글로벌 폐수 처리 시장 – 2023-2030

Global Produced Water Treatment Market - 2023-2030

상품코드ICT7011
발행기관DataM Intelligence
발행일2023.10.11
페이지 수205 Pages
포맷PDF + EXCEL
커버리지Global

6,525,00011,775,000

보고서 요약(국문)

개요
전 세계 생산수 처리 시장은 2022년 91억 달러 규모에 달했으며, 2023년부터 2030년까지 연평균 5.3%의 성장률을 기록하며 2030년에는 144억 달러에 이를 것으로 예상됩니다.
전 세계 석유 및 가스 생산량 증가는 생산수 발생량의 증가로 이어지고 있습니다. 에너지 산업이 확장됨에 따라 효율적인 생산수 처리 솔루션에 대한 수요가 증가하고 있습니다. 전 세계 정부와 환경 당국은 생산수의 환경 배출에 대한 규제를 강화하고 있으며, 기업들은 이러한 요구 사항을 충족하기 위해 첨단 처리 기술에 투자해야 합니다.
예를 들어, 2023년 9월 25일 쿠웨이트의 미샬 알 아흐마드 알 자베르 알 사바 왕세자의 중국 방문 기간 동안 쿠웨이트와 중국은 7건의 양해각서(MOU)를 체결했습니다. 이 MOU는 주로 주택 도시, 신재생 에너지, 수처리 및 무바라크 알 카비르 항만 개발을 포함한 주요 건설 프로젝트를 포괄합니다.

아시아 태평양 지역은 2022년 세계 시장의 4분의 1 미만을 차지하며 가장 높은 성장률을 보일 것으로 예상됩니다. 아시아 태평양 지역 정부는 천연자원 보호를 위해 엄격한 환경 규제를 시행하고 있으며, 여기에는 생산수 처리 및 폐기 관련 규정도 포함되어 있어 첨단 수처리 기술 도입을 촉진하고 있습니다.

시장 동향
정부의 적극적인 정책 추진으로 시장 수요 증가
정부 기관은 생산수 배출 및 처리에 관한 엄격한 규정을 제정하고 시행하는 경우가 많습니다. 이러한 규제가 강화됨에 따라 산업계는 첨단 처리 기술 및 공정에 투자해야 하며, 이는 생산수 처리 부문의 성장을 견인하고 있습니다. 정부는 산업계가 환경 친화적인 수처리 솔루션을 도입하도록 장려하기 위해 재정적 인센티브, 보조금 또는 지원금을 제공할 수 있습니다.
재무부 보도자료에 따르면, 버진 아일랜드 정부는 2023년 9월 토르톨라 섬의 버트 포인트와 케인 가든 베이에 위치한 폐수 처리장의 관리, 운영 및 유지보수를 위한 제안 요청서(RFP)를 발표했습니다. 제안된 사업 범위는 7년 기간을 포함하며, 이러한 서비스를 수행하는 데 필요한 모든 자원과 인력을 포함합니다.
폐수 처리 수요 증가
많은 산업 분야에서 수자원의 책임 있는 관리를 포함한 지속 가능한 관행을 점점 더 많이 채택하고 있습니다. 생산수 처리는 지속 가능성 목표와 부합하며 산업 공정의 환경 발자국을 줄입니다. 처리된 생산수를 재활용하고 재사용하면 담수원을 사용하는 것에 비해 산업체의 비용을 절감할 수 있으며, 이러한 경제적 유인이 생산수 처리 솔루션 도입을 촉진합니다.
2023년 9월 Advance Science News에 발표된 논문에 따르면, 이 기술은 전 세계 에너지 소비량의 최대 3%를 차지할 수 있는 폐수 및 해수 정화의 에너지 집약적인 특성을 해결합니다. 이 기술은 중국 저우산에 위치한 저장해양대학교 해양과학기술대학 해양양식국립공학연구센터의 연구원들에 의해 개발되었습니다.
산업화 증가
도시화와 인구 증가는 깨끗한 물에 대한 수요를 크게 증가시켰습니다. 생산수 처리는 확장하는 도시 지역의 물 수요를 충족하는 데 기여할 수 있습니다. 수처리 기술의 지속적인 발전으로 생산수 처리가 더욱 효과적이고 경제적으로 가능해졌으며, 이러한 개선은 더 많은 분야에서 처리 솔루션을 이용할 수 있도록 함으로써 시장을 확대했습니다.
2023년 4월에는 인도의 도시 인구 증가로 인해 도시화 및 산업화 서비스에 특히 중점을 둘 예정입니다. 핌프리 친치와드 시와 푸네 지식 클러스터는 세계 물의 날에 수처리 협력을 위한 양해각서를 체결했으며, 이 연구 기관은 물 공급, 수처리 및 천연 자원에 관한 정보와 아이디어를 제공할 것입니다.
복잡한 혼합물 처리 및 비용 효율성 요구
생산수의 구성은 수원과 생산 공정에 따라 크게 다릅니다. 염분, 중금속, 부유 입자, 탄화수소 및 기타 오염 물질이 모두 존재할 수 있습니다. 이러한 복잡한 혼합물을 처리하려면 맞춤형 솔루션이 필요합니다. 막 여과 및 열처리 공정과 같은 많은 생산수 처리 방법은 에너지 집약적일 수 있습니다.

