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The USD/GHS exchange rate was unchanged at 10.5000 on August 1, 2025. Over the past month, the Ghanaian Cedi has weakened 1.45%, but it's up by 32.48% over the last 12 months. Ghanaian Cedi - values, historical data, forecasts and news - updated on August of 2025.
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Prices for GHSUSD Ghanaian Cedi US Dollar including live quotes, historical charts and news. GHSUSD Ghanaian Cedi US Dollar was last updated by Trading Economics this August 2 of 2025.
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Key information about Ghana Exchange Rate against USD
In 2023, one U.S. dollar was forecast to be exchanged for 11.2 Ghanaian cedis (GHS), on average. In the previous year, the rate was estimated at 8.4 GHS, up from 5.6 GHS in 2020. By the steadily increasing exchange rate, a person with 100 U.S. dollars was expected to receive approximately 1,120 GHS in 2023.
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Prices for EURGHS Euro Ghanaian Cedi including live quotes, historical charts and news. EURGHS Euro Ghanaian Cedi was last updated by Trading Economics this August 1 of 2025.
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Prices for GBPGHS British Pound Sterling Ghanaian Cedi including live quotes, historical charts and news. GBPGHS British Pound Sterling Ghanaian Cedi was last updated by Trading Economics this August 2 of 2025.
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This data contains exchange rate forecasting the Ghana cedi (GHS) against the British pound (GBP) and United States dollar (USD)
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Foreign Exchange Rate: BCB: Offer: against New Ghanaian Cedi data was reported at 0.711 BRL/GHS in Jun 2019. This records a decrease from the previous number of 0.744 BRL/GHS for May 2019. Foreign Exchange Rate: BCB: Offer: against New Ghanaian Cedi data is updated monthly, averaging 0.904 BRL/GHS from Jul 2010 (Median) to Jun 2019, with 108 observations. The data reached an all-time high of 1.225 BRL/GHS in Aug 2010 and a record low of 0.597 BRL/GHS in Aug 2014. Foreign Exchange Rate: BCB: Offer: against New Ghanaian Cedi data remains active status in CEIC and is reported by Central Bank of Brazil. The data is categorized under Brazil Premium Database’s Interest and Foreign Exchange Rates – Table BR.MG002: Foreign Exchange Rate: Central Bank of Brazil.
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The Continuous Electrodeionization (CEDI) Water Filtration Systems market is experiencing significant growth, driven by the increasing demand for high-purity water in various industries, including pharmaceuticals, power generation, and electronics manufacturing. CEDI technology effectively removes inorganic ions fro
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The Continuous Electrodeionization Systems (CEDI) market is rapidly evolving, driven by the increasing demand for high-purity water across various industries such as pharmaceuticals, power generation, and food and beverage. CEDI technology serves as an efficient ion removal process that enhances water treatment syst
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Prices for CADGHS Canadian Dollar Ghanaian Cedi including live quotes, historical charts and news. CADGHS Canadian Dollar Ghanaian Cedi was last updated by Trading Economics this August 2 of 2025.
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India Foreign Exchange Rate: RBI: Ghana Cedi data was reported at 15.278 INR/GHC in Oct 2018. This records an increase from the previous number of 15.169 INR/GHC for Sep 2018. India Foreign Exchange Rate: RBI: Ghana Cedi data is updated monthly, averaging 3.025 INR/GHC from May 1966 (Median) to Oct 2018, with 630 observations. The data reached an all-time high of 43.657 INR/GHC in Aug 2007 and a record low of 0.004 INR/GHC in Jun 2007. India Foreign Exchange Rate: RBI: Ghana Cedi data remains active status in CEIC and is reported by Reserve Bank of India. The data is categorized under Global Database’s India – Table IN.MC003: Foreign Exchange Rate: Monthly Average.
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The global Continuous Electrodeionization (CEDI) Systems market is experiencing robust growth, driven by increasing demand for high-purity water in various industries. While the exact market size for 2025 isn't provided, considering a typical CAGR (Compound Annual Growth Rate) for advanced water purification technologies ranges from 7-10%, and assuming a base year market size within a reasonable range (e.g., $500 million in 2019), a conservative estimate for the 2025 market size could be around $700 million. This growth trajectory is fueled by several factors. The pharmaceutical and electronics sectors are significant drivers, demanding ultrapure water for manufacturing processes. Stringent regulatory standards regarding water purity in these industries further accelerate market adoption. Additionally, the rising awareness of water scarcity and the growing need for efficient water treatment solutions in various sectors, including food and beverage and power generation, are significant contributors to the market expansion. The market is segmented based on membrane type (homogeneous and heterogeneous) and application (electronics, pharmaceuticals, power generation, food, medical, and others). The competitive landscape is characterized by both established players like Evoqua, Veolia, and DuPont, and emerging regional companies, indicating a dynamic market with opportunities for both large corporations and specialized providers. The projected CAGR, assuming a continued strong growth trajectory, could remain within the 7-10% range for the forecast period (2025-2033). This implies considerable market expansion over the next decade. However, certain restraints exist, including high initial investment costs associated with CEDI system implementation and the need for skilled personnel for operation and maintenance. Technological advancements, focusing on improving energy efficiency and reducing operational costs, are crucial for mitigating these restraints and ensuring continued market growth. Furthermore, the increasing adoption of sustainable water management practices across various industries is likely to positively influence the CEDI market in the long term. Regional variations in market growth will depend on factors such as economic development, regulatory frameworks, and industrial activity levels. Developed regions such as North America and Europe are likely to maintain significant market shares, while emerging economies in Asia-Pacific are expected to exhibit faster growth rates. This report provides a detailed analysis of the global Continuous Electrodeionization Systems (CEDI) market, projecting a market value exceeding $2.5 billion by 2030. It delves into market concentration, key trends, dominant segments, and influential players, offering valuable insights for stakeholders across the water purification and industrial processing sectors.
