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1.
本文研究了不溶性交联淀粉黄原酸酯(ISX)的合成及应用(处理含锌废水),探讨了几种主要因素对锌离子去除率的影响(不溶性交联淀粉黄原酸酯的用量、反应溶液pH、反应时间等因素)。试验结果表明:在ISX加入量为理论用量的1.3倍、pH值控制在9左右、室温条件下,锌离子去除率可达98%以上,处理后的废水中锌离子质量浓度为0.2 mg/L,达到国家排放标准(0.5 mg/L)。  相似文献   

2.
合成了新显色剂4-硝基-4'-磺酰胺基苯基重氮氨基偶氮苯(NSADAA),并研究了其在Triton X-100存在下与Hg(Ⅱ)的显色反应.在pH 9.0~11.0缓冲范围内,NSADAA与Hg(Ⅱ)形成摩尔比2:1的红色配合物,其最大吸收波长为518 nm,表观摩尔吸光系数ε=1.50×105 L·mol-1·cm-1,Hg(Ⅱ)的质量浓度在0~0.8 μg/mL范围内遵守比耳定律.方法可用于测定废水中微量Hg(Ⅱ).  相似文献   

3.
报道了一种新型的三氮烯类偶氮染料的合成方法及其与 Cd(Ⅱ)的显色反应.实验表明,在 Triton X-100 存在下的弱碱性介质中,试剂与镉(Ⅱ)形成 2∶1 的红色络合物,摩尔吸收系数为 2.1×105 L·mol-1·cm-1;镉含量在 0 μg/25 mL~25 μg/25 mL 范围内遵守比耳定律.可直接用于废水中微量镉的测定.  相似文献   

4.
合成了新显色剂4-(4-甲基-2-硝基苯重氮基)氨基-4’-氯偶氮苯(简称MNDACB),并研究了其在Triton X-100存在下与Hg(Ⅱ)的显色反应。结果表明,在pH 11.0的Na2B4O7-NaOH缓冲介质中,试剂与Hg(Ⅱ)形成稳定的红色配合物,最大吸收波长位于495 nm,表观摩尔吸光系数为1.45×105L.mol-1.cm-1,Hg(Ⅱ)的质量浓度在0~0.8μg/mL范围内服从比耳定律。所拟方法操作简便,灵敏度高,用于废水中微量Hg(Ⅱ)的测定,结果满意。  相似文献   

5.
报道了显色剂1-(4-硝基苯基)-3-(2-吡嗪)-三氮烯化合物的合成及其与镉(Ⅱ)的显色反应。在非离子表面活性剂Triton X-100存在下,pH 10.5的Na2B4O7-NaOH的缓冲介质中,该试剂能与镉(Ⅱ)与发生显色反应,形成摩尔比为4∶1的黄棕色配合物,配合物在波长453 nm处有最大吸收峰,表观摩尔吸光系数ε为6.90×104L.mol-1.cm-1,镉(Ⅱ)质量浓度在0~0.56μg/mL范围内遵守比尔定律。用拟定方法测不同废水中的镉(Ⅱ)。  相似文献   

6.
1-(4-安替比林)-3-(3-硝基苯胺)三氮烯分光光度法测定镉(Ⅱ)   总被引:1,自引:0,他引:1  
合成了一种新的显色剂三氮烯试剂1-(4-安替比林)-3-(3-硝基苯胺)三氮烯(ANTA),并研究了该显色剂与镉(Ⅱ)的显色反应。在Tween-80存在下及pH 10.2的硼砂-氢氧化钠缓冲溶液中,显色剂ANTA与镉(Ⅱ)形成2∶1的稳定络合物。其最大吸收波长位于508 nm波长处,表观摩尔吸光率为3.4×105L.mol-1.cm-1。镉(Ⅱ)的质量浓度在30.0~450μg.L-1范围内符合比耳定律,方法的检出限(3σ/k)为10.0μg.L-1。方法用于废水样品中微量镉(Ⅱ)的测定,测定结果与原子吸收光谱法相一致,平均回收率为103.5%,平均相对标准偏差(n=6)为4%。  相似文献   

