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1.
A multi-syringe flow injection system for the determination of total phenolics based on the 4-aminoantipyrine reaction is proposed. In-line preconcentration using solid-phase extraction was implemented, offering an environmentally friendly alternative to organic solvent extraction performed in the batch procedure and in previously described flow methodologies. Therefore, phenolic compounds were retained in Amberlite XAD4 resin using acidic conditions. The elution was carried out using 0.10molL–1 NaOH solution, promoting the ionisation of the retained phenolic compounds, and thus their desorption.Since different elution profiles were obtained for several phenol derivatives, the calibration curves were established using the peak area as analytical signal. Moreover, a dynamic calibration range was applied by using a variable sample volume (0.500–6.00mL) and calibration curves based on the mass of phenol retained in the pre-concentration column. A methodology based on a fixed sample volume (24.0mL) was also proposed for determination at concentration levels below 50µgL–1. A limit of detection of 52ng of phenol (9 or 2µgL–1) was achieved with a sampling frequency of 10–16h–1 for the variable volume method and 4h–1 for the fixed volume method. The application of the proposed methodology to reference material provided results that were within the certified acceptance limits.  相似文献   

2.
Active silica gel phase (I) was chemically modified to the corresponding amino- (SiNH2) and chloro- (SiCl) derivatives via silylation reactions. These were used to synthesize two newly modified silica gel phases (II, III) by direct chemical reaction with 2-hydroxynaphthaldehyde (2-HNA). The surface coverage values are 370, 432µmolg–1 and 320, 355µmolg–1 for (II) and (III), on the basis of thermal desorption and metal probe testing method, respectively. The metal sorption properties of silica gel phases (II, III) were studied and compared with active silica gel phase (I). The maximum determined metal capacity values were found to be 10–110, 20–290 and 20–370µmolg–1 for phases I, II and III, respectively. The distribution coefficient values (Kd) were also determined for a series of metal ions, and the results showed that the two new chemically modified phases (II and III) were highly selective for Cu2+, Zn2+, Cd2+, Hg2+ and Pb2+. The potential applications of silica gel phases (II, III) as solid phase extractors for the same five metal ions spiked in drinking tap water (1.000µgmL–1) were found to give percentage recovery values in the range of 90.2–96.3±4.1–6.3%, while pre-concentration of the same five metal ions spiked in drinking tap water (50.0ngmL–1) was successfully accomplished with a percentage recovery range of 92.6–95.8±4.8–5.7%.Received December 16, 2002; accepted May 14, 2003 published online September 1, 2003  相似文献   

3.
2,3-Dihydroxypyridine loaded (via –N=N–linker) Amberlite XAD-2 (AXAD-2-DHP) was prepared and characterized by elemental analyses, TGA and FT-IR spectra. It (1g packed in a column of 1cm diameter; surface area 135.5m2g–1) was found to be an effective solid phase sorbent for enriching Zn2+, Mn2+, Ni2+, Pb2+, Cd2+, Cu2+, Fe3+ and Co2+ at pH 3.5 to 7.0 using flow rates between 1.0–5.0mLmin–1. For desorption (recovery 97.0–99.8%) of the metal ions, 8 to 10mL of 2.0molL–1 HCl or 1.5molL–1 HNO3 at a flow rate of between 2.0 and 4.0mLmin–1 were found most suitable. The t1/2 (time for 50% sorption) is between 2 and 10min when a 50mL solution (containing a total amount of metal of 2mg) was equilibrated with 0.5g of resin. Sorption of all metal ions except Pb2+ follows the Langmuir model, whereas for Pb the data fits with the Freundlich model. The sorption capacity is between 60.7 (for Cd) and 406.7 (for Cu) µmolg–1. The resin can withstand an acid concentration of 6molL–1 and can be reused for thirty cycles of sorption–desorption. The preconcentration factor varies between 100 and 300. For Cd, Ni and Cu the sorption capacity of 2,3-dihydroxypyridine loaded cellulose is lower than that of the present resin. The tolerance limits of electrolytes, humic acid, complexing agents, Ca2+ and Mg2+ in the enrichment of all metal ions are reported. The limits of detection are 3.88, 5.37, 8.72, 13.88, 4.71, 1.24, 0.59 and 0.30µgL–1 for Zn2+, Mn2+, Ni2+, Pb2+, Cd2+, Cu2+, Fe3+ and Co2+, respectively. The calibration curves for flame AAS determination were linear in the ranges 0.018–1.0, 0.067–5.0, 0.2–5.0, 0.9–20, 0.028–2.0, 0.077–5.0, 0.19–10 and 0.1–3.5µgmL–1, respectively. All the eight metal ions in river and synthetic water samples, Co in vitamin tablets and Zn in milk samples have been quantitatively enriched with Amberlite XAD-2-DHP and determined by flame atomic absorption spectrometry.  相似文献   

