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市場調查報告書
商品編碼
1627796
全球行動水處理市場:預測(2025-2030)Global Mobile Water Treatment Market - Forecasts from 2025 to 2030 |
行動水處理市場預計將從2025年的24.1億美元成長到2030年的42.78億美元,複合年成長率為12.16%。
移動水處理系統用於在供水服務暫時中斷期間定期供應安全飲用水。移動處理解決方案可以從任何天然水源生產純淨水,包括海水、地表水、海水、池塘和河流。全球水污染事件呈上升趨勢,這是全球移動水處理市場的主要推手。此外,淡水資源的減少和乾旱地區的水資源短缺正在對全球市場的擴張產生重大影響。然而,移動水處理解決方案的製造和實施成本可能會阻礙市場發展。
移動水處理市場促進因素
全球水庫和污水及水處理廠的快速擴張是推動行動水處理市場成長的主要因素之一。水資源短缺是許多國家面臨的嚴重問題,對清潔水的需求不斷增加。淡水資源正迅速枯竭。美國糧食及農業組織預測,到2025年,將有19億人居住在完全缺水的地區。此外,到 2025 年,全球大約三分之二的人口可能面臨水資源短缺。世界數據實驗室估計,有 23.6 億人生活在清潔水供應有限的地區。
包括沙烏地阿拉伯和埃及在內的大多數中東和非洲國家都屬於極度缺水和缺水的地區。這些地區人均佔有水量低於500立方米,人均佔有水量低於1000立方公尺的地區稱為缺水地區。因此,回用處理過的水是這些地區的最大選擇。在這種情況下,移動水處理是解決水資源短缺問題的快速、經濟且可靠的方法,是一個不錯的選擇。由於拖車上安裝了移動水處理系統,您可以在任何地點獲得乾淨的飲用水。
此外,隨著污水處理領域的強勁投資,對行動水處理技術的需求可能會大幅增加。溫尼伯污水處理廠於2021年7月建成,美國政府投資2.128億美元。隨著進一步的建設計劃,預計成長前景良好。
移動水處理市場的地域展望
按地區分類,移動水處理市場分為北美、南美、歐洲、中東和非洲以及亞太地區。中國、日本、印度、韓國等主要經濟體在亞太地區佔據主導地位。一些成長最快的新興經濟體位於該地區,例如東南亞國協。
由於快速的都市化、工業化和全球淡水資源的減少,對清潔水的需求增加,預計亞太地區將呈現顯著的成長率。此外,由於人口成長和人們對飲用受污染水的健康風險的認知不斷提高,預計未來幾年對移動水處理解決方案的需求將大幅成長,尤其是在中國和印度等新興經濟體。
北美移動水處理市場分為美國、加拿大和墨西哥。據估計,持續不斷的清潔飲用水危機是推動該地區移動水處理市場成長的關鍵因素。隨著科羅拉多河水位暴跌,墨西哥、亞利桑那州和內華達州等美國州預計將受到最嚴重的影響,其中馬蘇州預計將失去大部分供水。
預計農業部門將在移動水處理市場中佔據主要佔有率。
依最終用戶分類,移動水處理市場分為市政、建築、化學、農業等。農業活動和灌溉設施是提高作物產量的相互交織的活動。水是農業生產的關鍵投入,對糧食安全也很重要。灌溉農業的單位面積平均生產力是雨養農業的兩倍以上,使得集約生產和作物多樣化成為可能。需要更好的灌溉設施來提高生產力並提高養活不斷成長的人口的能力。移動水處理廠可以透過從任何天然或受污染的水源生產純淨水來減少水的浪費,並可以灌溉作物。
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The mobile water treatment market is predicted to grow at a CAGR of 12.16% from US$2.410 billion in 2025 to US$4.278 billion by 2030.
Mobile water treatment systems are used when water delivery services are temporarily disrupted to provide a regular supply of safe drinking water. From any natural water source, including saltwater, surface water, seawater, ponds, and rivers, mobile treatment solutions can create purified water. Water contamination incidents are on the rise all over the world, which is the main driver of the worldwide mobile water treatment market. Additionally, the shrinkage of freshwater resources and the lack of water in arid regions have a significant impact on the expansion of the global market. However, the development of the market could be hampered by the manufacturing and implementation costs of mobile water treatment solutions.
Mobile water treatment market drivers
The rapid expansion of reservoirs and wastewater and water treatment plants worldwide is one of the main factors fueling the growth of the global mobile water treatment market. Water scarcity has become a severe problem in many countries which increases the demand for clean water. Freshwater resources are being depleted quickly. By 2025, the U.S. Food and Agriculture Organisation projects that 1.9 billion people will reside in regions with a complete water shortage. Additionally, by 2025, about two-thirds of the world's population may be experiencing water stress. The World Data Lab estimates that 2.36 billion people live in locations with limited access to clean water.
The majority of the Middle Eastern and African nations, including Saudi Arabia and Egypt, are among the locations with extreme water shortages and water stress. In these areas, the average amount of water per person is less than 500 m3, and the area where the average amount of water per person is less than 1000 m3 is known as a water-scarce area. Reusing treated water is therefore the greatest option in these areas. As a quick, affordable, and dependable solution to the water crisis problem, mobile water treatment may be a good option in this situation. Any location can receive clean drinking water thanks to a mobile water treatment system that is mounted on a trailer.
Further, there has been a lot of investment in the wastewater treatment sector, there will likely be a significant increase in demand for mobile water treatment technology. The Winnipeg Sewer Treatment plant was built with a US$212.8 million investment from the Canadian government in July 2021. It is anticipated that further construction projects offer promising growth prospects.
Mobile water treatment market geographical outlook
By geography, the mobile water treatment market is segmented into North America, South America, Europe, the Middle East and Africa, and Asia Pacific. The major economies like China, Japan, India, and South Korea dominate the Asia-Pacific region. Some of the fastest-growing emerging economies are from this region such as ASEAN countries.
The Asia Pacific region is estimated to have a notable growth rate, attributed to the rising demand for clean water due to rapid urbanization and industrialization and diminishing freshwater resources around the globe. Additionally, with an increasing population and growing awareness regarding the health hazards of consuming contaminated water, especially in developing economies like China and India, the demand for mobile water treatment solutions is expected to grow significantly in the upcoming years.
The North American mobile water treatment market is segmented into USA, Canada, and Mexico. The ongoing and rising clean drinking water crisis is estimated to be the major factor propelling the region's mobile water treatment market growth. Due to the plunging water levels in the Colorado River, Mexico and American states such as Arizona and Nevada are estimated to be some of the worst affected regions, with Arizona expected to lose significant of its supply.
The agricultural sector is projected to hold a significant share of the mobile water treatment market.
By end-users, the mobile water treatment market is divided into the municipality, construction, chemical, agriculture, and others. Agricultural activities and irrigation facilities are intertwined activities for increasing crop yield. Water is a critical input for agricultural production and is important to food security. Irrigated agriculture is, on average, at least twice as productive per unit of land as rain-fed agriculture, thereby allowing for more production intensification and crop diversification. Increasing productivity and the ability to feed the growing population calls for better irrigation facilities. The mobile water treatment facilities can produce purified water from any natural and contaminated water sources, which can irrigate the crop field, thereby reducing water wastage.
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