Biomagnification example sentences

Related (5): Contaminants, DDT, PCBs, Toxicity, Concentration

"Biomagnification" Example Sentences

1. Biomagnification can occur in any aquatic food chain where there are persistent organic pollutants.
2. The biomagnification of mercury in fish can have serious health consequences for humans.
3. The dangerous effects of pesticide biomagnification on birds led to the banning of DDT in the United States.
4. As a top predator, the bald eagle is particularly sensitive to the biomagnification of toxins in its food chain.
5. The biomagnification of heavy metals like lead and cadmium can cause reproductive failure in marine mammals.
6. Scientists have found evidence of biomagnification in the Arctic, with high levels of pollutants found in animals like narwhals.
7. The biomagnification of PCBs in the Great Lakes has led to health problems in fish and birds.
8. One way to reduce the biomagnification of toxins in the food chain is to promote sustainable fishing practices.
9. The biomagnification of microplastics in the ocean is a growing concern for marine life and human health.
10. The biomagnification of pollutants in the food chain can lead to birth defects and neurological problems in humans.
11. The biomagnification of pesticides in crops can impact the health of honeybees and other pollinators.
12. The biomagnification of toxins in the Amazon River is a threat to the health of indigenous communities who rely on river fish for sustenance.
13. The biomagnification of pollutants in the food chain can have far-reaching impacts on ecosystem health.
14. The biomagnification of pollutants in the Arctic is a global issue, as contaminants are transported via air and water currents.
15. The biomagnification of lead in freshwater systems can impact the survival of fish populations and the birds that prey on them.
16. The biomagnification of contaminants in the food chain is a particular concern for vulnerable populations like pregnant women and children.
17. The biomagnification of mercury in the ocean can affect the health of marine mammals like whales and dolphins.
18. Understanding the biomagnification of toxins in the food chain is crucial for conservation efforts and public health.
19. The biomagnification of pollutants in the food chain can ultimately impact human livelihoods and economies.
20. One way to address biomagnification in ecosystems is to reduce the use of toxic chemicals and pollutants in industry.
21. The biomagnification of heavy metals in soil can impact agriculture and food security.
22. The biomagnification of toxins in the food chain is a global issue that requires international cooperation and regulation.
23. The biomagnification of pollutants in the food chain is a complex process that can vary depending on environmental factors and food web dynamics.
24. As a keystone species, the biomagnification of toxins in wolves can have cascading effects throughout entire ecosystems.
25. The biomagnification of pollutants in the food chain can impact the reproductive success of animals and lead to population declines.
26. The biomagnification of toxic chemicals in the food chain underscores the importance of responsible waste management practices.
27. The biomagnification of pollutants can be traced back to human activities like mining, agriculture, and industrial processes.
28. The biomagnification of toxins in the food chain can lead to the emergence of antibiotic-resistant bacteria in humans and animals.
29. The biomagnification of toxins in the food chain is a pressing issue that requires continued research and monitoring.
30. The biomagnification of pesticides in aquatic systems can lead to widespread ecological disruption and the loss of biodiversity.

Common Phases

1. The process of biomagnification;
2. The increase of toxic substances in aquatic and terrestrial food chains through biomagnification;
3. The effects of biomagnification on top predators in ecosystems;
4. The potential human health risks associated with biomagnification of toxic substances;
5. The importance of monitoring biomagnification in the environment to prevent harm to wildlife and humans.

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