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市场调查报告书
商品编码
1679259
硼酸市场预测至 2030 年:按形式、销售管道、应用、最终用户、地区进行的全球分析Boric Acid Market Forecasts to 2030 - Global Analysis By Form (Powder, Granules, Flakes, Tablets and Other Forms), Sales Channel, Application, End User and By Geography |
根据 Stratistics MRC 的数据,2024 年全球硼酸市场价值为 11.3 亿美元,预计到 2030 年将达到 16.6 亿美元,预测期内的复合年增长率为 6.6%。
硼酸是一种由硼、氧和氢组成的化合物,常用于各种工业和家庭用途。它是一种白色、无味的粉末或结晶物质。硼酸主要用作防腐剂、杀虫剂、阻燃剂和防腐剂。此外,它还用于生产玻璃、陶瓷和玻璃纤维。它还充当 pH 缓衝剂和化学反应的催化剂。少量摄入通常是安全的,但如果摄入大量或处理不当可能会有毒。
硼硼硅酸玻璃需求不断增加
市场对硼硅酸玻璃的需求不断增加,因为它具有优异的耐热性、化学稳定性和非反应性,使其成为实验室设备、烹调器具和工业应用的理想选择。硼硅酸玻璃是高温环境中的首选,因为它可以承受突然的温度变化而不破裂。随着製药、化学和食品加工等行业的扩张,对硼硅酸玻璃等耐用、耐热材料的需求不断增加,进一步增加了其在市场的需求。
健康和环境问题
硼硅酸玻璃市场因其潜在的健康和环境风险而面临越来越多的担忧。硼硅酸玻璃对水生生物有毒。它对水生生物有毒并破坏生态系统。农业中的不当处置和过度使用会导致土壤和水污染。这些不利影响导致了限制硼酸在某些行业使用的法规的增多,并增加了对更安全、更环保的替代品的需求。
能源效率意识不断增强
人们对能源效率认识的不断提高正在推动市场的成长。随着各行各业都专注于降低能源消耗和减少对环境的影响,硼酸在阻燃剂、玻璃製造和节能隔热材料等各种应用中越来越受欢迎。它在促进能源节约和永续性发挥的作用与全球减少碳排放的努力相一致,从而推动了各个领域的需求。
替代产品的可用性
市场上替代品的供应是一个重大挑战。随着无硼化合物和有机农药等替代品变得越来越普遍,对硼酸的需求将会减少。这些替代品通常被视为更安全、更环保,从而降低了硼酸的市场占有率。这项变更将对製造商的收益负面影响,并导致竞争加剧,迫使企业进行创新并降低价格以保持竞争力,进而影响盈利和市场稳定性。
新冠肺炎疫情导致供应链中断、劳动力短缺和生产能力下降,扰乱了市场秩序。停工和经济放缓导致农业、製造业和化妆品等行业的需求减少。不过,消毒剂和杀菌剂的需求暂时增加了一些地区的硼砂使用量。由于企业适应新的卫生通讯协定和不断变化的市场需求,市场在疫情期间和疫情后全面面临不确定性,部分地区復苏速度较慢。
预计预测期内玻璃产业将占据最大的市场占有率。
预计预测期内玻璃产业将占据最大的市场占有率。硼酸可提高玻璃的耐热性和耐化学性、增加耐用性并降低玻璃的熔点,使其更易于加工。硼酸也用于製造电子产品、陶瓷和太阳能板玻璃。然而,日益增长的环境和健康问题加上替代材料的兴起可能会影响需求并导致玻璃产业的市场转变。
预计预测期内农业部门将以最高的复合年增长率成长。
预计预测期内农业部门将出现最高成长率。它有助于形成坚固的细胞壁,促进授粉并提高作物产量。然而,人们越来越担心过度使用及其对环境的影响,包括土壤毒性和水污染。这些担忧可能会导致对硼酸使用的更严格的监管,影响对农业应用的需求并鼓励替代农业解决方案。
预计预测期内北美地区将占据最大的市场占有率。美国是硼酸的主要生产国和消费国,硼酸用于玻璃纤维製造、害虫防治和用作阻燃剂。然而,日益增长的健康和环境问题以及来自替代材料的竞争带来了挑战。监管压力也可能影响市场成长,各行业都呼吁寻找硼酸的永续、安全的替代品。
预计预测期内亚太地区将呈现最高的复合年增长率。中国和印度等国家的快速工业化推动了陶瓷和玻璃纤维生产等领域对硼酸的需求。硼酸在农业中的应用越来越广泛,它可增强土壤健康、促进植物生长,从而增加该地区对硼酸的需求。此外,人们越来越重视永续全球环境趋势和法规的可持续、环保的硼酸产品。
According to Stratistics MRC, the Global Boric Acid Market is accounted for $1.13 billion in 2024 and is expected to reach $1.66 billion by 2030 growing at a CAGR of 6.6% during the forecast period. Boric acid is a chemical compound consisting of boron, oxygen, and hydrogen, commonly used in various industrial and household applications. It appears as a white, odorless powder or crystalline substance. Boric acid is primarily used as an antiseptic, insecticide, flame retardant, and preservative. In addition, it is employed in the manufacturing of glass, ceramics, and fiberglass. It also plays a role in pH buffering and as a catalyst in chemical reactions. While generally safe in small amounts, it can be toxic if ingested or improperly handled in large quantities.
