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1.
镍分析进展     
镍具有良好的抗蚀性、韧性和机械强度、磁性以及较高的化学稳定性,被广泛地应用于钢铁工业、国防工业、冶金工业、化学工业、陶瓷工业、电子工业、原子能工业和电镀工业。近代工业技术的发展,无论对测镍的精度、灵敏度和速度均提出很高要求。十多年来,镍的分析技术有了很大的发展。一、重量法十多年来,对丁二肟重量法测镍的条件作了很多改进,从而简化了流程,提高了精度,扩大了应用范围。如Byru和Robertson用N,N-二羟基乙烯基甘氨酸有效地消除了铁、钴干扰,  相似文献   

2.
元素科学、生命科学,关乎民生、关乎国运。元素医学、平衡医学,无病不防、无病不治。头发检测、活体检测,检测已病、检测未病。元素调理、食物调理,调理聪明、调理健康。 "先天不足"和"后天失调"的全球性"元素病",引起了各国政府的关注。中国政府出台了一系列法律文件,成立了国家级的相应机构进行调研和治理。与此同时,加大了元素科学和生命科学的教育和宣传力度,  相似文献   

3.
“先天不足”和“后天失调”的全球性“元素病”,引起了各国政府的关注。中国政府出台了一系列法律文件,成立了国家级的相应机构进行调研和治理。与此同时,加大了元素科学和生命科学的教育和宣传力度,取得可喜的成绩,控制了“碘缺乏病”和“硒缺乏病”,儿童锌缺乏率和儿童铅超标率下降。为了减少各种慢性病的发病率,卫生部、国家计委、教育部、科技部、民政部、财政部、农业部、贸易部、国务院扶贫办公室、轻工总会、全国妇联等11个部委联合制订了《中国营养改善行动计划》,  相似文献   

4.
用斜率法研究了HPMCP与TOPO、TPPO、TBP三种协萃剂对三价稀土元素协同萃取的行为。探讨了氢离子浓度、萃取剂浓度与分配比的关系,确定了萃合物的组成。研究了TOPO、TBP、TPPO的协萃效应,用单浓度递变法拟定了协萃物的组成,并确定了协萃反应的形式,计算了协萃反应的平衡常数。  相似文献   

5.
“先天不足”和“后天失调”的全球性“元素病”,引起了各国政府的关注。中国政府出台了一系列法律文件,成立了国家级的相应机构进行调研和治理。与此同时,加大了元素科学和生命科学的教育和宣传力度,取得可喜的成绩,控制了“碘缺乏病”和“硒缺乏病”,儿童锌缺乏率和儿童铅超标率下降。为了减少各种慢性病的发病率,卫生部、国家计委、教育部、科技部、民政部、财政部、农业部、贸易部、国务院扶贫办公室、  相似文献   

6.
铸铁低温钎焊焊料中,除锡、铝、镉含量较低外,铜、锰、镍含量都很高,需要与锌分离。我们试验了氢氧化钠分离法。研究了锌与铜、锰、镍、镉的分离条件及其测定可行性。并拟定了铸铁低温钎焊焊料中锌的测定方法。方法准确、快速,满足了冶金试验和生产工艺样品分析的要求。  相似文献   

7.
根据理工类高等院校无机及分析化学实验课的特点, 结合基础化学实验中心实验条件, 从合理设置实验、减少试剂用量、取代有毒试剂、回收利用等方面对无机及分析化学实验进行了系列改革和实践, 使大部分实验实现了绿色化。减少了废渣、废液、废气对环境的污染, 降低了实验成本, 取得了良好的环境效益和经济效益。同时, 对学生进行了有效地绿色化学实践教育。  相似文献   