생산수 처리 시설의 설계, 건설 및 운영 비용은 상당할 수 있습니다. 소규모 사업자나 재정적으로 제약이 있는 지역의 기업은 첨단 처리 기술을 도입하는 데 어려움을 겪을 수 있습니다. 일부 처리 공정은 적절한 관리가 필요한 2차 폐기물이나 배출물을 생성합니다. 예를 들어, 해수 담수화 공정은 고농도 염수를 생성하여 처리 문제를 야기할 수 있습니다.
세분화 분석
전 세계 생산수 처리 시장은 생산원, 처리 방식, 적용 분야, 최종 사용자 및 지역별로 세분화됩니다.
고품질 화학 처리가 시장 성장을 촉진
2022년에는 화학 처리가 전 세계 시장의 약 3분의 1을 차지하며 시장을 주도할 것으로 예상됩니다. 오일, 고형물, 용존 물질과 같은 오염 물질 수준을 포함한 생산수의 초기 수질은 화학 처리 방법 선택에 영향을 미칠 수 있습니다. 규제 당국이 설정한 환경 규정 및 배출 기준은 생산수 처리에서 화학 처리의 사용을 결정할 수 있습니다.

예를 들어, 2023년 9월 12일, ProSep은 노르웨이에 위치한 Aker BP의 Valhall 신규 중앙 처리 및 유정 플랫폼에서 생산수 처리 계약을 체결했습니다. ProSep은 생산수 흐름에 응축수를 주입하여 분산된 오일과 수용성 유기물을 모두 제거하는 CTour 기술을 적용할 예정입니다. ProSep의 기술은 화학 물질 사용량을 줄이고 깨끗한 물 생산량을 늘리는 것으로 알려져 있습니다.
지리적 시장 점유율
북미 지역의 엄격한 생산수 처리 규제
북미는 전 세계 생산수 처리 시장의 3분의 1 이상을 차지하는 지배적인 지역입니다. 북미는 생산수의 처리 및 폐기에 대한 엄격한 환경 규제를 시행하고 있습니다. 이 지역의 셰일가스 및 석유 산업의 급속한 성장으로 생산수의 양이 크게 증가했으며, 따라서 효과적인 처리 및 폐기 방법에 대한 수요가 증가하고 있습니다.

예를 들어, 2023년 9월 25일 서밋 카운티 의회는 카마스 시 경계 바로 외곽에 위치한 컨트리 헤이븐(이전 명칭: 인디언 할로우) 주택 단지에 정수 시설 건설을 승인했습니다. 1998년 230에이커 부지에 85개 필지를 조성하는 계획으로 처음 제안된 이 프로젝트는 수년에 걸쳐 수정과 지연을 겪었습니다. 최종적으로는 폐수 처리 시스템을 갖춘 65개 필지 규모로 승인되었습니다.
경쟁 환경
이 시장의 주요 글로벌 기업으로는 Veolia Environnement S.A., Aquatech International L.L.C, Evoqua Water Technologies LLC, Samco Technologies, Inc., Dryden Aqua, Calgon Carbon India Llp, Du Pont De Nemours and Company, Microvi Biotech, Inc., Huber SE 및 Entex Technologies Inc. 등이 있습니다.
COVID-19 영향 분석
많은 정수 시설과 산업 시설이 봉쇄 및 제한 조치로 인해 일시적으로 가동이 중단되거나 생산 능력이 저하되었으며, 이러한 차질은 팬데믹 기간 동안 생산된 폐수량에 영향을 미쳤습니다. 팬데믹 초기 단계에서 일부 시설은 운영의 다른 중요한 측면에 집중하기 위해 수처리 우선순위를 낮추었고, 이로 인해 수처리 인프라의 유지보수 및 업그레이드가 지연되었을 수 있습니다.
팬데믹으로 인한 경제적 불확실성으로 일부 기업은 비용 절감을 단행했고, 이는 수처리 기술 및 프로젝트 투자에 영향을 미쳤을 수 있습니다. 팬데믹은 원격 모니터링 및 제어 기술의 도입을 가속화했습니다. 운영자들은 현장 인력의 필요성을 줄이면서 수처리 공정을 관리하고 최적화하기 위해 원격 솔루션에 점점 더 의존하게 되었습니다.
규제 기관은 팬데믹 기간 동안 산업계가 직면한 운영상의 어려움을 고려하여 일부 환경 규제 요건을 조정했으며, 이러한 유연성은 생산수의 배출 및 처리에 영향을 미칠 수 있습니다. 팬데믹은 공중 보건을 보장하는 데 있어 수처리의 중요성을 강조했으며, 이러한 수질 안전 및 위생에 대한 강조는 수처리 기술 연구 및 혁신을 촉진했을 수 있습니다.
AI의 영향
AI는 센서, 수질 모니터링 및 기타 소스에서 수집된 대량의 데이터를 실시간으로 분석합니다. AI는 장비 오작동이나 수질 변화를 나타낼 수 있는 패턴, 이상 징후 및 추세를 감지하여 사전 예방적 유지보수 및 공정 최적화를 가능하게 합니다. AI 기반 예측 유지보수 모델은 처리 장비의 고장이나 유지보수 필요 시점을 예측하여 가동 중지 시간을 줄이고 장비 수명을 연장하며 운영 중단을 최소화하는 데 도움을 줍니다.
AI 알고리즘은 에너지 소비와 화학 물질 사용량을 최소화하면서 원하는 수질 목표를 달성하기 위해 운영 매개변수, 화학 물질 투입량 및 유량을 실시간으로 조정하여 처리 공정을 최적화할 수 있습니다. AI는 에너지 가격 및 가용성에 따라 운영 조건을 동적으로 조정하여 막 여과 및 증류와 같은 에너지 집약적인 처리 공정을 최적화함으로써 에너지 비용을 절감할 수 있습니다.
예를 들어, 2023년 5월 22일 Infinity Water Solutions와 Quantum Reservoir Impact는 SpeedWise Water라는 수질 정보 플랫폼을 개발 및 배포하기 위해 협력했습니다. 이 플랫폼은 AI와 머신러닝을 활용하여 에너지 부문에서 생산되는 폐수 및 처리된 폐수를 중심으로 물을 표준화, 분류 및 평가합니다. Infinity Water Solutions와 Quantum Reservoir Impact의 파트너십은 AI와 고급 분석을 활용하여 수자원 관리를 개선하고자 합니다.

