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Alleviation of Pesticide Residue in Surface Water
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作者 Olubode Adeniyi Amy Hernandez +2 位作者 Mark LeBlanc Joan M. King Marlene Janes 《Journal of Water Resource and Protection》 2017年第5期523-535,共13页
Reduction of environmental pollution incurred from pesticide use is very important. Zeolite is a natural mineral capable of removing certain chemical contaminants from water. This study was carried out to test the eff... Reduction of environmental pollution incurred from pesticide use is very important. Zeolite is a natural mineral capable of removing certain chemical contaminants from water. This study was carried out to test the effect of zeolite treatment on pesticide residue alleviation in surface water. Ten surface water samples were treated with natural zeolite by filtering through. An EPA method was used to extract pesticide residue from the water samples and the surfactant used to modify the net charge on the zeolite was hexadecyltrimethylammonium chloride (HDTMA-Cl). Gas chromatography-mass spectrometry was used to analyze water samples. Alleviation was achieved in all the 10 water samples that were filtered through zeolite. The highest removal of pesticides from water with zeolite included 100% of bifenthrin in sample CLC, atrazine in BPH, CDG and LBT;metolachlor in CLC, LBT, BCH, TRH2 and BPI;acetolachlor in BBH and BCH;azoxystrobin in BBH;desethylatrazine in BCH and BPI;metribuzin in BCH, TRH2 and BPI;and both clomazone and bromacil in sample BDC. A minimum reduction of 10.9% was found for metolachlor in sample BRH. Further reduction of pesticide residues up to 50% was recorded in the SMZ treatment as the concentrations of 4 out of 8 pesticide residues were reduced. This study confirms the potential of both the natural zeolite-Clinoptilolite, and SMZ of alleviating pesticide residues in water. 展开更多
关键词 EPA (United States Environmental Protection Agency) Gas Chromatography Mass Spectrometry ZEOLITE Hexadecyltrimethylammonium Chloride (HDTMA-Cl) Surface-Modified-Zeolite (SMZ) BIFENTHRIN METOLACHLOR METRIBUZIN Acetolachlor AZOXYSTROBIN Desethylatrazine CLOMAZONE Bromacil Atrazine Clinoptilolite Alleviation
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Rapid Analysis of Nicotine in Mushrooms Using QuEChERS Extraction and Liquid Chromatography Tandem Mass Spectrometry
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作者 A. Santilio R. Dommarco 《Journal of Food Science and Engineering》 2011年第1期27-34,共8页
A procedure based on the QuEChERS methodology and Liquid Chromatography Tandem Mass Spectrometry (LC/MS/MS) is described, for the determination of Nicotine in mushrooms. QuEChERS methodology was used to determine Ni... A procedure based on the QuEChERS methodology and Liquid Chromatography Tandem Mass Spectrometry (LC/MS/MS) is described, for the determination of Nicotine in mushrooms. QuEChERS methodology was used to determine Nicotine in dried and fresh mushrooms under basic conditions with primary secondary amino sorbent (PSA) clean up. The chromatography was performed on C 18 reversed phase column using a gradient of acetonitrile and ammonium formiate lmM pH = 3.4 as mobile phase at a flow rate of 0.3 mL min^-1. Nicotine was determined by using Nicotine-d3 as internal standard. Limit of quantification (LOQ) was 0.01 mg kg^-1 for both fresh and dried mushrooms. Calibration curve was linear over the concentration range of 0.01-2.3 mg mL^-1, with r2 〉 0.99. As for recoveries in dried mushrooms, spiking levels of 0.32 mg kg^-1 and 2 mg kg^-1 were considered whereas for the fresh mushrooms the recoveries were determined at 0.036 mg kg^-1 and 0.36 mg kg^-1. Satisfactory results were obtained for both matrices and the recoveries proved to range from 105% to 135%, with a standard deviation in the range 17-20. The method was applied to the analysis of Nicotine to assess the levels of nicotine in fresh and dried mushrooms. 展开更多
关键词 QUECHERS NICOTINE MUSHROOMS PESTICIDES RESIDUES liquid chromatography tandem mass spectrometry (LC/MS/MS)
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