7.
合成了新显色剂2-羧基-4′-硝基苯基重氮氨基偶氮苯(CNADAA),并研究了其在Triton X-100存在下与镉(Ⅱ)的显色反应。结果表明,在pH 10.75的NaB4O7-NaOH缓冲介质中,该试剂与镉(Ⅱ)形成摩尔比为1∶1的红色配合物,最大吸收波长580 nm,表观摩尔吸光系数ε=1.32×105L.mol-1.cm-1。镉(Ⅱ)的质量浓度在0~0.8μg/mL范围内遵守比耳定律。所拟方法用于废水中微量镉(Ⅱ)的测定,相对标准偏差为1.8%~2.9%,回收率为97.6%~103.2%。  相似文献   

8.
新镉试剂双波长分光光度法测定ppb级痕量镉   总被引:4,自引:3,他引:4  
作者新近合成对-苯磺酸重氮氨基偶氮苯,结构式为:暂称新镉试剂。该试剂的合成、性质及有Triton X-100存在的弱碱性介质中与汞、镉和镍有极灵敏的显色反应,以及用于光度法测定废水中痕量汞已有报导。本文研究该试剂与镉(Ⅱ)的显色反应及各因素对显色反应的影响。用甲基异丁酮(MIBK)从H_2SO_4-Kl介质中萃取富集水样中镉,同时与汞(Ⅱ)、镍(Ⅱ)、锌(Ⅱ)、  相似文献   

9.
合成了新显色剂4-(4-氯苯重氮基)氨基-4′-氯偶氮苯(简称CDACAB),并研究了其与汞(Ⅱ)的显色反应。结果表明,在非离子表面活性剂OP存在下,在pH=10.5的Na2B4O7-NaOH缓冲介质中,汞(Ⅱ)与CDACAB形成1∶2橙红色络合物,其最大吸收波长位于498nm处,表观摩尔吸光系数ε=1.15×105 L.mol-1.cm-1。汞(Ⅱ)质量浓度在0~7.0μg/10mL范围内遵守比耳定律。所拟方法用于废水中微量汞(Ⅱ)的测定,相对标准偏差为1.6%~3.1%,回收率为96.5%~103.8%。  相似文献   

10.
在吐温80存在下.在 pH9.2~9.8时,Ag(Ⅰ)与隔试剂 A 生成水溶性的红色络合物,最大吸收波长为525nm,表观摩尔吸光系数为ε_(525)=8.6×10~4.络合物瞬时发色,30分钟内吸光度稳定不变.当银含量在0~15微克/50毫升时符合比尔定律.Co(Ⅱ)、Ni(Ⅱ)、Cu(Ⅱ)、Zn(Ⅱ)、Cd(Ⅱ)、Hg(Ⅱ)等离子干扰测定.我们用氨三乙酸掩蔽 Co(Ⅱ)、Ni(Ⅱ)、Cu(Ⅱ)、Zn(Ⅱ)、Cd(Ⅱ)等离子的干扰,可以不经分离,直接光度法测定废水中的微量银.应用于照相定影液废水中的微量银的测定,结果满意.对10微克/50毫升银的回收率均在95~105%以内。本文均较文献[1,2]灵敏。  相似文献   

11.
Based on the nitrogenous base or quaternary ammonium moiety in isoxsuprine hydrochloride (ISX), two highly accurate and selective titrimetric methods are proposed f or the determination of ISX in spiked human urine, injection and tablets. Non-aqueous titration (Method A) involves removal of protonated amine using mercuric acetate for enhanced basic nitrogen prior to titration with perchloric acid in an acetic acid medium using crystal violet as indicator. Two-phase titration (Method B) is based on ion association complex formation between sodium lauryl sulphate (SLS) and protonated amine of ISX at pH 2.5 in aqueous phase, end point being detected by change in dimethyl yellow color in chloroform layer. The methods are applicable over the concentration range 2.0–20.0 mg and 1.0–10.0 mg for method A and method B, respectively. Calculations are based on 1: 1 molar ratio, i.e., JSX: HClO4 for method A and ISX: SLS for method B, owing to the presence of one nitrogen atom. Method A is applicable to the determination of ISX in tablets whereas method B is applicable to spiked human urine, injection and tablets. The methods are validated statistically by comparing the results with those of the reference method by applying the Student’s t-test and F-test. The accuracy was further ascertained by recovery studies via standard addition technique.  相似文献   

