The global bioremediation market was surpassed at USD 12.53 billion in 2021 and is expected to hit around USD 29.2 billion by 2030, growing at a CAGR of 9.86% from 2022 to 2030
Report Highlights
Rapid growth in industrialization & increasing environmental deterioration, advancements in synthetic technologies, and increasing government support for bioremediation research and innovations are driving the market growth.Genome editing tools, such as CRISPR-Cas and TALEN, are facilitating metabolic engineering applications for the production of optimized enzymes and metabolic pathways that aid in the biodegradation process. Similarly, quorum sensing-based microbial interactions can be effectively used for designing gene circuits and microbial biosensors for the detection and degradation of persistent recalcitrant pollutants.
These factors can accelerate the adoption of bioremediation techniques and fuel market growth. Furthermore, synthetic biology also enables the designing of biological molecules with the desired chemical composition that can be used for the degradation of target contaminant molecules. Several enzyme modification approaches have been developed in this domain, such as enzyme immobilization, using magnetic nanoparticles, production of designer enzymes, and generation of single enzyme nanoparticles, among others. Therefore, the use of synthetic technology for utilizing the bio-degradative capabilities of enzymes is expected to drive the industry.In addition, government authorities are raising awareness about the implementation of bioremediation strategies to drive the adoption of the technique.
For instance, in June 2020, the Indian Government issued an advisory for the treatment and disposal of solid waste through the bioremediation process for reclamation of landfill sites. The advisory was directed toward Urban Local Bodies and signified the increasing attention drawn by bioremediation in the country.The COVID-19 pandemic has led to increased awareness about disinfection, sterilization, and remediation of contaminated areas in public spaces and homes. Furthermore, as the SARS-CoV-2 virus continues to undergo mutations, causing recurrent waves of infection cases around the globe, demand for bioremediation services for reducing the risk of contamination is expected to rise. Similarly, large quantities of Personal Protective Equipment (PPE) and face masks used have led to new challenges in the disposal and treatment of medical waste, which present new growth opportunities for bioremediation.
Scope of The Report
Report Coverage | Details |
Market Size in 2021 | USD 12.53 billion |
Revenue Forecast by 2030 | USD 29.2 billion |
Growth rate from 2022 to 2030 | CAGR of 9.86% |
Base Year | 2021 |
Forecast Period | 2022 to 2030 |
Segmentation | Type, technology, service, region |
Companies Covered | Newterra Ltd.; Sumas Remediation Service Inc.; Probiosphere, Inc.; Drylet, Inc.; Xylem, Inc; Regenesis Corporation; Aquatech International Corp.; Envirogen Technologies, Inc.; MicroGen Biotech Ltd.; Oil Spill Eater International Inc. |
Type Insights
The in-situ type segment dominated the industry in 2021 and accounted for the largest share of 56.2% of the global revenue. The technique refers to the treatment of contaminations at the original site without the need to excavate or pump out the contaminated materials. It involves the use of technologies, such as bio-venting, bio slurping, bio sparging, natural attenuation, and others. The technique can be controlled by the manipulation of factors, such as aeration, nutrient concentration, moisture content, etc., to enhance the activity of organisms and accelerate the degradation rate.
Hence, the method is highly suitable for applications, such as the treatment of groundwater with low contaminant concentrations, where oxygen availability can be increased by pumping air into the soil subsurface. On the other hand, ex-situ bioremediation involves the use of composting, landfarming, soil bio piles, and slurry reactors to treat the contaminated materials away from the original location. The technique is widely used for the treatment of contaminated soil for the removal of hydrocarbons. However, excavation of contaminated materials can lead to additional expenses in the remediation process, which can limit the growth of the segment.
Technology Insights
On the basis of technologies, the global market has been further categorized into bio stimulation, phytoremediation, bioreactors, fungal remediation, bioaugmentation, and land-based treatments. The phytoremediation segment accounted for the largest share of more than 30.06% of the global revenue in 2021. The demand for the technology is fuelled by its applications for the removal of heavy metals, radionuclides, organic contaminants, and pesticides with help of plants. It involves the use of techniques, such as rhizodegradation, rhizofiltration, phytovolatilization,phytoextraction, and phytostabilization, among others, for the treatment of pollutants.
