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991.
SDS及其与十二烷基三乙基溴化铵混合体系在矿化水中的表面活性 总被引:8,自引:1,他引:8
测定了十二烷基硫酸钠(SDS)、十二烷基三乙基溴化铵(DTEAB)单一体系及不同摩尔比的混合体系在矿化水溶液中的表面活性,并与在纯水和NaCl水溶液中的表面活性作了比较.所得结果表明:(1)阴离子表面活性剂SDS在含Ca^2 ,Mg^2 等的矿化水中有比在纯水和NaCl水溶液中更好的表面活性.这一方面是由于矿化水中的Ca^2 ,Mg^2 对负电胶团和表面吸附层的强烈电性作用,另一方面在大量Na^ 存在时,钠钙盐混合表面活性剂Krafft点提高不多;(2)SDS和DTEAB混合物在矿化水中具有很强的增效作用,其表面活性的变化规律与在纯水和NaCl水溶液中基本相同,表明阴阳离子表面活性剂混合体系具有优异的抗矿化水性能.这些结果可用阴、阳表面活性离子的电性作用解释. 相似文献
992.
IH Alsohaimi ZA Alothman MR Khan MA Abdalla R Busquets AK Alomary 《Journal of separation science》2012,35(19):2538-2543
Bromate is a byproduct formed as a result of disinfection of bromide-containing source water with ozone or hypochlorite. The International Agency for Research on Cancer has recognized bromate as a possible human carcinogen, thus it is essential to determine in drinking water. Present work highlights a development of sensitive and fast analytical method for bromate determination in drinking water by using ultraperformance liquid chromatography-tandem mass spectrometry. The quality parameters of the developed method were established, obtaining very low limit of detection (0.01 ng/mL), repeatability and reproducibility have been found to be less than 3% in terms of relative standard deviation when analyzing a bromate standard at 0.05 μg/mL with 0.4 min analysis time. Developed method was applied for the analysis of metropolitan and bottled water from Saudi Arabia; 22 samples have been analyzed. Bromate was detected in the metropolitan water samples (from desalinization source) at concentrations ranging between 3.43 and 75.04 ng/mL and in the bottled water samples at concentrations ranging between 2.07 and 21.90 ng/mL. Moreover, in comparison to established analytical methods such as liquid chromatography-tandem mass spectrometry, the proposed method was found to be very sensitive, selective and rapid for the routine analysis of bromate at low level in drinking water. 相似文献
993.
994.
Daniel J. Sindhikara Norio Yoshida Fumio Hirata 《Journal of computational chemistry》2012,33(18):1536-1543
We have created a simple algorithm for automatically predicting the explicit solvent atom distribution of biomolecules. The explicit distribution is coerced from the three‐dimensional (3D) continuous distribution resulting from a 3D reference interaction site model (3D‐RISM) calculation. This procedure predicts optimal location of solvent molecules and ions given a rigid biomolecular structure and the solvent composition. We show examples of predicting water molecules near the KNI‐272 bound form of HIV‐1 protease and predicting both sodium ions and water molecules near the rotor ring of F‐adenosine triphosphate (ATP) synthase. Our results give excellent agreement with experimental structure with an average prediction error of 0.39–0.65 Å. Further, unlike experimental methods, this method does not suffer from the partial occupancy limit. Our method can be performed directly on 3D‐RISM output within minutes. It is extremely useful for examining multiple specific solvent–solute interactions, as a convenient method for generating initial solvent structures for molecular dynamics calculations, and may assist in refinement of experimental structures. © 2012 Wiley Periodicals, Inc. 相似文献
995.
Catarina I. V. Ramos M. Graça Santana‐Marques A. J. Ferrer‐Correia Joana F. B. Barata Augusto C. Tomé M. Graça P. M. S. Neves J. A. S. Cavaleiro Paulo E. Abreu Mariette M. Pereira Alberto A. C. C. Pais 《Journal of mass spectrometry : JMS》2012,47(4):516-522
Two new isomeric aminomethyl corrole derivatives of [5,10,15‐tris(pentafluorophenyl)corrolato]gallium(III) were synthesized with pyridine (py) molecules as axial ligands. When investigated by electrospray ionization mass spectrometry, in the positive and the negative ion modes, these compounds showed an unusual gas‐phase behavior that could be used for their differentiation. In the positive ion mode, the differentiation was achieved through the formation of diagnostic fragment ions formed from [M‐py + H]+ precursors, by (CH3)2NH and HF losses. An unusual addition of water to the main fragment ions provides an alternative route for isomer identification. Semi‐empirical calculations were performed to elucidate the structures and stabilities of the main ionic species formed in the positive ion mode. In the negative ion mode isomer discrimination is accomplished via the fragmentation of the methoxide adduct ions [M‐py + CH3O]‐ through (CH3)2 N. and HF losses. Copyright © 2012 John Wiley & Sons, Ltd. 相似文献
996.