러시아-우크라이나 전쟁의 영향
이 분쟁은 유럽 전역의 공급망과 물류를 교란시켜 수처리 시설에 필요한 장비, 화학물질, 예비 부품의 공급에 차질을 빚게 했으며, 이로 인해 유지보수 및 시설 개선이 지연될 수 있습니다. 전쟁은 유가와 가스 가격 변동을 초래하며 에너지 가격 변동성을 심화시켰습니다. 에너지 비용은 수처리 운영에 중요한 요소이며, 이러한 가격 변동은 수처리 시설의 전반적인 운영 비용에 영향을 미칠 수 있습니다.
분쟁과 관련된 지정학적 긴장과 경제 제재는 세계 시장의 불확실성을 야기했으며, 이러한 불확실성은 수처리 프로젝트 및 기술 관련 투자 결정에 영향을 미칠 수 있습니다. 지정학적 역학 관계의 변화는 환경 규제 및 기준의 변경으로 이어질 수 있으며, 이는 생산수의 방류 및 처리에 영향을 줄 수 있습니다. 수처리 시설은 변화하는 규제 요건에 맞춰 적응해야 할 수도 있습니다.

생산원별
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처리 방식별
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용도별
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주요 동향
• 2023년 9월, 알파다비 홀딩스는 수처리 및 폐수처리 업계의 글로벌 리더인 메티토 홀딩스의 지분 과반수를 인수하여 수처리 및 폐수처리 분야에 전략적으로 진출했습니다. 이번 인수는 유엔 지속가능성 목표에 발맞춰 MENA 지역 및 그 너머로 스마트 수처리 솔루션을 확장하려는 메티토의 사명과 일맥상통합니다.
• 2023년 2월, 엑손모빌은 아리스 워터 솔루션(Aris Water Solutions)이 셰브론(Chevron) 및 코노코필립스(ConocoPhillips)와 체결한 전략적 협약에 참여하여, 생산수를 비소비성 농업, 대체 에너지 생산 및 기타 산업 및 상업 분야에서 유용하게 재사용할 수 있도록 처리하는 기술과 공정을 개발 및 시범 운영하기로 했습니다.

• 2022년 10월, 마몬 산업용수(Marmon Industrial Water)는 산업 공정에 필요한 초순수 탈염수를 생산하도록 설계된 소형 수처리 용기 제품군인 컨테이너형 수처리 솔루션(Containerized WT Solutions)을 출시했습니다. 이 용기는 초여과(UF), 역삼투(RO) 및 전기이온화(EDI) 기술을 결합하여 사용합니다.

보고서 구매 이유:

• 생산원, 처리 방식, 적용 분야, 최종 사용자 및 지역별 글로벌 생산수 처리 시장 세분화를 시각화하고 주요 상업 자산 및 업체를 파악하기 위함입니다.

• 트렌드 및 공동 개발 분석을 통해 사업 기회를 식별하기 위함입니다.

• 모든 부문을 포함한 생산수 처리 시장 수준의 다양한 데이터가 담긴 엑셀 데이터 시트.

• 심층적인 질적 인터뷰와 연구를 바탕으로 한 종합적인 분석이 담긴 PDF 보고서.

• 주요 업체들의 핵심 제품을 모두 포함하는 제품 맵핑 엑셀 파일 제공.

글로벌 생산수 처리 시장 보고서는 약 69개의 표, 69개의 그림, 205페이지 분량입니다.
주요 독자층 (2023년 기준)
• 제조업체/구매자
• 산업 투자자/투자은행
• 시장 조사 전문가
• 신흥 기업

보고서 요약(영어 원문)

