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 共查询到19条相似文献,搜索用时 218 毫秒
1.
利用微量热计Micro DSCⅢ对重金属离子影响脲酶催化水解反应的过程进行研究, 并探讨重金属离子联合抑制作用对脲酶催化反应的影响. 结果表明, 在25℃下, 重金属离子对脲酶水解反应热有影响, 在广泛浓度范围(0.1, 1, 10, 100和103 mg/L)内, 这种影响不仅表现在抑制作用方面, 而且会促进其水解反应的进行, 如铜离子在100和1000 mg/L时抑制率分别为(0.49±0.20)%和(-11.93±1.34)%. 重金属离子浓度与抑制率具有显著或极显著的相关性, 抑制效果的顺序为砷离子>铅离子>镉离子>铜离子. 当重金属离子联合抑制时, 其抑制效果与抑制率较高的重金属离子的抑制作用接近.  相似文献   

2.
建立了一种测定酒中叠氮化物的离子色谱方法(IC)。样品经稀释、过滤后,依次过OnGuard RP柱和OnGuard Na柱以除去疏水性物质和重金属离子的干扰。以KOH梯度淋洗,淋洗液流速为1.0 mL/min,采用DionexIonPacAS18色谱柱分离,IonPac TAC-UPL1预浓缩富集进样,最后用DS6电导检测器检测,外标法定量。N3-的线性范围为0.005~0.5μg/mL,线性相关系数为0.9998,加标回收率为88%~106%,检出限为0.002μg/mL(以信噪比S/N=3计),相对标准偏差为0.1%~0.6%。  相似文献   

3.
范银苹  李杉  樊柳荫  曹成喜 《色谱》2012,30(8):827-831
建立了一种可视化的、利用移动中和界面离线富集-毛细管电泳检测电镀水中痕量重金属离子的新方法。在该富集系统中,阳极电解液为2.1 mmol/L HCl-98 mmol/L KCl-痕量重金属离子,阴极电解液为4.0 mmol/L NaOH-96 mmol/L KCl,界面向阴极移动,分离电压为180 V,阴极电解液和阳极电解液的流速均为1 mL/min。富集后凝胶中的金属离子浓度用毛细管电泳检测,标准曲线在实验浓度范围内均有良好的线性关系(r≥0.9985),预富集倍数达80~150倍,Cu(II)、Zn(II)、Ni(II)、Mg(II)、Ca(II)、Cr(III)和Fe(III)的检出限分别为0.163、0.256、0.077、0.153、0.203、0.062和0.142 mg/L,均明显低于国家规定标准;日内和日间精密度均小于7.42%。所建方法已成功用于实际电镀废水样品中痕量重金属离子的富集和检测。  相似文献   

4.
本文用磁性壳聚糖作为载体用吸附法对脲酶进行固定化研究。结果表明,磁性壳聚糖对脲酶的固载量与磁性壳聚糖微球的粒径、交联度及酶溶液的离子强度成反比;固定化脲酶和自由酶的最适温度分别为80℃和70℃,固定化脲的最适合pH值变化不大,固定化脲酶和自由酶的米氏常数km分别为0.00546mol/L和0.19mol/L。  相似文献   

5.
王璟琳  刘国宏  张新荣 《分析化学》2004,32(8):1006-1010
建立了一种以纳米TiO2固相萃取与ICP-MS联用技术为基础的测定雪水中痕量重金属离子的方法。合成了3种不同粒径的纳米TiO2,研究了粒径对重金属离子分离富集效率的影响,发现其萃取效率随着粒径的增大而降低。在最佳条件下,水样中重金属离子Cu^2 、Cd^2 、Pb^2 和Mn^2 的检出限分别为10、11、1和15ng/L。雪水中痕量重金属离子的分析结果表明,该方法灵敏、简便、快速,适于地表水的分析。  相似文献   