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In 2023, the global deionized water system market size is estimated to be approximately USD 1.2 billion and is projected to grow to USD 1.8 billion by 2032, exhibiting a CAGR of 5.5% over the forecast period. This growth is primarily driven by increasing demand for ultra-pure water in various industrial applications, such as pharmaceuticals, power generation, and electronics manufacturing, which require high-purity water to ensure product quality and process efficiency.
The deionized water system market is experiencing robust growth due to several factors. Industrialization and technological advancements have significantly increased the demand for high-purity water in various sectors. In the pharmaceutical industry, the demand for deionized water is driven by stringent regulations and the need for contamination-free manufacturing environments. Similarly, the power sector relies on deionized water for boiler feedwater to prevent scaling and corrosion, thus enhancing the efficiency and lifespan of power generation equipment, further propelling market growth.
Environmental regulations and sustainability initiatives are also key drivers for the expansion of the deionized water system market. As industries become more aware of their environmental footprint, there is a growing preference for deionization systems that minimize wastewater and reduce the use of chemicals in water treatment. Continuous innovations in deionization technology, such as the development of energy-efficient and low-maintenance systems, are also contributing to market growth by providing cost-effective solutions to end-users.
The rapid growth of the electronics industry, particularly in the Asia-Pacific region, is another significant factor fueling the demand for deionized water systems. High-purity water is essential in semiconductor manufacturing processes to prevent defects and ensure the reliability of electronic components. Additionally, the food and beverage industry is increasingly adopting deionized water systems to meet stringent hygiene standards and improve product quality, thus further driving market expansion.
From a regional perspective, North America and Europe have traditionally been strong markets for deionized water systems, thanks to their advanced industrial base and stringent water quality regulations. However, the Asia-Pacific region is expected to witness the highest growth rate during the forecast period, driven by rapid industrialization, increasing investments in infrastructure, and a growing focus on high-quality manufacturing processes. Latin America and the Middle East & Africa are also emerging as potential markets, supported by economic development and increasing industrial activities in these regions.
In the deionized water system market, product types are categorized into three main segments: Two-Bed Deionization, Mixed-Bed Deionization, and Continuous Electrodeionization. Each of these systems has unique characteristics and applications, catering to different needs across various industries. Two-Bed Deionization systems, which use separate cation and anion exchange resins, are widely used for general water purification processes. They are cost-effective and relatively easy to maintain, making them a popular choice for smaller-scale operations and industries with moderate water purity requirements.
Mixed-Bed Deionization systems, on the other hand, combine cation and anion exchange resins in a single unit, offering higher purity levels compared to Two-Bed systems. These systems are particularly suitable for applications requiring ultrapure water, such as in laboratories and high-precision manufacturing processes. The ability of Mixed-Bed systems to produce water with very low conductivity makes them essential in industries where even trace levels of impurities can have significant impacts on product quality.
Continuous Electrodeionization (CEDI) represents the latest advancement in deionization technology. CEDI systems use electricity to continuously regenerate the ion exchange resins, eliminating the need for chemical regeneration and reducing operational costs. This technology is highly efficient and environmentally friendly, making it an attractive option for industries with high water purity standards and sustainability goals. The growing adoption of CEDI systems is driven by their ability to provide consistent water quality, lower operating costs, and reduced environmental impact.
Each of these product types has it
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Electrodeionization Market valued at USD 760 million in 2024, projected to reach USD 1.3 billion by 2034, growing at a 5.5% CAGR.
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Prices for GHSXAF Ghanaian Cedi Central African CFA Franc including live quotes, historical charts and news. GHSXAF Ghanaian Cedi Central African CFA Franc was last updated by Trading Economics this August 1 of 2025.
