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丙烯酸酯废水处理实验研究与工艺设计-市政工程专业论文.docx

丙烯酸酯废水处理实验研究与工艺设计-市政工程专业论文.docx

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丙烯酸酯废水处理实验研究与工艺设计-市政工程专业论文

华 华 中 科 技 大 学 硕 士 学 位 论 文 II II Abstract Acrylic acid chemical industry has been rapidly developed and in recent years. The wastewater during its production process contains mainly acrylic acid, acetic acid, methanesulfonic acid, acetaldehyde, some of aromatic compounds and inorganic salts. The chemical oxygen demand (COD) of the wastewater is up to 104-105 mg/L. Therefore, the wastewater could be regarded as a kind of high concentration organic wastewater, which is toxic and contains high concentrations of complex components. It would cause great environmental harm, unless it is properly treated. In this thesis, firstly an experimental study of wet air oxidation was carried out. The effect of reaction temperature, oxygen partial pressure, organic matter concentration and sulfate catalyst on the COD removal and on the improvement of biodegradability was investigated. The results show that the best reaction conditions of wet air oxidation process is: reaction temperature 250 ℃, initial oxygen partial pressure 3.5MPa, reaction time 2h, diluted times 0.5 (COD of about 100000 mg/L). The COD removal rate is up to 56% and biodegradability B/C value increase from 0.13 to 0.63. The presence of CuSO4 can effectively improve the COD removal, but have some impact on the subsequent biochemical reactions. At the same time, the concentration and dry experimental study was carried out and mainly focused on the pretreatment of wastewater and acrylic vacuum evaporation process such as acrylic polymer, boiling point rise, the effluent COD changes, and studied the effect of hydroquinone on the role of acrylic acid polymerization. The method of using wastewater coagulation pretreatment can effectively remove the resin and part of the aging colloidal organic matter, but have little effect on COD removal. The hydroquinone inhibitor can effectively prevent the polymerization of acrylic and slow increase of boiling point, reduce the viscosity of concentrated liquid, and the dosa

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