4.
A simple and reliable electrochemical method for the determination of bismuth in water and nickel metal samples using a sodium montmorillonite (SWy-2) modified carbon paste electrode was described. Due to its strong cation-exchange ability and adsorptive characteristics, SWy-2 significantly enhances the sensitivity of determination for Bi3+. Bi3+ is firstly preconcentrated and then reduced on the modified electrode surface at –0.50V. After that, reduced bismuth is stripped from the electrode surface during the positive potential sweep of –0.50V to 0.20V, and a well-defined stripping peak at –0.12V appears. The stripping peak current is proportional to the concentration of Bi3+ from 4×10–9molL–1 to 1×10–6molL–1. The detection limit (signal-to-noise=3) is 1×10–10molL–1 after 5min. accumulation. The proposed method was successfully applied to the determination of bismuth in water and nickel metal samples.  相似文献   

5.
A sensitive and selective solid phase spectrophotometric method for the determination of trace amounts of inorganic mercury is described. Hg2+ was sorbed on a silica gel-packed column as an Hg2+N,N-bis(2-mercaptophenyl)ethanediamide (H2L) complex. The Hg2+ complex was eluted from the column using 7mL of acetone. Various parameters including pH, column flow rate, and ligand concentration were optimized. The complex was found to obey Beers law from 2.3 to 73.7µgmL–1 within the optimum range when the preconcentration factor was two. The effective molar absorption coefficient at 523nm was 1.17×103Lmol–1cm–1 at 523nm. The concentration limits in Beers law dropped from 0.09 to 2.95µgmL–1 within the optimum range when the preconcentration factor was 50. The relative standard deviation at a concentration level of 5µgmL–1 Hg2+ (9 repetitive determinations) was 1.6%. The detection limits are 0.34µgmL–1 and 0.015µgmL–1 when the preconcentration factors are 2 and 50, respectively. The method has been used for routine determination of trace levels of Hg2+ in natural waters. The potential application of this method for the removal of Hg2+ from natural samples (sea water and lake water) spiked with 100ngmL–1 of Hg2+ was studied. In order to validate the proposed method, LGC 6156 (harbour sediment – extractable metals) was analysed by this method. The results proved that excellent extraction of Hg2+ from both natural water samples was obtained by solid phase extraction using N,N-bis(2-mercaptophenyl) ethanediamide.  相似文献   

6.
A new macrocyclic ligand, 1,4,8,11-tetraazacyclotetradecane-1,8-bis(methylphosphonic acid) (refered to as dipon) exhibits high thermodynamic and kinetic selectivity for Cu2+ compared to other transition metal ions. The initial-rate method (=310nm, pH=3.75, cL4.6×10–3molL–1) was chosen as an optimal experimental approach in order to achieve maximum sensitivity of determination. The dynamic range of the method is (5–200)×10–6molL–1, and the detection limit is 2.5×10–6molL–1. A standard addition procedure was applied to the kinetic determination of Cu2+ to eliminate the effect of interfering ions (e.g. Zn2+, Ca2+, Mg2+, Cd2+, Pb2+, Mn2+, Co2+, Ni2+, HCO3, Cl, SO42–, etc.). The method was tested on artificial and real samples (alloys, pure and spiked mineral water) and gave satisfactory results which are in agreement with the values for some certified materials. The advantage of the proposed method is rapidity, simplicity and robustness in the presence of other metal ions.  相似文献   