12.
A simple, long life, rapid response and sensitive barium(II)-PVC membrane sensor that typically follows Nernstian behavior has been developed for the assay of barium(II) ions. The developed sensor has been made by incorporating the complex ion associate of barium(II)-Rose Bengal (Ba-RB) as an ionophore into a plasticized PVC matrix. The sensor is stable and exhibited fast potential response of 20 s and gave a good linear response with a Nernstian slope of 28.5 ± 0.4 mV/decade of activity within the concentration range 5 × 10−5 to 10−1 M over a wide range of pH 4.5-10.0 for barium(II) ions. The developed sensor showed comparatively good selectivity for barium(II) ions with respect to other alkali, alkaline earth, transition and heavy metal ions. The plasticizer o-nitrophenyloctyl ether controlled significantly the calibration slope and the lifetime of the fabricated sensor. The proposed sensor was used successfully for the analysis of barium(II) ions in wastewater samples and in lithophone pigment with excellent recovery percentages in the range 98.9-99.8 ± 1.6%. The determination of sulphate in fresh and potable water samples with the developed sensor has been also achieved successfully. The described sensor provides a reliable means with good correlation with the data obtained by atomic absorption spectrometry (AAS) and other spectrophotometric methods for the analysis of trace amounts of barium(II) and/or sulphate ions in different matrices.  相似文献   

13.
Heavy metal ions are harmful to aquatic life and humans owing to their high toxicity and non‐biodegradability, so their removal from wastewater is an important task. Therefore, this work focuses on designing suitable, simple and economical nanosensors to detect and remove these metal ions with high selectivity and sensitivity. Based on this idea, different types of mesoporous materials such as hexagonal SBA‐15, cubic SBA‐16 and spherical MCM‐41, their chloro‐functionalized derivatives, as well as 4‐(4‐nitro‐phenylazo)‐naphthalen‐1‐ol (NPAN) azo dye have been synthesized, with the aim of designing some optical nanosensors for metal ions sensing applications. The mentioned azo dye has been anchored into the chloro‐functionalized mesoporous materials. The designed nanosensors were characterized using scanning and transmission electron microscopy as well as Fourier transform infrared and UV–visible spectral analysis, nitrogen adsorption–desorption isotherms, low‐angle X‐ray diffraction and thermogravimetric analyses. Their optical sensing to various toxic metal ions such as Cd (II), Hg (II), Mn (II), Fe (II), Zn (II) and Pb (II) at different values of pH (1.1, 4.9, 7 and 12) was investigated. The optimization of experimental conditions, including the effect of pH and metal ion concentration, was examined. The experimental results showed that the solution pH had a major impact on metal ion detection. The optical nanosensors respond well to the tested metal ions, as reflected by the enhancement in both absorption and emission spectra upon adding different concentrations of the metal salts and were fully reversible on adding ethylene diamine tetra acetic acid or citric acid to the formed complexes. High values of the binding constants for the designed nanosensors were observed at pHs 7 and 12, confirming the strong chelation of different metals to the nanosensor at these pHs. Also, high binding constants and sensitivity were observed for NPAN‐MCM‐41 as a nanosensor to detect the different metal ions. From the obtained results, we succeeded in transforming the harmful azo dye into an environmentally friendly form via designing of the optical nanosensors used to detect toxic metal ions in wastewater with high sensitivity.  相似文献   