The segment is anticipated to grow further due to the low costs of phytoremediation as compared to other technologies, and the ability to sustainably remove organic and inorganic pollutants from soil and water. Fungal remediation is expected to grow at the fastest CAGR during the forecast period as fungi can demonstrate a wide range of metabolic capacities and can tolerate high concentrations of polluting agents. Fungi represent a promising option for the degradation of recalcitrant pollutants by the production of a variety of intracellular and extracellular enzymes, such as cytochrome P450 and peroxidases, respectively. These factors are likely to accelerate the adoption of fungal remediation technologies in the near future.
Service Insights
The soil remediation segment dominated the market in 2021 and accounted for the maximum share of more than 38.9% of the global revenue. The service involves the removal of soil contaminants originating from sources, such as dumping of chemicals, improper waste disposal, pipe leaks & spills, and others. Demand for soil remediation is supported by the high extent of soil degradation caused by industrial pollutants, agrochemicals, and municipal waste. For instance, according to the United Nations, globally over 3.2 billion people are affected by the degradation of land and soils. As a result, the increasing need for soil remediation is expected to significantly contribute to market growth.
Oilfield remediation is projected to grow at the fastest CAGR over the forecast period due to the rapid expansion of the crude oil industry and the development of eco-friendly oilfield remediation options. Surging oil prices in recent months have led to high pressure for increasing oil production in countries, such as the U.S. Moreover, recent advancements in omics technologies, such as metagenomics & metatranscriptomics, have enabled the use of microbial-based oilfield remediation strategies. Similarly, the use of biosurfactants for increasing the bioavailability of oil constituents has accelerated the adoption of oilfield bioremediation activities.
Regional Insights
North America accounted for the largest share of more than 41.12% of the global revenue in 2021 due to the presence of sophisticated infrastructure, high industrial growth & waste production, and presence of key market players, such as Regenesis Corp., Probiosphere, Inc., and Xylem, Inc. In addition, the region hosts substantial research potential for bioremediation that is likely to drive advancements in technology and promote industry growth. For instance, a study published in the journal of Applied and Environmental Microbiology in September 2021, demonstrated the presence of marine bacteria in the Canadian Arctic region that are capable of degrading hydrocarbons, such as oil and diesel.
Asia Pacific, on the other hand, is estimated to grow at the fastest CAGR during the forecast period. This high growth can be attributed to the production of large quantities of hazardous waste due to the rising economic development and the increasing awareness about environmental protection in the APAC region. Furthermore, the region consists of a large population and relatively under-developed waste management systems in developing countries, such as Pakistan, Cambodia, and others. These factors can lead to a worsening of contamination issues and, thus, are anticipated to accelerate the industry growth.
Key Players
Market Segmentation
Chapter 1. Introduction
1.1. Research Objective
1.2. Scope of the Study
1.3. Definition
Chapter 2. Research Methodology
2.1. Research Approach
2.2. Data Sources
2.3. Assumptions & Limitations
Chapter 3. Executive Summary
3.1. Market Snapshot
Chapter 4. Market Variables and Scope
4.1. Introduction
4.2. Market Classification and Scope
4.3. Industry Value Chain Analysis
4.3.1. Raw Material Procurement Analysis
4.3.2. Sales and Distribution Channel Analysis
4.3.3. Downstream Buyer Analysis