Overview
Global Produced Water Treatment Market reached US$ 9.1 billion in 2022 and is expected to reach US$ 14.4 billion by 2030, growing with a CAGR of 5.3% during the forecast period 2023-2030.
The rise in global oil and gas production leads to a corresponding increase in produced water volumes. As the energy industry expands, the demand for effectively produced water treatment solutions grows. Governments and environmental agencies worldwide are imposing stricter regulations on the discharge of produced water into the environment. Companies must invest in advanced treatment technologies to meet these requirements.
For instance, on 25 September 2023, during the visit of Kuwait's Crown Prince Sheikh Mishal Al-Ahmad Al-Jaber Al-Sabah to China, Kuwait and China signed seven Memoranda of Understanding (MoUs). The MoUs majorly cover significant construction projects, including housing cities, renewable energy, water treatment and the development of Mubarak Al-Kabeer Port.
Asia-Pacific is expected to grow the highest growth rate, making up less than 1/4th of the global market in 2022. Governments in Asia-Pacific implement strict environmental regulations to protect their natural resources and it includes regulations related to the treatment and disposal of produced water, driving the adoption of advanced water treatment technologies.
Dynamics
Rising Government Initiatives Increase the Market Demand
Government agencies often establish and enforce strict regulations related to produced water discharge and treatment. As these regulations become more stringent, industries are required to invest in advanced treatment technologies and processes, driving growth in the produced water treatment sector. Governments may offer financial incentives, grants or subsidies to encourage industries to adopt environmentally friendly water treatment solutions.
According to a press release by the Ministry of Finance, in September 2023, the Government of the Virgin Islands issued a request for proposals (RFP) for the management, operation and maintenance of the Waste Water Treatment Plant at Burt Point and Cane Garden Bay on Tortola. The proposed scope of work covers a seven-year period and includes all necessary resources and personnel to perform these services.
Rise in Demand for Wastewater Treatment
Many industries are increasingly adopting sustainable practices, including the responsible management of water resources. Treating produced water aligns with sustainability goals and reduces the environmental footprint of industrial processes. Recycling and reusing treated produced water can lead to cost savings for industries compared to using freshwater sources and this economic incentive drives the adoption of produced water treatment solutions.
According to the paper published in Advance Science News, in September 2023, the technology addresses the energy-intensive nature of wastewater and seawater purification, which can account for up to 3% of global energy consumption. subsequently was developed by researchers at the National Engineering Research Center for Marine Aquaculture, Marine Science and Technology College at Zhejiang Ocean University in Zhoushan, China.
Rise in Industrialization
Urbanization and growth in population have significantly increased the demand for clean water. Treating produced water can contribute to meeting the water needs of expanding urban areas. Treatment of produced water has become more effective and affordable because of ongoing developments in water treatment technology and these improvements have broadened the market by making treatment solutions more available to a wider number of sectors.
In April 2023, there is going to a particular emphasis on urbanization and industrialization services because of the rise in population in the cities across the region, according to news reports from India. In order to work together on water treatment, the Pimpri Chinchwad Municipal Corporation and Pune Knowledge Cluster signed a memorandum of understanding on World Water Day and this research organization will provide information and ideas regarding water supply, water treatment and natural resources.
Complex Mixture Required and Cost-Effective
The composition of produced water varies greatly depending on the source and the processes used to produce it. Salts, heavy metals, suspended particles, hydrocarbons and other pollutants can all be present. Treating such a complex mixture requires tailored solutions. Many produced water treatment methods, such as membrane filtration and thermal processes, can be energy-intensive.
The cost of designing, constructing and operating produced water treatment facilities can be substantial. Smaller operators or companies in financially constrained regions may face challenges in implementing advanced treatment technologies. Some treatment processes generate secondary waste products or emissions that need to be managed properly. For example, desalination processes can produce concentrated brine, posing disposal challenges.
Segment Analysis
The global produced water treatment market is segmented based on production source, treatment, application, end-user and region.
High-Quality Chemical Treatment Increases the Growth of the Market
In 2022, chemical treatment is expected to be the dominant segment in the global market covering around 1/3rd of the market. The initial quality of produced water, including the levels of contaminants such as oil, solids and dissolved substances, can impact the choice of chemical treatment methods. Environmental regulations and discharge standards set by regulatory authorities can dictate the use of chemical treatment in produced water treatment.
For instance, on 12 September 2023, ProSep secured a contract for producing water treatment on Aker BP's Valhall new central processing and wellhead platform in Norway. ProSep will deploy its CTour technology, which removes both dispersed oil and water-soluble organics through condensate injection into produced water streams. ProSep's technology is known for reducing chemical use and increasing the output of clean water.
Geographical Penetration
Stringent Regulations for Water Treatment in North America
North America is the dominant region in the global produced water treatment market covering more than 1/3rd of the market. North America has stringent environmental regulations governing the treatment and disposal of produced water. The volume of water produced has significantly increased as a result the region shale gas and oil industry's rapid expansion. Therefore, there is a rising need for effective means of treatment and disposal.
