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1.
A flow injection (FI) method with a biamperometric detector, based on the biamperometry for an irreversible redox couple, is described for the determination of phenols in environmental wastewater. The method relies on coupling of the oxidation of phenols at one platinum-wire electrode with the reduction of MnO4- at another platinum wire electrode to enable biamperometric detection with an applied potential difference of 0 V. The linear dynamic range for the dependence of current on phenol concentration was from 1.0 x 10(-6) to 1.0 x 10(-4) mol L(-1), with a detection limit of 4.0 x 10(-7) mol L(-1) (signal-to-noise ratio, S/N=3). In comparison with the 4-aminoantipyrine (4-AAP) standard method and the 3-methyl-2-benzothiazoline hydrazone (MBTH) method the proposed method can be used to detect many para-substituted phenols that do not react with 4-AAP and MBTH, and response factors are higher for most of the phenols tested. The method, which is simple, economic, and rapid (180 samples h(-1)), has been applied to the analysis of four wastewater samples. The results obtained were compared with those from 4-AAP method. The recoveries obtained by adding phenol standards to samples ranged from 94.3 to 105.2% with a standard deviation of 3.6%.  相似文献   

2.
The determination of total chromium by flow injection analysis is described. Cerium(IV) and nitric acid are used to convert chromium(III) to chromium(VI); the oxidation rate is enhanced by placing the reaction coil in an 80°C oil bath. 1,5-Diphenylcarbazide is used to form a colored complex with chromium(VI) that is measured at 540 nm. For both chromium(III) and chromium(VI), relative standard deviation of less than 1% is achieved with a sampling rate of 40 per hour. Linear response is obtained for 0.5–10 mg l?1 chromium.  相似文献   

3.
A liquid chromatographic method for determination of trace phenolic compounds has been established, coupled with an on-line supported liquid membrane extraction-preconcentration flow-injection system. Tributyl-phosphate dissolved in kerosene was used as the carrier of the supported liquid membrane. Four phenolic compounds (phenol, catechol, resorcinol and hydroquinone) were chosen as the model compounds and the experiment conditions were optimized. Under the optimum conditions, calibrations were linear in the range of 1-500 microg/L, with good correlation coefficients (r > 0.999). The total analysis time of the system was 22 min, including the membrane extraction, liquid chromatographic separation and equilibration times.  相似文献   

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One of the main reasons for the underutilization of ultrafiltration has been the lack of experimental data on transmission of proteins for complex systems and its corresponding theoretical analysis. Of course, the presence of fouling coupled with concentration polarization have had their share in making ultrafiltration operation a difficult one to understand. In the present study, the systematic ultrafiltration of 3-protein mixture, namely lysozyme, myoglobin and ovalbumin, has been carried out using a hydrophilic 30,000 molecular weight cut off membrane. The experimental data of individual protein transmission in ternary mixture showed a very low transmission (as low as 3% for ovalbumin) to a very high transmission (as high as 90% for lysozyme) of proteins for different operating conditions. This behaviour of each protein in the mixture was analyzed using combined concentration polarization and irreversible thermodynamics model. The parameters of the modeled values gave a very good fit with experimental data and the resulting analysis indicated some interesting findings, which are discussed in this paper. The comparison of parameters obtained for single protein solution and the ternary protein solution showed some unusual results that point to the presence of the protein–protein and protein–membrane interactions.  相似文献   

