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201.
研究了离子强度、不同金属离子对土壤中PAHs表观解吸水平的影响.根据Pearson原理计算了菲、荧蒽、芘和苯并[k]荧蒽等几种PAHs的碱性特征参数并据此分析了其酸碱性类型.结果表明:实验条件下,解吸液中离子强度并非影响土壤中PAHs解吸的控制要素;不同硬度酸性金属离子与PAHs之间的酸碱作用是影响土壤中PAHs解吸水平变化的关键.硬酸性金属离子Ba2+、Al3+、Ca2+对土壤中PAHs的解吸具有促进作用,软酸性离子Hg2+、Ag+则具有抑制作用,比较而言交界酸性金属离子Cu2+、Fe2+、Zn2+在提高土壤中PAHs解吸上作用更加明显.  相似文献   
202.
膜生物反应器中膜的最佳反冲洗周期   总被引:11,自引:0,他引:11  
将解吸分为平衡解吸和完全解吸两种类型,对水环境中含油泥沙上油分子的解吸特性进行了研究,通过试验,分析了解吸平衡时的吸附等温线及平衡解吸量随清水解吸液用量变化的规律,同时也对含油泥沙发生完全解吸时的最大解吸量和极限残留量进行了研究,并得出了它们随泥沙粒径变化的规律。  相似文献   
203.
土壤解吸过程是影响污染物生物有效性和土壤修复的重要因素.采用人工添加方法制备加菲(PHE)老化1个月的土壤.考察水-土体系中溶解有机质(DOM)对PHE解吸动力学的影响和相互关系.结果表明.DOM与PHE的解吸释放浓度表现出相似的先增后减、最后趋于平衡的动力学过程(双尾显著性水平0.000,Spearman 秩相关系数0.778).PHE 解吸动力学常数量级的变化范围在10-5~10-6s-1之间,而且转折变化发生在峰值释放量所对应的时间点(2.5 h 左右).另外,紫外光谱表征参数E4/E6<5说明解吸进入水相的 DOM 主要为胡敏酸,另一参数A254,SUV 的变化趋势与PHE解吸动力学过程相一致.在不同pH条件下,PHE解吸浓度的关系为:碱性>中性>酸性.因酸性条件下溶解释放的胡敏酸(DHA)发生沉淀而无法判定其与PHE释放浓度的相关性;在其它pH条件下DOM、A254,,SUV>都分别与PHE的解吸浓度显著相关.这些结果说明DOM是影响PHE解吸动力学的重要因素.  相似文献   
204.
温州临江垃圾焚烧发电厂飞灰的性质研究   总被引:1,自引:0,他引:1  
研究了温州临江垃圾焚烧发电厂生活垃圾焚烧产生飞灰的物理和化学性质。飞灰为含水率低、颗粒尺寸集中在43~175μm之间的灰色粉末,主要由Si、Al、Ca、Mg、Fe、Na、K、C和S元素组成。飞灰中Pb、Cd的浸出浓度在酸性条件下都不同程度地高于我国危险废物鉴别标准的允许浓度,其中Pb的浸出浓度在pH值1.06~13.69条件下远远超标,碱性条件下浸出毒性比酸性条件下小。矿物组成主要为石英(SiO2)、赤铁矿αFe2O3、钙长石CaO.Al2O3.2SiO2、钙铝黄长石2CaO.Al2O3.SiO2、KCl、NaCl、CaCO、PbO、TiO2、ZnCO3等,溶解盐含量高达19.5%,化学反应活性较强,热稳定性较差。  相似文献   
205.
Fungal pellets of Aspergillus niger 405,Aspergillus ustus 326,and Stachybotrys sp.1103 were used for the removal of humic substances from aqueous solutions.Batchwise biosorption,carried out at pH 6 and 25°C,was monitored spectrophotometrically and the process described with Freundlich’s model.Calculated sorption coeffcients Kf and n showed that A.niger exhibited the highest effciency.A good match between the model and experimental data and a high correlation coeffcient(R2)pointed out to judicious choice of ...  相似文献   
206.
选取35台装机容量30万千瓦以上大型火电机组,进行了为期2年的监测。总结出大型火电机组二氧化硫排放规律,对大型火电机组燃煤含硫量、脱硫设施脱硫效率和二氧化硫排放浓度三者间的关系进行了统计分析,建立了线性回归方程,进而对燃用不同含硫量燃煤的火电机组执行不同排放标准时,配套脱硫设施需要达到的脱硫效率进行了预测。  相似文献   
207.
A new adsorbent sulfhydryl and carboxyl functionalized magnetite nanocellulose composite [(MB-IA)-g-MNCC] was synthesized by graft co-polymerization of itaconic acid onto magnetite nanocellulose (MNCC) using EGDMA as cross linking agent and K2S2O8 as free radical initiator. The adsorption occurs maximum in the pH 6.5. The best fitted kinetic model was found to be pseudo-second-order kinetics. Therefore the mechanism of Co(II) adsorption onto (MB-IA)-g-MNCC follows ion exchange followed by complexation. The Langmuir model was the best fitted isotherm model for the adsorption of Co(II) onto the (MB-IA)-g-MNCC. Simulated nuclear power plant coolant water samples were also treated with (MB-IA)-g-MNCC to demonstrate its efficiency for the removal of Co(II) from aqueous solutions in the presence of other metal ions. To recover the adsorbed Co(II) ions and also to regenerate the adsorbent to its original state 0.1?M HCl was used as suitable desorbing agent. Six cycles of adsorption-desorption experiments were conducted and was found that adsorption capacity of (MB-IA)-g-MNCC has been decreased from 97.5% in the first cycle to 84.7% in the sixth cycle. Recovery of Co(II) using 0.1?M HCl decreased from 93.2% in the first cycle to 79.3% in the sixth cycle.

