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Usage Examples
Filter by Meaning The use of fungi in bioremediation is a sustainable approach to environmental management.
The goal of bioremediation with fungi is to break down pollutants into harmless compounds.
Bioremediation can use fungi to help clean up contaminated soil.
Bioremediation with fungi is a natural way to clean up the environment.
Bioremediation using fungi has the potential to restore ecosystems damaged by pollution.
Bioremediation using fungi is a promising alternative to traditional soil remediation methods.
Researchers are exploring new fungi strains that can be used in bioremediation efforts.
Bioremediation using fungi is a cost-effective and environmentally friendly approach to cleaning up contaminated sites.
Bioremediation using fungi has been shown to be effective in cleaning up oil spills.
The use of mycorrhizal fungi in bioremediation can help plants absorb nutrients and remove contaminants from soil.
Some communities are exploring the use of bioremediation to address issues with soil contamination in urban areas.
Scientists are working on developing genetically modified organisms for bioremediation purposes.
Genetic engineering has the potential to make bioremediation more effective and efficient.
Bioremediation using genetically modified organisms is a promising solution for environmental cleanup.
The development of bioremediation techniques is an important area of research in the field of environmental engineering.
Bioremediation is a cost-effective and environmentally friendly way to clean up contaminated water.
Bioremediation using genetically modified organisms is a safe and sustainable way to clean up contaminated sites.
Bioremediation can be an effective way to clean up contaminated sites using engineered microorganisms.
The use of bioremediation techniques has been successful in cleaning up oil spills in aquatic environments.
The use of genetic modification in bioremediation is still a relatively new field, with much to be discovered.
Some companies are exploring the use of bioremediation to reduce the environmental impact of industrial processes.
Bioremediation offers a sustainable and natural solution to environmental pollution that has potential benefits for human health.
Bioremediation using genetically modified microorganisms is becoming increasingly popular in industrial applications.
Bioremediation is a promising technology that uses genetic engineering to modify bacteria to break down pollutants in the environment.
The use of genetically modified plants in bioremediation is a growing field of research.
Bioremediation using genetically modified plants is a promising approach to cleaning up contaminated soil.
Bioremediation can be an eco-friendly way to treat wastewater.
Bioremediation can be used to break down hazardous chemicals in groundwater.
Bioremediation can be an effective method to treat contaminated soil.
Bioremediation is a promising method for restoring contaminated ecosystems and reducing the harmful effects of pollution.
The use of bioremediation has become increasingly popular in the field of environmental science.
The bioremediation process involves using microorganisms to break down pollutants and convert them into less harmful substances.
Scientists are exploring bioremediation techniques to clean up water polluted by industrial waste.
The government funded a research project on bioremediation to combat air pollution.
Bioremediation is a cost-effective and environmentally friendly alternative to traditional methods of hazardous waste disposal, such as incineration.
Bioremediation can be a cost-effective solution for cleaning up contaminated sites.
The success of bioremediation depends on several factors, such as temperature, pH, and nutrient availability.
In situ bioremediation involves treating contaminated soil or groundwater at the site of the pollution, rather than transporting the waste to a treatment facility.
Bioremediation can be applied to a wide range of contaminants, including heavy metals, pesticides, and solvents.
Bioremediation can be used in combination with other remediation methods, such as phytoremediation and electrokinetic remediation, to achieve better results.
Bioremediation has been successfully used to clean up oil spills in marine environments, such as the Deepwater Horizon spill in the Gulf of Mexico.
The company invested in bioremediation technology to reduce their carbon footprint.
The use of bioremediation has shown promising results in cleaning up oil spills in the ocean.
Some species of bacteria are naturally capable of bioremediation, while others can be genetically modified to improve their efficiency.
The use of bioaugmentation can enhance the efficiency of bioremediation in wastewater treatment by introducing specific microorganisms.
The process of bioremediation in wastewater treatment plants can help reduce the levels of organic matter and nutrients in the effluent.
Bioremediation in wastewater treatment can help improve the quality of the treated water, making it suitable for reuse in irrigation or other non-potable purposes.
The success of bioremediation in wastewater treatment depends on the type and concentration of organic matter present in the wastewater.
The use of microorganisms in bioremediation can help remove organic pollutants from wastewater.
Bioremediation can be a more sustainable and cost-effective alternative to traditional wastewater treatment methods, such as chemical treatment.
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