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81.
建立了用活性炭吸附,丙酮解吸,HP-NNOWAX毛细管柱分离,气相色谱法测定大气中正戊烷和正已烷的方法.二种有机物在一定浓度范围内标准曲线线性良好,对实际样品进行分析,正戊烷加标回收率为94.1%~ 104.3%、正己烷加标回收率为94.7% ~ 105.8%,当采样体积为30 L,二种物质的方法最低捡出质量浓度均为0.0l mg/m3.该方法分析速度快,所需样品量少,前处理简便,分离度好,分析灵敏度高. 相似文献
82.
建立了高效液相色谱法测定水中六种邻苯二甲酸酯(邻苯二甲酸二甲酯、邻笨二甲酸二乙酯、邻苯二甲酸二丁酯、邻苯二甲酸二(2-乙基己基)酯、邻苯二甲酸二辛酯、邻苯二甲酸丁基苄酯)的检测方法.对水样中邻苯二甲酸酯的萃取条件和高效液相色谱分析条件进行优化,采用正己烷二次萃取,浓缩定容后分析,以乙腈-水为流动相梯度洗脱,紫外检测波长226 nm,16 min可将六种邻苯二甲酸酯分离出.方法的检出限为0.13μg/L ~0.37 μg/L,加标回收率为78.6%~118.5%,相对标准偏差为0.82%~2.17%,是一种理想的测定水中六种邻苯二甲酸酯的方法. 相似文献
83.
采用分光光度法和离子色谱法测定降水中铵离子,比对研究两种方法的测定原理、标准曲线和检出限。结果表明,两种方法对标准样品和实际样品分析测定均能达到质控要求,测定结果基本一致。离子色谱法方便快捷,污染少,结果准确可靠,可以同时测定多种阳离子。 相似文献
84.
SOUL CHUN JAEHOON LEE ROLAND GEYER DAVID C. WHITE 《Journal of environmental science and health. Part. B》2013,48(5):731-740
Extraction is an important procedure for samples that contain soil because other compounds in soil may affect analysis of estrogens. This study was conducted to evaluate three different extraction methods for 17β-estradiol in soil. Sand, bentonite, and organic-rich silt loam were spiked with 1 mg kg? 1 of 17β-estradiol as a model compound of estrogens. 17β-estradiol and its metabolites, estrone and estriol, were extracted using (i) a modified Bligh and Dyer extraction, (ii) a pressurized fluid extraction, and (iii) a diethyl ether extraction, and measured by liquid chromatography tandem mass spectrometry. There were significant differences in the extraction efficiency for 17β-estradiol among the extraction methods and the soils: the efficiencies ranged from 10% to 97%. Overall, the diethyl ether extraction method had the largest efficiency of 17β-estradiol with 45% and 57% for bentonite and silt loam, respectively. Transformation of 17β-estradiol to estrone and estriol in the different extraction methods was less than 3.6% during the extraction procedures. This study underlined the importance of sample preparation for estrogen analysis in soil samples. 相似文献
85.
简要介绍了广东省7个火电厂现有的5种烟气脱硫技术装置:海水脱硫、荷电干式烟气脱硫、湿式石灰石/石膏法烟气脱硫、DCL燃煤固硫剂脱硫及烟气循环流化床脱硫技术,对它们的经济、技术性进行了分析比较。 相似文献
86.
87.
Altamash Ahmad Baig Farshad Kimiaghalam Rakesh Kumar JuanLi Ma Alan S. Fung 《International Journal of Green Energy》2020,17(8):476-487
ABSTRACT An eQUEST model was developed to conduct a simulation study of a natural gas engine-driven heat pump (GEHP) for an office building in Woodstock, Ontario, Canada. Prior to the installation of the GEHP, the heating and cooling demands of the office building were provided by rooftop units (RTUs), comprising of natural gas heater and electric air conditioner. Energy consumption for both GEHP and RTUs were monitored for operation in alternating months. These recorded energy consumptions along with weather data were used in the regression analysis. The developed eQUEST models were validated and calibrated with the regression analysis results with respect to the ASHRAE Guideline 14–2014. The eventual models were then applied to investigate the potential annual energy consumption, greenhouse gas (GHG) emission and energy cost savings achieved by using the GEHP in Woodstock, and other cities in Canada, particularly in Ontario. 相似文献
88.
锚索拉断火花引爆瓦斯的实验研究 总被引:3,自引:0,他引:3
设计了锚索拉断火花引爆瓦斯实验装置 ,在瓦斯浓度为爆炸范围的环境中 ,对锚索拉断时产生火花规律及引起瓦斯爆炸的可能性进行了一系列实验研究。结果表明 :锚索拉断产生火花的概率为 5 0 % ,锚索钢绞线破断产生的火花不能引起瓦斯爆炸。采用红外热成象仪对锚索拉断火花温度的测试表明 ,锚索拉断产生的火花最高温度远小于瓦斯爆炸所需的最低点燃温度 6 5 0℃。 相似文献
89.
J. Karnesky P. Chatterjee F. Tamanini S. Dorofeev 《Journal of Loss Prevention in the Process Industries》2007,20(4-6):447-454
A three-dimensional gasdynamic model with constant burning rate is applied for the prediction of the maximum pressure rise from gaseous combustion in vented enclosures. A series of calculations for an enclosure with aspect ratio close to unity are presented. Both cases with and without obstacles in the enclosure are considered. Results of calculations are compared with a simple 0D solution for spherical vessels. It is shown that, in cases without obstacles, the 0D solution for the maximum reduced overpressures is close to the predictions of the detailed modeling. In cases with obstacles, the detailed simulation gives significantly higher overpressures than those from the 0D model. However, in all the cases the reduced pressures are correlated well with the maximum flame surface area. 相似文献
90.
Bretislav Janovsky Jan Zigmund 《Journal of Loss Prevention in the Process Industries》2007,20(4-6):517-522
Rescue operations during mine fires or methane explosions are highly dangerous for rescue workers. The knowledge of the composition of the coal mine atmosphere and the calculations of its explosibility may help to increase the safety of the rescuers. In the Czech Republic, a system called “Mine Gas Laboratory” (DPL) has been used for these purposes. The DPL allows measurement of the composition of the mine atmosphere and transmits the data necessary for evaluation to the surface. Up to now the explosibility evaluation of the coal mine atmosphere has depended either on the rescuers’ experience or on software code calculation. The code called “Vybuchovy trojuhelnik” (explosion triangle) is a graphical computing system intended for fast assessment of explosibility of fuel–air mixture. This article introduces the code and describes two simple methods of explosibility evaluation. The first method is “explosion triangle analysis”—a graphical method based on empirical graphs transformed into equations. The second method uses thermodynamic calculation based on chemical balance dynamics and Gibbs and Helmholtz energy. According to the requirements of the Czech Bureau of Mining (CBU) and Central Mine Rescue Service (HBZS), the code solves the problems of explosion triangle for both standard and non-standard coal mine atmosphere compositions. Unfortunately, the atmosphere composition must be introduced manually due to the unknown format of the data transmitted from the old DPL model. On 1 September 2005, a project started to develop a new system for on-line monitoring and atmosphere explosibility evaluation. The system should be able to measure CO2, O2, CH4, H2 and CO concentrations as well as the wind speed, temperature and humidity. The “Vybuchovy trojuhelnik” code will be used as a basis for explosibility evaluation, and an on-line connection with the new model of DPL will be established. 相似文献