In situ investigation of the mechanisms of the transport to tissues of polycyclic aromatic hydrocarbons adsorbed onto the root surface of Kandelia obovata seedlings.
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[1] K. Adebowale,et al. Sorption and desorption of fluorene on five tropical soils from different climes , 2015 .
[2] Marek Klemš,et al. Root and foliar uptake, translocation, and distribution of [14C] fluoranthene in pea plants (Pisum sativum) , 2014, Environmental toxicology and chemistry.
[3] J. A. Alburquerque,et al. Effects of biochar and activated carbon amendment on maize growth and the uptake and measured availability of polycyclic aromatic hydrocarbons (PAHs) and potentially toxic elements (PTEs). , 2014, Environmental pollution.
[4] Su-jin Kim,et al. Measurement of partition coefficients for selected polycyclic aromatic hydrocarbons between isolated plant cuticles and water. , 2014, The Science of the total environment.
[5] X. Xia,et al. Role of structure and microporosity in phenanthrene sorption by natural and engineered organic matter. , 2014, Environmental science & technology.
[6] N. Tam,et al. Contamination of polycyclic aromatic hydrocarbons (PAHs) in surface sediments and plants of mangrove swamps in Shenzhen, China. , 2014, Marine pollution bulletin.
[7] C. T. Chiou,et al. Lipid-water partition coefficients and correlations with uptakes by algae of organic compounds. , 2014, Journal of hazardous materials.
[8] U. Berger,et al. Changes in allometric relations of mangrove trees due to resource availability – A new mechanistic modelling approach , 2014 .
[9] Shen Yu,et al. Heavy metal and organic contaminants in mangrove ecosystems of China: a review , 2014, Environmental Science and Pollution Research.
[10] B. A. Bandowe,et al. Polycyclic aromatic compounds (PAHs and oxygenated PAHs) and trace metals in fish species from Ghana (West Africa): bioaccumulation and health risk assessment. , 2014, Environment International.
[11] Tiangang Luan,et al. Strategies for coupling solid-phase microextraction with mass spectrometry , 2014 .
[12] A. Duarte,et al. The prediction of PAHs bioavailability in soils using chemical methods: state of the art and future challenges. , 2014, The Science of the total environment.
[13] I. D. Duarte,et al. Adaptive plasticity of Laguncularia racemosa in response to different environmental conditions: integrating chemical and biological data by chemometrics , 2014, Ecotoxicology.
[14] Yong Zhang,et al. In Situ Investigation the Photolysis of the PAHs Adsorbed on Mangrove Leaf Surfaces by Synchronous Solid Surface Fluorimetry , 2014, PloS one.
[15] Haifeng Sun,et al. In situ investigation of the depuration of fluoranthene adsorbed on the leaf surfaces of living mangrove seedlings. , 2013, Talanta.
[16] Zhenyao Shen,et al. Effects of varying estuarine conditions on the sorption of phenanthrene to sediment particles of Yangtze Estuary. , 2013, Marine pollution bulletin.
[17] Ya-xian Zhu,et al. In situ determination mechanisms for the depuration of polycyclic aromatic hydrocarbons adsorbed onto the leaf surfaces of living mangrove seedlings. , 2013, Journal of hazardous materials.
[18] Guohua Xu,et al. Interaction of phenanthrene and potassium uptake by wheat roots: a mechanistic model , 2013, BMC Plant Biology.
[19] Ya-xian Zhu,et al. In situ Determination of Phenanthrene Adsorbed onto Surface of Mangrove Leaves Using a Laser-Induced Nanosecond Time-Resolved Fluorescence System , 2013 .
[20] Guohua Xu,et al. Influence of plant root morphology and tissue composition on phenanthrene uptake: stepwise multiple linear regression analysis. , 2013, Environmental pollution.
[21] Xiaoma Li,et al. Assessing the combined risks of PAHs and metals in urban soils by urbanization indicators. , 2013, Environmental pollution.