In 2021, the inflation rate in Ghana amounted to about 9.98 percent compared to the previous year. Ghana’s inflation peaked at almost 17.5 percent in 2016 and is predicted to decrease to 8 percent by 2030. Steady is best for inflationAccording to economists, a steady inflation rate between two and three percent is desirable to achieve a stable economy in a country. Inflation is the increase in the price level of consumer goods and services over a certain time period. A high inflation rate is often caused by excessive money supply and can turn into hyperinflation, i.e. if inflation occurs too quickly and rapidly, it can devalue currency and cause a recession and even economic collapse. This scenario is currently taking place in Venezuela , for example. The opposite of inflation, the decrease in the price level of goods and services below zero percent, is called deflation. While hyperinflation devalues money, deflation usually increases its value. Both events can damage an economy severely. Is Ghana’s economy at risk?Ghana’s economy is considered quite stable and fast-growing, and is rich in oil, diamonds, and gold. After struggling in the years around 2015 due to increased government spending and plummeting oil prices, it is now on an upswing again. This is also reflected in the decreasing inflation rate, and other key indicators like unemployment and rapid GDP growth support this theory. However, Ghana’s government debt is still struggling with the consequences of the 2015 crisis and forecast to keep skyrocketing during the next few years.
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The global Industrial EDI (Electrodeionization) Ultrapure Water System market size is positioned for significant growth, with market figures projected to rise from USD 1.2 billion in 2023 to an impressive USD 2.4 billion by 2032, reflecting a compound annual growth rate (CAGR) of approximately 7.9%. This projected growth is driven by the increasing demand for ultrapure water in various high-tech industrial applications. The ultrapure water systems are imperative for maintaining the integrity and efficiency of processes in semiconductor manufacturing, pharmaceutical production, and power generation sectors, among others. The need for stringent water quality standards in these industries is a significant growth propeller, as ultrapure water is fundamental in preventing contamination and ensuring the optimal performance of high-precision equipment.
One of the key growth factors for the Industrial EDI Ultrapure Water System market is the expanding semiconductor industry. The semiconductor manufacturing process requires water that is entirely free from impurities, with ultralow levels of dissolved ions, organic compounds, and particulate matter. As the demand for semiconductors increases, driven by growing technological advancements in consumer electronics, automotive, and the Internet of Things (IoT), the need for ultrapure water systems is also escalating. Additionally, the semiconductor industry’s move towards more complex chip designs and smaller node sizes further compounds the demand for ultrapure water, as the smaller geometries are more susceptible to contamination, thereby necessitating higher purity levels in water used during the production process.
Moreover, the pharmaceutical industry is another major contributor to the growth of the Industrial EDI Ultrapure Water System market. The stringent regulatory requirements for water purity in pharmaceutical manufacturing processes are critical to ensuring the safety and efficacy of pharmaceutical products. Regulatory bodies like the FDA and EMA mandate the use of ultrapure water in the preparation of pharmaceutical formulas, cleaning of manufacturing equipment, and as a key ingredient in many drug formulations. The increasing production of biologics and advancements in biopharmaceuticals, which require higher purity standards, further underpin the demand for sophisticated EDI ultrapure water systems that can consistently meet these stringent standards.
The power generation sector also plays a crucial role in the growth trajectory of the Industrial EDI Ultrapure Water System market. High-purity water is essential for steam generation in power plants to prevent scaling and corrosion in boilers and turbines, which can otherwise lead to efficiency losses and equipment failures. As the global demand for energy continues to rise and more power plants are either being upgraded or built, the need for reliable ultrapure water systems is expected to grow. The shift towards renewable energy sources, particularly solar and wind, which also require ultrapure water for cleaning and maintenance, contributes to this increasing demand.
Regionally, the Asia Pacific is a significant contributor to the market's growth, fueled by rapid industrialization and the burgeoning semiconductor and pharmaceutical industries in countries like China, Japan, and South Korea. This region alone accounted for over 35% of the market share in 2023 and is anticipated to continue its dominance with the highest CAGR during the forecast period. North America also represents a substantial market, driven by technological advancements and stringent environmental regulations that mandate the use of ultrapure water in various industrial processes. Europe follows closely, with a focus on sustainable industrial practices and a well-established pharmaceutical industry.
The Industrial EDI Ultrapure Water System market, when examined through the lens of product type, can be segmented into Continuous Electrodeionization and Batch Electrodeionization systems. Continuous Electrodeionization (CEDI) systems are particularly favored in applications requiring a constant supply of ultrapure water, such as in semiconductor fabrication or pharmaceutical manufacturing. The CEDI systems are known for their efficiency in removing ions without the need for chemical regenerants, making them a more environmentally friendly option. This advantage plays well into the growing trend of sustainable practices across industries worldwide, thereby driving the adoption of continuous systems. Additionally, the technological advancements in CEDI syste
As of 2023, one U.S. dollar was forecast to be exchanged for 638.7 Nigerian nairas (NGN) on average. In the preceding year, the rate was estimated at 389.9 NGN, while in 2022, it was reported at 423.9 NGN. By the steadily increasing exchange rate since 2017, on average a person with 100 U.S. dollars was expected to receive approximately 42,390 NGN in 2022.
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After two years of growth, the Ghanian copper market decreased by -11.1% to $X in 2022. Overall, consumption saw a noticeable decline. Copper consumption peaked at $X in 2017; however, from 2018 to 2022, consumption failed to regain momentum.
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The USD/GHS exchange rate was unchanged at 10.5000 on August 1, 2025. Over the past month, the Ghanaian Cedi has weakened 1.45%, but it's up by 32.48% over the last 12 months. Ghanaian Cedi - values, historical data, forecasts and news - updated on August of 2025.