8.
本会副理事长王序同志作为中国化学会的代表,参加了以王文达为团长的中国科协访日代表团。代表团8月24日到达日本,去东京、大坂、京都、名古屋等地进行了访问,受到日本科学界及教育界的热情接待。代表团参观了京都大学、东京大学等高等院校,还参观了几个博物馆。王序同志就药物化学专业方面,还参观访问了日本的肿瘤研究所、微生物生化研究所、生物  相似文献   

9.
气体法低温稀土多元共渗的研究   总被引:5,自引:1,他引:5  
从自制的多种渗剂中,筛选了含稀土的最佳渗剂,实现了气体法低温稀土、硼、碳、氮、氧多元共渗。获得了组织、性能和层深远优于其它低温化学热处理的渗层。用金相、扫描电镜、光电子能谱和正电子湮没等技术,对渗层进行了较系统的分析,对稀土的催渗等基本理论问题进行了探讨。  相似文献   

10.
系统梳理了电离、离子反应专题的已有研究,分析了电离、离子反应内容对学生认识发展的作用,进而确立了化学1模块电离、离子反应专题的教学论问题并进行了阐述分析。在上述研究的基础上,设计了化学1模块电离、离子反应专题的单元整体教学,并进行了教学实践,取得了较好的教学效果。  相似文献   

11.
The addition of 2-amino-1,3,4-thiadiazole derivatives with parallel iodination of differently protected glycals has been achieved using a double molar excess of molecular iodine under mild conditions. The corresponding thiadiazole derivatives of N-glycosides were obtained in good yields and anomeric selectivity. The usage of iodine as a catalyst makes this method easy, inexpensive, and successfully useable in reactions with sugars. Thiadiazole derivatives were tested in a panel of three tumor cell lines, MCF-7, HCT116, and HeLa. These compounds initiated biological response in investigated tumor models in a different rate. The MCF-7 is resistant to the tested compounds, and the cytometry assay indicated low increase in cell numbers in the sub- G1 phase. The most sensitive are HCT-116 and HeLa cells. The thiadiazole derivatives have a pro-apoptotic effect on HCT-116 cells. In the case of the HeLa cells, an increase in the number of cells in the sub-G1- phase and the induction of apoptosis was observed.  相似文献   

12.
Bubble size is a key variable for predicting the ability to separate and concentrate proteins in a foam fraction ation process. It is used to characterize not only the bubble-specific interfacial a rea but also coalescence of bubbles in the foam phase. This article describes the development of a photoelectric method for measuring the bubble size distribution in both bubble and foam columns for concentrating proteins. The method uses a vacuum to withdraw a stream of gas-liquid dispersion from the bubble or foam column through a capillary tube with a funnel-shaped inlet. The resulting sample bubble cylinders are detected, and their lengths are calculated by using two pairs of infrared photoelectric sensors that are connected with a high-speed data acquisition system controlled by a microcomputer. The bubble size distributions in the bubble column 12 and 1 cm below the interface and in the foam phase 1 cm above the interface are obtained in a continuous foam fractionation process for concentrating ovalbumin. The effects of certain operating conditions such as the feed protein concentration, superficial gas velocity, liquid flow rate, and solution pH are investigated. The results may prove to be helpful in understanding the mechanisms controlling the foam fractionation of proteins.  相似文献   

13.
An optimum composition and a technique for applying a protecting sublayer on titanium are substantiated experimentally. The sublayer prevents the oxidation of titanium during the production and application of highly porous metal oxide anodes. The formation of such a sublayer involves several stages: (a) coating chemically polished and etched in 5-% hydrofluoric acid titanium with hexachloroiridic acid, (b) drying hexachloroiridic acid, (c) a two-step treatment of anodes in argon with a low concentration of oxygen at 350°C, and (d) a brief annealing of the anodes in air at 400°C. The application of such a sublayer makes sense especially in the case of an anode with a thin highly porous active coating. The remarkable protecting properties of the sublayer are due to the formation of a dense coating on titanium. The coating consists of metallic iridium, titanium, and an amount of oxides of these metals. The titanium substrate itself undergoes minimum oxidation.  相似文献   