14.
Two types of magnetite (Fe3O4) nanoparticles were investigated as adsorbents for the simultaneous removal of Pb(II), Cd(II), and As(III) metal ions from aqueous solution. Magnetite nanoparticles were prepared by two synthesis procedures, both using water as solvent, and are referred to as conventional Fe3O4 nanoparticles and green Fe3O4 nanoparticles. The latter used Citrus limon (lemon) aqueous peel extract as the surfactant. Box–Behnken experimental design was used to investigate the effects of parameters such as initial concentration (20–150?mg?L?1), pH (2–9), and biomass dosage (1–5?g?L?1) on the removal of Pb(II), Cd(II), and As(III) ions. The optimum parameters for removal of the studied metal ions from aqueous solutions, including the initial ion concentration (20?mg?L?1), pH (5.5) and adsorbent dose (5?g?L?1), were determined. The pseudosecond-order model exhibited the best fit for the kinetic studies, while adsorption equilibrium isotherms were best described by Langmuir and Freundlich models. The optimum conditions were applied for the treatment wastewater. The removal efficiencies of Pb(II), Cd(II), and As(III) using the conventional and green synthesized Fe3O4 nanoparticles were 59.4?±?4.3, 18.7?±?1.9 and 17.5?±?1.6, and 98.8?±?5.6, 46.0?±?1.3, and 48.2?±?2.6%, respectively. These results demonstrate the potential of magnetite nanoparticles synthesized using C. limon peel extract as highly efficient adsorbents for the removal of Pb(II), Cd(II), and As(III) ions from aqueous solution.  相似文献   

15.
《Arabian Journal of Chemistry》2020,13(10):7533-7543
A novel multifunctional of SiO2/CuFe2O4/polyaniline composite was synthesized through the interaction between silica (SiO2), copper iron oxide (CuFe2O4), and polyaniline (PANI) as starting materials. SiO2/CuFe2O4/polyaniline composite was characterized for morphology, crystallinity, textural properties, and utilised for the removal of Fe(II), Mn(II), and Cu(II) from synthetic wastewater solutions. The roles of solution pH (2.0–6.0), interaction time (15–420 min), initial ion concentration (50–700 mg/L), and solution temperature (30–50 °C) in the adsorption process were investigated. The adsorption capacities of SiO2/CuFe2O4/PANI for the tested metal ions were high compared to SiO2, CuFe2O4, and polyaniline. Equilibrium studies indicated that Fe(II) and Mn(II) adsorption were compliant with the Langmuir model, while the Freundlich equation described the removal of Cu(II) ions. The maximum Langmuir capacities were up to 285.71, 416.67, and 454.55 mg/g for Cu(II), Fe(II), and Mn(II), respectively. The pseudo-first-order kinetic model fitted well the metal ions removal data. The rate-controlling step reflected the involvement of surface and inner pore diffusion (intraparticle) processes. Electrostatic attractions and chelation were mainly responsible for the binding of metals ions onto SiO2/CuFe2O4/PANI. The selectivity of the studied ions was governed mainly by the hydrated ionic radii and the composite adsorption active sites. SiO2/CuFe2O4/PANI can be easily reused with a slight decrease (around 2–3%) in metal removal efficiency after four successive regeneration cycles.  相似文献   

16.
The aim of the research was to prepare low-cost adsorbents, including raw date pits and chemically treated date pits, and to apply these materials to investigate the adsorption behavior of Cr(III) and Cd(II) ions from wastewater. The prepared materials were characterized using SEM, FT-IR and BET surface analysis techniques for investigating the surface morphology, particle size, pore size and surface functionalities of the materials. A series of adsorption processes was conducted in a batch system and optimized by investigating various parameters such as solution pH, contact time, initial metal concentrations and adsorbent dosage. The optimum pH for achieving maximum adsorption capacity was found to be approximately 7.8. The determination of metal ions was conducted using atomic adsorption spectrometry. The experimental results were fitted using isotherm Langmuir and Freundlich equations, and maximum monolayer adsorption capacities for Cr(III) and Cd(II) at 323 K were 1428.5 and 1302.0 mg/g (treated majdool date pits adsorbent) and 1228.5 and 1182.0 mg/g (treated sagai date pits adsorbent), respectively. It was found that the adsorption capacity of H2O2-treated date pits was higher than that of untreated DP. Recovery studies showed maximal metal elution with 0.1 M HCl for all the adsorbents. An 83.3–88.2% and 81.8–86.8% drop in Cr(III) and Cd(II) adsorption, respectively, were found after the five regeneration cycles. The results showed that the Langmuir model gave slightly better results than the Freundlich model for the untreated and treated date pits. Hence, the results demonstrated that the prepared materials could be a low-cost and eco-friendly choice for the remediation of Cr(III) and Cd(II) contaminants from an aqueous solution.  相似文献   

