The global pesticide detection market is poised for significant growth, with market valuation expected to rise from approximately USD 1.50 billion in 2025 to USD 2.43 billion by 2035, reflecting a CAGR of 4.9% over the forecast period. Increasing emphasis on food safety, environmental health, and stringent regulatory frameworks are driving governments and industries to adopt advanced pesticide detection technologies.
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Ensuring Food Safety and Compliance Pesticide detection has become an essential tool for safeguarding consumer health and ensuring regulatory compliance. Rapid and precise detection methods help monitor pesticide residues in food, water, and soil, preventing the circulation of contaminated products. Advanced analytical techniques such as chromatography, spectroscopy, and biosensors are increasingly integrated into laboratories and on-site testing environments, ensuring accurate and timely results.
Market Drivers The rising consumer demand for organic and residue-free food products is a major factor fueling market growth. Health-conscious and environmentally aware consumers are pressuring manufacturers and regulatory bodies to enforce stricter pesticide control measures. As a result, pesticide detection systems are now critical in quality control processes across the agricultural supply chain—from farm to table.
Key Technologies and Innovations The pesticide detection market spans various technologies, including gas chromatography (GC), liquid chromatography (LC), mass spectrometry (MS), immunoassays, and multi-residue methods (MRMs). MRMs, which enable simultaneous detection of multiple pesticide residues, are projected to capture 54% of the market share in 2025 due to their efficiency and accuracy.
Traditional technologies like LC and GC continue to maintain dominance, offering reliability and precision. Modern advancements, such as high-performance liquid chromatography (HPLC) and tandem mass spectrometry (LC-MS/MS), further enhance speed, sensitivity, and specificity. Portable, real-time detection devices are also gaining traction, enabling on-site monitoring and improving operational efficiency.
Notable Developments In March 2025, PerkinElmer launched the QSight® 500 LC/MS/MS System at Pittcon 2025, designed to enhance pesticide detection in complex samples like sludge and grease. This system delivers high sensitivity, cost efficiency, and reliable performance, exemplifying how manufacturers are innovating to meet evolving market demands.
Sustainability and Efficiency Sustainability considerations are shaping the market, with manufacturers focusing on eco-friendly testing protocols and reducing hazardous chemical use. Automation and miniaturization of detection devices are improving throughput while lowering operational costs.
Regional Insights
Competitive Landscape The market features a structured tier-based competitive landscape:
Emerging Trends The market is witnessing increased integration of microbial detection methods, biosensors, and non-destructive techniques such as infrared and Raman spectroscopy. These innovations enable rapid, on-site, and environmentally friendly pesticide analysis, ensuring safer food supplies while maintaining regulatory compliance.
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Conclusion As consumer awareness rises and regulatory standards tighten globally, the pesticide detection market is expected to continue its steady growth trajectory. With established and emerging players investing in advanced technologies, automation, and eco-friendly solutions, the industry is well-positioned to deliver safer food and a cleaner environment for the future.
Leading Manufacturers: Renka Bio, Sciex, Merck, Agilent Technologies, PerkinElmer Inc., Shimadzu Corporation, Waters Corporation, Thermo Fisher Scientific, SpensaKarlabs, ALS Limited, AsureQuality Ltd., SCS Global Services, Microbac Laboratories Inc., Symbio Laboratories, Eurofins Scientific, Intertek Group plc, SGS SA, Fera Science Limited.