Water Treatment Chemicals Market (2026 - 2035)

수처리 화학물질 시장 조사 보고서 정보 제품 유형별(응고제 및 응집제, 살생물제 및 소독 화학물질, 부식 억제제, 스케일 억제제, pH 조절제 및 기타(소포제, 킬레이트제, 산소 제거제)), 최종 사용자 산업별(도시 용수 및 폐수, 발전, 반도체 및 전자, 광업 및 금속, 석유 및 가스, 식품 및 음료, 및 기타(펄프/제지, 제약, 섬유)), 용도별(냉각수 처리, 폐수 처리, 초순수/고순도수, 보일러 수처리, 담수화 및 기타(공정수, 음용수)), 처리 단계별(1차 처리, 2차 처리, 3차 처리 및 슬러지 처리 및 컨디셔닝) – 2035년까지 예측
ID: MRFR/CnM/1311-HCR
135 Pages
Chitranshi Jaiswal
Last Updated: August 24, 2026
Water Treatment Chemicals Market
Market Size
Forecast Period2026-2035
CAGR (2026-2035)5.02%
2025 Market SizeUSD 44.72 Billion
2035 Market SizeUSD 74.18 Billion
Key Players
Ecolab Inc.
Veolia Water Technologies
Solenis
SUEZ Water Technologies
Kemira Oyj
BASF SE
Opportunities
  • Smart Dosing and Digital Twin Integration
  • PFAS Remediation Chemical Development
  • Emerging Market Infrastructure Buildout

Water Treatment Chemicals Market 요약

시장 세그먼트 통찰력

유형별: 부식 억제제(최대) 대 응고제 및 응집제(가장 빠르게 성장)

수처리 화학 시장은 다양한 유형이 특징입니다.부식 억제제인프라 성능 저하로부터 보호하는 데 필수적인 역할로 인해 가장 큰 시장 점유율을 보유하고 있습니다. 한편, 응고제와 응집제는 다양한 산업 분야에서 효과적인 정수 기술에 대한 수요가 증가함에 따라 가장 빠르게 성장하는 부문으로 부상했습니다. 스케일 억제제와 살생물제 및 소독제 역시 이 시장에서 중요한 역할을 하며 각각 스케일 형성을 방지하고 미생물 오염을 제어하는 ​​데 중점을 두어 전체 시장 역학에 크게 기여합니다.

부식 억제제(주요) 대 살생물제 및 소독제(신흥)

부식 억제제다양한 산업에서 시스템 무결성을 유지하는 데 중요한 파이프와 장비에 대한 물의 부식 효과에 대한 보호 장치 역할을 하는 많은 수처리 공정의 중추입니다. 이와 대조적으로 살생물제 및 소독제는 공중 보건 표준 및 규제 요건이 강화됨에 따라 그 중요성이 점점 더 커지고 있습니다. 이러한 화학 물질은 특히 주거용 및 산업용 응용 분야의 수처리 시스템에서 유해한 미생물을 제어하는 ​​데 필수적입니다. 규제 환경이 더욱 엄격한 위생 및 안전 조치로 전환함에 따라 살생물제 및 소독제는 견인력을 얻어 진화하는 시장에서 핵심 초점 영역으로 자리매김할 것으로 예상됩니다.

응용 분야별: 시립 정수장(최대) 대 화학 처리(가장 빠르게 성장)

수처리 화학물질 시장에서는 응용 분야가 다양한 점유율을 보이며, 시립 수처리 공장이 시장을 지배하고 있습니다. 이 부문은 안전한 식수에 대한 수요 증가와 품질 처리 프로세스를 요구하는 환경 규제로 인해 전반적인 시장 활동에 크게 기여합니다. 화학 처리 부문은 산업계가 생산 효율성을 최적화하고 진화하는 규제 표준을 충족하기 위해 효율적인 화학 처리를 추구함에 따라 점점 더 주목을 받고 있으며 빠르게 중요한 영역으로 자리잡고 있습니다.

시립 정수장(주요)과 화학 처리(신흥)

시립 수처리 플랜트 부문은 수처리 화학 제품 시장의 초석으로 남아 있습니다. 이 부문은 공중 보건 및 환경 보호에 초점을 맞춘 정부 투자와 엄격한 규제의 혜택을 받습니다. 이와 대조적으로 화학 처리 부문이 중요한 역할을 담당하고 있습니다. 화학 처리의 혁신을 통해 오염 물질 제거 및 공정 효율성이 향상되어 산업 폐기물 및 자원 관리와 같은 문제를 효과적으로 해결할 수 있습니다. 지속 가능성이 우선순위가 되면서 화학 처리 분야는 환경 친화적인 화학 물질과 지속 가능한 관행에 대한 필요성에 힘입어 급속한 성장을 이룰 준비가 되어 있습니다.

