Method for extracting pyrethroid pesticide residue in liquid sample
A technology for pyrethroids and pyrethroids, which is applied in the field of pesticide residue detection, can solve the problems that extraction and purification of pyrethroid pesticides is not a simple or effective method, consumes a lot of organic solvents, and has limited application scope, and reduces detection steps. and manpower, high recovery rate, and the effect of improving detection efficiency
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[0025] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS The present invention will be further described below in combination with examples.
[0026] The instruments, reagents, materials, etc. involved in the following examples, unless otherwise specified, are conventional instruments, reagents, materials, etc. in the prior art, and can be obtained through formal commercial channels. The experimental methods, detection methods, etc. involved in the following examples, unless otherwise specified, are conventional experimental methods, detection methods, etc. in the prior art.
[0027] Experimental Screening of Optimal Extraction Conditions
[0028] The extraction method is as follows: take 2mL samples (4 kinds of pyrethroid pesticide mixed standard solutions), place them in a 10mL glass centrifuge tube, adjust the pH value to the design value (use 5% phosphoric acid solution or 0.5mol / L sodium hydroxide solution to adjust ; see Table 1), add 2mL of acetonitrile, and mix to obt...
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[0034] Example 1: Extraction and detection of pyrethroid pesticide residues in urine, wastewater and seawater samples
[0035] 1. Extraction and detection method
[0036]The extraction method steps are as follows: each get 2mL urine sample, waste water and seawater sample, place respectively in 10mL glass centrifuge tube, adjust pH value to 3 (adjust with 5% phosphoric acid solution or 0.5mol / L sodium hydroxide solution), each Add 2mL of acetonitrile and mix well to obtain a homogeneous solution. Add 4 mL of salting-out solution (pH=4) to the homogeneous solution, and the solution is divided into two layers, the upper layer is an acetonitrile phase, and the lower layer is an aqueous phase. Get the upper acetonitrile phase, carry out gas chromatography-mass spectrometry detection after filtering through 0.45 μm microporous membrane (flow process is as follows: figure 1 shown).
[0037] The salting-out solution is prepared by the following method: prepare 100mmol / L phosphate ...
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