Laboratory Water Quality Monitoring Equipment Market Size, Strategies, Competitive Landscape, Trends & Factor Analys

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Increasing prevalence of waterborne diseases, the surge in government obligations, and the rise in water pollution levels due to industrialization globally have led to the growth of the Laboratory Water Quality Monitoring Equipment market. However, high cost of the equipment coupled with i

According to the current analysis of Reports and Data, the global Laboratory Water Quality Monitoring Equipment market was USD 3.2 Billion in 2018 and is projected to register  a CAGR of 6.1% from 2019 to 2026. The major driving factors that drive the global Laboratory Water Quality Monitoring Equipment market are the increase in water pollution levels due to industrialization globally, increase in prevalence of waterborne diseases and the surge in government obligations regarding water quality.  The major restraining factor that restricts the growth of the Laboratory Water Quality Monitoring Equipment market is the high cost of the equipment.

The market is segmented based on Equipment type, Parameter tested and Application. By region, the market is segmented into North America, Europe, Asia-Pacific, and Rest of the World. North America and Europe were the largest revenue generating markets for the review period. Asia-Pacific region is projected to grow at the fastest rate during the forecast period.

The water conditions of the municipal corporations, industry, utility, and product sectors far exceed current supply. However, water exists in abundance; it's unreliable, and declining quality is a significant issue. Harnessing water suitable for the needs of different industries such as petrochemicals, oil and gas, mining, steel industry, power generation, municipal supply, and chemical and consumer goods requires an infrastructure that promises a steady supply, efficient equipment, and the reuse of resources. Water purity is critical for a number of industries such as pharmaceutical, semiconductor manufacturing, power generation, and food beverage, among others.

Rapid industrialization and urbanization have driven the increasing demand for water treatment. Increasing population and application of pure water for daily consumption, which is an essential factor for public health have raised the need for better agricultural productivity where the significant utilization of water is observed. The increasing demand for water has put pressure on the regulatory bodies and government of different countries to formulate regulations related to water quality monitoring. Devices and methodologies used in water quality monitoring can range from simple and inexpensive devices to capital-intensive and sophisticated equipment. Field measurements reduce the time between sampling and measuring, thereby allowing for real- or near-real-time analyses. Simple field measured variables include thermometers and thermistors, DO meters or optodes, portable pH and conductivity meters, and optical turbidity meters, among others. Factors such as streamflow, dissolved oxygen, and biochemical oxygen demand, temperature, pH, and turbidity are the foundation of almost any water quality monitoring program. With universal applications ranging from consumption to industrial processes, the worldwide total Laboratory Water Quality Monitoring Equipment market is expected to grow significantly during the forecast period.

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Key participants include Danaher Corporation (US), Evoqua Water Technologies (US), Suez S.A. (France), Horiba Ltd. (Japan), Shimadzu Corporation (Japan), Pentair Plc (UK), Thermo Fisher Scientific, Inc. (US), Xylem (US), ELTRA GmbH (Germany), Lar Process Analyzers AG (Germany), Analytical Technology Inc. (US), Real Tech, Inc. (Canada) and Aquaread Ltd. (UK).

Further key findings from the report suggest

  • Importance of sustainability and the need to mitigate climate changes, issues related to water, rapid urbanization coupled with growing population have gained significance in recent years.
  • Equipment to monitor parameters like TOC and TS are one of the fastest growing segments in the Laboratory Water Quality Monitoring Equipment market with CAGR of 6.1% and 6.35 respectively.
  • The European region is forecasted to grow at a rate of 5.8% CAGR over the forecasted period.
  • Laboratory Water Quality Monitoring Equipment in the Asia Pacific region is expected to witness significant growth in the coming years, due to an increase in water pollution in various countries like India and China.
  • Laboratory-based analysers segment is forecasted to dominate the Laboratory Water Quality Monitoring Equipment market over the forecasted period with a market share of over 45% in 2019.
  • Average high –income nations treat about 70% of the wastewater that they generate, while the remaining 38% of wastewater is only managed in upper-middle income countries and 28% in lower-middle income countries.
  • There is a rise in the consumer`s awareness regarding the depletion of natural resources, scarcity of freshwater in developed nations as well as the increase in the demand for freshwater in various industries. All these factors are leading to the growth of the market.
  • Leading players in the market are focused on investing and improving their RD capabilities in order to offer the latest technologies to gain competitive advantage.

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For the purpose of this report, Reports and Data has segmented the the Global Laboratory Water Quality Monitoring Equipment market on the basis of equipment type, parameter tested, application, and region.

Equipment Type (Revenue, USD Million; 2016–2026)

  • On-Line
  • Laboratory
  • Portable

Parameter Tested (Revenue, USD Million; 2016–2026)

  • DO
  • BOD COD
  • TOC
  • TON
  • TSA
  • Others

Applications (Revenue, USD Million; 2016–2026)

  • Municipal
  • Industrial Process Water
  • Others

Key Regions Assessed in the Report Include:

  • North America (U.S., Canada)
  • Europe (U.K., Italy, Germany, France, Rest of EU)
  • Asia Pacific (India, Japan, China, South Korea, Australia, Rest of APAC)
  • Latin America (Chile, Brazil, Argentina, Rest of Latin America)
  • Middle East Africa (Saudi Arabia, U.A.E., South Africa, Rest of MEA)

The Laboratory Water Quality Monitoring Equipment report is formulated through extensive primary and secondary research and further validated through industry experts and professionals. The data has been accrued through authentic sources, including interviews, documents, databases, and other sources to offer accurate insights into the industry to offer beneficial data to the readers and companies.

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Moreover, the report offers an accurate forecast estimation through a thorough analysis of the historical data (2017-2018) while considering 2019 as the base year. The data offers a panoramic view of the market, assisting the readers to gain valuable insights into the Laboratory Water Quality Monitoring Equipment market. To impart better understanding of the market, the key statistical data is organized into pictorial representations such as charts, graphs, tables, diagrams, and figures.

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