For instance, on 25 September 2023, The Summit County Council approved the construction of water treatment facilities for the Country Haven subdivision, formerly known as Indian Hollow, located just outside the Kamas city limits. The project, initially proposed in 1998 for 85 lots on 230 acres, has seen amendments and delays over the years. It was ultimately approved for 65 lots with a wastewater system.
Competitive Landscape
The major global players in the market include Veolia Environnement S.A., Aquatech International L.L.C, Evoqua Water Technologies LLC, Samco Technologies, Inc., Dryden Aqua, Calgon Carbon India Llp, Du Pont De Nemours and Company, MIcrovi Biotech, Inc., Huber SE and Entex Technologies Inc.
COVID-19 Impact Analysis
Many water treatment facilities and industrial operations were temporarily shut down or operated at reduced capacity due to lockdowns and restrictions and this disruption affected the volume of produced water generated during the pandemic. During the initial phases of the pandemic, some facilities shifted their priorities away from water treatment to focus on other critical aspects of their operations and this may have resulted in delayed maintenance and upgrades in water treatment infrastructure.
Economic uncertainties caused by the pandemic led some companies to cut costs, which might have impacted investments in water treatment technologies and projects. The pandemic accelerated the adoption of remote monitoring and control technologies. Operators increasingly relied on remote solutions to manage and optimize water treatment processes, reducing the need for on-site personnel.
Regulatory agencies adjusted some environmental compliance requirements during the pandemic to accommodate operational challenges faced by industries and this flexibility could have implications for the discharge and treatment of produced water. The pandemic underscored the importance of water treatment in ensuring public health and this emphasis on water safety and hygiene may have driven increased research and innovation in water treatment technologies.
AI Impact
AI analyze large volumes of data from sensors, water quality monitoring and other sources in real time. It can detect patterns, anomalies and trends that may indicate equipment malfunctions or changes in water quality, allowing for proactive maintenance and process optimization. AI-driven predictive maintenance models can forecast when treatment equipment is likely to fail or require maintenance and this helps in reducing downtime, extending equipment lifespan and minimizing operational disruptions.
AI algorithms can optimize treatment processes by adjusting operating parameters, chemical dosages and flow rates in real-time to achieve desired water quality goals while minimizing energy consumption and chemical usage. AI can optimize energy-intensive treatment processes, such as membrane filtration and distillation, by dynamically adjusting operating conditions based on energy prices and availability, resulting in energy cost savings.
For instance, on 22 May 2023, Infinity Water Solutions and Quantum Reservoir Impact joined forces to develop and deploy a water intelligence platform called SpeedWise Water and this platform utilizes AI and machine learning to standardize, categorize and appraise water, with a focus on produced and treated produced water from the energy sector. By leveraging AI and advanced analytics, the partnership between Infinity Water Solutions and Quantum Reservoir Impact seeks to improve water management.
Russia- Ukraine War Impact
The conflict has disrupted supply chains and logistics across Europe, affecting the availability of equipment, chemicals and spare parts needed for water treatment facilities and this disruption could lead to delays in maintenance and upgrades. The war has contributed to energy price volatility, with fluctuations in oil and gas prices. Energy costs are a significant factor in water treatment operations and these fluctuations can impact the overall operational costs of water treatment facilities.
The geopolitical tensions and economic sanctions associated with the conflict have created uncertainty in global markets and this uncertainty can affect investment decisions related to water treatment projects and technologies. Changes in geopolitical dynamics can lead to alterations in environmental regulations and standards, which could impact the discharge and treatment of produced water. Water treatment facilities may need to adapt to evolving regulatory requirements.
By Production Source
• Crude Oil
• Natural Gas
By Treatment
• Chemical Treatment
• Primary Treatment
• Secondary Treatment
• Reverse Osmosis
• Physical Treatment
• Others
By Application
• Offshore
• Onshore
By End-User
• Oil and Gas
• Industrial
• Power Generation
• Others
By Region
• North America
o U.S.
o Canada
o Mexico
• Europe
o Germany
o UK
o France
o Italy
o Russia
o Rest of Europe
• South America
o Brazil
o Argentina
o Rest of South America
• Asia-Pacific
o China
o India
o Japan
o Australia
o Rest of Asia-Pacific
• Middle East and Africa
Key Developments
• In September 2023, Alpha Dhabi Holding acquired a majority stake in Metito Holdings, a global leader in the water and wastewater treatment industry, marking its strategic entry into the water and wastewater treatment sector. The acquisition aligns with Metito's mission to expand smart water solutions across the MENA region and beyond, in line with UN sustainability goals.
• In February 2023, ExxonMobil joined Aris Water Solutions' strategic agreement with Chevron and ConocoPhillips to develop and pilot technologies and processes for treating produced water for potential beneficial reuse in non-consumptive agricultural, alternative power generation and other industrial and commercial applications.
• In October 2022, Marmon Industrial Water is introducing its Containerized WT Solutions, a line of compact water treatment containers designed to produce ultrapure demineralized water for industrial processes and these containers utilize a combination of ultrafiltration (UF), reverse osmosis (RO) and electrodeionization (EDI) technologies.
Why Purchase the Report?
• To visualize the global produced water treatment market segmentation based on production source, treatment, application, end-user and region, as well as understand key commercial assets and players.
• Identify commercial opportunities by analyzing trends and co-development.
• Excel data sheet with numerous data points of produced water treatment market-level with all segments.
• PDF report consists of a comprehensive analysis after exhaustive qualitative interviews and an in-depth study.
• Product mapping available as excel consisting of key products of all the major players.
The global produced water treatment market report would provide approximately 69 tables, 69 figures and 205 pages.
Target Audience 2023
• Manufacturers/ Buyers
• Industry Investors/Investment Bankers
• Research Professionals
• Emerging Companies