17.
We report a facile and economic hydrothermal process for multifunctionally engineered copper oxide/zinc oxide-tetrapods (CuO/ZnO-T) nanocomposite for wastewater treatment. The resultant CuO/ZnO-T nanocomposite possesses high porosity, large surface area, and low band gap. All these properties are advantageous for photocatalyst and adsorbent for dyes and heavy metal ions removal. The morphology of synthesized nanocomposite was characterized using X-ray diffraction, scanning electron microscopy, Brunauer–Emmett–Teller, Fourier-transform infrared spectroscopy, and UV–Visible absorption spectroscopy. The results confirmed the attachment of CuO on the ZnO-T surface, forming a hybrid nanocomposite. The concentration of heavy metal ions was monitored using the atomic absorption spectroscopy technique. The synthesized CuO/ZnO-T nanocomposite was investigated for the decontamination of anionic and cationic dyes, Reactive yellow-145 (RY-145) and Basic violet-3 (BV-3) and heavy metal ions (Chromium (VI) and Lead (II)). The CuO/ZnO-T nanocomposite exhibited superior photocatalytic efficiency (80% RY-145 dye removal and 86% BV-3 dye removal) and adsorption capacity (99% Chromium (VI) removal and 97% Lead (II) removal) as compared to pristine ZnO-T. The mechanism for the reduction of dyes and heavy metal ions was discussed by different kinetics and isotherm models. The current study inferred that CuO/ZnO-T nanocomposite is a potential candidate as a proficient photocatalyst/adsorbent for the removal of various wastewater contaminants.  相似文献   

18.
《Electroanalysis》2005,17(21):1970-1976
The oxidative electropolymerization of the (3‐pyrrol‐1‐ylpropyl)malonic acid monomer 1 is a simple and reproducible one‐step procedure for the synthesis of complexing polymer film modified electrodes, which have been applied to the electroanalysis of Cu(II), Pb(II), Cd(II) and Hg(II) ions by preconcentration upon complexation, followed by anodic stripping analysis. The detection limits were determined from square‐wave voltammetry at 0.5 nM, 5 nM, 50 nM and 0.2 μM for Pb(II), Cu(II), Hg(II) and Cd(II), respectively, after 10 min preconcentration. The modified electrodes showed a better selectivity toward copper(II) ions. Analysis of copper in a tap water sample agreed well with ICPMS analysis results.  相似文献   

19.
Benzoisothiazole-1,1-dioxide-based synthetic receptor was prepared by two step synthesis in 92 % overall yield. Its applicability for the determination of Zn(II) and interction with nucleic acids was studied by absorption spectroscopy. Obtained data, specifically low limit of detection, 0.15 µM (R2 = 0.9933), showed the high potential of the tested structure motif for the recognition and determination of Zn(II) ions in aqueous media (water:DMSO; 99:1 (ν/ν)). Alone receptor displayed orderly strongly RNA affinity. Value of LogK was 6.1 and 4.9 for its complex (1:1) with RNA and DNA, respectively. Nevertheless, in presence of complexed Zn(II) ions, its DNA affinity (represent by K, LogK = 5.7) strongly grow to near value obtained for its interaction with RNA. On the other hand, its RNA affinity (LogK = 5.9) displayed not significantly change in the presence of complexed one.  相似文献   

20.
李秋华 《广州化学》2011,36(2):22-28
以甘蔗渣为原材料,于20%(wt)的NaOH溶液中碱化24 h,在碱性条件下加入用量为0.5 mL/g的CS2,在30℃反应2.5 h,合成了蔗渣纤维素黄原酸酯(BCX);并对其合成条件进行了优化,对其处理重金属离子的效果进行了评价.研究结果表明,BCX对重金属废水中的Ni2+、Cu2+、Zn2+、pb2+的去除率均在...  相似文献   

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