[22] K. Sun,et al. Global atmospheric emissions of polycyclic aromatic hydrocarbons from 1960 to 2008 and future predictions. , 2013, Environmental science & technology.
[23] M. Canle,et al. Environmental Applications of Excitation-Emission Spectrofluorimetry: An In-Depth Review II , 2013 .
[24] Andres D Campiglia,et al. Four-way modeling of 4.2 K time-resolved excitation emission fluorescence data for the quantitation of polycyclic aromatic hydrocarbons in soil samples. , 2012, Talanta.
[25] S. Bayen. Occurrence, bioavailability and toxic effects of trace metals and organic contaminants in mangrove ecosystems: a review. , 2012, Environment international.
[26] Ping Wang,et al. Monitoring and visualizing of PAHs into mangrove plant by two-photon laser confocal scanning microscopy. , 2012, Marine pollution bulletin.
[27] Xiangliang Pan,et al. Fluorescent properties and bifenthrin binding behavior of maize (Zea mays L.) seedling root exudates , 2012 .
[28] Petra Bauer,et al. Visualization of Cu2+ uptake and release in plant cells by fluorescence lifetime imaging microscopy , 2012, The FEBS journal.
[29] S. Khan,et al. Human health risk due to consumption of vegetables contaminated with carcinogenic polycyclic aromatic hydrocarbons , 2012, Journal of Soils and Sediments.
[30] M. Wong,et al. Modeling sorption and biodegradation of phenanthrene in mangrove sediment slurry. , 2011, Journal of hazardous materials.
[31] Wen-Tien Tsai,et al. Environmental and health risks of chlorine trifluoride (ClF3), an alternative to potent greenhouse gases in the semiconductor industry. , 2011, Journal of hazardous materials.
[32] P. Tlustoš,et al. The uptake of persistent organic pollutants by plants , 2011, Central European Journal of Biology.
[33] Xi Chen,et al. Cu(II) complexation of high molecular weight (HMW) fluorescent substances in root exudates from a wetland halophyte (Salicornia europaea L.). , 2011, Journal of bioscience and bioengineering.
[34] Zhifeng Yang,et al. Temperature-dependent sorption of polycyclic aromatic hydrocarbons on natural and treated sediments. , 2011, Chemosphere.
[35] K. Semple,et al. Linking desorption kinetics to phenanthrene biodegradation in soil. , 2010, Environmental pollution.
[36] Guohua Xu,et al. Accumulation of phenanthrene by roots of intact wheat (Triticum acstivnm L.) seedlings: passive or active uptake? , 2010, BMC Plant Biology.
[37] M. Kleber,et al. Molecular-level interactions in soils and sediments: the role of aromatic pi-systems. , 2009, Environmental science & technology.
[38] Xing Zhang,et al. Luminescence Decay Dynamics and Trace Biomaterials Detection Potential of Surface-Functionalized Nanoparticles. , 2008, The journal of physical chemistry. C, Nanomaterials and interfaces.
[39] Ya-xian Zhu,et al. A novel analytical approach for investigation of anthracene adsorption onto mangrove leaves. , 2008, Talanta.
[40] Robert F. Chen,et al. Investigating desorption of native pyrene from sediment on minute- to month-timescales by time-gated fluorescence spectroscopy. , 2007, Environmental science & technology.
[41] S. Tao,et al. Adsorption and absorption of polycyclic aromatic hydrocarbons to rice roots. , 2007, Environmental pollution.
[42] Kevin C Jones,et al. Direct observation of organic contaminant uptake, storage, and metabolism within plant roots. , 2005, Environmental science & technology.
[43] R. Niessner,et al. Stimulated Raman Scattering as an Excitation Source for Time-Resolved Excitation-Emission Fluorescence Spectroscopy with Fiber-Optical Sensors , 2000 .
[44] Peter Karlitschek,et al. Mathematical model for optimum fibre optic probe design and characterisation , 1998 .