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Photocatalyst production from wasted sediment and quality improvement with titanium dioxide to remove cephalexin in the presence of hydrogen peroxide and ultrasonic waves: A cost-effective technique

机译:从二氧化钛中浪费沉积物和质量改善的光催化剂生产在过氧化氢和超声波存在下除去头孢氨苄:一种经济高效的技术

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摘要

In this study, wasted sediment (sludge waste from shipping docks) was coupled with titanium isopropoxide by the thermal and sol-gel method as a new photocatalyst. The sediment-titanate catalyst alongside ultrasonic and UV was activated hydrogen peroxide to produce OH radicals and decompose cephalexin (CEP). The photocatalyst was crystalline with 52.29 m(2)/g BET area. The best destruction rate of 87.01% based on COD test was achieved at optimal conditions (pH: 8, cephalexin concentration: 100 mg/L, H2O2: 1.63 mg/L, UV: 15 W/m(2), ultrasonication time: 100 min at 40 kHz, photocatalyst quantity: 1.5 g/L). The trend of anions effect was NO3- = SO42- = Cl-. Decomposition of cephalexin in water solution followed the first-order kinetics (k 0.01 min(-1), R-2 0.9). The percentage of cephalexin removal from urban water (76%) and hospital wastewater (63%) has decreased compared to the distilled water solution (87%), which is probably due to the presence of radical inhibitors. The consumed electrical energy of the studied system was calculated by 0.031 kW/h. The developed system is a promising and economical method to remove cephalexin.
机译:在这项研究中,浪费的沉积物(来自运输码头的污泥废物)通过热和溶胶法与钛异丙氧化钛作为新的光催化剂偶联。沉积物 - 钛酸酯催化剂与超声波和UV一起是活化的过氧化氢,以产生OH基团并分解Cephalexin(CEP)。光催化剂是具有52.29m(2)/ g BET区域的结晶。基于COD试验的最佳破坏率为87.01%,在最佳条件下实现(pH:8,头孢氨苄浓度:100mg / L,H2O2:1.63mg / L,UV:15w / m(2),超声波时间:100 Min 40 kHz,光催化剂数量:1.5克/升)。阴离子效应的趋势是NO 3- = SO42-& = CL-。水溶液中Cephalexin的分解,然后是一阶动力学(K> 0.01 min(-1),R-2> 0.9)。与蒸馏水(87%)相比,城市水(76%)和医院废水(76%)和医院废水(63%)的百分比减少,这可能是由于受自由基抑制剂的存在。所研究的系统的消耗电能由0.031 kW / h计算。发达的系统是去除头孢氨苄的有希望和经济的方法。

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