7.
A microcolumn on-line preconcentration and separation system was developed for the flame atomic absorption spectrometric (FAAS) determination of trace levels of gold and palladium. The analytes were selectively adsorbed onto the microcolumn packed with 2-mercaptothiazole immobilized silica gel (MBTSG) in an acidity range of 0.1 to 6.0M HCl at a sampling flow rate of 4.0mLmin–1. The analytes adsorbed could be desorbed by a thiourea solution with a flow rate of 2.0mLmin–1. Most of the common coexisting metal ions at a concentration of 25.0mgmL–1 and anions at a concentration of 50.0mgmL–1 did not interfere with the preconcentration and determination of Au and Pd. The limits of detection (LOD), defined as three times the standard deviation of the blank (3), of Au and Pd are 10ngmL–1 and 26ngmL–1, respectively, with a preconcentration time of 60s. The relative standard deviation (RSD) is about 2.0% for 0.20µgmL–1 Au and 0.30µgmL–1 Pd. With a sample loading time of 30min, 6.7ngmL–1 Au and 10ngmL–1 Pd can be preconcentrated quantitatively. A geological sample, an anode slime and a secondary nickel alloy were successfully determined with the proposed method, and the results obtained showed good agreement with the certified values.Received December 23, 2002; accepted May 14, 2003 Published online August 8, 2003  相似文献   

8.
A simple and novel electrogenerated chemiluminescence (ECL) method for the determination of sulfite has been developed based on the energy transfer ECL process. It was found that a weak ECL signal of sulfite was electrochemically generated on a platinum electrode in neutral aqueous solution. The signal was strongly enhanced by rhodamine B as an energy receptor and further enhanced by the neutral surfactant Tween 80. In 0.10M phosphate buffer solution (pH=7.5) containing 2.0×10–6gmL–1 rhodamine B and 0.4% (v/v) Tween 80, the ECL response to the concentration of sulfite at a potential of 0.82V was linear over a range of 1.0×10–7gmL–1 to 8.0×10–6gmL–1, and the detection limit was 5×10–8gmL–1. The relative standard deviation (n=11, 1.0×10–6gmL–1) was 3.8%. The proposed method has been successfully applied to the determination of sulfite in pharmaceutical injections and white sugar samples.  相似文献   

9.
A new method for the simultaneous determination of heavy metal ions in Chinese herbal medicine by microwave digestion and reversed-phase high-performance liquid chromatography (RP-HPLC) has been developed. The Chinese herbal medicine samples were digested by microwave digestion. Lead, cadmium, mercury, nickel, copper, zinc, and tin ions in the digested samples were pre-column derivatized with tetra-(4-chlorophenyl)-porphyrin (T4-CPP) to form the colored chelates which were then enriched by solid phase extraction with C18 cartridge and eluted from the cartridge with tetrahydrofuran (THF). The chelates were separated on a Waters Xterra RP18 column by gradient elution with methanol (containing 0.05molL–1 pyrrolidine-acetic acid buffer salt, pH=10.0) and THF (containing 0.05molL–1 pyrrolidine-acetic acid buffer salt, pH=10.0) as mobile phase at a flow rate of 0.5mLmin–1 and detected with a photodiode array detector in the range of 350–600nm. In the original samples the detection limits of lead, cadmium, mercury, nickel, copper, zinc and tin are 4ngL–1, 3ngL–1, 6ngL–1, 5ngL–1, 2ngL–1, 6ngL–1, and 4ngL–1, respectively. This method was applied to the determination of lead, cadmium, mercury, nickel, copper, zinc and tin in Chinese herbal medicine samples with good results.  相似文献   

10.
A sub-micrometer thin-layer DNA modified carbon fiber microcylinder electrode was prepared by electrodeposition of ct-DNA at 1.5V (vs. Ag/AgCl). The voltammetric behavior of dopamine (3-hydroxytyramine) was investigated at the modified electrode. It was found that the modified electrode exhibits a highly electrocatalytic activity toward dopamine oxidation. Differential pulse voltammetry was used for determination of dopamine in pH 7.4 phosphate buffer solution. A linear response of the peak current versus the concentration was found in the range of 4×10–6 to 10–4molL–1 at 10–4molL–1 AA (ascorbic acid) coexistence (R=0.9959) and the range of 6×10–5 to 10–3molL–1 at 10–3molL–1 AA (R=0.9960). The presence of a high concentration of ascorbic acid did not interfere with the determination. The proposed method exhibited good recovery and reproducibility. This method can be applied to the detection of DA in real samples.  相似文献   

