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Biological Visual Detection for Advanced Photocatalytic Oxidation toward Pesticide Detoxification

机译:生物视觉检测,用于高级光催化氧化以实现农药解毒。

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Photocatalytic oxidation treatment is an emerging and fast developed eco-friendly, energy-saving, and efficient advanced oxidation technology for degrading hazardous pesticides. The conventional chemical detection to evaluate the effects for this process depends on the broken chemical structure, only giving residual content and product chemical composition. However, it misses direct visual detection on the toxicity and the quantitative analysis of pesticide detoxification. Here, we develop a novel strategy to combine photocatalytic oxidation with a zebrafish biological model to provide a direct visual detection on the environmental detoxification. The mortality or deformity of zebrafish embryos (ZEs) acts as an indicator. Over the irradiation duration threshold, the mortality of ZEs decreases to 23.3% for pure chlorothalonil (CTL-P) after photocatalytic oxidation treatment for 1 h, and the deformity reduces to 13.3% for commercial CTL (CTL-C) after 30 min and to 3.33% for tetramethylthiuram disulfide (TMTD) after 20 min. The toxicity of CTL-C and TMTD could be completely removed by photocatalytic oxidation treatment and causes no damage to the ZE developmental morphology. Chemical analyses demonstrate the degradation of CTL into inorganic compounds and TMTD into small organic molecules. Among these highlighted heterogeneous photocatalysts (g-C3N4, BiVO4, Ag3PO4, and P25), g-C3N4 exhibits the highest photocatalytic detoxification for CTL-P, CTL-C, and TMTD.
机译:光催化氧化处理是一种新兴的且发展迅速的环保,节能高效的先进氧化技术,用于降解有害农药。评估该过程效果的常规化学检测方法取决于破碎的化学结构,仅给出残留含量和产品化学成分。但是,它没有对杀虫剂的毒性和定量分析进行直接的目视检测。在这里,我们开发了一种将光催化氧化与斑马鱼生物学模型相结合的新颖策略,以提供对环境排毒的直接视觉检测。斑马鱼胚胎(ZEs)的死亡率或畸形是一个指标。在辐照持续时间阈值之上,纯百菌清(CTL-P)在光催化氧化处理1 h后,ZEs的死亡率降低至23.3%,商用CTL(CTL-C)在30分钟后的畸变降低至13.3%,而20分钟后,四硫化二甲基秋兰姆(TMTD)的含量为3.33%。通过光催化氧化处理可以完全消除CTL-C和TMTD的毒性,并且不会破坏ZE的发育形态。化学分析表明,CTL降解为无机化合物,TMTD降解为有机小分子。在这些突出的非均相光催化剂(g-C3N4,BiVO4,Ag3PO4和P25)中,g-C3N4对CTL-P,CTL-C和TMTD表现出最高的光催化解毒作用。

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