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51.
采用Fe3O4活化过硫酸盐(PS)同步去除水中的NOR (诺氟沙星)和Pb (II).探讨了Fe3O4投加量、PS浓度、初始pH值和Pb (II)浓度对NOR降解的影响.结果表明,NOR的降解符合伪一级反应动力学,在温度为30℃、NOR初始浓度为5.0mg/L、Pb (II)浓度为1.0mg/L、Fe3O4投加量为2.0g/L、PS浓度为1.5mmol/L、初始pH值为7.0的条件下,反应120min后,NOR降解率达90.2%,Pb (II)去除率为99.5%.自由基淬灭实验证实,硫酸根自由基(SO4-·)是NOR降解的主要自由基.通过LC-MS分析结果推测了NOR可能的降解路径和中间产物.Fe3O4活化PS高级氧化工艺可作为一种同步去除有机污染物和重金属的工艺.  相似文献   
52.
To meet the challenges posed by global arsenic water contamination, the MgAlMn-LDHs with extraordinary efficiency of arsenate removal was developed. In order to clarify the enhancement effect of the doped-Mn on the arsenate removal performance of the LDHs, the cluster models of the MgAlMn-LDHs and MgAl-LDHs were established and calculated by using density functional theory (DFT). The results shown that the doped-Mn can significantly change the electronic structure of the LDHs and improve its chemical activity. Compared with the MgAl-LDHs that without the doped-Mn, the HOMO-LUMO gap was smaller after doping. In addition, the -OH and Al on the laminates were also activated to improve the adsorption property of the LDHs. Besides, the doped-Mn existed as a novel active site. On the other hand, the MgAlMn-LDHs with the doped-Mn, the increased of the binding energy, as well as the decreased of the ion exchange energy of interlayer Cl, making the ability to arsenate removal had been considerably elevated than the MgAl-LDHs. Furthermore, there is an obvious coordination covalent bond between arsenate and the laminates of the MgAlMn-LDHs that with the doped-Mn.  相似文献   
53.
As the biggest inter-basin water transfer scheme in the world,the South-to-North Water Diversion Project(SNWD) was designed to alleviate the water crisis in North China.The main channel of the middle route of the SNWD is of great concern in terms of the drinking water quality.In this study,we tested the hypothesis that the dissolved organic matter(DOM) derived from the planktonic algae causes the rising levels of CODMn along the middle route by monitoring data on water quality(2015-20...  相似文献   
54.
水中重金属去除一直是水处理的技术难点.锰虽然是动物必需的微量元素之一,但是人和动物摄入过量的锰会对神经系统等产生毒害.利用皂土吸附水中的重金属Mn2+,在装有微电极阵列芯片的介电泳池研究装置中,通过调节外加交流电压,捕获悬浮液中的皂土从而间接去除Mn2+.吸附了微量重金属离子的皂土被捕获到电场强度较大的区域,发生了正介电泳.该研究为建立一种从废水中间接去除重金属离子的实际可行方法奠定了实验基础,不存在二次污染.  相似文献   
55.
由于能源化石类燃料中均包含不同含量的硫化物,随着人类对这些能源的不断利用,引发的环境污染等问题日趋严重。利用五羰基铁(Fe(CO)5)分解条件温和可控,产物无杂质,分解后的Fe0可以与硫原子原位键合等特点。文章尝试采用Fe(CO)5作为脱硫剂在温和条件下进行脱除正辛硫醇的研究。实验结果表明:随着压强(101~5 067 kPa)、Fe(CO)5加入量(50~250μL)、时间(1~6 h)和温度(0~180℃)的不同,Fe(CO)5脱硫效率具有明显差异,在此基础上得到最佳脱硫条件及最高脱除效率:常压、Fe(CO)5加入量200μL(1.4 mmol)、t=2h和T=140℃时,达到最高硫容3 450 mg/L。分别采用IR、XPS手段对脱硫反应机理进行了探索。IR结果表明:在1 084 cm-1处为硫氧峰,在797 cm-1归属为铁氧峰。XPS结果表明:167.8 eV处可能为S4+,711.6 eV处可能为Fe3+。因此,正辛硫醇脱除的可能机理为巯基断裂,并在空气中与氧结合,最终形成S4+,而Fe(CO)5的Fe经过脱硫之后,在空气中不稳定,最终被氧化成Fe3+。  相似文献   
56.
阴极催化剂是影响微生物燃料电池(microbial fuel cell,MFC)性能的关键因素.通过研究制备成本低廉、氧还原反应(ORR)催化活性高的阴极催化剂来替代Pt/C对于实现MFC规模化应用具有重大意义.研究采用化学气相沉淀法,以三聚氰胺作为碳氮前驱物、以黑珍珠2000或乙炔炭黑作为碳源,外加醋酸亚铁作为铁前驱物,合成了两种铁氮掺杂碳纳米管/纤维复合物(FeNCB和FeNCC),作为MFC的阴极催化剂.通过循环伏安法和旋转圆盘-环电极分析FeNCB、FeNCC和Pt/C的ORR催化活性的差异,并用MFC验证其差异.结果表明,FeNCB性能与Pt/C相当,优于FeNCC,其催化路径是通过4电子途径催化氧还原反应;MFC-FeNCB性能略优于MFC-Pt/C,显著优于MFC-FeNCB有助于MFC的扩大化,其最大功率密度为1 212.8mW·m~(-2),开路电压为0.875 V,电池稳定电压为(0.500±0.025)V.用X射线衍射、X射线光电子光谱、拉曼光谱等进一步分析显示,复合物中碳纳米管管径的大小、铁氮掺杂的类型和含量以及氧含量是引起制备的复合物催化氧还原性能差异的原因所在.  相似文献   
57.