6.
矿山开采、 金属冶炼、 新型金属材料的发展以及城市供水系统老化所造成的重金属(铅、 镉、 汞、 砷、 铬、 铜及锌等)污染问题已日趋严重. 传统的水处理方法很难有效地去除低浓度的重金属污染物. 本文以天然木材为载体, 采用溶剂热合成法, 在木材三维孔道中原位合成UiO-66-NH2金属有机框架材料(MOFs)纳米颗粒, 制备了UiO-66-NH2/wood复合膜材料. 该复合膜材料对去除水中微量重金属离子(Hg2+, Cu2+)表现出优异的性能. 当处理速率为1.1×102 L?m-2?h-1时, 该复合膜材料去除水中微量重金属离子的效率仍可达到90%以上, 且处理后水中重金属离子含量低于国家饮用水标准. 这可归因于木材本身独特的三维孔道结构, 在提高水通量的同时, 还可以增加水溶液中重金属离子与MOFs颗粒的接触机会, 以及孔道内均匀分布的UiO-66-NH2 MOFs颗粒中的—NH2可以与重金属离子通过配位作用相结合. 该UiO-66-NH2/wood复合膜材料还具有良好的重复利用性, 在连续6次循环使用后其去除效率无明显变化, 有望进行实际应用.  相似文献   

7.
载双硫腙螯合纤维制备及富集重金属离子研究   总被引:1,自引:0,他引:1  
合成了一种聚苯乙烯基载双硫腙 (DzS) 螯合纤维,研究了该纤维对4种重金属离子的螯合性能,讨论了吸附酸度、吸附时间等对4种重金属吸附性能的影响,选择了适当的反应条件,得出了该螯合纤维对重金属离子吸附量及选择性大小顺序:Pd(Ⅱ)>Cu(Ⅱ)>Co(Ⅱ)>Cd(Ⅱ),指出该纤维与石墨炉原子吸收分光光度测定法结合,可成功地应用于环境检测天然水样中的重金属离子.  相似文献   

8.
随着工业化生产的快速发展,由重金属离子带来的环境污染也越来越引起了人们的高度重视.科研人员通过不同的检测方法对重金属离子进行检测.由于核酸适配体对重金属离子的选择性较高,使得其在重金属检测中的应用越来越广.  相似文献   

9.
复合纤维素固定化脲酶对铜离子的吸附作用   总被引:1,自引:0,他引:1  
脲酶对重金属离子极为敏感。由复合纤维素(CC)固定化脲酸对铜离子的吸附现象得出的结论是:脲酶吸附的Cu~(2+)总量与其活性没有定量关系,而是与固酶重量成比例。从而可以认为,重金属离子不是直接作用于脲酶活性部位使其中毒的,很可能是作用于脲酶大分子其他部位,使分子构象变形后导致脲酶失活的。由于CC固酶对Cu~(2+)有吸附作用,且又不污染系统,所以可用其除去食品、药物及水中的Cu~(2+)离子。  相似文献   

10.
采用分散液液微萃取(DLLME)技术,以1-己基-3-甲基咪唑六氟磷酸盐([HMIM][PF6])离子液体为萃取剂,吡咯烷基二硫代甲酸铵(APDC)为配体,乙腈为分散剂,对水体中的Ni~(2+),Cu~(2+),Hg~(2+)重金属离子同时进行配合与富集;高效液相色谱法分离、检测重金属配合物的分析方法。探讨了p H、APDC浓度、分散剂用量、萃取剂用量等对重金属离子配合、富集及检测的影响。结果表明:在20~200μg/L范围内,N~(2+),Cu~(2+),Hg~(2+)的线性相关系数为0.9960~0.9979;各重金属离子实际地表水样加标的标准相对偏差(n=3)在2.4%~5.3%之间;回收率在93.8%~101.2%之间;检出限为0.44~7.8μg/L。方法已成功的检测出地表河水中的Ni~(2+),Cu~(2+)重金属离子。  相似文献   

11.
在线衍生高效液相色谱法测定酱油中Pb~(2+)和Ni~(2+)的含量   总被引:1,自引:0,他引:1  
建立了湿法消解处理样品,反相高效液相色谱在线衍生同时测定酱油中Pb~(2+)和Ni~(2+)含量的方法。以二乙基二硫代氨基甲酸钠(Na DDTC)为衍生试剂,Hypersil ODS2 C-18反相色谱柱(5μm,250 mm×4.6mm)为固定相,甲醇-水-衍生剂(体积比63.5∶35∶1.5)为流动相进行检测。结果显示,Pb~(2+)与Ni~(2+)的线性范围为0.5~50μg/m L,相关系数(r~2)分别为0.998 2和0.999 0,检出限分别为0.3μg/m L和0.2μg/m L,样品加标回收率为88.1%~91.8%。该方法操作简单,准确度和精密度较好,可作为酱油样品中重金属离子测定的替代方法。  相似文献   

