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2030 年生物修復市场预测:按类型、服务、技术和地区分類的全球分析Bioremediation Market Forecasts to 2030 - Global Analysis By Type (In Situ Bioremediation, Ex Situ Bioremediation & Other Types), Service (Soil Remediation, Wastewater Remediation, Oilfield Remediation & Other Services), Technology & By Geography |
根据 Stratistics MRC 的数据,2023 年全球生物修復市场将达到 153 亿美元,预计在预测期内年复合成长率为 11.3%,到 2030 年达到 325 亿美元。
生物修復是一种永续且环保的技术,可利用微生物、植物和真菌等活生物体去除、中和和减少土壤、水和空气中的污染物和有害物质。生物修復的应用领域包括工业场地、溢油清理、农业领域和污水处理。因此,这种方法不仅可以最大限度地减少环境危害,而且可以促进生态系统的恢復和恢復。
据世界银行称,到2050年,全球整体产生的废弃物预计将增加到34亿吨,高所得国家的人均每日废弃物产生量预计到2050年将增加19%。
生物修復技术的使用必须遵守政府和环境机构为控制和减少污染而製定的严格规定。提供生物修復解决方案的公司受益于这些法规创造的有利市场条件。此外,生物修復正在成为解决各种环境问题的越来越受欢迎的选择,因为它提供了一种永续且对环境有益的方式来清理受污染的场地,使其成为市场上越来越受欢迎的选择。我们正在支持成长。
微生物降解污染物的生物修復过程通常需要很长时间。此外,这可能会产生问题,特别是在执行必须快速或大规模完成的清理计划时。儘管与传统净化技术相比,生物修復成本低廉,但它仍然可能被视为昂贵,尤其是对于大规模操作。因此,生物修復方法的财务永续性可能会受到监测、维持理想条件和确保长期效率的成本的影响。
分子生物学、基因工程和生物技术的现代发展正在帮助开发更精确、更有效的生物修復技术。这些发展增加了可以使用生物修復方法纯化的毒素数量。此外,生物修復提供者、环境咨询公司和学术机构之间的合作促进了整合解决方案的创建、知识共用和研究突破。因此,这些合作伙伴关係促进创新并帮助扩大生物修復产业。
与生物修復业务相关的责任和潜在风险,例如污染物的无意扩散或基因改造生物的排放,可能会产生法律和法规问题。与传统净化技术相比,生物修復程序可能没有既定的标准或立法。因此,生物修復技术的普及可能会因缺乏明确的规则而受到阻碍。
由于 COVID-19 的爆发,生物修復市场有所下降。封锁和财务困难限制了环境措施的资金并阻碍了法规程序,从而影响了生物修復服务市场。此外,许多现场作业被推迟,导致清理工程延误。供应链中断延迟了关键工具和物资的采购。此外,由于一次性塑胶和医疗废弃物的使用增加,疫情加剧了环境问题。因此,COVID-19的直接影响给产业内的专案执行和资源配置带来了挑战。
植物修復领域估计占最大份额。植物修復是一种环保净化方法,利用植物减少和去除土壤、水和空气中的污染物。此外,都市区和棕地重建最受益于植物修復,因为它为清理污染场地提供了实用且有吸引力的补救措施。因此,生物修復是减少环境污染、恢復受损生态系统、推动市场成长的长期解决方案。
由于快速工业化导致土壤中有害有毒污染物增加,缺乏适当的方法将危险废弃物释放到未经处理的土壤中,预计土壤修復领域在预测期内将出现最高的年复合成长率。此外,透过各种原位生物修復工艺,溶剂、油漆、油、染料、有机废弃物场和其他合成化合物都变得无害。此外,生物修復策略预计将推动市场收益成长,因为它们是在土壤调查和法规合规考虑之后製定的。
由于近年来提供生物修復服务的营运商数量大幅增加,北美在预测期内占据了最大的市场占有率。此外,由于政府为多个生物修復领域的研发(R&D)活动提供融资的频率不断增加,该地区的市场可能会出现收益成长。例如,CLIMB(透过现代生物技术改善气候)中心在三个主要领域提供资金:生物监测、生物修復和碳捕获。预计这将增加生物修復的需求并推动该领域的市场扩张。
这是因为CRISPR-Cas等基因组编辑技术的引入有助于产生可用于生物修復的新微生物,从而导致基因组学、代谢组学和蛋白质组学等跨学科领域的快速扩展。此外,欧盟资助的 ELECTRA 计画将提供两项新的尖端电微生物技术,旨在加速去除受污染土壤、沉积物和河流中的污染物。因此,它利用了生物技术的最新进展,预计将推动该行业的长期收益成长。
According to Stratistics MRC, the Global Bioremediation Market is accounted for $ 15.3 billion in 2023 and is expected to reach $ 32.5 billion by 2030 growing at a CAGR of 11.3% during the forecast period. Bioremediation is a sustainable and environmentally friendly technique that employs living organisms, such as microorganisms, plants, or fungi, to remove, neutralize, or mitigate pollutants and contaminants from soil, water, and air. To break down or transform dangerous compounds into less toxic or non-toxic forms, it uses the inherent biological processes of these organisms, application areas for bioremediation include industrial sites, oil spill cleanup, agricultural areas, and wastewater treatment. Therefore, this method encourages the repair and revival of ecosystems in addition to helping to minimize environmental harm.
According to the World Bank, waste generated globally is expected to increase to 3.40 billion tones by 2050 and daily per capita generation of waste in high income countries is expected to increase by 19% by 2050 and almost 33% of the waste is managed either by burning or dumping.
