Biosecurity Market to Reach US$ 40.9 Billion by 2034 with 8.9% CAGR Growth Forecast

Trishita Deb
Trishita Deb

Updated · Aug 11, 2025

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Overview

New York, NY – Aug 11, 2025: The Global Biosecurity Market is projected to reach USD 40.9 Billion by 2034, rising from USD 17.5 Billion in 2024. It is expected to grow at a CAGR of 8.9% during the forecast period from 2025 to 2034. North America leads the global market with over 41.2% share, valued at around USD 7.19 Billion in 2024. The market is expanding due to rising awareness among governments and institutions about the need to control biological threats, including infectious diseases and bio-terrorism.

A key driver of market growth is the emergence of new diseases that spread rapidly across borders. Many of these illnesses are zoonotic, meaning they come from animals and can be passed to humans. This risk is especially high in areas where people live near livestock or wildlife. To reduce outbreaks, governments promote hygiene, routine health monitoring, and strict safety protocols in farming, food processing, and healthcare systems. These steps help prevent the spread of harmful microbes and protect communities.

Technology is playing a crucial role in enhancing biosecurity measures. Countries are investing in digital surveillance systems, smart detection devices, and advanced laboratory tools. These technologies allow quicker identification and response to biological threats. Air, water, and food monitoring devices can now detect dangerous pathogens early. This early detection is essential for controlling infections before they escalate into outbreaks, thereby supporting public health security efforts.

Building high-security laboratories and training specialized staff is another priority area. These labs are designed to safely study and manage dangerous viruses and bacteria. Governments are funding the construction of more such labs and ensuring that health workers receive proper training. These efforts improve global preparedness and allow for quicker scientific responses during emergencies. As a result, countries are better equipped to prevent and manage future health crises.

Global collaboration has also strengthened in recent years. Organizations like the World Health Organization (WHO) and the World Organisation for Animal Health (WOAH) promote the “One Health” approach. This model connects human, animal, and environmental health. It supports cleaner farming, better wildlife management, and sustainable waste systems. These shared efforts help reduce disease risks and support long-term biosecurity goals. By working together, nations can develop more resilient and effective health systems worldwide.

Biosecurity Market Size

Key Takeaways

  • In 2024, the global biosecurity market generated US$ 17.5 billion, and it’s projected to hit US$ 40.9 billion by 2034.
  • The market is growing steadily with a CAGR of 8.9%, driven by rising concerns over public health and bio-threat preparedness worldwide.
  • Among product types, Biocides & Disinfectants led the market in 2024, accounting for 32.4% of the total revenue share.
  • Personal Protective Equipment, Detection Equipment, and Decontamination Systems also contribute significantly to the market alongside other specialized biosecurity tools.
  • Agriculture emerged as the top application area in 2024, commanding a 30.2% market share due to increasing focus on crop and livestock safety.
  • Other major application segments include Healthcare, Food Industry, Defense & Military, and more, each playing a vital role in biosecurity efforts.
  • Government & Regulatory Bodies held the largest share in the end-user segment, contributing 30.0% to the total market revenue in 2024.
  • Their involvement highlights the role of public institutions in driving large-scale biosecurity policies, infrastructure, and funding.
  • North America was the regional leader in 2024, holding a dominant 41.2% share of the global biosecurity market.
  • The region’s lead is supported by robust investment in disease control, strict regulations, and advanced healthcare and agricultural systems.

Segmentation Analysis

  • Product Type Analysis: The biosecurity market includes Biocides & Disinfectants, PPE, Detection & Monitoring Equipment, Decontamination Systems, and Others. Biocides & Disinfectants lead with a 32.4% market share due to strong demand across industries. These products kill bacteria, viruses, and fungi. They are used in healthcare to disinfect surfaces and equipment. In agriculture, they prevent plant diseases and pests. Demand increased significantly after the COVID-19 pandemic. In June 2023, 3M announced a $146 million investment to improve filtration technology for biopharmaceutical manufacturing worldwide.
  • Application Analysis: Agriculture holds a 30.2% share in the biosecurity market. It relies on disinfectants and monitoring tools to control diseases such as avian flu and foot-and-mouth disease. These solutions protect crops and livestock from harmful pathogens. With rising global food demand, biosecurity in agriculture is crucial for food safety and loss prevention. Healthcare is also a major application area. Hospitals and labs use PPE and disinfectants to manage infection risks. In 2021, Neogen and 3M merged their food safety businesses to drive innovation and growth.
  • End-User Analysis: Government and regulatory bodies account for 30.0% of the biosecurity market. They develop policies and enforce regulations across healthcare, agriculture, and defense sectors. These agencies monitor biological threats and implement measures to prevent outbreaks. Their role creates steady demand for biosecurity products. Healthcare institutions are also vital end-users. Hospitals, clinics, and laboratories use biocides, PPE, and monitoring systems to protect patients and staff. As global health risks rise, the influence of both government and healthcare sectors continues to grow.

Regional Analysis

North America is leading the biosecurity market due to rising concerns about public health, agriculture, and national security. The United States and Canada play key roles with strong regulatory frameworks. These rules enforce strict biosecurity protocols in healthcare, agriculture, and defense. The COVID-19 pandemic boosted demand for personal protective equipment (PPE), disinfectants, and infection control. These remain essential in hospitals and clinics. This heightened focus has strengthened the region’s biosecurity market.

