Determination of selected antiretroviral drugs in wastewater, surface water and aquatic plants using hollow fibre liquid phase microextraction and liquid chromatography - tandem mass spectrometry.
暂无分享,去创建一个
P. Mahlambi | L. M. Madikizela | L. Chimuka | Somandla Ncube | Nomchenge Yamkelani Mlunguza | L. Madikizela
[1] D. Du,et al. Managing environmental contamination through phytoremediation by invasive plants: A review , 2019, Ecological Engineering.
[2] L. M. Madikizela,et al. Adsorbents and removal strategies of non-steroidal anti-inflammatory drugs from contaminated water bodies , 2019, Journal of Environmental Chemical Engineering.
[3] B. Kelly,et al. Bioaccumulation behaviour of pharmaceuticals and personal care products in a constructed wetland. , 2019, Chemosphere.
[4] M. Stander,et al. Simultaneous quantification of commonly prescribed antiretroviral drugs and their selected metabolites in aqueous environmental samples by direct injection and solid phase extraction liquid chromatography - tandem mass spectrometry. , 2019, Chemosphere.
[5] Sinothando P Mtolo,et al. Synthesis and application of a molecularly imprinted polymer in selective solid-phase extraction of efavirenz from water. , 2019, Water science and technology : a journal of the International Association on Water Pollution Research.
[6] M. Nindi,et al. Environmental fate and ecotoxicological effects of antiretrovirals: A current global status and future perspectives. , 2018, Water research.
[7] Y. Lei,et al. Fate and distribution of pharmaceutically active compounds in mesocosm constructed wetlands. , 2018, Journal of hazardous materials.
[8] L. M. Madikizela,et al. Uptake of pharmaceuticals by plants grown under hydroponic conditions and natural occurring plant species: A review. , 2018, The Science of the total environment.
[9] J. Fick,et al. LC-MS/MS determination of antiretroviral drugs in influents and effluents from wastewater treatment plants in KwaZulu-Natal, South Africa. , 2018, Chemosphere.
[10] J. de Boer,et al. Contaminants of emerging concern in the Hartbeespoort Dam catchment and the uMngeni River estuary 2016 pollution incident, South Africa. , 2018, The Science of the total environment.
[11] K. Demeestere,et al. Occurrence, fate and removal of pharmaceuticals, personal care products and pesticides in wastewater stabilization ponds and receiving rivers in the Nzoia Basin, Kenya. , 2018, The Science of the total environment.
[12] E. Lima,et al. Removal of emerging contaminants from the environment by adsorption. , 2018, Ecotoxicology and environmental safety.
[13] P. Schröder,et al. Metabolism of carbamazepine in plant roots and endophytic rhizobacteria isolated from Phragmites australis. , 2018, Journal of hazardous materials.
[14] J. Barreto,et al. Antiretroviral drugs , 2007, Reactions Weekly.
[15] Yunus Moosa,et al. Adult antiretroviral therapy guidelines 2017 , 2017, Southern African journal of HIV medicine.
[16] C. Schoeman,et al. The impact of a Wastewater Treatment Works in Southern Gauteng, South Africa on efavirenz and nevirapine discharges into the aquatic environment , 2017 .
[17] M. Wooding,et al. Determination of endocrine disrupting chemicals and antiretroviral compounds in surface water: A disposable sorptive sampler with comprehensive gas chromatography - Time-of-flight mass spectrometry and large volume injection with ultra-high performance liquid chromatography-tandem mass spectrometry. , 2017, Journal of chromatography. A.
[18] L. M. Madikizela,et al. Simultaneous determination of naproxen, ibuprofen and diclofenac in wastewater using solid-phase extraction with high performance liquid chromatography , 2017 .
[19] J. Peñuelas,et al. Pharmaceuticals and Personal-Care Products in Plants. , 2017, Trends in plant science.
[20] Silindile Senamile Zunngu,et al. Synthesis and application of a molecularly imprinted polymer in the solid-phase extraction of ketoprofen from wastewater , 2017 .
[21] P. Wieczorek,et al. Multivariate optimization of the hollow fibre liquid phase microextraction of muscimol in human urine samples. , 2016, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[22] P. Schröder,et al. Uptake, translocation and possible biodegradation of the antidiabetic agent metformin by hydroponically grown Typha latifolia. , 2016, Journal of hazardous materials.