Chapter 5. COVID 19 Impact on Bioremediation Market
5.1. COVID-19 Landscape: Bioremediation Industry Impact
5.2. COVID 19 - Impact Assessment for the Industry
5.3. COVID 19 Impact: Global Major Government Policy
5.4. Market Trends and Opportunities in the COVID-19 Landscape
Chapter 6. Market Dynamics Analysis and Trends
6.1. Market Dynamics
6.1.1. Market Drivers
6.1.2. Market Restraints
6.1.3. Market Opportunities
6.2. Porter’s Five Forces Analysis
6.2.1. Bargaining power of suppliers
6.2.2. Bargaining power of buyers
6.2.3. Threat of substitute
6.2.4. Threat of new entrants
6.2.5. Degree of competition
Chapter 7. Competitive Landscape
7.1.1. Company Market Share/Positioning Analysis
7.1.2. Key Strategies Adopted by Players
7.1.3. Vendor Landscape
7.1.3.1. List of Suppliers
7.1.3.2. List of Buyers
Chapter 8. Global Bioremediation Market, By Type
8.1. Bioremediation Market, by Type, 2022-2030
8.1.1 In Situ Bioremediation
8.1.1.1. Market Revenue and Forecast (2017-2030)
8.1.2. Ex Situ Bioremediation
8.1.2.1. Market Revenue and Forecast (2017-2030)
Chapter 9. Global Bioremediation Market, By Technology
9.1. Bioremediation Market, by Technology, 2022-2030
9.1.1. Bio stimulation
9.1.1.1. Market Revenue and Forecast (2017-2030)
9.1.2. Phytoremediation
9.1.2.1. Market Revenue and Forecast (2017-2030)
9.1.3. Bioreactors
9.1.3.1. Market Revenue and Forecast (2017-2030)
9.1.4. Fungal Remediation
9.1.4.1. Market Revenue and Forecast (2017-2030)
9.1.5. Bioaugmentation
9.1.5.1. Market Revenue and Forecast (2017-2030)
9.1.6. Land-based Treatment
9.1.6.1. Market Revenue and Forecast (2017-2030)
Chapter 10. Global Bioremediation Market, By Service
10.1. Bioremediation Market, by Service, 2022-2030
10.1.1. Soil Remediation
10.1.1.1. Market Revenue and Forecast (2017-2030)
10.1.2. Oilfield Remediation
10.1.2.1. Market Revenue and Forecast (2017-2030)
10.1.3. Wastewater Remediation
10.1.3.1. Market Revenue and Forecast (2017-2030)
10.1.4. Others
10.1.4.1. Market Revenue and Forecast (2017-2030)
Chapter 11. Global Bioremediation Market, Regional Estimates and Trend Forecast
11.1. North America
11.1.1. Market Revenue and Forecast, by Type (2017-2030)
11.1.2. Market Revenue and Forecast, by Technology (2017-2030)
11.1.3. Market Revenue and Forecast, by Service (2017-2030)
11.1.4. U.S.
11.1.4.1. Market Revenue and Forecast, by Type (2017-2030)
11.1.4.2. Market Revenue and Forecast, by Technology (2017-2030)
11.1.4.3. Market Revenue and Forecast, by Service (2017-2030)
11.1.5. Rest of North America
11.1.5.1. Market Revenue and Forecast, by Type (2017-2030)
11.1.5.2. Market Revenue and Forecast, by Technology (2017-2030)
11.1.5.3. Market Revenue and Forecast, by Service (2017-2030)
11.2. Europe
11.2.1. Market Revenue and Forecast, by Type (2017-2030)
11.2.2. Market Revenue and Forecast, by Technology (2017-2030)
11.2.3. Market Revenue and Forecast, by Service (2017-2030)
11.2.4. UK
11.2.4.1. Market Revenue and Forecast, by Type (2017-2030)
11.2.4.2. Market Revenue and Forecast, by Technology (2017-2030)
11.2.4.3. Market Revenue and Forecast, by Service (2017-2030)
11.2.5. Germany
11.2.5.1. Market Revenue and Forecast, by Type (2017-2030)
11.2.5.2. Market Revenue and Forecast, by Technology (2017-2030)
11.2.5.3. Market Revenue and Forecast, by Service (2017-2030)
11.2.6. France
11.2.6.1. Market Revenue and Forecast, by Type (2017-2030)
11.2.6.2. Market Revenue and Forecast, by Technology (2017-2030)
11.2.6.3. Market Revenue and Forecast, by Service (2017-2030)
11.2.7. Rest of Europe
11.2.7.1. Market Revenue and Forecast, by Type (2017-2030)
11.2.7.2. Market Revenue and Forecast, by Technology (2017-2030)
11.2.7.3. Market Revenue and Forecast, by Service (2017-2030)
11.3. APAC
11.3.1. Market Revenue and Forecast, by Type (2017-2030)
11.3.2. Market Revenue and Forecast, by Technology (2017-2030)
11.3.3. Market Revenue and Forecast, by Service (2017-2030)
11.3.4. India