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Summary The adaptation of the manual standard method for the determination of phenols is described, e.g., condensation with 4-amino-antipyrine with subsequent oxidation and spectrophotometric detection. A FIA manifold for the automation of the phenol determination in the ranges 0.05–1.0 ppm and 1–15 ppm is presented. At a maximum injection frequency of 105/h the repeatability of consecutive injections is generally better than 1.5% r.s.d. resp. 1.0% r.s.d. By application of a new extraction module also the chloroform extraction step of the formed dye is automized. Compared to the direct FIA manifold a maximum sensitivity enhancement of 3.5 is obtained. The detection limit is 0.005 ppm phenol. In addition to the FIA methods a forced steam distillation procedure is described, which allows the distillation of phenols within 2–5 min.
Bestimmung von Phenol im Wasser mit Hilfe der Fließ-Injektionsanalyse
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胡筱  陈莉  凌伟坚 《分析试验室》2011,30(10):81-84
在碱性介质中,低浓度的阿昔洛韦会增强鲁米诺-H2O2体系的化学发光,据此建立了测定阿昔洛韦的新方法.该法的化学发光增强值ΔICL与阿昔洛韦的浓度在9.00×10-8~3.00×10-6mol/L范围内呈良好的线性关系,相关系数r为0.9957,检出限为7.71×10 -8mol/L.对1.00×10-6 mol/L的阿...  相似文献   

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A flow injection set-up based on potentiometric detection and gas diffusion device for the determination of total nitrogen in food is described. The detection system consisted of two ammonium-sensitive electrodes placed sequentially and each alternately operating as reference electrode. Tubular electrodes without an inner reference solution were prepared with a PVC membrane composed of nonactin in Tris (2-ethylhexyl) phosphate and potassium tetrakis (4-chlorophenyl) borate to reduce the membrane resistance. The food sample digests were inserted into the system, and the ammonium present was converted into ammonia gas. The gas diffused through a gas-permeable membrane to a buffer acceptor stream with a pH that ensured transformation to the ammonium cation, which was potentiometrically detected. Good agreement between FIA results and those provided by the reference procedure was obtained, with relative deviation errors below 5%. Using the proposed system, low reagent consumption is possible, a sampling rate of about 30 samples/h was achieved, as well as a good reproducibility for consecutive injections of the same sample (variation coefficient < 2%).  相似文献   

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A flow injection set-up based on potentiometric detection and gas diffusion device for the determination of total nitrogen in food is described. The detection system consisted of two ammonium-sensitive electrodes placed sequentially and each alternately operating as reference electrode. Tubular electrodes without an inner reference solution were prepared with a PVC membrane composed of nonactin in Tris (2-ethylhexyl) phosphate and potassium tetrakis (4-chlorophenyl) borate to reduce the membrane resistance. The food sample digests were inserted into the system, and the ammonium present was converted into ammonia gas. The gas diffused through a gas-permeable membrane to a buffer acceptor stream with a pH that ensured transformation to the ammonium cation, which was potentiometrically detected. Good agreement between FIA results and those provided by the reference procedure was obtained, with relative deviation errors below 5%. Using the proposed system, low reagent consumption is possible, a sampling rate of about 30 samples/h was achieved, as well as a good reproducibility for consecutive injections of the same sample (variation coefficient < 2%). Received: 8 October 1998 / Revised: 7 January 1999 / Accepted: 12 January 1999  相似文献   

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使用己内酰胺增强Ce(Ⅳ) SO32-化学发光体系,结合流动注射分析技术进行了己内酰胺的测定。己内酰胺的质量浓度在4.0×10-7~1.0×10-5g/mL范围内与化学发光分析信号呈线性关系,其检出限为1×10-7g/mL。对4.0×10-7g/mL的己内酰胺溶液进行11次连续测定,相对标准偏差为2.1%。方法已应用于层析用聚己内酰胺中的己内酰胺测定。  相似文献   

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An isothermal distillation unit is incorporated in flow injection systems. The influence of surfactant, flow rates, alkalinity, ionic strength, collector stream pH, reagent concentration and sample volume in ammonia distillation are discussed. A method for the determination of total nitgrogen in plant digests employing Nessler reagent is proposed. This method, based on merging zones approach, is characterized by a sampling rate of 100 samples per hour, a precision better than 3%, a reagent consumption of only 100 μl per sample and virtually no base-line drift. The results agree with those obtained with the indophenol blue colorimetric method. The incorporation of isothermal distillation in flow systems with potentiometric measurement is also described.  相似文献   