상세 목차

1. Methodology and Scope
1.1. Research Methodology
1.2. Research Objective and Scope of the Report
2. Definition and Overview
3. Executive Summary
3.1. Snippet by Production Source
3.2. Snippet by Treatment
3.3. Snippet by Application
3.4. Snippet by End-User
3.5. Snippet by Region
4. Dynamics
4.1. Impacting Factors
4.1.1. Drivers
4.1.1.1. Rising Government Initiatives Increase the Market Demand
4.1.1.2. Rise in Demand Produced Water Treatment in Wastewater Treatment
4.1.1.3. Rise in Industrialization
4.1.2. Restraints
4.1.2.1. Complex Mixture Required and Cost-Effective
4.1.3. Impact Analysis
5. Industry Analysis
5.1. Porter's Five Force Analysis
5.2. Supply Chain Analysis
5.3. Pricing Analysis
5.4. Regulatory Analysis
5.5. Russia-Ukraine War Impact Analysis
5.6. DMI Opinion
6. COVID-19 Analysis
6.1. Analysis of COVID-19
6.1.1. Scenario Before COVID
6.1.2. Scenario During COVID
6.1.3. Scenario Post COVID
6.2. Pricing Dynamics Amid COVID-19
6.3. Demand-Supply Spectrum
6.4. Government Initiatives Related to the Market During Pandemic
6.5. Manufacturers Strategic Initiatives
6.6. Conclusion
7. By Production Source
7.1. Introduction
7.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Production Source
7.1.2. Market Attractiveness Index, By Production Source
7.2. Crude Oil*
7.2.1. Introduction
7.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
7.3. Natural Gas
8. By Treatment
8.1. Introduction
8.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Treatment
8.1.2. Market Attractiveness Index, By Treatment
8.2. Chemical Treatment*
8.2.1. Introduction
8.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
8.3. Primary Treatment
8.4. Secondary Treatment
8.5. Reverse Osmosis
8.6. Physical Treatment
8.7. Others
9. By Application
9.1. Introduction
9.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
9.1.2. Market Attractiveness Index, By Application
9.2. Offshore*
9.2.1. Introduction
9.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
9.3. Onshore
10. By End-User
10.1. Introduction
10.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
10.1.2. Market Attractiveness Index, By End-User
10.2. Oil and Gas*
10.2.1. Introduction
10.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
10.3. Industrial
10.4. Power Generation
10.5. Others
11. By Region
11.1. Introduction
11.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Region
11.1.2. Market Attractiveness Index, By Region
11.2. North America
11.2.1. Introduction
11.2.2. Key Region-Specific Dynamics
11.2.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Production Source
11.2.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Treatment
11.2.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
11.2.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
11.2.7. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
11.2.7.1. U.S.
11.2.7.2. Canada
11.2.7.3. Mexico
11.3. Europe
11.3.1. Introduction
11.3.2. Key Region-Specific Dynamics
11.3.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Production Source
11.3.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Treatment
11.3.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
11.3.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
11.3.7. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
11.3.7.1. Germany
11.3.7.2. UK
11.3.7.3. France
11.3.7.4. Italy
11.3.7.5. Russia
11.3.7.6. Rest of Europe
11.4. South America
11.4.1. Introduction
11.4.2. Key Region-Specific Dynamics
11.4.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Production Source
11.4.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Treatment
11.4.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
11.4.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
11.4.7. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
11.4.7.1. Brazil
11.4.7.2. Argentina
11.4.7.3. Rest of South America
11.5. Asia-Pacific
11.5.1. Introduction
11.5.2. Key Region-Specific Dynamics
11.5.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Production Source
11.5.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Treatment
11.5.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
11.5.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
11.5.7. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
11.5.7.1. China
11.5.7.2. India
11.5.7.3. Japan
11.5.7.4. Australia
11.5.7.5. Rest of Asia-Pacific
11.6. Middle East and Africa
11.6.1. Introduction
11.6.2. Key Region-Specific Dynamics
11.6.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Production Source
11.6.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Treatment
11.6.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
11.6.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
12. Competitive Landscape
12.1. Competitive Scenario
12.2. Market Positioning/Share Analysis
12.3. Mergers and Acquisitions Analysis
13. Company Profiles
13.1. Veolia Environnement S.A.*
13.1.1. Company Overview
13.1.2. Product Portfolio and Description
13.1.3. Financial Overview
13.1.4. Key Developments
13.2. Aquatech International L.L.C
13.3. Evoqua Water Technologies LLC
13.4. Samco Technologies, Inc.
13.5. Dryden Aqua
13.6. Calgon Carbon India Llp
13.7. Du Pont De Nemours and Company
13.8. MIcrovi Biotech, Inc.
13.9. Huber SE
13.10. Entex Technologies Inc.
LIST NOT EXHAUSTIVE
14. Appendix
14.1. About Us and Services
14.2. Contact Us

언급된 주요 기업들

Veolia Environnement S.A., 4. Key Developments, Aquatech International L.L.C, Evoqua Water Technologies LLC, Samco Technologies, Inc., Dryden Aqua, Calgon Carbon India Llp, Du Pont De Nemours and Company, MIcrovi Biotech, Inc., Huber SE, Entex Technologies Inc.

