Department of Mechanical Engineering, Amrita School of Engineering, Amrita Vishwa Vidyapeetham, Coimbatore, India.
Institute of Engineering, HUTECH University, Ho Chi Minh City, Vietnam.
Environ Sci Pollut Res Int. 2023 Sep;30(43):97178-97194. doi: 10.1007/s11356-023-29281-3. Epub 2023 Aug 17.
Titanium dioxide (Titania) nanoparticle-coated biochar derived through co-pyrolysis of COVID-19 waste face mask (WFM) and Moringa oleifera seed cake (MO) provides an effective way to alleviate toxic metal in wastewater. This study investigates the effects of Biochar/titania photocatalyst preparation, characterization, and its photoreduction of Cr(VI). The morphological and functional modifications in the catalyst were identified using X-Ray diffraction, scanning electron microscopy, Fourier transform infrared spectroscopy, ultraviolet spectrophotometer, surface area analysis, and Raman spectrophotometer, respectively. The influencing parameters, namely, pH, photocatalyst dosage, initial pollutant concentration, and visible light irradiation time, have been investigated. The findings reveal that the Cr(VI) reduction by the photocatalyst was highly facilitated by photocatalytic process. The prepared photocatalyst shows higher and faster reduction rate of Cr(VI) and also improves the catalyst stability. The photoreduction of Cr(VI) ensembles well with pseudo-first order kinetics. At 180 min of reaction time, maximum Cr(VI) reduction of 98.65% was achieved at pH 2, 0.3 g/L catalyst dosage, and 10 ppm initial concentration, respectively. The synthesized photocatalyst shows excellent recycling performance up to 7 times, and these studies proved that the prepared catalyst is cost-effective and efficiently employed for removing pollutants.
通过共热解新冠病毒废物口罩 (WFM) 和辣木籽饼 (MO) 制备的二氧化钛 (Titania) 纳米颗粒涂层生物炭为缓解废水中有毒金属提供了一种有效方法。本研究探讨了生物炭/二氧化钛光催化剂的制备、表征及其对六价铬 (Cr(VI)) 的光还原作用。使用 X 射线衍射、扫描电子显微镜、傅里叶变换红外光谱、紫外分光光度计、比表面积分析和拉曼分光光度计分别对催化剂的形貌和功能修饰进行了鉴定。考察了影响参数,即 pH 值、光催化剂用量、初始污染物浓度和可见光照射时间。研究结果表明,光催化过程对 Cr(VI) 的还原非常有利。所制备的光催化剂对 Cr(VI) 的还原具有更高的还原率和更快的还原速率,并且提高了催化剂的稳定性。Cr(VI) 的光还原与准一级动力学很好地吻合。在 180 分钟的反应时间内,在 pH 值为 2、催化剂用量为 0.3 g/L 和初始浓度为 10 ppm 的条件下,最大 Cr(VI) 还原率达到 98.65%。合成的光催化剂具有出色的循环性能,可重复使用 7 次以上,这些研究证明所制备的催化剂具有成本效益,可有效用于去除污染物。