NH4+ High Efficient Visible-Light Photocatalytic Performance of Cu/ZnO/rGO Nanocomposite for Decomposing of Aqueous Ammonia and Treatment of Domestic Wastewater
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High Efficient Visible-Light Photocatalytic Performance of Cu/ZnO/rGO Nanocomposite for Decomposing of Aqueous Ammonia and Treatment of Domestic Wastewater

机译:Cu / ZnO / rGO纳米复合材料对可见光的高效可见光催化分解氨水及生活污水的处理

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摘要

Photocatalytic removal of ammonium-nitrogen (NH4+-N) from water using solar energy is an approach of high interest and applicability due to the convenience in application. ZnO has a great potential in photocatalytic decomposition of NH4+-N and conversion of this nutrient to under visible light irradiations. However the applicability of pristine ZnO though is limited due to its reduced capacity to utilize light from natural light. Herein, we report a two-step ZnO-modified strategy (Cu-doped ZnO nanoparticles, immobilized on reduced graphene oxide (rGO) sheets) for the promotion of photocatalytic degradation of NH4+-N under visible light. UV-Vis spectra showed that the Cu/ZnO/rGO can be highly efficient in the utilization of photons from the visible region. Hence, Cu/ZnO/rGO managed to demonstrate adequate photocatalytic activity and effective NH4+-N removal from water under visible light compared to single ZnO. Specifically, up to 83.1% of NH4+-N (initial concentration 50 mg·L−1, catalyst dosage 2 g·L−1, pH 10) was removed within 2 h retention time under Xe lamp irradiation. From the catalysis, the major by-product was N2. The high ammonia degradation efficiency from the ZnO/Cu/rGO is attributed to the improvement of the reactive oxygen species (ROSs) production efficiency and the further activation of the interfacial catalytic sites. This study also demonstrated that such nanocomposite is a recyclable agent. Its NH4+-N removal capacity remained effective even after five batch cycles. In addition, Cu/ZnO/rGO was applied to treat real domestic wastewater, and it was found that chemical oxygen demand (COD), total nitrogen (TN) and total phosphorus (TP) removal efficiencies can reach 84.3, 80.7, and 90.3%, respectively. Thus, Cu/ZnO/rGO in the presence of solar light can be a promising photocatalyst in the field of wastewater treatment.
机译:光催化去除铵氮( NH 4 + -N)由于使用方便,使用太阳能从水中去除是一种备受关注和应用的方法。 ZnO在 < mtext> NH 4 + -氮并在可见光照射下将其转化为氮。然而,由于原始的ZnO利用自然光的能力降低,因此其适用性受到限制。在这里,我们报告了两步ZnO改性策略(Cu掺杂的ZnO纳米颗粒,固定在还原的氧化石墨烯(rGO)板上),用于促进 NH 4 < / mrow> + -N在可见光下。 UV-Vis光谱表明,Cu / ZnO / rGO可以高效利用可见光区域的光子。因此,Cu / ZnO / rGO设法证明了足够的光催化活性和有效的 < msubsup> NH 4 + -N。具体来说,最多有83.1%的 NH 4 + -N(在Xe灯照射下2 h的保留时间内,去除初始浓度50 mg·L -1 ,催化剂剂量2 g·L -1 ,pH 10。从催化作用来看,主要的副产物是氮气。 ZnO / Cu / rGO产生的高氨降解效率归因于活性氧(ROSs)生产效率的提高和界面催化位点的进一步活化。这项研究还证明了这种纳米复合材料是可循环利用的。它的 NH < / mrow> 4 + -N的去除能力即使在5次后仍保持有效批处理周期。此外,使用Cu / ZnO / rGO处理实际生活污水,发现化学需氧量(COD),总氮(TN)和总磷(TP)的去除效率可分别达到84.3、80.7和90.3% , 分别。因此,在太阳光的存在下,Cu / ZnO / rGO可以成为废水处理领域中有希望的光催化剂。

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