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化学混凝与物理吸附组合法处理油田钻井废水的实验研究

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目录

文摘

英文文摘

论文说明:Symbols,LISTOFTABLES,LISTOFFIGURES

北京化工大学学位论文原创性声明

1 Introduction

1.1 Goal

1.2 Project vitae

1.3 Typical wastewater treatment Proesses

Physical treatment

Chemical treatment

Biological treatment

2. Obiecfive

3. Background

3.1 Coagulation

3.1.1 Factors affecting coagulation

3.1.2 Theory

3.1.3 Coagulation Process Overview

3.1.4 Coagulant Aids

3.1.5 Category of Synthetic Organic coagulants and flocculants

3.1.6 Types of coagulants

3.1.7 Advantages and Disadvantages of Alternative Inorgaanic Coagulants

3.2 ACTIVATED CARBON ADSORPTION

3.2.1 Activated carbon

3.2.2 General sorption theo ry

3.2.3 Raw Material Used in the Production of Activated Carbon

3.2.4 Uses of activated carbon

3.3.5 Characteristic of activated carbon

3.2.6 Factors affecting adsorption capacity

3.2.7 Factors affecting adsorption rate

3.3.8 Activated carbon and water treatment

3.2.9 Benefits of activated carbon

3.2. l0 Limitation of activated carbon treatment

3.3 Filtration

3.3.1 Types offfiters

3.3.2 Filtration theory

4. MATERIALS AND METHODS

4.1 Overview

4.1.1 Experimental design

4.2 Sample collection

4.3 Experimental procedure

4.3.1 .Chemical coagulation process

4.3.2 Adsorption process

4.4 Methods of analysis

4.4.1 Coagulation pre-treatment

4.4.2 Adsorption treatment

5. RESULTS AND DISCUSSION

5.1 Reduction of COD

5.1.1 Coagulation process

5.1.2 Adsorption process

5.2 Turbidity

5.3 PH

5.4 Suspended solids(SS)

5.5 Heavy metals

6. CONCLUSION

References

ACKNOWLEDGEMENTS

攻读学位期间发表的学术论文

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摘要

本文对“化学混凝”与“物理吸附”组合法处理油田钻井污水进行了实验研究,以化学混凝为预处理,实验结果表明,污水经过混凝处理后仍然不能满足污水综合排放标准中的水质要求,还需要进一步的处理,选择活性碳为吸附剂,对经硫酸铁处理过的废水进行进一步的深度处理,油田钻井污水经硫酸铁化学混凝和Kc-87活性碳吸收组合处理后,总COD去除率达99.4﹪,其它污染物也得到了明显的去除,其主要水质指标达到了我国污水综合排放标准中一级的标准,结果表明,这种组合处理技术可以有效地处理油田钻井污水。此外,该技术还有许多诸如容易操作,管理简便以及成本低廉的优点。它可以为我国油田钻井废水处理和控制污染提供一种有效的方法。

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