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In order to achieve maximum sensitivity in flow-injection analysis, sample dispersion must be kept to a minimum. This dispersion process, however, is not well understood. Studies of the dispersion process have concentrated on dispersion within the flow manifold while dispersion due to the injection process has been largely ignored. Here sample injection loops packed with inert glass beads and a Serpentine II (distorted) empty loop were constructed and compared to traditional empty sample loops. Digitization of the response curves and subsequent calculation of the statistical moments were used to compare the contribution of each sample loop type to the total system dispersion. Both packed and Serpentine II sample loops were shown to decrease dispersion and increase throughput in flow-injection systems. Plots of peak variance vs. injection volume show variance increasing 1.67 times faster with traditional open sample loops compared to packed loops. When combined with other peak width minimization techniques, this method should further lower concentration limits of detection.  相似文献   

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Summary A modification of the German standard method for the determination of hydroxyproline (DIN 10144) is described. By applying a thermostatted reaction coil the relatively slow developing colour reaction between pyrrols and 4-dimethylaminobenzaldehyde could be adapted to FIA-conditions. The presented FIA-method allows for an injection frequency of 80/h and a sample throughput, on routine basis, of about 40/h. The reproducibility of multiple injections in the range 20–200 mg hydroxyproline/l hydrolysate is 1.5% r.s.d. Sulfuric and hydrochloric acid have been used for hydrolysis.
Bestimmung des Hydroxyprolingehaltes von Fleischerzeugnissen mit Hilfe der Fließ-Injektionsanalyse
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The consumption of ethanol is known to increase the likelihood of oral cancer. In addition, there has been a growing concern about possible association between long term use of ethanol-containing mouthwashes and oral cancer. Acetaldehyde, known to be a carcinogen, is the first metabolite of ethanol and it can be produced in the oral cavity after consumption or exposure to ethanol. This paper reports on the development of a gas-diffusion flow injection method for the online determination of salivary acetaldehyde by its colour reaction with 3-methyl-2-benzothiazolinone hydrazone (MBTH) and ferric chloride. Acetaldehyde samples and standards (80 μL) were injected into the donor stream containing NaCl from which acetaldehyde diffused through the hydrophobic Teflon membrane of the gas-diffusion cell into the acceptor stream containing the two reagents mentioned above. The resultant intense green coloured dye was monitored spectrophotometrically at 600 nm. Under the optimum working conditions the method is characterized by a sampling rate of 9 h−1, a linear calibration range of 0.5–15 mg L−1 (absorbance = 5.40 × 10−2 [acetaldehyde, mg L−1], R2 = 0.998), a relative standard deviation (RSD) of 1.90% (n = 10, acetaldehyde concentration of 2.5 mg L−1), and a limit of detection (LOD) of 12.3 μg L−1. The LOD and sampling rate of the proposed method are superior to those of the conventional gas chromatographic (GC) method (LOD = 93.0 μg L−1 and sampling rate = 4 h−1). The reliability of the proposed method was illustrated by the fact that spiked with acetaldehyde saliva samples yielded excellent recoveries (96.6–101.9%), comparable to those obtained by GC (96.4–102.3%) and there was no statistically significant difference at the 95% confidence level between the two methods when non-spiked saliva samples were analysed.  相似文献   

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Sulfate ion in river water is determined by flow injection analysis at a rate of 30 samples per hour; the sulfate contents are typically less than 30 ppm. The reagent solution contains dimethylsulfonazo-III, barium chloride, potassium nitrate and chloroacetate buffer in 70% (vv) ethanol, and is saturated with barium sulfate. The aqueous carrier stream is also saturated with barium sulfate. The sample is filtered and treated with Amberlite IR120-B cation-exchanger before injection into the carrier stream, and the decoloration of the barium—dimethylsulfonazo-III complex by sulfate is measured at 662 nm. The calibration graph is linear over the range 0–30 μg ml-1 for sulfate in water.  相似文献   

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