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SCRUBBER SYSTEM MARKET SIZE AND SHARE ANALYSIS - GROWTH TRENDS AND FORECASTS (2023 - 2030)

Scrubber System Market, By Type (Wet Scrubber System, and Dry Scrubber System), By Industry Vertical (Marine, Oil & Gas, Petrochemicals & Chemicals, Power Generation, Food & Beverages and Others), By Geography (North America, Latin America, Europe, Asia Pacific, Middle East & Africa)

  • Published In : Mar 2024
  • Code : CMI6494
  • Pages :130
  • Formats :
      Excel and PDF
  • Industry : Energy

Scrubber System Market Size and Trends

The Scrubber System Market size was valued at US$ 5.45 Bn in 2023 and is expected to reach US$ 8.15 Bn by 2030, growing at a compound annual growth rate(CAGR) of 5.9% from 2023 to 2030.

Scrubber System Market Trends:

  • Integration of IoT and Digitalization: Integration of automation, IoT sensors, connectivity and data analytics is an emerging technology trend in the scrubber system market. IoT platforms allow real-time monitoring of scrubber operations and performance parameters onboard ships from onshore locations. They generate data to optimize efficiency, minimize downtime through predictive maintenance and ensure sustainable compliance. Remote monitoring also provides fleet-wide scrubber diagnostics. Digital twin modeling helps analyze system functioning. Such technologies are making scrubbers smarter.
  • Hybrid and Multi-pollutant Scrubber Systems: Hybrid wet-dry scrubbers that combine advantages of both technologies are gaining popularity. They overcome limitations of single mode scrubbers. Multi-pollutant scrubbers with enhanced PM removal capabilities in addition to SOx are also emerging. These trends are driven by increasingly stringent emission limits. Hybrid systems also allow flexibility to operate in open or closed loop modes. Multi-pollutant scrubbers integrate additions like filters and precipitators. These technology trends provide more efficient solutions.
  • Advancements in Membrane-based Scrubbers: Membrane-based scrubbers utilize permeable membranes that selectively allow SO2 to permeate. They overcome drawbacks of conventional scrubbers like high water usage. Recent advancements like incorporating crystallized salt membranes to prevent acid damage and using porous polymers like PTFE have enhanced reliability. Compact membrane module designs also reduce footprint. Low maintenance and capability to produce usable sulfuric acid make this emerging technology suitable for Emission Control Areas.
  • Focus on Waste Management: Management of wash water discharge from open loop scrubbers faces environmental concerns. Trends include installing wash water treatment systems for closed loop operations. Hybrid scrubbers allow switching between open and closed loop. Scrubber monitoring systems track pH, polycyclic aromatics and turbidity to ensure regulatory compliance. These trends mitigate environmental issues. Recovering sulfur by-products is also being explored for commercial applications. Such waste management focus addresses sustainability.

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