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介质阻挡放电和催化联合处理萘普生钠废水的研究

摘要第5-6页
Abstract第6-7页
CHAPTER 1 INTRODUCTION第12-32页
    1.1 Background Research第12-14页
    1.2 Domestic and international research status and development trends第14-26页
        1.2.1 Physical method第15-17页
        1.2.2 Biological method第17-18页
        1.2.3 Chemical method第18-20页
        1.2.4 Plasma technology第20-22页
        1.2.5 Dielectric barrier discharge第22-26页
    1.3 Theoretical significance and application value第26-27页
    1.4 Main research content and the objectives of the study第27-30页
        1.4.1 Main research content第27-28页
        1.4.2 The objectives of the study第28-30页
    1.5 Structure of the dissertation第30-32页
CHAPTTER 2 EXPERIMENTAL INSTRUMENT AND METHODS第32-43页
    2.1 Experimental instruments and devices第32页
    2.2 Main experiment reagents第32-34页
    2.3 Experimental setup and catalyst method第34-35页
        2.3.1 Experimental setup第34-35页
        2.3.2 Catalyst methods第35页
    2.4 Experimental result and analysis第35-39页
        2.4.1 Voltage and current waveforms of dielectric barrier discharge plasma第36-37页
        2.4.2 High-performance liquid chromatography and measurement of naproxensodium concentration第37-39页
    2.5 The standard graph第39-40页
        2.5.1 The standard graph of naproxen sodium solution第39页
        2.5.2 The standard curve of hydrogen peroxide solution第39-40页
    2.6 Calculate degradation rate of naproxen sodium第40-41页
    2.7 Determination of pH value solution in naproxen sodium solution第41页
    2.8 Determination of conductivity in naproxen sodium第41页
    2.9 Chapter summary第41-43页
CHATER 3 DILECTRID BARRIER DISCHARGE DEGRADATION OFNAPROXEN SODIUM第43-54页
    3.1 Introduction第43页
    3.2 Experimental materials and instruments第43页
    3.3 Experimental methods第43页
    3.4 Experimental results and discussion第43-52页
        3.4.1 Effect of discharge voltage on degradation rate of naproxen sodium第43-45页
        3.4.2 Effect of initial concentration on degradation rate of naproxen sodium第45-46页
        3.4.3 Effect of frequency on degradation rate of naproxen sodium第46-48页
        3.4.4 Effect of flow rate on degradation rate of naproxen sodium第48-49页
        3.4.5 Effect of initial conductivity on degradation rate of naproxen sodium第49-51页
        3.4.6 Effect of initial pH on degradation rate of naproxen sodium第51-52页
    3.5 Chapter summary第52-54页
CHAPTER 4 EFFECT OF GAS SPECIES AND ELECTRODE MATERIALS ONTHE PRODUCTION OF ACTIVE SPECIES AND THE DEGRADATION RATE OFNAPROXEN SODIUM第54-65页
    4.1 Introduction第54页
    4.2 Experimental materials and equipments第54-55页
    4.3 Experimental methods第55页
    4.4 Experimental results and discussions第55-64页
        4.4.1 The change of ozone production and hydrogen peroxide against theprocessing unit in distilled water and naproxen sodium solution第55-56页
        4.4.2 Effect of discharge voltage on ozone production and hydrogen peroxideconcentration in the solution第56-58页
        4.4.3 Effect of discharge voltage on degradation rate of naproxen sodium第58-59页
        4.4.4 Effect of gas flow rate on ozone production and hydrogen peroxideproduction第59-61页
        4.4.5 Effect of different electrode materials on ozone production andhydrogen peroxide production the degradation rate of naproxen sodium第61-62页
        4.4.6 Effect of different electrode materials on degradation rate of naproxensodium第62-64页
    4.5 Chapter summary第64-65页
CHAPTER 5 INFLUENCE OF DIELECTRIC BARRIER DISCHARGE COMBINEDWITH CATALLYTIC第65-73页
    5.1 Introduction第65页
    5.2 Experimental materials and instruments第65页
    5.3 Experimental of catalyst preparation method第65-66页
        5.3.1 Experimental method第65-66页
        5.3.2 Catalyst preparation method第66页
    5.4 Experimental results and discussion第66-72页
        5.4.1 Effect of different activated carbon on degradation rate of naproxensodium solution第66-69页
        5.4.2 Effect of adding different γ-Al_2O_3 supported metal catalysts ondegradation rate of naproxen sodium第69-70页
        5.4.3 Effect of different wt% La/Al_2O_3 metal catalyst rate on degradation ofnaproxen sodium solution第70-72页
    5.5 Chapter summary第72-73页
FINAL CONCLUSIONS AND RECOMMENDATIONS第73-76页
    1.Final conclusions第73-74页
    2.Recommendations and future researches第74-76页
References第76-83页
Paper List第83-84页
Acknowledgement第84-86页
Curriculum vitae第86-87页

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