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Photocatalytic degradation process of waste water using titanium dioxide as catalyst

机译:二氧化钛为催化剂的废水光催化降解工艺

摘要

Photocatalytic degradation is a process where the organic contaminant in water is degraded by UV light. UV photo oxidation acts to degrade and remove organic compound through the ultraviolet radiation to activate the catalyst. The catalyst used in this study is titanium dioxide (TiO2) which is chosen based on its properties that are low toxicity, low resistance to corrosion and semiconductor. The semiconductor will absorb the UV light and attract electrons across the energy gap into the conduction band. This electron will change into hydroxyl radicals which can decompose organic compounds while still in the waste water stream. So this is the basic concept that applied in industrial to treat the waste water or any pollutant in water in order to protect the environmental. Simulated oils waste water was used to replicate the Palm Oil Mill Effluent (POME). The studied parameters are the effect of catalyst concentration and irradiation time. The effect of both parameters has studied using Design Expert 7 to determine the optimum condition of degradation activities. The degradation activities were measured through the change of initial and final COD and dissolved oxygen in sample. Through Analysis of Variance (ANOVA) and optimization application of Design Expert 7, it was found that the optimum condition to achieve maximum degradation activities.
机译:光催化降解是一个过程,其中水中的有机污染物被紫外线降解。紫外光氧化作用是通过紫外线辐射降解并去除有机化合物,从而活化催化剂。本研究中使用的催化剂是二氧化钛(TiO2),其选择依据是低毒性,低耐腐蚀性和半导体性能。半导体将吸收紫外线,并通过能隙吸引电子进入导带。该电子将变成羟基自由基,该羟基自由基仍在废水流中时可以分解有机化合物。因此,这是在工业中用于处理废水或水中任何污染物以保护环境的基本概念。模拟的油废水用于复制棕榈油厂的废液(POME)。研究的参数是催化剂浓度和照射时间的影响。已使用Design Expert 7研究了这两个参数的影响,以确定降解活动的最佳条件。通过改变初始和最终COD以及样品中的溶解氧来测量降解活性。通过方差分析(ANOVA)和Design Expert 7的优化应用,发现实现最大降解活动的最佳条件。

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    Mohd Afendi Abdul Mutalib;

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  • 年度 2009
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