Effect of Plasma Activated Water on the Degradation of Bifenazate and Spirodiclofen Residues on Cuimi kumquat and Impact on Its Quality

Author:

Wang Xiaonan1,Feng Jing1,Chen Shuo2,Qin Si2,Zang Yuanfu2,Huang Haiyuan1,Wei Jie1

Affiliation:

1. College of Agriculture, Guangxi University, Nanning 530004, China

2. School of Electricity, Guangxi University, Nanning 530004, China

Abstract

With the development of plasma-activated water (PAW) technology, its applications in the fields of food, agriculture, and biomedicine are becoming increasingly widespread. PAW has sterilization, pesticide residue reduction, anti-cancer, and blood clotting functions. Traditional methods for pesticide degradation include home processing, baking and freeze-drying, and UV treatment; however, they generally suffer from poor degradation efficiency and adverse effects on fruit quality. This study found that PAW treatment is a green and efficient environmental technology with the advantages of simple operation, good treatment effect, and no secondary pollution. This paper investigated the efficiency of PAW on the reduction of two acaricides, namely, bifenazate and spirodiclofen, and the effect of PAW treatment on the quality of Cuimi kumquat. The results showed that after PAW treatment, the residual amounts of bifenazate and spirodiclofen were reduced to a minimum of 1.19 mg·kg−1 and 0.23 mg·kg−1, with a reduction of 74.35% and 59.37% respectively compared to the control. Moreover, PAW treatment did not have any negative effects on the storage quality of Cuimi kumquat.

Funder

Department of Agriculture and Rural Affairs of Guangxi Zhuang Autonomous Region

Department of Science and Technology of Guangxi Zhuang Autonomous Region

Guangxi Association for Science and Technology

Publisher

MDPI AG

Subject

Agronomy and Crop Science

Reference39 articles.

1. Analysis on fruit quality of kumquat Cuimi, Rongan and Huapi;Gao;J. South. Agric.,2016

2. Research on the contents and difference of the main secondary metabolites in different kumquat fruits;Guo;Food Ferment. Ind.,2021

3. Pesticide Residues and Effect of Household Processing in Commonly Consumed Vegetables in Jimma Zone, Southwest Ethiopia;Terfe;J. Environ. Public Health,2023

4. High and low temperature processing: Effective tool reducing pesticides in/on apple used in a risk assessment of dietary intake protocol;Rutkowska;Chemosphere,2023

5. Degradation of highly chlorinated pesticide, lindane, in water using UV/persulfate: Kinetics and mechanism, toxicity evaluation, and synergism by H2O2;Khan;J. Hazard. Mater.,2021

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