11.
The polarographic reduction and catalytic behavior of lovastatin are studied by polarography and cyclic voltammetry. The reduction wave of lovastatin appears at ca. –1.49V (vs. SCE) in 0.16molL–1 Na2B4O7–KH2PO4 (pH=7.4) supporting electrolyte containing 20% ethanol. It is ascribed to a 2e, 2H+ addition to the carbonyl group on lactone ring. If H2O2 is present, the reduction wave is catalyzed to produce a polarographic catalytic wave. Based on the catalytic wave, a novel method for the determination of lovastatin is proposed. A rectilinear calibration curve of the catalytic wave was obtained for lovastatin concentration in the range 1.5×10–8 to 1.0×10–6molL–1. The peak current of the catalytic wave is ca. 12 times higher than that of the corresponding reduction wave. The detection limit is 8.0×10–9molL–1. The proposed method is simpler, faster and more sensitive than the known methods for lovastatin analysis, and can be applied to the direct determination of lovastatin in pharmaceuticals, urine and serum without preliminary separation.  相似文献   

12.
A sensitive derivative adsorption chronopotentiometric method was developed to determine trace amounts of Fe3+. The influence of preconcentration time, pH of solution and constant reducing current of the peak height is discussed. The detection limit and the linear range are 5.0×10–10 and 2.0×10–93.0×10–6molL–1, respectively. The method was used to determine trace Fe3+ in KH2PO4 crystals (KDP).  相似文献   

13.
A novel electroanalytical method for the determination of physcion is described for the first time. Physcion yields an adsorption catalytic voltammetric peak at –0.74V (vs. SCE) in 0.4molL–1 NH4Cl–NH3·H2O buffer solution (pH 10.5) at a carbon paste electrode (CPE). The experimental results indicated that physcion is efficiently accumulated at a CPE by adsorption. In the subsequent potential scan, physcion was reduced to a homologous anthrahydroquinone compound. The compound was then immediately oxidized to physcion by the dissolved oxygen in the solution, and then physcion was again reduced at the CPE. As a result, a cyclic catalytic reaction was established. The second-order derivative peak current is proportional to the physcion concentration in the ranges of 2.0×10–104.0×10–9molL–1 (accumulation 90s) and 4.0×10–92.0×10–8molL–1 (accumulation 60s). The limit of detection is 8×10–11molL–1 (S/N=3) for a 120s accumulation time. The method was applied to the direct determination of physcion in the medicinal plant polygonum multiflorum Thumb with satisfactory results.  相似文献   

14.
A flow-injection procedure for the determination of iron(III) in water is described. The procedure is based on the formation of an ion pair between the tetraphenylarsonium (Ph4As+) (TPA) or tetrabutylammonium (But4N+) (TBA) cations and the tetrathiocyanatoferrate(III) complex (TTF). This ion pair is extracted with chloroform, and the absorbance of the organic phase is measured at 503nm (for Ph4As+) or 475nm (for But4N+). Iron concentrations higher than 0.9×10–6molL–1 (50µgL–1) can be detected in the first case, with a relative standard deviation of 1.9% (n=12), a linear application rangeof between 1.34 and 54.0×10–6molL–1 (75–3015µgL–1), and a sampling frequency of 30h–1. For the ion pair with But4N+, the detection limit is 0.52×10–6molL–1 (29µgL–1), with a relative standard deviation of 1.6% and a linear application range between 0.73 and 54.0×10–6molL–1. Under the proposed working conditions, only Pd(IV), Cu(II) and Bi(III) interfere. With the application of the merging zones technique, considerable amounts of organic reagent can be saved. The TBA method was applied to the analysis of iron(III) in tap and industrial waste waters.  相似文献   

15.
A novel chromogenic reagent, 2-(2-sulfo-4-acetylphenylazo)-7-(2,4,6-trichlorophenylazo)-1,8-dihydroxynaphthalene-3,6-disulfonic acid 1, was prepared by diazo coupling of 4-acetylaniline-2-sulfonic acid and 2,4,6-trichloroaniline to chromotropic acid through –N=N– groups. Based on this reagent, a simple, sensitive and selective spectrophotometric method was developed for the determination of lead. In 0.20M phosphoric acid medium, lead reacts with 1 to form a 1:2 blue complex with an absorption maximum of 654nm. Beers law is obeyed in the range of 0–0.6mgL–1 of lead. The apparent molar absorptivity is 1.25×105Lmol–1cm–1. The detection limit and quantification limit were found to be 0.63µgL–1 and 2.1µgL–1, respectively. The relative standard deviation for eleven replicate measurements was of 2.6%. The interference of foreign ions was also investigated. All the other foreign ions studied did not interfere with lead determination except for Ca(II) and Ba(II). The interference caused by Ca(II) and Ba(II) can be eliminated by prior extraction of lead with potassium iodide-methylisobutylketone (KI-MIBK). The proposed method was applied to the determination of lead in certified samples with satisfactory results.  相似文献   

