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排序方式: 共有192条查询结果,搜索用时 15 毫秒
1.
建立了用膜-柱串联固相萃取(SPE)技术,甲醇和水作为流动相进行梯度洗脱,紫外和荧光检测器串联的高效液相色谱法(HPLC)分析水中EPA优先监控的16种PAHs的方法.  相似文献   
2.
从我国环境监测事业发展和建立社会主义市场经济体制的需要,论述了加速我国环境监测仪器规范化的必要和可行性,并阐述了具体实施意见。  相似文献   
3.
用液相催化法和脱硫除尘器脱除烟气中SO_2   总被引:8,自引:0,他引:8       下载免费PDF全文
在由旋风水膜和两块旋流塔板组成的处理气量为750m ̄3/h的二级脱硫除尘器中,进行了用含催化剂Mn ̄(2+)的水溶液吸收SO_2的扩大试验。结果表明,在确定的条件下,脱硫率达到73%,板效率为0.25~0.28。在同一设备中同时完成除尘与脱硫过程,设备投资少;以水为吸收剂,运行费用低;中性条件下吸收,长期运转不结垢,可靠性高。  相似文献   
4.
曲霉对水中重金属的吸附去除   总被引:15,自引:0,他引:15  
利用2种曲霉A.sojae M146和A.oryzae M149的菌体,作为吸附剂对水中Pb^2+和Cd^2 进行去除实验。结果表明,曲霉菌体的最佳培养时间为72h,吸附的最佳pH为5.5、温度为30℃、时间为1h。在最佳实验条件下,A.sojae M146对Pb^2 和Cd^2 的吸附率,分别为69.76%和72.28%;A.oryzae M149对Pb^2 和Cd^2 的吸附率,分别为60.64%和81.34%。使用稀碱溶液对曲霉菌体进行浸泡预处理后,可提高对重金属的吸附去除效果;而使用稀释、乙醇水溶液以及蒸馏水对菌体浸泡后,明显降低了重金属的去除效果。Na2CO3和EDTA溶液,可以有效地将重金属从曲霉体上解吸下来,从而达到重复利用菌体作为吸附剂的目的。  相似文献   
5.
对液体化工罐区静电产生的原因及可能产生的严重危害性做了详细的分析,并提出了防范措施.  相似文献   
6.
叙述了沈阳市现有中、小型燃煤锅炉除尘脱硫装置存在的主要问题 ,并提出了解决这些问题应采取的技术及管理措施。  相似文献   
7.
本文介绍了一种用于溶解氧测定的自制快速移液器.大量实践证明,这种移液器的应用,可明显提高溶解氧测定结果的准确度和精密度,并可缩短样品分析时间.  相似文献   
8.
Natural gas is a kind of clean, efficient green energy source, which is used widely. Liquefied natural gas (LNG) is produced by cooling natural gas to −161 °C, at which it becomes the liquid. Once LNG was released, fire or explosion would happen when ignition source existed nearby. The high expansion foam (Hi-Ex foam) is believed to quickly blanket on the top of LNG spillage pool and warm the LNG vapor to lower the vapor cloud density at the ground level and raising vapor buoyancy. To identify the physical structure after it contacted with LN2 and to develop heat transfer model, the small-scale field test with liquid nitrogen (LN2) was designed. In experiment, three layers including frozen ice layer, frozen Hi-Ex layer and soft layer of Hi-Ex foam were observed at the steady state. By characterizing physical structure of the foam, formulas for calculating the surface of single foam bubble and counting foam film thickness were deduced. The micro heat transfer and evaporation model between cryogenic liquid and Hi-Ex foam was established. Indicating the physical structure of the frozen ice layer, there were a certain number of icicles below it. The heat transfer and evaporation mathematical model between the frozen ice layer and LNG was derived. Combining models above with the heat transfer between LNG, ground and cofferdam, the heat transfer and evaporation mathematical model of LNG covered by Hi-Ex foam was developed eventually. Finally, LN2 evaporation rate calculated by this model was compared with the measured evaporation rate. The calculated results are 1.2–2.1 times of experimental results, which were acceptable in engineering and proved the model was reliable.  相似文献   
9.
This study examined concentrations of 15 perfluoroalkyl acids (PFAAs) in tissues from male Mozambique tilapia (Oreochromis mossambicus) collected at Loskop Dam, Mpumalanga, South Africa in 2014 and 2016. Nine of the 15 PFAAs were detected frequently and were included in statistical analysis and included two of the most commonly known PFAAs, perfluorooctanesulfonic acid (PFOS) (median, 41.6 ng/g) and perfluorooctanoic acid (PFOA) (median, 0.0825 ng/g). Of the tissues measured, plasma (2016 and 2014 median, 22.2 ng/g) contained the highest PFAA burden followed by (in descending order): liver (median, 11.6 ng/g), kidney (median, 9.04 ng/g), spleen (median, 5.92 ng/g), adipose (median, 2.54 ng/g), and muscle (median, 1.11 ng/g). Loskop Dam tilapia have been affected by an inflammatory disease of the adipose tissue known as pansteatitis, so this study also aimed to investigate relationships between PFAA tissue concentrations and incidence of pansteatitis or fish health status. Results revealed that healthy tilapia exhibited an overall higher (p-value < 0.05) PFAA burden than pansteatitis-affected tilapia across all tissues. Further analysis showed that organs previously noted in the literature to contain the highest PFAA concentrations, such as kidney, liver, and plasma, were the organs driving the difference in PFAA burden between the two tilapia groups. Care must be taken in the interpretations we draw from not only the results of our study, but also other PFAA measurements made on populations (human and wildlife alike) under differing health status.  相似文献   
10.
文章建立了简单、快速的阿维菌素菌渣中阿维菌素残留量高校液相色谱检测方法以及利用水热法处理阿维菌素菌渣。采用固相萃取-高效液相色谱检测方法测定阿维菌素菌渣中阿维菌素残留量,提取剂为乙腈/水=4/1(V/V),采用HLB固相萃取柱进行净化。加标回收率90.3%~107.3%,相对标准偏差(RSD)为3.00%~5.69%,阿维2菌素标准曲线线性相关系数R~2=0.999 6,线性范围为1.0~1 000 mg/L。利用正交实验,水热法处理阿维菌素菌渣,在190℃的温度下处理2 h后,菌渣中阿维菌素残留量由991.30降至0.84 mg/kg,去除率达99.92%。处理前后的菌渣与有机肥标准作对比,除含水率外其余检测指标均达到有机肥标准要求。该项研究为阿维菌素菌渣的资源化利用提供了理论依据。  相似文献   
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