cage, the potential field is nearly spherical; (2) Except for Li and Na, the systems are the most stable with minimum energies at the center of C60 cage. For Li and Na, the systems are the most stable with minimum energies at r≈0.16 nm and r≈0.13 nm, respectively. In view of the interactive region of chemical bonds, the interactions between X and the C60 cage do not belong to the classical chemical bonds; (  相似文献   

19.
Cu以其优异的导电性、导热性和易加工性广泛用于工农业生产中.自然Cu的腐蚀和防腐成为人们很关注的问题.人们已经注意到,Cl-对Cu的腐蚀有影响,并进行过一些研究.但目前使用光电化学方法研究这一问题的文章尚不多见,特别是利用测量开路光电压及其瞬态波形这一现场的、无损的、灵敏的监测方法研究户对Cu电极腐蚀全过程的文章尚未见到.本文正是利用如上方法及XPS,AES方法,研究了Cl-对Cu电极腐蚀的全过程,取得了一些有意义的结果.1实验方法Cu电极用99.99%(质量分数)的Cu制成,面积约为39mm2;电极底部由Cu导线焊接引出,…  相似文献   

20.
Fundamental understanding of microphase separation in ABC miktoarm copolymers is vital to access a plethora of nonconventional morphologies. Miktoarm stars based on poly(cis 1,4-isoprene) (I), poly(styrene) (S), and poly(2-vinylpyridine) (V) are model systems, which allow systematic studies of the effects of composition, chemical microstructure, and temperature on the thermodynamics of microphase separation. Eleven ISV-x (I:S:V = 1:1:x, v:v:v) miktoarm copolymers were synthesized by anionic polymerization affording well-defined copolymers with a variable V arm. Equilibrium bulk morphologies of all samples, as evidenced by small-angle X-ray scattering, transmission electron microscopy (TEM), and self-consistent field theory, showed a systematic transition from lamellae (x ≈ 0–0.2) to [8.8.4] tiling (x ≈ 0.6–0.9) to cylinders in undulating lamellae (x ≈ 2–4) and, finally, to hexagonally packed core–shell cylinders (x ≈ 5–8). Chemical microstructure of the I arm [poly(cis 1,4-isoprene)] versus poly(3,4-isoprene) is shown to play important role in affecting morphological behavior. To reconcile differences between ISV-x star morphologies reported in the literature and those reported herein, even for the same composition, effects of the microstructure of I arm on the Flory–Huggins parameter between I and V arms were taken into account in a qualitative manner. © 2018 Wiley Periodicals, Inc. J. Polym. Sci., Part B: Polym. Phys. 2018 , 56, 1491–1504  相似文献   

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