Microscale solid-liquid extraction: A green alternative for determination of n-alkanes in sediments.
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[1] J. D. de Andrade,et al. Determination of 3-nitrobenzanthrone, its metabolites, and 41 polycyclic aromatic compounds (16 PAHs, 19 nitro-PAHs, and 6 oxy-PAHs) in ascidians (Phallusia nigra) , 2022, Microchemical Journal.
[2] A. Cetinkaya,et al. Green Analytical Chemistry Approaches on Environmental Analysis , 2022, Trends in Environmental Analytical Chemistry.
[3] Anindya Sarkar,et al. An optimized accelerated solvent extraction and purification method for enhanced recovery of n-alkanes (notably short-chains) from environmental samples using the conventional dichloromethane/methanol solvent , 2022, Organic Geochemistry.
[4] Yanhua Wang,et al. Occurrence characteristics and source appointment of polycyclic aromatic hydrocarbons and n-alkanes over the past 100 years in southwest China , 2021, Science of The Total Environment.
[5] J. Płotka-Wasylka,et al. Green analytical chemistry metrics: A review. , 2021, Talanta.
[6] R. Wahi,et al. Validation of an analytical technique, distribution, and risk assessment of aliphatic and polycyclic aromatic hydrocarbons in surface sediments of the coastal and selected estuaries of Sarawak , 2021, Arabian Journal of Geosciences.
[7] M. E. Machado,et al. Microscale extraction combined with gas chromatography/mass spectrometry for the simultaneous determination of polycyclic aromatic hydrocarbons and polycyclic aromatic sulfur heterocycles in marine sediments. , 2021, Journal of chromatography. A.
[8] M. Bícego,et al. Sources and depositional changes of aliphatic hydrocarbons recorded in sedimentary cores from Admiralty Bay, South Shetland Archipelago, Antarctica during last decades. , 2021, Science of the Total Environment.
[9] Francisco Raposo,et al. Challenges and strategies of matrix effects using chromatography-mass spectrometry: An overview from research versus regulatory viewpoints , 2020 .
[10] R. McCrindle,et al. Occurrence, distribution, spatio-temporal variability and source identification of n-alkanes and polycyclic aromatic hydrocarbons in water and sediment from Loskop dam, South Africa. , 2020, Water research.
[11] Fuliu Xu,et al. New insights into spatiotemporal source apportionment of n-alkanes under mixed scenario: A pilot study on Lake Chaohu, China. , 2020, The Science of the total environment.
[12] M. Tobiszewski,et al. AGREE—Analytical GREEnness Metric Approach and Software , 2020, Analytical chemistry.
[13] Antonio V. Herrera-Herrera,et al. Development of a QuEChERS-based method combined with gas chromatography-mass spectrometry for the analysis of alkanes in sediments , 2020, Microchemical Journal.
[14] G. D. da Rocha,et al. Occurrence of 3-nitrobenzanthrone and other powerful mutagenic polycyclic aromatic compounds in living organisms: polychaetes , 2020, Scientific Reports.
[15] M. R. Alexandre,et al. Distribution patterns of aliphatic hydrocarbons in sediments from a tropical estuarine system , 2019 .
[16] L. Taghavi,et al. Quantitative evaluation of n-alkanes, PAHs, and petroleum biomarker accumulation in beach-stranded tar balls and coastal surface sediments in the Bushehr Province, Persian Gulf (Iran). , 2019, Marine pollution bulletin.
[17] R. Figueira,et al. Petroleum biomarkers as tracers of low-level chronic oil contamination of coastal environments: A systematic approach in a subtropical mangrove. , 2019, Environmental pollution.
[18] S. Froehner,et al. Use of n-alkanes to trace erosion and main sources of sediments in a watershed in southern Brazil. , 2019, The Science of the total environment.
[19] Jinming Song,et al. Occurrence and origins of biomarker aliphatic hydrocarbons and their indications in surface sediments of the East China Sea. , 2019, Ecotoxicology and environmental safety.
[20] G. D. da Rocha,et al. Occurrence of the potent mutagens 2- nitrobenzanthrone and 3-nitrobenzanthrone in fine airborne particles , 2019, Scientific Reports.
[21] K. Hinrichs,et al. Towards multiproxy, ultra-high resolution molecular stratigraphy: Enabling laser-induced mass spectrometry imaging of diverse molecular biomarkers in sediments , 2019, Organic Geochemistry.
[22] J. D. de Andrade,et al. Methodology to examine polycyclic aromatic hydrocarbons (PAHs) nitrated PAHs and oxygenated PAHs in sediments of the Paraguaçu River (Bahia, Brazil). , 2018, Marine pollution bulletin.