12.
Polyphenylsulfone/multiwalled carbon nanotubes/polyvinylpyrrolidone/1-methyl-2-pyrrolidone mixed matrix ultrafiltration flat-sheet membranes were fabricated via phase inversion process to inspect the heavy metals separation efficacy from aqueous media. Fabricated membranes cross-sectional morphological changes and the topographical alterations were assessed with Scanning electron microscopy (SEM) and atomic force microscopy (AFM). Particularly, MWCNTs assisted membranes exhibited better permeability ability as well as heavy metal removal enactment than virgin membrane. The dead-end filter unit was engaged in current research to examine the permeability and heavy metal removal competence of membranes. With the continuous enhancement of MWCNTs wt% in a polymer matrix, significant enhancement was observed with pure water flux study, from 41.69 L/m2 h to >185 L/m2 h as well as with the heavy metals separation study. Added additive MWCNTs can impact the pore sizes in membranes. The heavy metal separation results achieved, the membrane with 0.3 wt% of MWCNTs (PCNT-3) exhibited >98%, >76% and >72% for Pb2+, Hg2+ and Cd2+ ions, respectively. Overall, MWCNTs introduced PPSU membranes exposed best outcomes with heavy metals contained wastewater treatment.  相似文献   

13.
This study aimed to evaluate the heavy metal adsorptivity of calcium-alginate-modified diethylenetriamine-silica gel (CaAD) and incorporate this biosorbent into a flow analytical system for heavy metal ions using flame atomic absorption spectrometry (FAAS). The biosorbent was synthesized by electrostatically coating calcium alginate onto diethylenetriamine (dien)-silica gel. Copper ion adsorption tests by a batch method showed that CaAD exhibited a higher adsorption rate compared with other biosorbents despite its low maximum adsorption capacity. Next, CaAD was packed into a 1 mL microcolumn, which was connected to a flow analytical system equipped with an FAAS instrument. The flow system quantitatively adsorbed heavy metals and enriched their concentrations. This quantitative adsorption was achieved for pH 3–4 solutions containing 1.0 × 10−6 M of heavy metal ions at a flow rate of 5.0 mL min−1. Furthermore, the metal ions were successfully desorbed from CaAD at low nitric acid concentrations (0.05–0.15 M) than from the polyaminecarboxylic acid chelating resin (Chelex 100). Therefore, CaAD may be considered as a biosorbent that quickly adsorbs and easily desorbs analyte metal ions. In addition, the flow system enhanced the concentrations of heavy metals such as Cu2+, Zn2+, and Pb2+ by 50-fold. This new enrichment system successfully performed the separation and determination of Cu2+ (5.0 × 10−8 M) and Zn2+ (5.7 × 10−8 M) in a river water sample and Pb2+ (3.8 × 10−9 M) in a ground water sample.  相似文献   

14.
Removal of heavy metals by using adsorption on alumina or chitosan   总被引:4,自引:0,他引:4  
The removal of heavy metals from wastewater by using activated alumina or chitosan as adsorbers was evaluated. Cd(II) and Cr(III) were employed as models of the behaviour of divalent and trivalent metal ions. The adsorption of Cd(II) and Cr(III) onto the adsorbers evaluated was studied as a function of pH, time, amount of adsorber, concentration of metal ions and sample volume. A 0.4-g portion of activated alumina can retain 0.6 mg Cr(III) and 0.2 mg Cd(II) from 20 mL sample adjusted at pH 4 and stirred for 30 min. It is therefore possible to totally decontaminate 500 mL of a waste containing 5 mg L(-1) Cd(II) and Cr(III) with 10 g alumina. On the other hand, 0.4 g chitosan can totally decontaminate 20 mL of a pH 5 solution containing up to 50 mg L(-1) Cd(II) and Cr(III). A 99.2+/-0.1% retention of Cd(II) and 83+/-1% retention of Cr(III) was obtained from 500 mL of a laboratory waste. The aforementioned strategies were applied for the minimization of analytical chemistry teaching laboratories and atomic spectrometry laboratory wastes. On comparing both adsorbers it can be concluded that chitosan is more preferable than alumina due to the reduced price of chitosan and the absence of side-pollution effects.  相似文献   