14.
《印度化学会志》2023,100(1):100825
The improved thermal association of heat transfer is considerably observed due to interaction of nanoparticles in recent days. The lubrication phenomenon with heat and mass transfer effects plays a key role in the hydraulic systems. In current research, the thermal impact of nanofluid over a lubricated stretching surfaces near a stagnation point analytical has been studied. A thin layer of lubricating fluid with a variable thickness provides lubrication. The inspection of thermophoresis and Brownian motion phenomenon is illustrated via Boungrino model. The analytical finding of refurbished boundary layer ordinary differential equations is obtained by a reliable and proficient technique namely variational iteration method (VIM). The Lagrange Multiplier is a potent tool in proposed technique to reduce the computational work. In addition, a numerical comparison is presented to show the effectiveness of this study. The range of flow parameters is based on theoretical flow assumptions. Physical inspection of involved parameters on velocities, temperatures, concentrations, and other quantities of interest when lubrication is presented. The current results present applications in polymer process, manufacturing systems, heat transfer and hydraulic systems.  相似文献   

15.
Metolazone is a diuretic agent used in patients with edematous states and/or hypertension. The electrochemical behavior of metolazone on a glassy carbon electrode was investigated using cyclic, differential pulse, and square‐wave voltammetry at different pHs. The pH dependent oxidation of metolazone occurs in two consecutive steps in a diffusion‐controlled mechanism and involves the formation of a main oxidation product. The first oxidation process is reversible, and involves two electrons and two protons corresponding to the oxidation of nitrogen in the sulfonamide moiety. The second oxidation process is irreversible, also occurs in the sulfonamide moiety, involves a one electron‐transfer, and is followed by deprotonation to produce a cation radical, which reacts with water and yields a hydroxylated product. The diffusion coefficient of metolazone was calculated to be 3.43×10?6 cm2 s?1 in pH 7.0 0.1 M phosphate buffer.  相似文献   

16.
Following our continued interest in the production of bioerodible and biodegradable functional polymers for biomedical applications, we synthesized and characterized new unsaturated polyesters. The presence of functional groups in the polymer backbone provided sites for chemical modification, and through a variation in the structure, the physical properties, such as the hydrophilicity and solubility, could be affected. With 1,1-di-n-butyl-stanna-2,7-dioxacyclo-4-heptene as the initiator in the ring-opening polymerization of polyesters, a new set of functionalized polyesters was created. The polymerization of ϵ-caprolactone resulted in poly(ϵ-caprolactone) with a double bond incorporated into the structure. The polymers were obtained in a controlled manner with low molecular dispersities. The double bond was previously incorporated into L -lactide polymers, and the two reactions were compared in this study. The conversion of ϵ-caprolactone, with a degree of polymerization of 50, was completed within 140 min, whereas for L -lactide, only a 45% conversion took place in the same period of time. The dispersities were somewhat higher with ϵ-caprolactone because of the higher reaction rate and, therefore, lower selectivity. The incorporated CC double bond in the polyesters provided a variety of opportunities for further modifications. In this case, the double bond of the L -lactide macromonomers was oxidized into epoxides. Epoxidation was carried out with m-chloroperoxybenzoic acid as a chemical reagent. The conversion of the double bonds into epoxides was completed, and the obtained yields were good (>95%). As a result of the mild reaction conditions, the epoxidation of the double bond was carried out quantitatively without any side reactions. © 2003 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 42: 444–452, 2004  相似文献   