표 목록 (Tables)

List of Tables Table 1 Global Produced Water Treatment Market Value, By Production Source, 2023, 2027 & 2031 (US$ Billion)

Table 2 Global Produced Water Treatment Market Value, By Treatment, 2023, 2027 & 2031 (US$ Billion)

Table 3 Global Produced Water Treatment Market Value, By Application, 2023, 2027 & 2031 (US$ Billion)

Table 4 Global Produced Water Treatment Market Value, By End-User, 2023, 2027 & 2031 (US$ Billion)

Table 5 Global Produced Water Treatment Market Value, By Region, 2023, 2027 & 2031 (US$ Billion)

Table 6 Global Produced Water Treatment Market Value, By Production Source, 2023, 2027 & 2031 (US$ Billion)

Table 7 Global Produced Water Treatment Market Value, By Production Source, 2021-2030 (US$ Billion)

Table 8 Global Produced Water Treatment Market Value, By Treatment, 2023, 2027 & 2031 (US$ Billion)

Table 9 Global Produced Water Treatment Market Value, By Treatment, 2021-2030 (US$ Billion)

Table 10 Global Produced Water Treatment Market Value, By Application, 2023, 2027 & 2031 (US$ Billion)

Table 11 Global Produced Water Treatment Market Value, By Application, 2021-2030 (US$ Billion)

Table 12 Global Produced Water Treatment Market Value, By End-User, 2023, 2027 & 2031 (US$ Billion)

Table 13 Global Produced Water Treatment Market Value, By End-User, 2021-2030 (US$ Billion)

Table 14 Global Produced Water Treatment Market Value, By Region, 2023, 2027 & 2031 (US$ Billion)

Table 15 Global Produced Water Treatment Market Value, By Region, 2021-2030 (US$ Billion)

Table 16 North America Produced Water Treatment Market Value, By Production Source, 2021-2030 (US$ Billion)

Table 17 North America Produced Water Treatment Market Value, By Treatment, 2021-2030 (US$ Billion)

Table 18 North America Produced Water Treatment Market Value, By Application, 2021-2030 (US$ Billion)

Table 19 North America Produced Water Treatment Market Value, By End-User, 2021-2030 (US$ Billion)

Table 20 North America Produced Water Treatment Market Value, By Country, 2021-2030 (US$ Billion)

Table 21 South America Produced Water Treatment Market Value, By Production Source, 2021-2030 (US$ Billion)

Table 22 South America Produced Water Treatment Market Value, By Treatment, 2021-2030 (US$ Billion)

Table 23 South America Produced Water Treatment Market Value, By Application, 2021-2030 (US$ Billion)

Table 24 South America Produced Water Treatment Market Value, By End-User, 2021-2030 (US$ Billion)

Table 25 South America Produced Water Treatment Market Value, By Country, 2021-2030 (US$ Billion)

Table 26 Europe Produced Water Treatment Market Value, By Production Source, 2021-2030 (US$ Billion)

Table 27 Europe Produced Water Treatment Market Value, By Treatment, 2021-2030 (US$ Billion)

Table 28 Europe Produced Water Treatment Market Value, By Application, 2021-2030 (US$ Billion)

Table 29 Europe Produced Water Treatment Market Value, By End-User, 2021-2030 (US$ Billion)

Table 30 Europe Produced Water Treatment Market Value, By Country, 2021-2030 (US$ Billion)

Table 31 Asia-Pacific Produced Water Treatment Market Value, By Production Source, 2021-2030 (US$ Billion)

Table 32 Asia-Pacific Produced Water Treatment Market Value, By Treatment, 2021-2030 (US$ Billion)

Table 33 Asia-Pacific Produced Water Treatment Market Value, By Application, 2021-2030 (US$ Billion)

Table 34 Asia-Pacific Produced Water Treatment Market Value, By End-User, 2021-2030 (US$ Billion)

Table 35 Asia-Pacific Produced Water Treatment Market Value, By Country, 2021-2030 (US$ Billion)

Table 36 Middle East & Africa Produced Water Treatment Market Value, By Production Source, 2021-2030 (US$ Billion)

Table 37 Middle East & Africa Produced Water Treatment Market Value, By Treatment, 2021-2030 (US$ Billion)

Table 38 Middle East & Africa Produced Water Treatment Market Value, By Application, 2021-2030 (US$ Billion)

Table 39 Middle East & Africa Produced Water Treatment Market Value, By End-User, 2021-2030 (US$ Billion)

Table 40 Veolia Environnement S.A.: Overview

Table 41 Veolia Environnement S.A.: Product Portfolio

Table 42 Veolia Environnement S.A.: Key Developments

Table 43 Aquatech International L.L.C: Overview

Table 44 Aquatech International L.L.C: Product Portfolio

Table 45 Aquatech International L.L.C: Key Developments

Table 46 Evoqua Water Technologies LLC: Overview

Table 47 Evoqua Water Technologies LLC: Product Portfolio

Table 48 Evoqua Water Technologies LLC: Key Developments

Table 49 Samco Technologies, Inc.: Overview

Table 50 Samco Technologies, Inc.: Product Portfolio

Table 51 Samco Technologies, Inc.: Key Developments

Table 52 Dryden Aqua: Overview

Table 53 Dryden Aqua: Product Portfolio

Table 54 Dryden Aqua: Key Developments

Table 55 Calgon Carbon India Llp: Overview

Table 56 Calgon Carbon India Llp: Product Portfolio

Table 57 Calgon Carbon India Llp: Key Developments

Table 58 Du Pont De Nemours and Company: Overview

Table 59 Du Pont De Nemours and Company: Product Portfolio

Table 60 Du Pont De Nemours and Company: Key Developments

Table 61 MIcrovi Biotech, Inc.: Overview

Table 62 MIcrovi Biotech, Inc.: Product Portfolio

Table 63 MIcrovi Biotech, Inc.: Key Developments

Table 64 Huber SE: Overview

Table 65 Huber SE: Product Portfolio

Table 66 Huber SE: Key Developments

Table 67 Entex Technologies Inc.: Overview

Table 68 Entex Technologies Inc.: Product Portfolio

Table 69 Entex Technologies Inc.: Key Developments

그림 목록 (Figures)

