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首页> 外文期刊>European Physical Journal Plus >Carbon nanoparticles assisted energy transport mechanism in leaves: A thermal lens study
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Carbon nanoparticles assisted energy transport mechanism in leaves: A thermal lens study

机译:碳纳米粒子辅助叶片能量输送机制:热镜头研究

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摘要

In the world of increasing population and pollution due to carbon emissions, the research for effective utilization of futile diesel soot for fruitful applications has become a necessity for a sustainable development. The contribution to pollution from vehicles and industries due to the aging of engines has caused a crisis. Carbon nanoparticles (CNPs) have been the subject of interest because of their good physical, chemical, and biological properties. The present work investigates the role of CNPs produced by internal combustion engines on the energy transport mechanism among leaf pigments using the sensitive and nondestructive single beam thermal lens technique. The studies reveal the absorption changes by various chlorophyll pigments with the concentration of CNPs sprayed on the leaves. Though for low concentrations CNPs lower the photon absorbance by chlorophyll pigments, the effect gets reversed at higher concentrations. The variation of thermal diffusivity with CNP concentration and its role in the energy transport mechanism among chlorophyll pigments are also studied. It is found that CNP concentrations of 625-2500mg/l are good for better intra-pigment energy transport leading to increased rate of photosynthesis and plant yield and thereby helping in attaining food security. The variation of CNP assisted energy transport among leaf pigments on the production of nicotinamide adenine dinucleotide phosphate (NADPH) and carbohydrates is also studied with ultraviolet (UV) and near-infrared (NIR) spectroscopy.
机译:在世界上增加人口和污染因碳排放而增加的世界中,有效利用富有柴油煤层的研究已成为可持续发展的必要性。由于发动机老龄化导致车辆和行业污染的贡献导致了危机。由于它们的良好物理,化学和生物学性质,碳纳米颗粒(CNPS)是感兴趣的主题。目前的工作调查了CNP通过敏感和非破坏单光束热透镜技术对叶片颜料能量传递机制产生的CNP作用。研究揭示了各种叶绿素颜料的吸收变化,叶片上喷洒的CNP浓度。虽然对于低浓度CNP通过叶绿素颜料降低光子吸光度,但效果在较高浓度下逆转。还研究了CNP浓度的热扩散性的变化及其在叶绿素颜料中的能量传递机制中的作用。结果发现,625-2500mg / L的CNP浓度适用于更好的颜料内能量输送,从而增加光合作用和植物产量的增加,从而有助于获得粮食安全性。紫外(UV)和近红外(NIR)光谱还研究了叶片酰胺腺嘌呤二核苷酸二核苷酸磷酸酯(NADPH)和碳水化合物的生产中CNP辅助能量传输。

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