17.
Ma G  Cheng Q 《Talanta》2005,67(3):514-519
We report a nanoscale lipid membrane-based sensor of conjugated polydiacetylene (PDA) vesicles for fluorescence detection of organic amines. The vesicle sensor was constructed by incorporation of a BODIPY fluorescent dye into the PDA vesicles. The fluorescent properties of the resulting vesicles can be manipulated by adjusting lipid components, and are controlled by environmental and solution conditions. The fluorescence of the BODIPY dye was significantly quenched in the polymerization of diacetylene lipid vesicles by a UV irradiation process. However, it was sufficiently recovered by external stimuli such as a hike of solution pH. The fluorescence recovery process was reversible, and a decrease in solution pH resulted in repeated quenching. The reported system transforms an external stimulus into a large fluorescence intensity change, demonstrating great potential in developing new signal reporting method for biosensor design. The quench-recovery phenomenon of the BODIPY-PDA is believed to be related to the energy transfer between the dye and the PDA conjugate backbone. The vesicle sensor was applied for detecting an organic amine, triethylamine (TEA) and a large linear relationship was obtained between the increase in fluorescence intensity and the concentrations of TEA. The detection limit of TEA by vesicle sensors using fluorescence recovery was found to be 10 μM.  相似文献   

18.
Dopamine is a biologically active chemical that performs a number of vital functions as a hormone and neurotransmitter. Therefore, the determination of dopamine concentration in the human body is important for biomedical research. The content of dopamine in the blood varies depending on the age of a healthy person and can serve as a prognostic marker of many diseases. The aim of this work was to develop a new enzyme conductometric biosensor for the determination of dopamine in aqueous samples and to study the biosensor's analytical characteristics. The conductometric method of analysis with differential measurement mode was used in the work. Two pairs of gold interdigitated electrodes deposited on a sitall substrate were used as a conductometric transducer. The biorecognition element of the biosensor was based on laccase immobilized by glutaraldehyde cross-linking. The optimal conditions of laccase immobilization were selected. The influence of solution parameters (ionic strength, pH, buffer capacity) on the biosensor work was investigated. The biosensors demonstrated high sensitivity to dopamine (minimum limit of detection −7.8 μM) with the linear range up to 1 mM. The biosensor was highly selective and reusable. The proposed biosensor was tested regarding the possibility of its long-term storage under different conditions. The developed conductometric biosensor was proven to be suitable for measuring dopamine concentration in biological and pharmaceutical samples.  相似文献   

19.
Sequential injection with “Lab-at-Valve (LAV)” approach is demonstrated for potentiometric determination of chloride. The LAV flow-through electrode system consists of two Ag/AgCl electrodes: one as a reference electrode, silver chloride activated surface-silver wire soaked in a constant-concentration chloride ion solution in a small tube covered with a polymer-membrane, another as a working electrode (a similar silver chloride activated surface-silver wire) placed in a flow channel. The electrode system is attached at one port of a 10 port multiposition valve. A modified autoburette was used as a propelling device. Using SI operation via a program written in-house, based on LabVIEW®, a standard/sample is inserted, via the selection valve, in potassium nitrate as an electrolyte and water is used as a carrier. The zones are transported from the holding coil to the flow cell to monitor the difference in potential due to concentration cell behavior. The potential difference is then recorded as a peak. Peak height is proportional to logarithm of chloride concentration. The SI-LAV for chloride determination is very simple, fast, precise, accurate, automatic and economical. Applications to mineral drinking water and surface water have been made. The results agree with those of IC and titrimetric methods.  相似文献   

20.
以甲基汞离子为模板,8-巯基喹啉为荧光单体,4-乙烯基吡啶为功能单体,乙二醇二甲基丙烯酸酯为交联剂,偶氮二异丁腈为引发剂,在二甲基亚砜溶剂中,以聚偏氟乙烯(PVDF)膜为支撑介质,65℃热引发聚合得到甲基汞离子荧光印迹膜。该荧光印迹膜对甲基汞离子表现出良好的选择性,最佳吸附pH值为7.0,检出限为3.5×10-7mol/L。将其作为吸附材料,应用于河水中甲基汞离子的分离和富集,结果表明,该传感器对甲基汞离子具有良好的选择性和特异性吸附,回收率达93%~104%。  相似文献   

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