Water Treatment Chemicals Market에 대한 더 자세한 통찰력 얻기

Water Treatment Chemicals Market 시장의 주요 기업은 다음과 같습니다

향후 전망

Water Treatment Chemicals Market 향후 전망

보고서 범위

FAQs

How do outcome-based pricing models affect procurement strategies for water treatment buyers?
Outcome-based models shift risk from the buyer to the chemical supplier, tying payment to treated-water quality metrics rather than chemical volumes consumed. Buyers gain predictable opex while suppliers assume performance accountability, though contracts require robust monitoring infrastructure [14].
Which treatment chemistry is best positioned to address emerging PFAS regulations?
Granular activated carbon paired with single-use ion-exchange resins currently delivers the highest PFAS removal rates at the municipal scale. Membrane-based approaches using specialty nanofiltration chemicals offer promise for industrial point-source applications [10].
How does feedstock backward integration influence competitive positioning in this industry?
Vertically integrated producers like BASF control raw material costs during acrylamide and QAC price spikes, maintaining 300–500 basis point margin advantages over non-integrated formulators. This integration also ensures supply continuity during disruption events [11].
What role do digital twins play in optimizing chemical consumption at treatment plants?
Digital twins virtually simulate real-time plant hydraulics, dynamic flow fluctuations, and complex chemical interactions. This allows utility operators to test and refine automated dosing scenarios virtually before executing them in the field. Early industrial adopters consistently achieve measurable chemical volume savings alongside improved, highly reliable effluent compliance consistency.  
How are biodegradable flocculants changing the competitive dynamics of the Water Treatment Chemicals Market?
Starch-, cellulose-, and chitosan-based biopolymers are closing the performance gap with synthetic polyacrylamides in targeted, low-turbidity clarification applications. Stringent regional environmental incentives, particularly across Scandinavia, paired with expanding environmental, social, and governance (ESG) corporate procurement criteria, are rapidly accelerating commercial adoption of these sustainable alternatives.  
What procurement risks should buyers consider when sourcing membrane treatment chemicals?
Heavy supply concentration among a select few global chemical manufacturers represents a primary vulnerability for specialized antiscalant and biocide production lines. To mitigate single-source logistics disruptions or unexpected regional factory shutdowns, procurement teams should actively qualify secondary regional suppliers and maintain robust safety stock buffers.          
저자
Author
Author Profile
Chitranshi Jaiswal LinkedIn Team Lead - Research
Chitranshi is a Team Leader in the Chemicals & Materials (CnM) and Energy & Power (EnP) domains, with 6+ years of experience in market research. She leads and mentors teams to deliver cross-domain projects that equip clients with actionable insights and growth strategies. She is skilled in market estimation, forecasting, competitive benchmarking, and both primary & secondary research, enabling her to turn complex data into decision-ready insights. An engineer and MBA professional, she combines technical expertise with strategic acumen to solve dynamic market challenges. Chitranshi has successfully managed projects that support market entry, investment planning, and competitive positioning, while building strong client relationships. Certified in Advanced Excel & Power BI she leverages data-driven approaches to ensure accuracy, clarity, and impactful outcomes.

Research Approach

Research Methodology on Water Treatment Chemicals Market

1. Introduction

The purpose of this research report is to examine the global water treatment chemicals market focusing on the size, growth, segmentation, and trends related to products and services offered. This report studies the current and future scenarios of the global water treatment chemicals market. It provides a detailed overview of major drivers, restraints, opportunities, and challenges that shape the market and their impact on the forecast period 2023 to 2030.

2. Research Scope and Objectives

The scope of this research project is to investigate the market size and growth potential of the global water treatment chemicals market and identify the segments, global regions, and countries that are part of this market. The research objectives are outlined below:

  • Establish global market size and growth rate of the global water treatment chemicals market
  • Analyze the segments of the global water treatment chemicals market
  • Identify regional markets that contribute the most to the growth of the global water treatment chemicals market

3. Research Methodology

3.1 Primary Resources

The primary sources used to collect data and information for this report include manufacturers, distributors, retailers, and suppliers of water treatment chemicals, as well as industry associations, investment banks, and market research firms. Substantial time and effort have been dedicated to ensuring that only reliable and accurate data and information are used in this report.

3.2 Market Research Process

The market research process is conducted in four stages: literature review, primary research & data collection, data analysis & modelling, and finally market forecasting & trends.

4. Literature Review

The literature review phase involves researching widely available sources and gleaning industry insights from published research reports, press releases, and expert interviews. Sources such as the World Bank, International Monetary Fund, World Trade Organization, International Labour Organization, Association of Water Quality of America, European Water Association, The Chlorine Institute and other relevant international organizations were consulted to gain insights into trends, patterns and challenges that face the global water treatment chemicals market.

5. Primary Research & Data Collection

In this phase, the primary data sources are used to get information about key market and industry trends related to the global water treatment chemicals market and are done by conducting market surveys, interviews with industry experts, and primary research with the key stakeholders in the industry. The data collected is then compiled, evaluated and verified by the research team.

6. Data Analysis & Modelling

The collected data is then analyzed and modelled using advanced statistical and analytical tools such as PESTLE, SWOT, regression analysis and market simulation. These analyses provide insights into market dynamics such as drivers and restraints.

7. Market Forecasting & Trends

Finally, the historical data and the evaluated market data are used to compute the current and future market growth forecasts. The trends and forecasts derived from this analysis will be crucial for decision-making and industry planning.

8. Conclusion

The research project follows a data-driven approach and uses industry-standard methods for the in-depth analysis of the global water treatment chemicals market. The research methodology used provides a holistic view of the current and future status of the global water treatment chemicals market.

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