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151.
152.
Cr6+的隆线溞趋光指数与LC50急性毒性的比较 总被引:16,自引:3,他引:16
采用隆线 (D .carinata)为试验生物 ,研究Cr6 对隆线趋光指数的影响 ,并与LC50 急性毒性结果进行了比较 .结果表明 ,水的趋光指数 (Ip)与铬浓度存在着显著的相关关系 (y =0 391- 0 5 14x ,R2 =0 81) ,3h的Ip 监测下限为 0 0 5 6mg·L-1,分别是LC50 ( 2 4h)及LC50 ( 48h)的 2 3 6 0 %和 39 0 0 % ,仅相当于LC50 ( 96h) .因此 ,利用水趋光指数 ,可能为评价水体的健康状况提供一种快速、灵敏的方法 相似文献
153.
Sulfur hexafluoride (SF6) is known as one of the most powerful greenhouse gases in the atmosphere. Reductive photodegradation of SF6 by styrene has been studied with the purpose of developing a novel remediation for sulfur hexafluoride pollution. Effects of reaction conditions on the destruction and removal efficiency (DRE) of SF6 are examined in this study. Both initial styrene-to-SF6 ratio and initial oxygen concentration exert a significant influence on DRE. SF6 removal efficiency reaches a maximum value at the initial styrene-to-SF6 ratio of 0.2. It is found that DRE increases with oxygen concentration over the range of 0 to 0.09 mol/m^3 and then decreases with increasing oxygen concentration. When water vapor is fed into the gas mixture, DRE is slightly enhanced over the whole studied time scale. The X-ray Photoelectron Spectroscopy (XPS) analysis, together with gas chromatography-mass spectrometry (GC-MS) and Fourier Transform Infrared spectroscopy (FT-IR) analysis, prove that nearly all the initial fluorine residing in the gas phase is in the form of SiF4, whereas, the initial sulfur is deposited in the form of elemental sulfur, after photodegradation. Free from toxic byproducts, photodegradation in the presence of styrene may serve as a promising technique for SF6 abatement. 相似文献
154.
Because of recent volume increases, appropriate management of plastic recycling, which generates various organic compounds, is required to ensure the chemical safety of the processes. The processing temperature and resin type are the important factors determining both the efficiency of the processes and the emission of chemicals. Therefore, we studied the thermal degradation of various plastics at various temperatures from 70 to 300 °C under oxygen-present conditions to identify the semi-volatile organic compounds (SVOCs) emitted and to understand their thermal behaviors. The plastics examined were nitrogen-containing resins, such as polyamide 6, polyurethane, melamine formaldehyde, urea formaldehyde and acrylonitrile-butadiene-styrene. Major commodity plastics were also investigated for comparison. In total, more than 500 SVOCs were detected as emissions from plastics. While various nitrogen-containing SVOCs were detected from nitrogen-containing resins, the major commodity plastics released only these, which possibly were included as additives. These results indicate that the nitrogen atoms in the SVOCs emitted originated from the resins and additives, and not from ambient air at low temperature. As a result of the detection of raw materials, degradation chemicals and by-products of the polymers in the emissions, we found that the variation in chemical species is dependent on the resins. Additives were also emitted from all the resins, meaning that these chemicals were also released to the environment at the temperature examined. In most cases, the numbers and concentrations of SVOCs increased with increasing heating temperature. The variation of thermal behaviors of SVOCs was related to the origins and chemical species of SVOCs. 相似文献
155.
156.
以对羟基苯甲酸为原料,通过化学修饰合成得到上沿羧基化的杯[6]芳烃羟肟衍生物,即5,11,17,23,29,35-六羧基-37,38,39,40,41,42-六羟肟酸甲氧基杯[6]芳烃(HHMHC),采用IR对其结构性能进行表征,并探讨了溶液初始pH值、初始重金属离子(Cu2+、Ni2+)浓度、萃取时间、温度等因素对HHMHC萃取重金属离子的影响.结果表明,在温度为30℃时HHMHC萃取Ni2+和Cu2+的最佳pH值分别为5.0、6.0,萃取平衡时间均为30min.用准二级动力学模型(R2>0.99)和Freundlich等温模型(R2>0.999)均可较好的拟合其萃取过程,通过计算萃取过程的热力学参数,得到Gibbs自由能(ΔG0)和焓变(ΔH0)均小于0,表明萃取反应是一个自发的放热反应.通过红外光谱图分析和考察溶液pH值对萃取分配比的影响,探讨HHMHC萃取Cu2+、Ni2+的机理,结果表明此萃取过程除了存在阳离子交换机理外,还存在与冠醚萃取相同的离子配位萃取,参与配位作用的主要是羟肟基团(–CONHOH). 相似文献
157.
158.
Bo Yao Lingxi Zhou Lingjun Xi Gen Zhang Lifeng Guo Zhao Liu Shuangxi Fang 《环境科学学报(英文版)》2014,26(12):2451-2458
We present in-situ measurements of atmospheric sulfur hexafluoride(SF6) conducted by an automated gas chromatograph–electron capture detector system and a gas chromatography/mass spectrometry system at a regional background site, Shangdianzi,in China, from June 2009 to May 2011, using the System for Observation of Greenhouse gases in Europe and Asia and Advanced Global Atmospheric Gases Experiment(AGAGE)techniques. The mean background and polluted mixing ratios for SF6 during the study period were 7.22 × 10-12(mol/mol, hereinafter) and 8.66 × 10-12, respectively. The averaged SF6 background mixing ratios at Shangdianzi were consistent with those obtained at other AGAGE stations located at similar latitudes(Trinidad Head and Mace Head), but larger than AGAGE stations in the Southern Hemisphere(Cape Grim and Cape Matatula). SF6 background mixing ratios increased rapidly during our study period, with a positive growth rate at 0.30 × 10-12year-1. The peak to peak amplitude of the seasonal cycle for SF6 background conditions was 0.07 × 10-12, while the seasonal fluctuation of polluted conditions was 2.16 × 10-12. During the study period, peak values of SF6 mixing ratios occurred in autumn when local surface horizontal winds originated from W/WSW/SW/SWS/S sectors, while lower levels of SF6 mixing ratios appeared as winds originated from N/NNE/NE/ENE/E sectors. 相似文献
159.
Muhil Vannan Seralathan Saravanadevi Sivanesan Amit Bafan Sanjay Madanchand Kashyap Arrigo Patrizio Kannan Krishnamurthi Tapan Chakrabarti 《环境科学学报(英文版)》2014,26(11):2307-2314
Computing chemistry was applied to understand biotransforrnation mechanism of an organochlorine pesticide, endosulfan. The stereo specific metabolic activity of human CYP-2B6 (cytochrome P450) on endosulfan has been well demonstrated. Sequence and structural similarity search revealed that the bacterium Bacillus megaterium encodes CYP-BM3, which is similar to CYP-2B6. The functional similarity was studied at organism level by batch-scale studies and it was proved that B. megaterium could metabolize endosulfan to endosulfan sulfate, as CYP-2B6 does in human system. The gene expression analyses also confirmed the possible role of CYP-BM3 in endosulfan metabolism. Thus, our results show that the protein structure based in-silico approach can help us to understand and identify microbes for remediation strategy development. To the best of our knowledge this is the first report which has extrapolated the bacterial gene for endosulfan biotransformation through in silico prediction approach for metabolic gene identification. 相似文献
160.