US GRE Pipes Market
ID: MRFR/CO/18837-US | 100 Pages | Author: MRFR Research Team| December 2023
The demand for Glass Reinforced Epoxy (GRE) pipes in the United States has experienced a notable surge in recent years, driven by several key factors. Firstly, the growing emphasis on infrastructure development and renovation projects across various sectors, including water supply, oil and gas, and industrial applications, has significantly boosted the demand for durable and reliable piping solutions. GRE pipes, known for their exceptional corrosion resistance, high strength-to-weight ratio, and long service life, have emerged as preferred alternatives to traditional materials like steel and concrete.
Moreover, the increasing awareness about the advantages offered by GRE pipes, such as lower installation and maintenance costs, as well as their eco-friendly nature due to being non-corrosive and recyclable, has further fueled their adoption in various industries. The versatility of GRE pipes, which can be easily customized to meet specific project requirements in terms of diameter, pressure rating, and stiffness, has also contributed to their growing popularity among engineers and contractors.
The North American market accounted for a considerable market share in 2020 owing to the presence of well-established end-use industries such as water treatment plants and oil & gas. Canada is likely to grow with a significant CAGR in the foreseen period owing to favorable infrastructure for oil transportation and availability of abundant water for shale gas extraction.
Another significant factor driving the demand for GRE pipes in the US market is the rising focus on environmental sustainability and regulatory compliance. With stricter environmental regulations governing industrial activities, there is a growing need for piping solutions that can withstand harsh operating conditions without causing pollution or degradation of natural resources. GRE pipes, being resistant to chemical corrosion and abrasion, offer a sustainable solution for conveying a wide range of fluids, including corrosive chemicals, wastewater, and hydrocarbons, with minimal environmental impact.
Furthermore, the advent of advanced manufacturing technologies and materials engineering techniques has led to continuous improvements in the quality and performance of GRE pipes, making them even more attractive for diverse applications. Manufacturers are investing in research and development to enhance the structural integrity, thermal stability, and fire resistance of GRE pipes, thereby expanding their potential applications in demanding environments such as offshore oil and gas platforms, desalination plants, and industrial processing facilities.
The growing investment in shale gas exploration and production activities in the United States has also created a significant demand for GRE pipes used in hydraulic fracturing (fracking) operations. These pipes, known as frac pipes, are designed to withstand high-pressure pumping of fluids and proppants into underground reservoirs, enabling the extraction of oil and gas from shale formations. The superior mechanical properties and chemical resistance of GRE frac pipes make them ideal for handling abrasive fluids and corrosive chemicals encountered during fracking operations.
Moreover, the ongoing shift towards renewable energy sources, such as wind and solar power, has spurred the demand for GRE pipes used in the construction of offshore wind farms and solar thermal power plants. GRE pipes are widely used for transporting cooling fluids, seawater, and other critical fluids in renewable energy infrastructure projects, where reliability and durability are paramount. Additionally, the increasing investments in water infrastructure projects, including desalination plants, wastewater treatment facilities, and water distribution networks, are driving the demand for GRE pipes as municipalities and utilities seek cost-effective and sustainable solutions for addressing water scarcity and quality issues.
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