A copolymer system of 2‐aminoethyl methacrylate and N‐isopropylacrylamide comprises novel properties: changes in conformation and hydrophilicity upon heating influence the antibacterial activity and result in a switchable biocidal effect. The copolymers are characterized via NMR, MALDI‐ToF MS, phase transition behavior, and antibacterial tests with E. coli or B. subtilis. MIC and MBC are determined using standard dilution methods, temperature‐dependence via incubation at different temperatures and cytotoxicity by MTT tests. The copolymers exhibit lower MIC in globule than coil conformation, crosslinking on cotton results in non‐leaching materials with better antibacterial activity above than below the phase‐transition point.
997.
《Analytical letters》2012,45(3):489-501
ABSTRACT By using the Pb-4-methylpiperidinedithiocarbamate complex (Pb(4-MPDC)2) on microcrystalline naphthalene in a column a method was developed for the preconcentration of copper in water samples prior to its determination by FAAS. In this method, copper in liquid phase quantitatively replaces lead on the Pb(4-MPDC)2-naphthalene solid phase in the column, forming solid Cu(4-MPDC)2 complex. Afterwards, copper on Cu(4-MPDC)2-naphthalene can be easily eluted by potassium cyanide into the aqueous phase, and the Cu is measured by FAAS. The optimum experimental parameters such as pH, flow rate, sample volume, Pb(4-MPDC)2-naphthalene ratio, concentration of the potassium cyanide solution and effect of matrix ions for the preconcentration of copper were investigated. The obtained recovery was nearly 100 %, when the enrichment factor was 100 for standard solutions and spiked water samples. The proposed method has been employed for the determination of copper in various standard metal alloys and natural water samples. 相似文献
998.
《Analytical letters》2012,45(8):1591-1601
ABSTRACT A simple, sensitive and selective method is proposed for the determination of copper(II) by adsorption-differential pulse stripping method. This method is based on the selective accumulation of the complexes of Cu(II) with l-(2-pyridylazo)-2-Naphthol and then reduction of the complex on a HMDE. The reduction current of the complex is about 0.0V vs. Ag/AgCl reference electrode at p8543146=4.0. The influences of various experimental parameters on the current peak were completely studied. The calibration graph was linear up to 50.0 ng/ml for a deposition time of 60 sec. The relative standard deviation was 2.3% (n=5) for Cu(II) concentration of 10.0 ng/ml, with a limit of detection of 0.2 ng/ml. The influence of potentially interfering ions was completely studied. The method has been applied for the determination of Cu(II) in water samples. 相似文献
999.
《Analytical letters》2012,45(4):823-833
Abstract A simple, sensitive, and specific spectrophotometric method for the measurement of nitrite in water has been developed and optimum reaction conditions along with other analytical parameters have been evaluated. The azo dye, 4‐(1‐methyl‐1‐mesitylcylobutane‐3‐yl)‐2‐(p‐N,N‐dimethylazobenzene)‐1,3‐thiazole was synthesized with the reaction of 4‐(1‐methyl‐1‐mesitylcylobutane‐3‐yl)‐2‐aminothiazole and N,N‐dimethyl aniline in acidic medium. Obtained azo dye has been characterized by infrared (IR), 1H nuclear magnetic resonance (NMR), and microanalysis methods. The dye shows an absorption maximum at 482 nm. The method is optimized for acid concentration, pH, amount of reagents required, time, and interfering species. All the determinations were carried out at this wavelength throughout the work. At an analytical wavelength of 482 nm, Beer's law is obeyed over the concentration range 0.05 to 2.00 µg nitrite per mL analyte. The molar absorptivity, Sandell's sensitivity, and relative standard deviation are 2.03×104 L mol?1 cm?1±251.3 (95%), 2.28×10?3 µg cm?2, and 2.74% (n=10), respectively. The detection limit of the method is 0.012 µg ml?1 of nitrite ion. The method was succesfully applied to the determination of nitrite in tap water and lake water. 相似文献
1000.
《Analytical letters》2012,45(5):937-946
Abstract This study reported that the hapten of 2,4,6‐trichlorophenol (2,4,6‐TCP) was synthesized by using 2,4,6‐TCP reacted with chloroactic acid in alkaline solution. The hapten was conjugated to bovine serum albumin (BSA) with the modified active ester method to form artificial immune antigen. The anti‐TCP polyclonal antibodies were obtained by using the artificial immuneantigen (TCP‐BSA) to immunize the rabbits. Using the purified antiserum of highest specificity, an antibody‐coated fluoroimmunoassay was developed that shows an IC50 of 4.8 µg/L with a limit of detection of 0.25 µg/L. The antibody showed negligible cross‐reactivity with other phenols, which makes their assays suitable for the selective detection of 2,4,6‐TCP. It shows a good accuracy and suitability to analyze, 2,4,6‐TCP in environmental water. 相似文献