市场调查报告书
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1603842
到 2030 年玻璃级硅砂市场预测:按原料、牌号、铁含量、应用、最终用户和地区进行的全球分析Glass Grade Silica Sand Market Forecasts to 2030 - Global Analysis By Source (Natural Sand and Man-Made Sand), Grade, Fe Content, Application, End User and By Geography |
根据Stratistics MRC的数据,2024年全球玻璃级硅砂市场规模为61.6636亿美元,预计到2030年将达到87.4711亿美元,预测期内复合年增长率为6.0%。
具有特定粒度和化学成分的高纯硅砂被称为“玻璃级硅砂”,主要用于生产平板玻璃、玻璃容器和特殊玻璃製品。汽车和建筑行业的扩张、太阳能和电子应用中玻璃使用的增加以及对耐用、高品质玻璃产品的需求是推动其需求的主要因素。由于玻璃工业和基础设施建设的技术发展,玻璃对硅砂的需求也在增加。
根据国际能源总署预测,到 2026 年,全球石油消费量预计将达到 1.041 亿桶/日。这将比目前的水平每天增加 440 万桶。此外,国际能源总署(IEA)预测,2023年全球石油需求将增加190万桶/日,达到101.7万桶/日的历史新高。
建筑和汽车行业的需求增加
建筑业对玻璃产品(包括建筑玻璃和玻璃建筑幕墙)的需求不断增长,这是市场扩张的主要动力。汽车业使用玻璃製作天窗、侧窗和挡风玻璃,进一步增加了对优质硅砂的需求。由于全球基础设施发展和都市化进程的持续加速,玻璃产品的需求预计将增加,从而带动玻璃级硅砂市场。
运输成本高
硅砂在世界各地的供应并不总是一致,因此在拥有优质矿床的地区往往需要远距运输才能满足製造地的需求。这些运输成本会显着增加产品的总成本,特别是对于远离提取地点的生产商而言。此外,硅砂通常是散装运输,这增加了物流成本。对于供应商和玻璃製造商来说,高运输成本会降低价格竞争力和利润灵活性,特别是在当地资源有限的地区。
玻璃製造技术的进步
玻璃产业的技术开拓对玻璃级硅砂市场产生了重大影响,因为它们增加了对更高品质硅砂的需求。自动化精密玻璃製造、节能玻璃以及薄、强、轻玻璃生产等创新需要具有高纯度和均匀粒径等特性的硅砂。此外,越来越多地使用太阳能发电面板和智慧玻璃用于电子产品,需要满足严格要求的硅砂。随着公司寻求尖端材料以永续性,这些技术进步刺激了对特种硅砂的需求,并推动市场扩张。
最终用途产业的需求波动
最终用途产业(特别是建筑和汽车产业)的需求波动可能会影响玻璃级硅砂市场。对玻璃产品的需求可能会因政府政策、顾客偏好或景气衰退的变化而波动。例如,在景气衰退期间,随着建设活动放缓,对建筑玻璃的需求可能会下降。此外,汽车玻璃的需求可能会受到汽车趋势变化的影响,例如向电动车的转变。这些因素可能会导致玻璃硅砂市场的需求和价格改变。
COVID-19 的影响
COVID-19 大流行严重影响了玻璃硅砂市场,扰乱了供需。封锁大幅减少了建筑和汽车等玻璃产品大用户的行业运营,从而减少了对硅砂的需求。采矿和加工活动也受到限制,导致延误和短缺。结果,製造商遭受了收入减少和财务困难,但随着监管的放鬆以及玻璃和建设产业需求的復苏,市场正在开始復苏。
预计平板玻璃产业在预测期内将是最大的
平板玻璃领域估计是最大的。平板玻璃通常用于汽车领域的窗户和挡风玻璃,以及建筑领域的窗户、建筑幕墙和室内装饰。由于世界都市化、基础设施不断扩大以及对节能建筑的需求,对平板玻璃的需求不断增加。此外,太阳能玻璃和智慧窗户等趋势的使用增加了对优质硅砂的需求并扩大了市场。
建筑和房地产行业预计在预测期内复合年增长率最高
预计建筑和房地产行业在预测期内的复合年增长率最高。玻璃是门窗、建筑幕墙和室内设计中不可或缺的建筑元素。随着都市化和现代化导致城市和景观不断变化,预计依赖玻璃级硅砂的高品质玻璃产品将继续受到大量需求。此外,低辐射玻璃和日光控制玻璃等特种玻璃产品的市场正在受到永续和节能建筑运动的推动。由于人们越来越注重节能环保的施工方法,房地产和建设产业对玻璃用硅砂的需求进一步增加。
预计亚太地区在预测期内将占据最大的市场占有率。中国、印度和日本等国家的电子、汽车和建筑业对高品质玻璃的需求很高。此外,可再生能源市场的不断增长,特别太阳能发电面板,正在增加对特种硅砂的需求。由于该地区製造能力的提高以及住宅和商业建筑计划数量的增加,亚太市场正在不断增长。
由于包装、汽车和建筑领域对优质玻璃的强劲需求,预计欧洲在预测期内将呈现最高的复合年增长率。该地区对绿色技术和节能建筑的关注正在增加智慧窗户和太阳能玻璃的使用。玻璃用硅砂的发展得到了强大的製造业以及严格的品质和永续性标准的进一步支持,特别是在德国、法国和义大利等欧洲。
According to Stratistics MRC, the Global Glass Grade Silica Sand Market is accounted for $6166.36 million in 2024 and is expected to reach $8747.11 million by 2030 growing at a CAGR of 6.0% during the forecast period. High-purity silica sand with a particular particle size and chemical composition is known as "glass-grade silica sand," and it is mostly utilized in the manufacturing of flat glass, container glass, and specialized glass goods. The expansion of the automotive and construction sectors, the growing use of glass in solar and electronic applications, and the demand for long-lasting, high-quality glass goods are the main factors driving its demand. The need for glass-grade silica sand is also fuelled by technological developments in the glass industry and infrastructure construction.