In agriculture, North America invests heavily in protecting crops and livestock from diseases and pests. This ensures food safety and security. Government agencies like the CDC and USDA shape biosecurity policies. Investments in advanced detection systems, decontamination technologies, and monitoring tools also support growth. The region’s commitment to innovation and strict regulations positions it as a dominant force in the global biosecurity market.

Key Players Analysis

Key players in the biosecurity market include 3M Company, BASF SE, DuPont de Nemours, Inc., Thermo Fisher Scientific Inc., and EnviroTech Services, Inc. 3M offers a wide range of products to protect public health across healthcare, defense, and agriculture. They are well known for personal protective equipment (PPE) such as respirators, face shields, and gloves. These products play a crucial role in preventing the spread of infectious diseases, making 3M a significant contributor to the biosecurity sector.

BASF SE is a global chemical company that supplies biocides, disinfectants, and pest control solutions for biosecurity. DuPont de Nemours, Inc. provides advanced PPE, filtration systems, and decontamination products. Their biosecurity solutions serve healthcare, agriculture, and industrial sectors. Together, these companies drive innovation and safety in biosecurity by addressing diverse risks across multiple industries.

Emerging Trends

  • Growing Role of AI and Gene-Editing in Biosecurity: The use of artificial intelligence (AI) and gene-editing tools is rapidly increasing in biosecurity. These technologies offer powerful new ways to detect and respond to biological threats. AI helps analyze large volumes of data quickly, while gene editing can develop solutions to fight diseases at the genetic level. However, these advances also bring risks. Engineered pathogens could be created accidentally or on purpose. This makes strong oversight and safety measures essential to prevent misuse and ensure safe applications.
  • Climate Change Expands Disease-Carrying Insect Habitats: Climate change is shifting the habitats of insects that carry diseases. Warmer temperatures and changing weather patterns allow these insects to move into new areas. As a result, illnesses like malaria and dengue are spreading to places where they were previously rare. This creates new challenges for health systems that need to prepare for outbreaks. Monitoring these shifting habitats is key to preventing disease spread and protecting vulnerable populations in new regions.
  • Wastewater Monitoring for Early Disease Detection: Wastewater monitoring is becoming an important tool for detecting infectious diseases early. By analyzing sewage samples, scientists can spot outbreaks before many people show symptoms. This method works especially well at busy transport hubs like airports and train stations. Early detection allows health officials to respond faster and contain the spread. Wastewater monitoring is cost-effective and provides valuable public health insights, making it a growing trend in biosecurity efforts worldwide.
  • Advanced Detection Systems Enhance Biological Threat Identification: There is increasing emphasis on advanced detection systems to identify biological threats quickly and accurately. Technologies like rapid genetic sequencing and biosensors are becoming more widespread. Faster detection helps contain outbreaks before they grow large. Accurate identification also guides better treatment and control efforts. Investing in these technologies strengthens defenses against both natural and engineered biological risks. As threats evolve, these systems continue to improve to meet new challenges.

Use Cases

  • Farm Biosecurity Measures: Farm biosecurity focuses on strict hygiene and controlling animal movement. These steps help stop diseases from spreading between animals. Farmers clean equipment, vehicles, and footwear regularly. They also limit visitor access to farms. Animals are quarantined when needed to avoid infections. This approach reduces outbreaks and keeps livestock healthy. By following these measures, farms protect both animals and the people who work with them. Overall, good farm biosecurity supports sustainable and safe food production.
  • Integrated Pest Management: Integrated Pest Management (IPM) uses a mix of methods to control pests safely. It relies on constant monitoring to identify pest levels early. Eco-friendly techniques, such as biological controls and natural predators, are preferred over chemicals. IPM aims to minimize environmental damage while keeping crops and animals safe. This approach reduces the reliance on harmful pesticides. It supports healthier ecosystems and long-term pest control. IPM is widely used in agriculture and livestock farming for sustainable biosecurity.
  • International Cooperation in Biosecurity: Countries work together through biosecurity dialogues and partnerships. Sharing information helps identify new threats quickly. Cooperation supports joint planning for disease prevention and emergency response. International biosecurity efforts improve global health security. They promote the exchange of best practices and scientific research. By working as a team, nations can better manage risks from emerging biological threats. This collaboration also helps in coordinating trade and travel safely.
  • Government and Organizational Support: Governments and organizations play a vital role in biosecurity. They develop guidelines and provide funding for biosecurity plans. These plans cover farms, healthcare, transportation, and more. Training programs raise awareness among workers and stakeholders. Support also includes monitoring systems and rapid response teams. Public policies encourage compliance with biosecurity standards. This backing ensures that measures are implemented effectively. Strong government involvement boosts overall protection against biological risks.

Conclusion

The biosecurity market is growing steadily as the world faces increasing biological risks like new diseases and bio-threats. Governments, industries, and researchers are working together to improve safety through better technology, strict hygiene, and strong policies. Advanced tools help detect threats early, while global cooperation supports faster responses. Agriculture, healthcare, and public institutions play key roles in maintaining biosecurity and protecting communities.

Emerging trends like AI, climate change effects, and wastewater monitoring highlight the need for continuous innovation and vigilance. Overall, biosecurity efforts are becoming more integrated and effective, helping create safer environments for people, animals, and ecosystems worldwide.

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Trishita Deb

Trishita Deb

Trishita has more than 8+ years of experience in market research and consulting industry. She has worked in various domains including healthcare, consumer goods, and materials. Her expertise lies majorly in healthcare and has worked on more than 400 healthcare reports throughout her career.

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