15.
A simple optical fibre biosensor based on immobilised enzyme for monitoring of trace heavy metal ions has been developed. The biosensor recognition system was designed based on the inhibition of urease activity, where the urease is immobilised on ultrabind membrane. The studies of inhibition by the heavy metal ions Hg(II), Ag(I), Cu(II), Ni(II), Zn(II), Co(II) and Pb(II) were performed using a fibre-optic biosensor configuration, where the pH change resulting from the bio-catalytic hydrolysis of urea was monitored at the wavelength 615 nm spectroscopically, using commercial pH indicator strip before and after the exposure to the heavy metal ions. The immobilised urease was regenerated by l-cysteine. The linear response range between 1×10-9–1×10-5 M and the limit of detection 1×10-9 M (0.2 g/L) for Hg(II) ions was achieved by employing the flow method. The optimisation of experimental parameters, including flow method, is also discussed.  相似文献   

16.
A silica gel sorbent loaded with sodium diethyldithiocarbamate has been developed for the preconcentration of lead, cadmium and zinc prior to their determination by flameatomic absorption spectrometry (FAAS). The sorption and desorption of the metal ions was studied under both static and dynamic conditions. The metal ions were quantitatively retained on the silica gel sorbent based on an equilibrium time of less than 1 min. In case of the batch method, the effects of pH, shaking time, amount of sorbent, and desorption time were investigated. Among the desorption agents studied, only EDTA in ammonium chloride/ammonia buffer yielded quantitative recoveries. Freundlich's sorption isotherms determined for each metal show that sufficient sorption ability is obtained. The column method allows the preconcentration of metal ions from large sample volumes (e.g. 200 mL) using a flow rate of 5 mL min–1. The influence of foreign ions present in natural waters and saline solutions was examined. The reproducibility of the total analytical method, expressed as relative standard deviation (RSD) is 1.8, 0.5 and 0.6%, for lead, cadmium and zinc, respectively.  相似文献   

17.
A urease optical biosensor for the determination of heavy metals based on sol-gel immobilization technique was developed. A fluorescent dye, FITC-dextran, was encapsulated and parameters including optical properties of the probe, relative enzyme activity, initial pH value and the buffer concentration for substrate preparation were investigated. In sol-gel immobilization, 1 mM Tris-HCl at pH 7.1 provided a sufficient buffer capacity for metal ion analysis as well as the enzyme activity maintenance. Also, two analytical procedures, incubated and un-incubated systems, were compared to understand the sensitivity and applicability to heavy metal analysis. The developed optical biosensor showed high reproducibility and the relative standard deviation (R.S.D.) of 5.1% (n=10) was obtained. Also, eight measurements can be completed automatically within 36 min. The biosensor has high sensitivity to Cu(II) and Cd(II) and an analytical range of 10-230 μM with a detection limit of 10 μM was achieved. Moreover, biological and environmental samples were examined to evaluate the applicability of the developed biosensor. A 19-82% of inhibition was observed when 20-45 μM metal ions were amended into tested samples, revealing that the developed system has the potential for the determination of heavy metals in real samples.  相似文献   

18.
Tanyanyiwa J  Hauser PC 《Electrophoresis》2002,23(21):3781-3786
The detection of alkali, alkaline earth and heavy metal ions with a high-voltage capacitively coupled contactless conductivity detector (HV-C(4)D) was investigated. Eight alkali, alkaline earth metal ions and ammonium could be separated in less than 4 min with detection limits in the order of 5 x 10(-8) M. The heavy metals Mn2+, Pb2+, Cd2+ Fe2+, Zn2+, Co2+, Cu2+ and Ni2+ could also be successfully resolved with a 10 mM 2-(N-morpholino)ethanesulfonic acid/DL-histidine (MES/His)-buffer. Zn2+, Co2+, Cu2+ and Ni2+ showed an indirect response. The detection limits for the heavy metals were determined to range from about 1 to 5 microM.  相似文献   

19.
The subject of this publication is calorimetric investigations on the inhibitor effect of heavy metal ions on the enzyme urease. The obtained results allow quantification of the inhibitors (Cd2+-, As3+-, Zn2+-, Pb2+-ions) via the initial reaction rate of enzymatically catalysed urea hydrolysis. The interpretation potential of the calorimetric measurements is underlined by the determination of the inhibiting mechanisms for the example of Cd2+- and As3+-ions, the findings on the time regime of the inhibition process, and the detection of heavy metal ions in the ppm range. The use of several different buffer substance revealed the influence of the latter on the intensity of heavy metal inhibition. This opens the path to both the selective analysis of heavy metals via pattern recognition and to the improvement of detection sensitivity.  相似文献   

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