[23] J. Płotka-Wasylka,et al. A new tool for the evaluation of the analytical procedure: Green Analytical Procedure Index. , 2018, Talanta.
[24] M. Zakaria,et al. Aliphatic hydrocarbons and triterpane biomarkers in mangrove oyster (Crassostrea belcheri) from the west coast of Peninsular Malaysia. , 2017, Marine pollution bulletin.
[25] A. Fernández-Alba,et al. Matrix interference evaluation employing GC and LC coupled to triple quadrupole tandem mass spectrometry. , 2017, Talanta.
[26] E. Niedermeyer,et al. Leaf wax n-alkane extraction: An optimised procedure , 2017 .
[27] J. Andrade,et al. Particulate pollutants in the Brazilian city of São Paulo: 1-year investigation for the chemical composition and source apportionment , 2017 .
[28] S. Joye,et al. Hydrocarbon composition and concentrations in the Gulf of Mexico sediments in the 3 years following the Macondo well blowout. , 2017, Environmental pollution.
[29] Maria do Rosário Zucchi,et al. Geochemical markers of sedimentary organic matter in Todos os Santos Bay, Bahia - Brazil. Indicators of sources and preservation. , 2017, Marine pollution bulletin.
[30] C. Moy,et al. Quantification of low molecular weight n-alkanes in lake sediment cores for paleoclimate studies , 2017 .
[31] G. R. Betemps,et al. Determination of hydrocarbons transported by urban runoff in sediments of São Gonçalo Channel (Pelotas - RS, Brazil). , 2017, Marine pollution bulletin.
[32] M. R. Alexandre,et al. Seasonal distribution of aliphatic hydrocarbons in the Vaza Barris Estuarine System, Sergipe, Brazil. , 2016, Marine pollution bulletin.
[33] G. D. da Rocha,et al. A simple, comprehensive, and miniaturized solvent extraction method for determination of particulate-phase polycyclic aromatic compounds in air. , 2016, Journal of chromatography. A.
[34] M. E. Carneiro,et al. Aliphatic and polycyclic aromatic hydrocarbons and trace elements as indicators of contamination status near oil and gas platforms in the Sergipe-Alagoas Basin (Southwest Atlantic Ocean) , 2013 .
[35] B. Knoppers,et al. Evaluation of anthropogenic inputs of hydrocarbons in sediment cores from a tropical Brazilian estuarine system , 2013 .
[36] Jacek Namieśnik,et al. Analytical eco-scale for assessing the greenness of analytical procedures , 2012 .
[37] A. Fernández-Alba,et al. Overcoming matrix effects using the dilution approach in multiresidue methods for fruits and vegetables. , 2011, Journal of chromatography. A.
[38] S. Ferreira,et al. Multivariate optimization of a solid phase microextraction-headspace procedure for the determination of benzene, toluene, ethylbenzene and xylenes in effluent samples from a waste treatment plant. , 2008, Journal of Chromatography A.
[39] Robert K. Nelson,et al. Analysis of unresolved complex mixtures of hydrocarbons extracted from Late Archean sediments by comprehensive two-dimensional gas chromatography (GC×GC) , 2008 .
[40] A. Long,et al. Non-aromatic hydrocarbons in surface sediments near the Pearl River estuary in the South China Sea. , 2007, Environmental pollution.
[41] M. Galceran,et al. Microwave-assisted extraction versus Soxhlet extraction for the analysis of short-chain chlorinated alkanes in sediments. , 2004, Journal of chromatography. A.
[42] Lúcio Flávio,et al. Validação em métodos cromatográficos e eletroforéticos , 2004 .
[43] E. Calvo,et al. Pressurized liquid extraction of selected molecular biomarkers in deep sea sediments used as proxies in paleoceanography. , 2003, Journal of chromatography. A.
[44] Stephen L. R. Ellison,et al. Harmonized guidelines for single-laboratory validation of methods of analysis (IUPAC Technical Report) , 2002, Chemistry International.
[45] A. Pearson,et al. The origin of n-alkanes in Santa Monica Basin surface sediment: a model based on compound-specific Δ14C and δ13C data , 2000 .
[46] H. Budzinski,et al. Focused microwave-assisted extraction of polycyclic aromatic hydrocarbons and alkanes from sediments and source rocks , 1999 .
[47] G. Derringer,et al. Simultaneous Optimization of Several Response Variables , 1980 .
[48] E. E. Bray,et al. Distribution of n-paraffins as a clue to recognition of source beds , 1961 .
[49] M. Eberlin,et al. Distribution and Sources of Aliphatic and Polycyclic Aromatic Hydrocarbons in Surface Sediments of Itajai-Acu Estuarine System in Brazil , 2016 .