Rod-like, hexagonal and fiber-like SBA-15 mesoporous silicas were synthesized to support MnO_x for toluene oxidation. This study showed that the morphology of the supports greatly influenced the catalytic activity in toluene oxidation. MnO_x supported on rod-like SBA-15(R-SBA-15) displayed the best catalytic activity and the conversion at 230°C reached more than 90%, which was higher than the other two catalysts. MnO_x species consisted of coexisting MnO_2 and Mn_2O_3 on the three kinds of SBA-15 samples. Large amounts of Mn_2O_3 species were formed on the surface and high oxygen mobility was obtained on MnO_x supported on R-SBA-15, according to the H_2 temperature programmed reduction(H_2-TPR)and X-ray photoelectron spectroscopy(XPS) results. The Mn/R-SBA-15 catalyst with greater amounts of Mn_2O_3 species possessed a large amount of surface lattice oxygen, which accelerated the catalytic reaction rate. Therefore, the surface lattice oxygen and high oxygen mobility were critical factors on the catalytic activity of the Mn/R-SBA-15 catalyst.  相似文献   
58.
EDTA直接滴定测定镍   总被引:1,自引:0,他引:1  
参考磷酸在345~356℃时有强腐蚀性的特点,采有硫磷混合酸消解矿样,能使样品消解完全。本方法经加标校核证明,检测结果重现性好,准确度高。  相似文献   
59.
Background For their high photoreactivity, Fe(III)-carboxylate complexes are important sources of H2O2 for some atmospheric and surface waters. Citrate is one kind of carboxylate, which can form complexes with Fe(III). In our previous study, we have applied Fe(III)-citrate complexes to degrade and decolorize dyes in aqueous solutions both under UV light and sunlight. Results have shown that carboxylic acids can promote the photodegradation efficiency. It is indicated that the photolysis of Fe(III)-citrate complexes may cause the formation of some reactive species (e. g. H2O2 and ·OH). This work is attempted to quantify hydroxyl radicals generated in the aqueous solution containing Fe(III)-citrate complexes and to interpret the photoreactivity of Fe(III)-citrate complexes for degrading organic compounds. Methods By using benzene as the scavenger to produce phenol, the photogeneration of ·OH in the aqueous solution containing Fe (III)-citrate complexes was determined by HPLC. Results and Discussion In the aqueous solution containing 60.0/30.0 mM Fe(III)/citrate and 7.0 mM benzene at pH 3.0, 96.66 mM ·OH was produced after irradiation by a 250W metal halide light (l ≥ 313 nm) for 160 minutes. Effects of initial pH value and concentrations of Fe(III) and citrate on ·OH radical generation were all examined. The results show that the greatest photoproduction of ·OH in the aqueous solution (pH ranged from 3.0 to 7.0) was at pH 3.0. The photoproduction of ·OH increased with increasing Fe(III) or citrate concentrations. Conclusion In the aqueous solutions containing Fe(III)-citrate complexes, ·OH radicals were produced after irradiation by a 250W metal halide light. It can be concluded that Fe(III)-citrate complexes are important sources of ·OH radicals for some atmospheric and surface waters. Recommendations and Outlook It is believed that the photolysis of Fe(III)-citrate complexes in the presence of oxygen play an important role in producing ·OH both in atmospheric waters and surface water where high concentrations of ferric ions and citrate ions exist. The photoproduction of ·OH has a high oxidizing potential for the degradation of a wide variety of natural and anthropogenic organic and inorganic substances. We can use this method for toxic organic pollutants such as organic dyes and pesticides.  相似文献   
60.
多泥沙河流水质模型研究   总被引:1,自引:0,他引:1  
针对黄河泥沙含量大、泥沙对河流CODMn浓度影响大的突出特点,运用模拟实验方法,探讨了泥沙对CODMn浓度的影响,揭示了浑水、清水中CODMn浓度与含沙量间的关系.研究表明,黄河浑水中CODMn浓度随含沙量增大呈显著上升趋势,而去除泥沙后清水CODMn浓度测定值随其原含沙量增大呈微上升趋势.依据质量平衡原理,建立了充分考虑泥沙影响的CODMn衰减经验模型.清水中CODMn浓度的变化采用完全混合反应器概念来模拟,浑水中CODMn浓度通过清水中CODMn浓度与泥沙中CODMn浓度之和来量化.模型基本方程的求解采用稳态解析解.模型中的参数通过利用实际监测数据及室内实验结果与优化结合的方法确定.同时,利用实际监测数据对参数和模型进行检验.结果表明,模型结构合理,参数取值可靠,模型精度较好.模型既能揭示汇流区间人为污染对河段水质的影响,又可以反映作为面污染源的黄河泥沙对污染的影响,可作为水质预测的实用工具及规划管理的依据.  相似文献   
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