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Developing a Multi-Spectral NIR LED-Based Instrument for the Detection of Pesticide Residues Containing Chlorpyrifos-Methyl in Rough, Brown, and Milled Rice.
Rodriguez-Macadaeg, Fatima; Armstrong, Paul R; Maghirang, Elizabeth B; Scully, Erin D; Brabec, Daniel L; Arthur, Frank H; Adviento-Borbe, Arlene D; Yaptenco, Kevin F; Suministrado, Delfin C.
Afiliación
  • Rodriguez-Macadaeg F; Faculty of Institute of Agricultural and Biosystems Engineering, Don Mariano Marcos Memorial State University-North La Union Campus, Bacnotan 2515, Philippines.
  • Armstrong PR; CGAHR-Center for Grain and Animal Health Research, ARS-USDA-Agricultural Research Service, Manhattan, KS 66502, USA.
  • Maghirang EB; CGAHR-Center for Grain and Animal Health Research, ARS-USDA-Agricultural Research Service, Manhattan, KS 66502, USA.
  • Scully ED; CGAHR-Center for Grain and Animal Health Research, ARS-USDA-Agricultural Research Service, Manhattan, KS 66502, USA.
  • Brabec DL; CGAHR-Center for Grain and Animal Health Research, ARS-USDA-Agricultural Research Service, Manhattan, KS 66502, USA.
  • Arthur FH; CGAHR-Center for Grain and Animal Health Research, ARS-USDA-Agricultural Research Service, Manhattan, KS 66502, USA.
  • Adviento-Borbe AD; DWMRU-Delta Water Management Research, ARS-USDA-Agricultural Research Service, Jonesboro, AR 72467, USA.
  • Yaptenco KF; Faculty of the Institute of Agricutlural and Biosystems Engineering, University of the Philippines Los Baños, Laguna 4031, Philippines.
  • Suministrado DC; Faculty of the Institute of Agricutlural and Biosystems Engineering, University of the Philippines Los Baños, Laguna 4031, Philippines.
Sensors (Basel) ; 24(13)2024 Jun 21.
Article en En | MEDLINE | ID: mdl-39000833
ABSTRACT
A recent study showed the potential of the DA Perten 7200 NIR Spectrometer in detecting chlorpyrifos-methyl pesticide residue in rough, brown, and milled rice. However, this instrument is still lab-based and generally suited for point-of-sale testing. To provide a field-deployable version of this technique, an existing light emitting diode (LED)-based instrument that provides discrete NIR wavelength illumination and reflectance spectra over the range of 850-1550 nm was tested. Spectra were collected from rough, brown, and milled rice at different pesticide concentrations and analyzed for quantitative and qualitative measurement using partial least squares regression (PLS) and discriminant analysis (DA). Simulations for two LED-based instruments were also evaluated using corresponding segments of spectra from the DA7200 to represent LED illumination. For the simulation of the existing LED-based instrument (LEDPrototype1) fitted with 850, 910, 940, 970, 1070, 1200, 1300, 1450, and 1550 nm LED wavelengths, resulting R2 ranged from 0.52 to 0.71, and the correct classification was 70.4% to 100%. The simulation of a second LED instrument (LEDPrototype2) fitted with 980, 1050, 1200, 1300, 1450, 1550, 1600, and 1650 nm LED wavelengths showed R2 of 0.59 to 0.82 and correct classifications of 66% to 100%. These LED wavelengths were selected based on the significant wavelength regions from the PLS regression coefficients of DA7200 and the commercial availability of LED wavelengths. Results showed that it is possible to use a multi-spectral LED-based instrument to detect varying levels of chlorpyrifos-methyl pesticide residue in rough, brown, and milled rice.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Sensors (Basel) Año: 2024 Tipo del documento: Article País de afiliación: Filipinas

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Sensors (Basel) Año: 2024 Tipo del documento: Article País de afiliación: Filipinas