11.3.4.1. Market Revenue and Forecast, by Type (2017-2030)
11.3.4.2. Market Revenue and Forecast, by Technology (2017-2030)
11.3.4.3. Market Revenue and Forecast, by Service (2017-2030)
11.3.5. China
11.3.5.1. Market Revenue and Forecast, by Type (2017-2030)
11.3.5.2. Market Revenue and Forecast, by Technology (2017-2030)
11.3.5.3. Market Revenue and Forecast, by Service (2017-2030)
11.3.6. Japan
11.3.6.1. Market Revenue and Forecast, by Type (2017-2030)
11.3.6.2. Market Revenue and Forecast, by Technology (2017-2030)
11.3.6.3. Market Revenue and Forecast, by Service (2017-2030)
11.3.7. Rest of APAC
11.3.7.1. Market Revenue and Forecast, by Type (2017-2030)
11.3.7.2. Market Revenue and Forecast, by Technology (2017-2030)
11.3.7.3. Market Revenue and Forecast, by Service (2017-2030)
11.4. MEA
11.4.1. Market Revenue and Forecast, by Type (2017-2030)
11.4.2. Market Revenue and Forecast, by Technology (2017-2030)
11.4.3. Market Revenue and Forecast, by Service (2017-2030)
11.4.4. GCC
11.4.4.1. Market Revenue and Forecast, by Type (2017-2030)
11.4.4.2. Market Revenue and Forecast, by Technology (2017-2030)
11.4.4.3. Market Revenue and Forecast, by Service (2017-2030)
11.4.5. North Africa
11.4.5.1. Market Revenue and Forecast, by Type (2017-2030)
11.4.5.2. Market Revenue and Forecast, by Technology (2017-2030)
11.4.5.3. Market Revenue and Forecast, by Service (2017-2030)
11.4.6. South Africa
11.4.6.1. Market Revenue and Forecast, by Type (2017-2030)
11.4.6.2. Market Revenue and Forecast, by Technology (2017-2030)
11.4.6.3. Market Revenue and Forecast, by Service (2017-2030)
11.4.7. Rest of MEA
11.4.7.1. Market Revenue and Forecast, by Type (2017-2030)
11.4.7.2. Market Revenue and Forecast, by Technology (2017-2030)
11.4.7.3. Market Revenue and Forecast, by Service (2017-2030)
11.5. Latin America
11.5.1. Market Revenue and Forecast, by Type (2017-2030)
11.5.2. Market Revenue and Forecast, by Technology (2017-2030)
11.5.3. Market Revenue and Forecast, by Service (2017-2030)
11.5.4. Brazil
11.5.4.1. Market Revenue and Forecast, by Type (2017-2030)
11.5.4.2. Market Revenue and Forecast, by Technology (2017-2030)
11.5.4.3. Market Revenue and Forecast, by Service (2017-2030)
11.5.5. Rest of LATAM
11.5.5.1. Market Revenue and Forecast, by Type (2017-2030)
11.5.5.2. Market Revenue and Forecast, by Technology (2017-2030)
11.5.5.3. Market Revenue and Forecast, by Service (2017-2030)
Chapter 12. Company Profiles
12.1. Newterra Ltd.
12.1.1. Company Overview
12.1.2. Product Offerings
12.1.3. Financial Performance
12.1.4. Recent Initiatives
12.2. Sumas Remediation Service, Inc.
12.2.1. Company Overview
12.2.2. Product Offerings
12.2.3. Financial Performance
12.2.4. Recent Initiatives
12.3. Probiosphere, Inc.
12.3.1. Company Overview
12.3.2. Product Offerings
12.3.3. Financial Performance
12.3.4. Recent Initiatives
12.4. Drylet, Inc.
12.4.1. Company Overview
12.4.2. Product Offerings
12.4.3. Financial Performance
12.4.4. Recent Initiatives
12.5. Xylem, Inc
12.5.1. Company Overview
12.5.2. Product Offerings
12.5.3. Financial Performance
12.5.4. Recent Initiatives
12.6. Regenesis Corp.
12.6.1. Company Overview
12.6.2. Product Offerings
12.6.3. Financial Performance
12.6.4. Recent Initiatives
12.7. Aquatech International Corp.
12.7.1. Company Overview
12.7.2. Product Offerings
12.7.3. Financial Performance
12.7.4. Recent Initiatives
12.8. Envirogen Technologies, Inc.
12.8.1. Company Overview
12.8.2. Product Offerings
12.8.3. Financial Performance
12.8.4. Recent Initiatives
12.9. MicroGen Biotech Ltd.
12.9.1. Company Overview
12.9.2. Product Offerings
12.9.3. Financial Performance
12.9.4. Recent Initiatives
12.10. Oil Spill Eater International, Inc.
12.10.1. Company Overview
12.10.2. Product Offerings
12.10.3. Financial Performance
12.10.4. Recent Initiatives
Chapter 13. Research Methodology
13.1. Primary Research
13.2. Secondary Research
13.3. Assumptions
Chapter 14. Appendix
14.1. About Us
14.2. Glossary of Terms