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Soils contain various kinds of crystalline to amorphous solid particles with at least one dimension in the nanoscale (<100nm). These nanoparticles contribute greatly to dynamic soil processes such as soil genesis, trace element cycling, contaminant transport, and chemical reaction. The nano-sized fraction of an Anthrosol was obtained to determine the occurrence, chemical composition, structure, and mineral phases of nanoparticles using high-resolution transmission electron microscopy (HRTEM) equipped with an energy-dispersive X-ray spectroscopy. Selected area electron diffraction or the fast Fourier transform of high-resolution images was used in structural characterization of the nanoparticles with HRTEM. Two nanoscale mineral types, i.e., mineral nanoparticles and nanominerals, were observed in the Anthrosol. Mineral nanoparticles in soil included well crystalline aluminumsilicate nanosheets, nanorods, and nanoparticles. Nanosheets with a length of 120-150 nm and a width of about 10-20 nm were identified as chlorite/vermiculite series. The presence of clear lattice fringe spacing in HRTEM image of nanoparticles indicated that mineral nanoparticles had a relatively good crystallinity. The nanomineral ferrihydrite also existed in the Anthrosol. The HRTEM images and the particle size distribution histogram suggested that these ferrihydrite nanoparticles were quite homogeneous, and had a narrow size distribution range (1-7 nm) with a mean diameter of 3.6±1.6 nm. Our HRTEM observation indicated that mineral nanoparticles and nanominerals were common and widely distributed in Anthrosols. HRTEM and selected area diffraction or lattice fringe spacing characterization provided further proofs to the structure of nanoparticles formed in soil.energy-dispersive X-ray spectroscopy (EDS), ferrihydrite, high-resolution transmission electron microscopy (HRTEM), nanominerals, nano-sized fraction  相似文献   
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This study investigated the effects of foliar application of normal and nano-sized zinc oxide on the response of sunflower cultivars to salinity. Treatments included five cultivars (‘Alstar’, ‘Olsion’, ‘Yourflor’, ‘Hysun36’ and ‘Hysun33’), two salinity levels [0 and 100 mM sodium chloride (NaCl)], and three levels of fertilizer application. Fertilizer treatments were the foliar application of normal and nano-sized zinc oxide (ZnO). Foliar application of ZnO in either forms increased leaf area, shoot dry weight, net carbon dioxide (CO2) assimilation rate (A), sub-stomatal CO2 concentration (Ci), chlorophyll content, Fv/Fm, and Zn content and decreased Na content in leaves. The extent of increase in chlorophyll content, Fv/Fm and shoot weight was greater as nano-sized ZnO was applied to the normal form. The results show that the nano-sized particles of ZnO compared to normal form has greater effect on biomass production of sunflower plants.  相似文献   
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硅肺是吸入SiO2粉尘引起的以肺间质纤维化为主的全身性疾病。探讨了白茶提取物对纳米SiO2诱导大鼠肺纤维化的抑制作用及机制。54只Wistar大鼠随机分为正常组、模型组、白毫银针提取物组、白牡丹提取物高和低剂量组、EGCG组共6个组,每组9只大鼠。除正常组外的其余5个组采用非暴露式气管插管方法造模纳米SiO2粉尘(80 mg·mL-1),每天以灌胃方式给予药物两周之后,检测肺组织中羟脯氨酸(HYP)、一氧化氮(NO)、超氧化物歧化酶(SOD)、丙二醛(MDA)和谷光甘肽过氧化物酶(GSH-Px)含量以及肺组织形态学变化。结果显示,与模型组相比,白茶提取物各处理组及EGCG组病理形态改变有不同程度的减轻,其中白毫银针提取物组的效果最佳。白茶提取物各处理组与EGCG组的大鼠肺NO含量和炎症因子IL-6都显著低于模型组(P<0.05),GSH-Px活力高于模型组(P<0.05),高剂量白牡丹提取物对降低NO含量和升高GSH-Px活力效果最好;本研究表明,白茶提取物对于纳米SiO2引起的大鼠肺纤维化氧化应激损伤具有有效的减缓和修复作用,主要与其抗氧化作用和抑制炎症反应相关。  相似文献   
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