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In Washington State, half of all pesticide-related illnesses in agriculture result from drift, the off-target movement of pesticides. Of these, a significant proportion involve workers on another farm and orchard airblast applications. We compared the spray drift exposure reduction potential of two modern tower sprayers - directed air tower (DAT) and multi-headed fan tower (MFT), in relation to a traditional axial fan airblast (AFA) sprayer. We employed real-time particle monitors (Dylos DC1100) during a randomized control trial of orchard spray applications. Sections of a field were randomly sprayed by three alternating spray technologies - AFA, DAT and MFT - while monitors sampled particulate matter above and below the canopy at various downwind locations in a neighboring field. Geometric mean particle mass concentrations (PMC) outside the intended spray area were elevated during all applications at all of our sampling distances (16-74 m, 51-244 ft). After adjusting for wind speed and sampling height, the 75th percentile (95% confidence interval) PMC level was significantly greater during spray events than background levels by 105 (93, 120) μg/m, 49 (45, 54) μg/m and 26 (22, 31) μg/m during AFA, DAT and MFT applications, respectively. Adjusted PMC levels were significantly different between all three sprayers. In this study, tower sprayers significantly reduced spray drift exposures in a neighboring orchard field when compared to the AFA sprayer, with the MFT sprayer producing the least drift; however these tower sprayers did do not fully eliminate drift.
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http://dx.doi.org/10.1016/j.chemosphere.2019.01.092 | DOI Listing |
Small
August 2025
National Key Laboratory of Advanced Micro and Nano Manufacture Technology, Shanghai Jiao Tong University, Shanghai, 200240, China.
MRI compatible MEMS neural probes are critical for advancing functional neuroimaging and elucidating brain network dynamics, yet conventional metallic implants distort magnetic fields, generate artifacts, and pose thermal risks during MRI. Here, a metal-free neural probe based on multilayer graphene (MLG), fabricated via a scalable, low-temperature spin-spray deposition and co-curing process that directly bonds MLG to flexible polyimide substrates is presented. The MLG neural probe's intrinsic roughness enhances electrochemical performance, achieving a charge storage capacity (14.
View Article and Find Full Text PDFEnviron Res
August 2025
College of Science, China Agricultural University, Beijing, China; College of Agricultural Unmanned System, China Agricultural University, Beijing, China; Centre for Chemicals Application Technology, China Agricultural University, Beijing, China; State Key Laboratory of Agricultural and Forestry Bio
Precise control of spray droplet size is critical for optimizing pesticide application, as oversized droplets cause runoff and soil contamination, while undersized droplets lead to atmospheric drift and off-target deposition. These inefficiencies pose significant risks to environmental and human health. However, predictive models for droplet size often fail to consistently account for the effects of spray adjuvants, creating a critical gap in managing spray behavior.
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July 2025
Science Innovation Center, Chinese Academy of Agriculture Mechanization Sciences Group Co., Ltd., Beijing 100083, China.
The multiscale interactive system composed of wind, leaves, and droplets serves as a critical dynamic unit in precision orchard spraying. Its coupling mechanisms fundamentally influence pesticide transport pathways, deposition patterns, and drift behavior within crop canopies, forming the foundational basis for achieving intelligent and site-specific spraying operations. This review systematically examines the synergistic dynamics across three hierarchical scales: Droplet-leaf surface wetting and adhesion at the microscale; leaf cluster motion responses at the mesoscale; and the modulation of airflow and spray plume diffusion by canopy architecture at the macroscale.
View Article and Find Full Text PDFSci Rep
July 2025
Department of Agricultural Engineering and Safety, Vytautas Magnus University Agriculture Academy, Studentų St. 15 A, Kaunas district, Akademija, LT-53362, Lithuania.
Pesticide spraying is one of the most significant processes in agricultural production and one of the most complicated, risky agricultural operations. Side effects of pesticides can cause acute poisoning and serious chronic diseases in humans. Robotic spraying in agriculture is one solution to avoid human intervention.
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July 2025
USDA-ARS-Pollinator Health in Southern Crop Ecosystems Research Unit, Stoneville, MS, 38776, USA.
Chemical applications in croplands can be a major source of pesticide exposure to pollinators, including off-target drift. Adjuvants are added to pesticides to improve spray characteristics. The major goal of this study was to identify the possibility of using sodium alginate (SA) as a drift-reducing pesticide adjuvant that is less/nontoxic to honeybees than polyacrylamide (PAM) an industry standard.
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