List of Figures Figure 1 Global Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 2 Global Produced Water Treatment Market Share, By Production Source, 2022 & 2030 (%)

Figure 3 Global Produced Water Treatment Market Share, By Treatment, 2022 & 2030 (%)

Figure 4 Global Produced Water Treatment Market Share, By Application, 2022 & 2030 (%)

Figure 5 Global Produced Water Treatment Market Share, By End-User, 2022 & 2030 (%)

Figure 6 Global Produced Water Treatment Market Share, By Region, 2022 & 2030 (%)

Figure 7 Global Produced Water Treatment Market Y-o-Y Growth, By Production Source, 2022-2030 (%)

Figure 8 Crude Oil Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 9 Natural Gas Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 10 Global Produced Water Treatment Market Y-o-Y Growth, By Treatment, 2022-2030 (%)

Figure 11 Chemical Treatment in Global Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 12 Primary Treatment in Global Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 13 Secondary Treatment in Global Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 14 Reverse Osmosis Treatment in Global Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 15 Physical Treatment in Global Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 16 Others Treatment in Global Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 17 Global Produced Water Treatment Market Y-o-Y Growth, By Application, 2022-2030 (%)

Figure 18 Offshore Application in Global Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 19 Onshore Application in Global Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 20 Global Produced Water Treatment Market Y-o-Y Growth, By End-User, 2022-2030 (%)

Figure 21 Oil and Gas End-User in Global Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 22 Industrial End-User in Global Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 23 Power Generation End-User in Global Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 24 Others End-User in Global Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 25 Global Produced Water Treatment Market Y-o-Y Growth, By Region, 2022-2030 (%)

Figure 26 North America Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 27 Asia-Pacific Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 28 Europe Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 29 South America Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 30 Middle East and Africa Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 31 North America Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 32 North America Produced Water Treatment Market Share, By Production Source, 2022 & 2030 (%)

Figure 33 North America Produced Water Treatment Market Share, By Treatment, 2022 & 2030 (%)

Figure 34 North America Produced Water Treatment Market Share, By Application, 2022 & 2030 (%)

Figure 35 North America Produced Water Treatment Market Share, By End-User, 2022 & 2030 (%)

Figure 36 North America Produced Water Treatment Market Share, By Country, 2022 & 2030 (%)

Figure 37 South America Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 38 South America Produced Water Treatment Market Share, By Production Source, 2022 & 2030 (%)

Figure 39 South America Produced Water Treatment Market Share, By Treatment, 2022 & 2030 (%)

Figure 40 South America Produced Water Treatment Market Share, By Application, 2022 & 2030 (%)

Figure 41 South America Produced Water Treatment Market Share, By End-User, 2022 & 2030 (%)

Figure 42 South America Produced Water Treatment Market Share, By Country, 2022 & 2030 (%)

Figure 43 Europe Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 44 Europe Produced Water Treatment Market Share, By Production Source, 2022 & 2030 (%)

Figure 45 Europe Produced Water Treatment Market Share, By Treatment, 2022 & 2030 (%)

Figure 46 Europe Produced Water Treatment Market Share, By Application, 2022 & 2030 (%)

Figure 47 Europe Produced Water Treatment Market Share, By End-User, 2022 & 2030 (%)

Figure 48 Europe Produced Water Treatment Market Share, By Country, 2022 & 2030 (%)

Figure 49 Asia-Pacific Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 50 Asia-Pacific Produced Water Treatment Market Share, By Production Source, 2022 & 2030 (%)

Figure 51 Asia-Pacific Produced Water Treatment Market Share, By Treatment, 2022 & 2030 (%)

Figure 52 Asia-Pacific Produced Water Treatment Market Share, By Application, 2022 & 2030 (%)

Figure 53 Asia-Pacific Produced Water Treatment Market Share, By End-User, 2022 & 2030 (%)

Figure 54 Asia-Pacific Produced Water Treatment Market Share, By Country, 2022 & 2030 (%)

Figure 55 Middle East & Africa Produced Water Treatment Market Value, 2021-2030 (US$ Billion)

Figure 56 Middle East & Africa Produced Water Treatment Market Share, By Production Source, 2022 & 2030 (%)

Figure 57 Middle East & Africa Produced Water Treatment Market Share, By Treatment, 2022 & 2030 (%)

Figure 58 Middle East & Africa Produced Water Treatment Market Share, By Application, 2022 & 2030 (%)

Figure 59 Middle East & Africa Produced Water Treatment Market Share, By End-User, 2022 & 2030 (%)

Figure 60 Veolia Environnement S.A.: Financials

Figure 61 Aquatech International L.L.C: Financials

Figure 62 Evoqua Water Technologies LLC: Financials

Figure 63 Samco Technologies, Inc.: Financials

Figure 64 Dryden Aqua: Financials

Figure 65 Calgon Carbon India Llp: Financials

Figure 66 Du Pont De Nemours and Company: Financials

Figure 67 MIcrovi Biotech, Inc.: Financials

Figure 68 Huber SE: Financials

Figure 69 Entex Technologies Inc.: Financials