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首页> 外文期刊>Analytica chimica acta >Controllable synthesis of magnetic nanoporous carbon with tunable porosity for the efficient cleanup of vegetable samples
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Controllable synthesis of magnetic nanoporous carbon with tunable porosity for the efficient cleanup of vegetable samples

机译:可调节孔隙磁性磁性纳米孔碳的可控合成,用于植物样品的有效清理

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Highly graphitic nanoporous carbon (NPC) was obtained from an agricultural waste—citrus peel at optimum condition. Then, a low-cost and pore size-controlled magnetic graphitic nanoporous carbon (MNPC) with ultrahigh specific surface area (1064?m2?g?1) was successfully fabricated by coprecipitation of Fe3O4particles onto NPC. The prepared MNPC was characterized by Brunauer-Emmett-Teller (BET), Raman spectrum, scanning electron microscope (SEM) and Fourier transform infrared spectrometry (FT-IR). BET results showed a significant increase in the micropores volume and specific surface area of MNPCs following the increase of carbonization temperature, which implied that highly efficient carbonization made NPC an excellent active phase for MNPC. Besides, the adsorption mechanism was investigated and turned out that π-π interactions between interfering substances and MNPC were considered to be the major driving force for the adsorption process. The experimental parameters affecting the cleanup efficiency was optimized through Response surface methodology (RSM) in detail. Under the optimal cleanup condition, the MNPC was applied for determination of 16 insecticides in vegetables coupled with gas chromatography-mass spectrometry (GC-MS), a satisfactory performance was obtained. Good linearity was observed in the investigated concentration range of 1–100?μg?kg?1with correlation coefficients (r2) between 0.9963 and 0.9999. The limits of detection (LODs) were in the range of 0.03–0.33?μg?kg?1. The recoveries ranged from 81.9 to 112.3% with relative standard deviations (RSDs) less than 10.9%. To summary up, the MNPC could potentially be used as a super adsorbent to efficiently remove pigments from vegetables, so that the proposed method was an efficient cleanup and enrichment procedure.
机译:从最佳条件下从农业废物 - 柑橘果皮中获得高石墨纳米孔碳(NPC)。然后,通过将Fe 3 O 4个子颗粒的共沉淀成功地制造了具有超高比表面积(1064μl≤1)的低成本和孔径控制的磁性石墨纳米多碳(MNPC)。制备的MNPC特征在于Brunauer-Emmett-Teller(Bet),拉曼光谱,扫描电子显微镜(SEM)和傅里叶变换红外光谱法(FT-IR)。 BET结果显示碳化温度升高后MNPC的微孔体积和比表面积显着增加,这意味着高效碳化使NPC为MNPC提供了优异的活性相。此外,研究了吸附机理,并证明干扰物质与MNPC之间的π-π相互作用被认为是吸附过程的主要驱动力。影响清洁效率的实验参数通过详细优化响应面方法(RSM)优化。在最佳清理条件下,施用MNPC以测定与气相色谱 - 质谱(GC-MS)相结合的蔬菜中的16种杀虫剂,获得令人满意的性能。在调查的浓度范围内观察到良好的线性,在1-100Ωμg≤kgα1×1with之间的相关系数(R2)之间,在0.9963和0.9999之间。检测限为0.03-0.33Ω·kg≤1。回收率范围为81.9至112.3%,相对标准偏差(RSD)小于10.9%。为了概括,MNPC可能用作超吸附剂,以有效地从蔬菜中除去颜料,从而提出的方法是一种有效的清洁和富集程序。

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