According to the International Energy Agency, global oil consumption is expected to reach 104.1 million barrels per day by 2026. This would be a 4.4 mb/d increase over current levels. Furthermore, the International Energy Agency projects that global oil demand will increase by 1.9 mb/d in 2023 to a record 101.7 mb/d, nearly half of the increase from China when its Covid limitations were lifted.
Increasing demand from construction & automotive industries
The growing demand for glass products, including architectural glass and glass facades, in the building industry is a key driver of market expansion. The desire for premium silica sand is further driven by the car industry's reliance on glass for sunroofs, side windows, and windshields. The demand for glass goods is anticipated to increase due to the continued acceleration of infrastructure development and urbanization worldwide, which will propel the market for glass grade silica sand.
High transportation costs
Long-distance shipment is frequently necessary in areas with high-quality deposits to satisfy demand in manufacturing hubs since silica sand is not consistently accessible around the world. The total cost of the product may be greatly increased by these transportation expenses, particularly for producers who are positioned distant from extraction locations. Moreover, silica sand is frequently shipped in bulk, which raises the cost of logistics. Because of this, suppliers and glass manufacturers could observe their price competitiveness and margin flexibility diminished by high transportation costs, especially in areas with limited local resources.
Advancements in glass manufacturing technologies
Technology developments in the glass industry are having a big impact on the glass grade silica sand market because they are raising demand for silica sand of higher quality. Silica sand with certain characteristics, such high purity and uniform particle size, is necessary for innovations like automated and precise glass production, energy-efficient glass, and the creation of thin, robust, and lightweight glass. Furthermore, the increasing usage of solar glass for photovoltaic panels and smart glass for electronics necessitates silica sand that satisfies stringent requirements. While companies look for cutting-edge materials for improved performance and sustainability, these technological advancements fuel the need for specialty silica sand and propel market expansion.
