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31.
多媒体网络中的时延控制方法   总被引:3,自引:0,他引:3  
时延和时延的抖动是多媒体网络中两个重要的参数,它们与网络的服务质量相关.提出了一种新的网络时延和时延抖动的控制方法——按时服务原则.该方法以虚拟时钟算法为基础,吸收了Jiter-EDD算法的优点,能够同时对时延和时延抖动进行控制.同以往的时延和时延抖动控制算法相比,其优点在于:无需为会话建立通信模型,只要是受漏桶(RS,D0)限制的会话,那么,该会话在按时服务器组成的网络中就存在一个最大时延T1,MS,max.  相似文献   
32.
研究多维OU型Markov过程的不变测度、参考测度、弱对偶半群及其无穷小算子.说明了OU型Markov过程不变概率测度和弱对偶半群的存在唯一性,Lévy过程At的不变测度不一定是由它产生的OU型Markov过程的不变测度,以及Lebesgue测度m和极限分布ξ在suppξ=Rd的条件下都是OU型Markov过程的参考测度.  相似文献   
33.
A batch of sulphydryl cotton microcolumns was prepared and charged with a mixed Hg standard solution (methyl-, ethyl- and inorganic Hg, 10 g l–1 as Hg, 3 ml) and stored at 4 °C in a light-tight box. At regular time intervals over a 4 month period microcolumns were removed and Hg species were quantified by gas chromatography microwave-induced plasma atomic emission spectrometry (after elution, extraction and derivatization steps). It was found that analyte recoveries for methyl- and inorganic Hg were quantitative over the 4 month period while ethyl-Hg species appeared to be stable for up to 2 months.  相似文献   
34.
简要概述了标准物质的发展状况,汇集了军工所需的并经国家技术监督局审批发布的一级标准物质及其研制单位。  相似文献   
35.
高效除草剂快杀稗标准物质的制备及表征   总被引:4,自引:0,他引:4  
从快杀稗工业品出发 ,经活性炭纯化、硅胶柱层析分离制得快杀稗标准物质 ,并进行熔点、高效液相色谱、紫外光谱、元素分析、红外光谱、质谱、核磁共振等方法的表征 ,以高效液相色谱法测得该标准品纯度在99%以上  相似文献   
36.
介绍铜中9种杂质成分标准物质的研制方法。以1号纯铜为基体,配入硫、铁、铅、锌、镍、铋、锑、磷、砷及锡共10种杂质成分,采用雾化喷粉加工工艺,保证了样品的均匀性。对样品表面作了抗氧化保护处理。采取多家实验室协作定值的方式对除砷外的9种杂质成分进行定值。5年的跟踪检验结果表明,该标准物质稳定性良好。  相似文献   
37.
Arsenic Speciation in Urine and Blood Reference Materials   总被引:1,自引:0,他引:1  
Acute and chronic exposure to arsenic is a growing problem in the industrialized world. Arsenic is a potent carcinogen and toxin in humans. In the body, arsenic is metabolized to produce several species, including inorganic forms, such as trivalent (AsIII) and pentavalent (AsV), and the methylated metabolites such as monomethylarsonic acid, (MMAV), and dimethylarsinic acid (DMAV), in addition to arsenobetaine (AsB) which is ingested and excreted from the body in the same form. Each of these species has been reported to possess a specific but different degree of toxicity. Thus, not only is the measurement of total As required, but also quantification of the individual metabolites is necessary to evaluate the toxicity and risk assessment of this element. There are a large number of reference materials that are used to validate methodology for the analysis of As in blood and urine, but they are limited to total As concentrations. In this study, the speciation of five arsenic metabolites is reported in blood and urine from commercial available control materials certified for total arsenic levels. The separation was performed with an anion exchange column using inductively coupled plasma mass spectrometry as a detector. Baseline separation was achieved for AsIII, AsV, MMAV, DMAV, and AsB, allowing us to quantify all five species. Excellent agreement between the total arsenic levels and the sum of the speciated As levels was obtained.  相似文献   
38.
扼要介绍了化学计量主要研究内容和量传方法。并从化学计量技术机构,基准、标准装置,标准物质,检定规程和化学计量学等方面,叙述了化学计量的进展概况。  相似文献   
39.
An automated sequential injection (SI) on-line solvent extraction-back extraction separation/preconcentration procedure is described. Demonstrated for the assay of cadmium by electrothermal atomic absorption spectrometry (ETAAS), the analyte is initially complexed with ammonium pyrrolidinedithiocarbamate (APDC) in citrate buffer and the chelate is extracted into isobutyl methyl ketone (IBMK), which is separated from the aqueous phase by means of a newly designed dual-conical gravitational phase separator. A metered amount of the organic eluate is aspirated and stored in the PTFE holding coil (HC) of the SI-system. Afterwards, it is dispensed and mixed with an aqueous back extractant of dilute nitric acid containing Hg(II) ions as stripping agent, thereby facilitating a rapid metal-exchange reaction with the APDC ligand and transfer of the Cd into the aqueous phase. The aqueous phase is separated in a second dual-conical gravitational phase separator, and 30 μl of it is entrapped and metered in a sample loop (SL) and subsequently introduced via air segmentation into the graphite tube for analyte quantification. The ETAAS determination is performed in parallel with the separation/preconcentration process of the ensuing sample. An enrichment factor of 21.4, a detection limit of 2.7 ng l−1, along with a sampling frequency of 13 h−1 were obtained at a sample flow rate of 6.0 ml min−1. The precision (R.S.D.) at the 0.4 μg l−1 level was 1.8% as compared to 3.2% when quantifying the organic extractant directly. The applicability of the procedure is demonstrated for the determination of trace levels of cadmium in three certified reference materials.  相似文献   
40.
A chitosan resin functionalized with 3-nitro-4-amino benzoic acid moiety (CCTS-NABA resin) was newly synthesized for the collection/concentration of trace molybdenum by using cross-linked chitosan (CCTS) as base material. The carboxyl group of the moiety was chemically attached to amino group of cross-linked chitosan through amide bond formation. The adsorption behavior of molybdenum as well as other 60 elements on the resin was examined by passing the sample solutions through a mini-column packed with the resin. After the elution of the elements collected on the resin with 1 M HNO3, the eluates were analyzed by inductively coupled plasma-mass spectrometry (ICP-MS) and atomic emission spectrometry (ICP-AES).

The CCTS-NABA resin can adsorb several metal ions, such as vanadium, gallium, arsenic, selenium, silver, bismuth, thorium, tungsten, tin, tellurium, copper, and molybdenum at appropriate pHs. Among these metal ions, only molybdenum could be adsorbed almost completely on the resin at acidic regions. An excellent selectivity toward molybdenum could be obtained at pH 3–4. The adsorption capacity of CCTS-NABA resin for Mo(VI) was 380 mg g−1 resin. Through the column pretreatment, alkali and alkaline earth metals in river water and seawater samples were successfully removed.

The CCTS-NABA resin was applied to the adsorption/collection of molybdenum in river water and seawater samples. The concentrations of molybdenum in river water samples were found in the range of 0.84 and 0.95 ppb (ng g−1), whereas molybdenum in seawater was about 9 ppb. The validation of the proposed method was carried out by determining molybdenum in the certified reference materials of SLRS-4, CASS-4, and NASS-5 after passing through the CCTS-NABA resin; the results showed good agreement with the certified values.  相似文献   

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