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71.
本实验首次合成了以金属有机骨架MIL-88A作为前驱体,采用分子印迹法改性后的催化剂MIL-88A@MIP,并通过X射线衍射仪(XRD),扫描电镜(SEM)以及EDS能谱和氮气吸附对催化剂进行表征分析.以造纸废水中邻苯二甲酸二丁酯(DBP)作为目标污染物,探究该催化剂活化过硫酸盐(PS)产生SO_4~-·的能力.对比前驱体MIL-88A,靶向改性有效地提高了MIL-88A@MIP的催化活性,在反应480 min后,DBP的去除率高达80.4%.影响因素实验表明该催化剂的最佳活化条件为:PS∶DBP=600∶1、MIL-88A@MIP投加量0.5 g·L~(-1)、体系中pH为3.26.此外,探究了MIL-88A@MIP对于催化PS降解不同污染物的能力,其结果表明该催化剂对于邻苯二甲酸酯类(PAEs)物质均有降解效果,体现了其靶向选择性. 相似文献
72.
Minhui XU Xiaogang GU Shuguang LU Zhouwei MIAO Xueke ZANG Xiaoliang WU Zhaofu QIU Qian SUI 《Frontiers of Environmental Science & Engineering》2016,10(3):438-446
The thermally activated persulfate (PS) degradation of carbon tetrachloride (CT) in the presence of formic acid (FA) was investigated. The results indicated that CT degradation followed a zero order kinetic model, and CO 2 – · was responsible for the degradation of CT confirmed by radical scavenger tests. CT degradation rate increased with increasing PS or FA dosage, and the initial CT had no effect on CT degradation rate. However, the initial solution pH had effect on the degradation of CT, and the best CT degradation occurred at initial pH 6. Cl– had a negative effect on CT degradation, and high concentration of Cl– displayed much strong inhibition. Ten mmol·L–1HCO 3 – promoted CT degradation, while 100 mmol·L–1NO 3 – inhibited the degradation of CT, but SO 4 2– promoted CT degradation in the presence of FA. The measured Cl–concentration released into solution along with CT degradation was 75.8% of the total theoretical dechlorination yield, but no chlorinated intermediates were detected. The split of C-Cl was proposed as the possible reaction pathways in CT degradation. In conclusion, this study strongly demonstrated that the thermally activated PS system in the presence of FA is a promising technique in in situ chemical oxidation (ISCO) remediation for CT contaminated site. 相似文献
73.
Qishi LUO 《Frontiers of Environmental Science & Engineering》2014,8(2):188-194
The oxidation of aqueous monochlorobenzene (MCB) solutions using thermally- activated persulfate has been investigated. The influence of reaction temperature on the kinetics of MCB oxidation was examined, and the Arrenhius Equation rate constants at 20℃, 30℃, 40℃, 50℃, and 60℃ for MCB oxidation performance were calculated as 0, 0.001, 0.002, 0.015, 0.057 min-1, which indicates that elevated temperature accelerated the rate. The most efficient molar ratio ofpersulfate/MCB for MCB oxidation was determined to be 200 to 1 and an increase in the rate constants suggests that the oxidation process proceeded more rapidly with increasing persulfate/MCB molar ratios. In addition, the reactivity of persulfate in contaminated water is partly influenced by the presence of background ions such as CI-, HCO3, SO2 , and NO3. Importantly, a scavenging effect in rate constant was observed for both C1 and CO2- but not for other ions. The effective thermally activated persulfate oxidation of MCB in groundwater from a real contaminated site was achieved using both elevated reaction temperature and increased persulfate/MCB molar ratio. 相似文献
74.
75.
本文使用碱性过硫酸钾消解紫外分光光度法(HJ636-2012)和流动注射-盐酸萘乙二胺分光光度法(HJ668-2013)2种方法对地表水总氮进行对比分析测试,结果显示:流动注射-盐酸萘乙二胺分光光度法测定结果小于碱性过硫酸钾消解紫外分光光度法的测定值。同时对该结果进行了原因分析,为地表水总氮测定方法的选择具有参考价值。 相似文献
76.
77.
The aim of this work is the study of p-nitrophenol (PNP) removal, as a nitroaromatic compound, using a hybridized photo-thermally activated potassium persulfate (KPS) in a fully recycled batch reactor. Response surface method was used for modeling the process. Reaction temperature, KPS initial dosage and initial pH of the solution were selected as variables, besides PNP degradation efficiency was selected as the response. ANOVA analysis reveals that a second order polynomial model with F-value of 41.7, p-value of 0.0001 and regression coefficient of 0.95 is able to predict the response. Based on the model, the process optimum conditions were introduced as initial pH of 4.5, [KPS]0 = 1452 mg/L and T = 66 °C. Also experiments showed that using thermolysis and photolysis of the persulfate simultaneously, the role of thermolysis is not considerable. A pseudo first order kinetic model was established to describe the degradation reaction. Operational cost, as a vital industrial criterion, was estimated so that the condition of initial pH of 4.5, [KPS]0 = 1452 mg/L and T = 25 °C showed the highest cost effective case. Under the preferred mild condition, the process will reach to 84% and 89% of degradation and mineralization efficiencies, after 60 and 120 min, respectively. 相似文献
78.
采用电絮凝-过硫酸盐氧化协同工艺处理页岩气压裂返排废水,通过电解过程产生的Fe2+活化过硫酸盐产生强氧化性的硫酸根自由基氧化废水中的有机物,同时Fe2+被氧化成Fe3+进而水解起到絮凝作用。实验结果表明,在电解时间25 min、电流密度41.7 m A/cm~2、电极间距4 cm、搅拌转速100 r/min、废水pH 7.0、过硫酸盐添加量0.006 mol/L的条件下,COD去除率达94.5%,出水BOD_5/COD从0.13增至0.56,电导率从104 mS/m降至71 mS/m,矿化度从16 704 mg/L降至4 065 mg/L,不可滤残渣含量从554 mg/L降至59 mg/L。电絮凝-过硫酸盐氧化协同处理的效果明显优于单独电絮凝和硫酸亚铁活化过硫酸盐氧化工艺,循环伏安测试结果表明其原因是硫酸根自由基的产生,同时溶液的导电性增强,强化了絮凝效果。 相似文献
79.
张金梅 《中国安全生产科学技术》2013,9(7):66-70
为评价过硫酸铵胶囊破胶剂的混储危险性,测试了过硫酸铵胶囊破胶剂的氧化性,并分别采用压力传感器法和差示扫描量热法测试了非氧化剂过硫酸铵胶囊破胶剂与其他化学品的相容性。试验发现,过硫酸铵胶囊破胶剂由于外壳的包覆作用,其氧化性下降,个别过硫酸铵胶囊破胶剂不属氧化剂;但是通过相容性测试发现,过硫酸铵胶囊破胶剂与多数有机物质不相容。因此在储存过程中应与可燃物质以及还原剂等隔离。 相似文献
80.
碱性过硫酸钾法测定总氮的精密度偏性实验分析 总被引:1,自引:0,他引:1
通过碱性过硫酸钾法测定总氮的精密度偏性实验及其结果分析,提出测定总氮的过程中应注意功能室的环境要求及一些细小的分析细节,并提出相应的建议. 相似文献