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首页> 外文期刊>RSC Advances >Effect of calcination temperature, pH and catalyst loading on photodegradation efficiency of urea derived graphitic carbon nitride towards methylene blue dye solution
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Effect of calcination temperature, pH and catalyst loading on photodegradation efficiency of urea derived graphitic carbon nitride towards methylene blue dye solution

机译:煅烧温度,pH值和催化剂用量对尿素衍生石墨氮化碳对亚甲基蓝染料溶液光降解效率的影响

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In this study, the photodegradation of methylene blue (MB) dye was performed using urea based graphitic carbon nitride (g-C _(3) N _(4) ). Interestingly, it has been observed that the calcination temperature for the synthesis of g-C _(3) N _(4) along with factors (pH and catalyst loading) influencing the photodegradation process, can make an impactful improvement in its photodegradation activity towards MB dye solution. The concept behind the comparatively improved photoactivity of g-C _(3) N _(4) prepared at 550?°C was explored using various characterisation techniques like XRD, FTIR, SEM, BET and DRS. The FTIR and XRD patterns demonstrated that synthesis of g-C _(3) N _(4) took place properly only when the calcination temperature was above 450 °C. The evolution of morphological and optical properties based on calcination temperature led to dramatically increased BET surface area and a decreased optical band gap value of g-C _(3) N _(4) prepared at 550 °C. The effects of pH conditions and catalyst concentration on the MB dye degradation rate using optimally synthesised g-C _(3) N _(4) are discussed. The value of the apparent rate constant was found to be 12 times more in the case of photodegradation of the MB dye using g-C _(3) N _(4) prepared at 550 °C at optimum pH and catalyst loading conditions when compared with g-C _(3) N _(4) prepared at 450 °C showing the lowest photoactivity potential. Further, high stability of the photocatalyst was observed for four cyclic runs of the photocatalytic reaction. Hence, g-C _(3) N _(4) can be considered as a potential candidate for methylene blue photodegradation.
机译:在这项研究中,使用脲基石墨氮化碳(g-C _(3)N _(4))进行亚甲基蓝(MB)染料的光降解。有趣的是,已经观察到,用于合成gC _(3)N _(4)的煅烧温度以及影响光降解过程的因素(pH和催化剂负载)可以显着提高其对MB染料的光降解活性。解。使用各种表征技术(例如XRD,FTIR,SEM,BET和DRS)探索了在550°C下制备的g-C _(3)N _(4)的相对改善的光活性的概念。 FTIR和XRD图谱表明仅当煅烧温度高于450℃时才适当地进行g-C _(3)N _(4)的合成。基于煅烧温度的形态和光学性质的演变导致BET表面积显着增加,并且在550°C下制备的g-C _(3)N _(4)的光学带隙值降低。讨论了pH条件和催化剂浓度对使用最佳合成的g-C _(3)N _(4)的MB染料降解速率的影响。发现在表观速率常数的值是使用gC _(3)N _(4)在550°C,最佳pH和催化剂负载条件下制备的MB染料光降解时的12倍,与gC相比在450℃下制备的_(3)N_(4)显示最低的光活性。此外,对于光催化反应的四个循环运行,观察到光催化剂的高稳定性。因此,可以将g-C _(3)N _(4)视为亚甲基蓝光降解的潜在候选物。

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