[23] H. Langenhove,et al. Occurrence patterns of pharmaceutical residues in wastewater, surface water and groundwater of Nairobi and Kisumu city, Kenya. , 2016, Chemosphere.
[24] Jordi Comas,et al. Estimate of uptake and translocation of emerging organic contaminants from irrigation water concentration in lettuce grown under controlled conditions. , 2016, Journal of hazardous materials.
[25] T. Tuhkanen,et al. Occurrence of selected antibiotics and antiretroviral drugs in Nairobi River Basin, Kenya. , 2016, The Science of the total environment.
[26] Nicholas W. Roberts,et al. Cyp27c1 Red-Shifts the Spectral Sensitivity of Photoreceptors by Converting Vitamin A1 into A2 , 2015, Current Biology.
[27] Jeremy L Conkle,et al. Plant uptake of pharmaceutical and personal care products from recycled water and biosolids: a review. , 2015, The Science of the total environment.
[28] C. Schoeman,et al. Quantification of Selected Antiretroviral Drugs in a Wastewater Treatment Works in South Africa Using GC-TOFMS , 2015 .
[29] Xiaoping Wang,et al. Degradation of pharmaceutical contaminant ibuprofen in aqueous solution by cylindrical wetted-wall corona discharge , 2015 .
[30] E. Rohwer,et al. The occurrence of anti-retroviral compounds used for HIV treatment in South African surface water. , 2015, Environmental pollution.
[31] B. Moodley,et al. Occurrence of selected pharmaceuticals in water and sediment of Umgeni River, KwaZulu-Natal, South Africa , 2015, Environmental Science and Pollution Research.
[32] A. Dordio,et al. Organic xenobiotics removal in constructed wetlands, with emphasis on the importance of the support matrix. , 2013, Journal of hazardous materials.
[33] P. Schröder,et al. Metabolism of diclofenac in plants--hydroxylation is followed by glucose conjugation. , 2012, Journal of hazardous materials.
[34] J. Dewulf,et al. From multi-residue screening to target analysis of pharmaceuticals in water: development of a new approach based on magnetic sector mass spectrometry and application in the Nairobi River basin, Kenya. , 2012, The Science of the total environment.
[35] V. Iori,et al. Assessment of ibuprofen tolerance and removal capability in Populus nigra L. by in vitro culture. , 2012, Journal of hazardous materials.
[36] E. Ballesteros,et al. Combined microwave-assisted extraction and continuous solid-phase extraction prior to gas chromatography-mass spectrometry determination of pharmaceuticals, personal care products and hormones in soils, sediments and sludge. , 2012, The Science of the total environment.
[37] H. Ebrahimzadeh,et al. Optimization of carrier-mediated three-phase hollow fiber microextraction combined with HPLC-UV for determination of propylthiouracil in biological samples. , 2011, Talanta.
[38] M. Ramos Payán,et al. Hollow fiber-based liquid phase microextraction (HF-LPME) as a new approach for the HPLC determination of fluoroquinolones in biological and environmental matrices. , 2011, Journal of pharmaceutical and biomedical analysis.
[39] Jun Yao,et al. Investigation of acidic pharmaceuticals in river water and sediment by microwave-assisted extraction and gas chromatography-mass spectrometry. , 2010 .
[40] Kyung Ho Row,et al. Recent Applications of Ionic Liquids in Separation Technology , 2010, Molecules.
[41] T. Hawkins. Understanding and managing the adverse effects of antiretroviral therapy. , 2010, Antiviral research.
[42] S. Broder,et al. The development of antiretroviral therapy and its impact on the HIV-1/AIDS pandemic. , 2010, Antiviral research.
[43] K. Madej. Microwave-assisted and cloud-point extraction in determination of drugs and other bioactive compounds , 2009 .
[44] K. Srogi. A Review: Application of Microwave Techniques for Environmental Analytical Chemistry , 2006 .
[45] V. Camel,et al. Recent extraction techniques for solid matrices-supercritical fluid extraction, pressurized fluid extraction and microwave-assisted extraction: their potential and pitfalls. , 2001, The Analyst.
[46] D. Song,et al. Application of microwave techniques in analytical chemistry , 1999 .
[47] S. Jørgensen,et al. Occurrence, fate and effects of pharmaceutical substances in the environment--a review. , 1998, Chemosphere.
[48] F. Steele. Assessment Report for the , 1996 .
[49] V. Lopez-Avila,et al. Accelerated Extraction of Organic Pollutants Using Microwave Energy , 1995 .