16.
A photochemical chemiluminescence (CL) method for the determination of lomefloxacin (LFX) is proposed. LFX undergoes a photochemical reaction when irradiated with ultraviolet light, and a complex is formed when the photoproduct reacts with terbium(III), which can greatly enhance the CL of the Ce4+–Na2SO3 system. Under optimum experimental conditions, the linear range is between 9.0×10–10 and 1.0×10–5M, and the detection limit is 2.2×10–10M. The relative standard deviation for the determination of 5.0×10–8M LFX was 3.0% (n=11). The method has been successfully applied to the determination of LFX in dosage form, serum samples and urine samples. The recoveries were 97.9–102.3% for serum and urine samples. The possible mechanism is presented.  相似文献   

17.
The fabrication and electrochemical characteristics of a penicillamine (PCA) self-assembled monolayer modified gold electrode were investigated. The self-assembled electrode shows obvious electrocatalytic activity for the oxidation of epinephrine (EP). In phosphate buffer (pH 7.73), a sensitive oxidation peak was observed at 0.190V with the PCA modified Au electrode. The peak current is proportional to the concentration of EP in the range of 2.0×10–56.0×10–4molL–1 and 5.0×10–6 2.0×10–4molL–1 for cyclic voltammetry (CV) and differential pulse voltammetry (DPV) with the detection limits of 1.8×10–7 and 1.3×10–7molL–1, respectively. The possible reaction mechanism is also discussed. The PCA self-assembled monolayer modified gold electrode is highly stable and can be applied to the determination of EP in practical injection samples. Application is simple, rapid and produces accurate results.  相似文献   

18.
A carbon black microelectrode modified by -MnO2 has been prepared. The electrocatalytical oxidation of ascorbic acid (AA) at this microelectrode was investigated. The 2nd-order linear scan voltammograms of AA are recorded from –0.5 to 0.5V (vs. SCE). The relationship between the oxidation peak current of AA and its concentration in the range of 1.0×10–64.0×10–3molL–1 is linear. The detection limit (3) was found to be 6.0×10–7molL–1. Also, the determination of AA in samples is evaluated, and the results are satisfactory.  相似文献   

19.
A new approach, based on non-aqueous capillary electrophoresis separation and indirect photometric detection, was established for the determination of the transition metal ions Pb2+, Zn2+ and Cd2+. Under optimized conditions, the method produced baseline separation of these three metal ions. The linear range and detection limits were 1050µM, 1.9µM for Cd2+; 1050µM, 2.1µM for Zn2+; and 20100µM, 3.8µM for Pb2+, respectively.  相似文献   

20.
The physical adsorption of 2-hydroxy-2-mercaptopyrimidine (2-thiouracil) on the surface of porous silica gel and basic alumina is studied and described. Four silica and alumina materials were identified on the basis of surface coverage determination by thermal desorption method. Modified aluminas were found to be physically adsorbed with 2-thiouracil by 0.14, 0.54, and 0.43–1.63mmolg–1. Modified silica materials (I–IV) were identified by adsorption of 2-thiouracil (0.344–0.446mmolg–1). The metal sorption, binding and selectivity properties of these modified alumina and silica materials were studied and evaluated by a series of di- and trivalent metal ions. Aluminas (II–IV) were found to have high capacity in selective extraction of cadmium (II) from aqueous solutions compared to other tested metal ions. The highest metal capacity (1.0mmolg–1) was found for cadmium (II) on modified aluminas (IV). Potential application of the modified aluminas (I–IV) for selective removal and extraction of 1.0ngmL–1 of cadmium (II) from natural seawater samples was performed and compared with the modified silicas (I–IV). The modified aluminas (II–IV) showed a significantly higher capacity than the modified silicas for cadmium (II) with an average percentage recovery value of 97.8±0.4%. The matrix effect of seawater was found to play an insignificant role in the atomic absorption spectrophotometric analysis of cadmium (II).  相似文献   

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