首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Photocatalytic degradation of Bisphenol-A in water under sunlight irradiation over ZnO nanoparticles fabricated by Ethiopian cactus pear fruit peel infusions
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Photocatalytic degradation of Bisphenol-A in water under sunlight irradiation over ZnO nanoparticles fabricated by Ethiopian cactus pear fruit peel infusions

机译:紫杉型仙人掌果皮剥离输注阳光照射下阳光照射下水中双酚-A的光催化降解ZnO纳米粒子

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摘要

Bisphenol-A (BPA) is found as a persistent endocrine disruptor chemical in most environmental monitoring. Hence, in this research degradation of BPA was carried out under irradiation of sunlight in the presence of zinc oxide nanoparticles (ZnO-NPs) synthesized using cactus pear fruit peel (CPFP) infusions. The fabricated ZnO-NPs exhibited greater photocatalytic efficiency of BPA under sunlight irradiation and near-complete mineralization of BPA was achieved. The degradation percentage was sturdily reliant on factors such as the catalyst size (10-50 nm) and structure (hexagonal), BPA concentration (10 mg L-1), catalyst load (25 mg L-1) and irradiation time (8 h) and pH (6.5). This study proposed that the cactus pear fruit peel mediated ZnO-NPs (CP-ZnO-NPs) photocatalytic degradation is an adaptable, pecuniary, environmentally beneficent and proficient method for BPA deduction in the aqueous phase.
机译:在大多数环境监测中发现双酚-A(BPA)作为持续内分泌干扰化学品。 因此,在这种研究中,在使用仙人掌梨果皮(CPFP)输注的氧化锌纳米粒子(ZnO-NPS)的存在下,在阳光照射下进行BPA的降解。 制造的ZnO-NPS在阳光照射下表现出BPA的更高的光催化效率,并达到了BPA的接近完全矿化。 降解百分比对催化剂大小(10-50nm)和结构(六方),BPA浓度(10mg L-1),催化剂负载(25mg L-1)和照射时间(8小时)(8小时 )和pH(6.5)。 该研究提出了仙人掌梨果剥离介导的ZnO-NPS(CP-ZnO-NPS)光催化降解是一种适应性,金属般的,环保,在水相中扣除的BPA扣除方法。

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