Fluctuations in demand from end-use industries
Variations in end-use industry demand, especially from the construction and automotive sectors, might affect the market for glass grade silica sand. The demand for glass products might fluctuate as a result of changes in government policy, customer preferences, and economic downturns. For example, the demand for construction glass may decline during economic downturns as construction activity slow down. The demand for automotive glass may also be impacted by modifications in automotive trends, such as a move toward electric automobiles. These elements may cause changes in demand and pricing in the market for glass grade silica sand.
Covid-19 Impact
The COVID-19 pandemic had a major effect on the market for glass grade silica sand, upsetting supply and demand. Lockdowns caused an abrupt decrease in operations in sectors including construction and automotive, which are big users of glass goods, which decreased the need for silica sand. There were also limitations on mining and processing activities, which led to delays and shortages. Manufacturers suffered income drops and operational difficulties as a result, but the market has started to rebound as restrictions loosen and demand from the glass and construction industries picks back up.
The flat glass segment is expected to be the largest during the forecast period
The flat glass segment is estimated to be the largest. Flat glass is commonly used in the automotive sector for windows and windshields as well as in building for windows, facades, and interior purposes. The need for flat glass is growing as a result of global urbanization, infrastructural expansion, and the requirement for energy-efficient buildings. Furthermore, the market is expanding due to trends like the use of solar glass and smart windows, which increase demand for premium silica sand.
The construction & real estate segment is expected to have the highest CAGR during the forecast period
The construction & real estate segment is anticipated to witness the highest CAGR during the forecast period. Glass is an essential building element that is used for windows, doors, facades, and interior design. High-quality glass goods, which depend on glass grade silica sand, are projected to continue to be in high demand as urbanization and modernization continue to change cities and landscapes. Additionally, the market for specialty glass goods like low-emissivity glass and solar control glass is being driven by the movement toward sustainable and energy-efficient buildings. The demand for glass grade silica sand in the real estate and construction industries is being further increased by the increased focus on energy conservation and green building methods.
Asia Pacific is expected to have the largest market share during the forecast period. High-quality glass is in high demand in the electronics, automotive, and construction industries in nations like China, India, and Japan. Additionally, the need for specialized silica sand is being driven by the expanding market for renewable energy, specifically solar glass for photovoltaic panels. The Asia-Pacific market is growing as a result of the region's growing manufacturing capabilities as well as the increase in residential and commercial construction projects.
Europe is projected to witness the highest CAGR over the forecast period, owing to the strong demand for premium glass in the packaging, automotive, and construction sectors. The region's emphasis on green technology and energy-efficient buildings has increased the use of smart windows and solar glass, both of which call for premium silica sand. The development of glass-grade silica sand is further aided by Europe's robust manufacturing sector and strict quality and sustainability standards, particularly in nations like Germany, France, and Italy.
Key players in the market
Some of the key players profiled in the Glass Grade Silica Sand Market include SCR-Sibelco, U.S. Silica, Sandvik AB, Sibelco Group, Saint-Gobain, Quarzwerke GmbH, Jiangsu Pacific Quartz Co., Ltd., Bergama Mining, CDE Global, Maya Group, Triton Minerals Ltd., Imerys, Minsil, Tata Steel Limited, Knouz Engineering Company, and Kaiser-Glass.
In May 2022, Jiangsu Pacific Quartz, a leading producer in China, expanded its silica sand supply to meet the growing demand for solar glass used in photovoltaic panels. The expansion aimed to provide high-quality glass-grade silica sand to support the renewable energy market.
In June 2021, Imerys expanded its production capabilities by launching a new glass-grade silica sand production line in Europe. This facility aimed to meet the increasing demand from the automotive and construction sectors, providing high-purity sand for high-performance glass applications.
In March 2020, U.S. Silica announced the expansion of its silica sand processing capacity for glass production at its Ottawa, Illinois facility. This move was designed to increase supply and meet the growing demand for high-purity silica sand used in glass manufacturing.