Abbreviations: T: absolute temperature; qe: amount adsorbed at equilibrium; qt: amount adsorbed at time t; CELL: cellulose; Co: cobalt; Ce: concentration at equilibrium; CHCl: concentration of HCl; CNaOH: concentration of NaOH; CA: concentrations of acid; CB: concentrations of base; Wg: dry weight of composite; Wi: dry weight of MNCC; DS: energy dispersive spectra; EGDMA: ethylene glycol dimethacrylate; Ce: equilibrium concentration; KL: equilibrium constant; F: Faradays constant; FTIR: Fourier transform infrared spectra; ΔGo: free energy change; KF: Freundlich adsorption capacity; 1/n: Freundlich constant; R: gas constant; D: grafting density; ECo: initial concentration; IA: itaconic acid; IA-g-MNCC: itaconic acid-grafted-magnetite nanocellulose composite; b: Langmuir constant; MNCC: magnetite nanocellulose composite; Q0: Maximum adsorption capacity; (MB-IA)-g-MNCC: 2-mercaptobenzamide modified itaconic acid-grafted-magnetite nanocellulose composite; NC: nanocellulose; pHpzc: Point of zero charge; K2S2O8: potassium peroxy sulphate; k1: pseudo-first-order rate constant; k2: pseudo-second-order rate constant; SEM: scanning Electron Microscope; bs: Sips adsorption capacity; Qs: Sips maximum adsorption capacity; ΔH°: standard enthalpy change; ΔS°: standard entropy change; A: surface area; σ0: surface charge density; 1/ns: surface heterogeneity factor; VSM: vibrating sample magnetometer; V: volume of solution; W: weight of (MB-IA)-g-MNCC; Mcomposite: weight of the composite; XRD: X-ray diffraction  相似文献   

208.
In this paper, the kinetic mechanism of AIBN, AMBN, and ABVN was proposed, and the effect of molecular structure on their thermal hazards based on the kinetic mechanism was investigated. Calculated by non-isothermal DSC datum, the kinetic mechanism of AIBN, AMBN, and ABVN is revealed by the linear relationship between the integrated form of mechanical function and reaction time. The results indicate that the thermal decomposition process is controlled by the Johnson-Mehl-Avrami equation. Based on the determination of kinetic mechanism function, the reaction rate constants at various heating rates are directly calculated, and the intercept of the best fitting straight line of reaction rate constants with heating rate is approximately equal to the reaction rate constant under isothermal conditions. Besides, theoretical values obtained by multiplying kinetic mechanism function by reaction rate are well consistent with the experimental values, suggesting that the kinetic mechanism obtained is credible. Bond Dissociation Energies (BDE) calculated by quantum chemical equations are employed to evaluate the thermodynamics stability of AIBN, AMBN, and ABVN. Depending on similar molecular structures, the influence of differentiated group structure on the thermodynamic stability represented by BDE and heat release and the kinetic stability characterized by reaction rate constant were revealed. Finally, the results demonstrate that the thermal hazard increases as the volume of substituent group and molecular weight.  相似文献   
209.
The polymerization reaction can lower the threshold of the required energy by the initiator to improve the efficiency of the overall process reaction. Emerging polymerization initiators are also a major focus of process improvement and technological progress. Azo compounds (azos), which used in dyeing applications, are subsequently used in polymerization reactions due to their highly exothermic reaction characteristics. Although higher heat release can promote polymerization and modify the product, heat generation may also cause process hazards.These thermal hazard parameters were studied by selecting dimethyl 2,2′-azobis(2,4-dimethylvaleronitrile) (ABVN), 2,2′-azobis(2-methyl propionate) (AIBME), 2,2′-azobis(2-methylpropionamide) dihydrochloride (AIBA), and 2,2′-azobis(isobutyronitrile) (AIBN), which are common azo initiators at present. Thermal hazards are closely related to the reaction kinetics of the substance itself. The form of the reaction, the apparent activation energy and the thermodynamic parameters of the exothermic mode were also obtained.Kinetic analysis of the actual process using the experimental data of the isothermal calorimetry model is rarely used in the evaluation of related thermal hazard characteristics. The simulation results revealed the kinetic azo models and were further applied to calculate the runaway situations of azo under specific boundary conditions.  相似文献   
210.
本文针对以往在火炸药热爆炸参数测试过程中,因试样与加热介质之间的热交换所带来的较大测试误差,建立了跟踪控温下的近似绝热测试系统,研制了本测试系统的中枢仪器──四通道数显温度调节自动跟踪仪。通过本测试系统的建立,使得对热爆炸参数的测试更具有科学性和实用性。  相似文献   
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