The use of bioremediation techniques is influenced by the strict rules that are established by governments and environmental agencies to manage and alleviate pollution. Companies that provide bioremediation solutions benefit from the advantageous market conditions these restrictions generate. Moreover, bioremediation is an increasingly common choice for resolving a variety of environmental concerns since it provides a sustainable and environmentally beneficial method for cleaning up contaminated locations which therefore boost the growth of the market.
The degradation of pollutants by microorganisms typically takes a long time throughout the bioremediation process. Additionally, this may present a problem, particularly when working on cleanup initiatives that must be completed quickly or on a large scale. Despite being more affordable than conventional remediation techniques, bioremediation might still be seen as pricey, especially for large-scale operations. Therefore, the financial sustainability of bioremediation methods might be impacted by the cost of monitoring, maintaining ideal conditions, and guaranteeing long-term efficiency.
Modern developments in molecular biology, genetic engineering, and biotechnology have helped create more precise and effective bioremediation techniques. These developments have increased the number of toxins that can be cleaned up using bioremediation methods. Furthermore, the creation of integrated solutions, knowledge sharing, and research breakthroughs have all been facilitated by partnerships between bioremediation businesses, environmental consultancy businesses, and academic institutions. Therefore, these partnerships develop innovation and aid in the expansion of the bioremediation industry.
Legal and regulatory issues may arise due to the liability and potential risks associated with bioremediation operations, such as the unintentional spread of contaminants or the discharge of genetically modified organisms. Bioremediation procedures, in contrast to conventional remediation techniques, may lack established standards and laws. Thus, the widespread adoption of bioremediation techniques may be hampered by the lack of defined rules.
The bioremediation market declined as a result of the COVID-19 outbreak. Lockdowns and financial difficulties had an impact on the market for bioremediation services since they limited funding for environmental initiatives and hampered regulatory procedures. Moreover, cleanup projects were delayed as a result of numerous fieldwork activities being postponed. The availability of critical tools and supplies was delayed by supply chain disruptions. Furthermore, the pandemic added to environmental difficulties due to the increased use of single-use plastics and medical waste. Hence, the immediate impact of COVID-19 produced challenges in project execution and resource allocation within the industry.
The phytoremediation segment is estimated to hold the largest share. It is a method for environmentally friendly cleanup that uses plants to reduce and eliminate pollutants from soil, water, and the air. Moreover, urban areas and brownfield redevelopment benefit most from phytoremediation since it provides a practical and attractive remedy for cleaning up polluted places, it is a developing area of bioremediation that is in line with the increased emphasis on environmentally friendly and sustainable solutions for reducing environmental pollution and reviving polluted ecosystems. These are thus the long-term solutions for reducing environmental pollution and repairing damaged ecosystems, thereby promoting market growth.
The soil remediation segment is anticipated to have highest CAGR during the forecast period due to the rapid industrialization and lack of appropriate methods to release hazardous waste into the soil untreated, which has resulted in a rise in harmful toxic pollutants in the soil. Moreover, solvents, paints, oils, dyes, organic waste sites, and other synthetic compounds have all been detoxified using various in-situ bioremediation processes. Additionally, the strategy for bioremediation is created after studying the soil and taking legal compliance into account, which is anticipated to propel revenue growth of the market.
North America commanded the largest market share during the extrapolated period owing to the number of businesses providing bioremediation services has significantly increased in the recent past. Furthermore, the market in this area is likely to experience revenue growth due to an increase in the frequency of government financing for research and development (R&D) activities across several bioremediation field segments. For instance, as part of the scheme, the Climate Improvements by means of Modern Biotechnology (CLIMB) Center would offer funds for financing in three major areas: biomonitoring, bioremediation, and carbon capture. Therefore, this is anticipated to increase the demand for bioremediation and fuel market expansion in the area.
Europe is expected to witness profitable growth over the projection period, owing to the introduction of genome editing techniques like CRISPR-Cas has aided in the production of new microorganisms that can be utilized for bioremediation, leading to a rapid expansion in interdisciplinary fields like genomics, metabolomics, and proteomics. Furthermore, the EU-funded ELECTRA project will deliver two novel sets of cutting-edge electromicrobiological technologies designed to speed up the removal of contaminants from contaminated soil, sediment, and rivers. Thus, it makes use of recent advances in biotechnology, and long-term revenue growth for the industry is anticipated to be driven by this.
Some of the key players in the Bioremediation Market include: Altogen Labs, Aquatech International Corp., Drylet, Inc., Envirogen Technologies, Inc., InSitu Remediation Services Limited, Ivey International, Inc., MicroGen Biotech Ltd., Newterra Ltd., Oil Spill Eater International, Inc., Probiosphere, Inc., Sarva Bio Remed, LLC, Sumas Remediation Service, Inc. and Xylem, Inc.
In August 2023, Altogen Labs, a preclinical CRO laboratory, has announced the validation of a comprehensive array of 10 lung cancer xenograft models.
In October 2022, Newterra Inc. acquired H2O Engineering Inc. The acquisition can help Newterra to expand its reach into other segments such as controlled environment agriculture, light industrial, remediation, and beverage sectors while enhancing its service delivery, engineering design, and manufacturing base on the West Coast.
In November 2020, In-Situ is introduced RDO Blue, the latest innovation in Optical Rugged Dissolved Oxygen technology, specifically designed to meet the DO-monitoring needs of the aquaculture industry.
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