Increasing demand for borosilicate glass
The increasing demand for borosilicate glass in the market is driven by its superior thermal resistance, chemical stability, and non-reactivity, making it ideal for laboratory equipment, cookware, and industrial applications. Borosilicate glass is preferred in high-temperature environments, as it can withstand rapid temperature changes without breaking. As industries like pharmaceuticals, chemicals, and food processing expand, the need for durable, heat-resistant materials like borosilicate glass grows, further fueling its demand in the market.
Health and environmental concerns
The market faces growing concerns due to its potential health and environmental risks. Prolonged exposure can lead to skin irritation, respiratory issues, and reproductive harm. It is toxic to aquatic life, causing disruptions in ecosystems. Improper disposal and overuse in agriculture contribute to soil and water contamination. These negative impacts have led to stricter regulations, limiting Boric Acid usage in certain industries, and driving demand for safer, eco-friendly alternatives.
Rising awareness of energy efficiency
The rising awareness of energy efficiency is driving growth in the Market. As industries focus on reducing energy consumption and minimizing environmental impact, boric acid is gaining popularity due to its various applications, such as in flame retardants, glass manufacturing, and energy-efficient insulation materials. Its role in promoting energy savings and sustainability is fueling demand across diverse sectors, aligning with global efforts to reduce carbon footprints.
Availability of substitutes
The availability of substitutes in the market poses a significant challenge. As alternatives like boron-free compounds and organic pesticides gain popularity, the demand for Boric Acid declines. These substitutes are often seen as safer and more environmentally friendly, reducing Boric Acid's market share. This shift can negatively impact the revenue of manufacturers, leading to increased competition and forcing companies to innovate or lower prices to remain competitive, affecting profitability and market stability.
The COVID-19 pandemic disrupted the market by causing supply chain interruptions, labor shortages, and reduced production capacity. Lockdowns and economic slowdowns led to decreased demand in industries like agriculture, manufacturing, and cosmetics. However, demand for disinfectants and sanitizers briefly boosted Boric Acid use in some segments. The overall market faced uncertainty, with slower recovery in some regions, as companies adapted to new health protocols and shifting market needs during and after the pandemic.
The glass industry segment is expected to be the largest market share during the forecast period
The glass industry segment is expected to account for the largest market share during the forecast period. It improves thermal and chemical resistance, enhances durability, and lowers the melting point of glass, making it easier to process. Boric Acid is also used in manufacturing glass for electronics, ceramics, and solar panels. However, increasing environmental and health concerns, along with the rise of alternative materials, may affect its demand in the glass industry, leading to market shifts.
The agriculture segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the agriculture segment is predicted to witness the highest growth rate. It aids in the development of strong cell walls, enhances pollination, and boosts crop yields. However, concerns over overuse and environmental impact, such as soil toxicity and water contamination, have raised awareness. These concerns may lead to stricter regulations on Boric Acid use, influencing its demand in agricultural applications and encouraging alternative agricultural solutions.
During the forecast period, the North America region is expected to hold the largest market share. The U.S. is a key producer and consumer, using Boric Acid for applications such as fiberglass production, pest control, and as a fire retardant. However, rising health and environmental concerns, along with competition from alternative materials, pose challenges. Regulatory pressures may also affect market growth, pushing for sustainable and safer alternatives to Boric Acid in various sectors.
Over the forecast period, the Asia Pacific region is anticipated to exhibit the highest CAGR. Rapid industrialization in countries like China and India is driving the demand for boric acid in sectors such as ceramics, and fiberglass production. Boric acid is increasingly used in agriculture to enhance soil health and promote plant growth, contributing to its rising demand in the region. Additionally, there is a growing emphasis on sustainable and eco-friendly boric acid products, aligning with global environmental trends and regulations.
Key players in the market
Some of the key players in Boric Acid market include Junsei Chemical Co.,Ltd., Minera Santa Rita, Vandana Global Ltd., Nippon Denko Co. Ltd, FerroAtlantica, Tata Chemicals Limited, Gulbrandsen, BASF SE, Pampa Group, Rio Tinto, 3M, United Borax, Wuhan Zhongtai International, Nirma Limited and FerroAtlantica.
In February 2025, Tata Chemicals Limited (TCL) has entered into a Memorandum of Understanding (MoU) with Bharatiya Sanskriti Darshan Trust (BSDT) and its Integrated Cancer Treatment and Research Centre (ICTRC) in Pune. This partnership will explore the potential health benefits of TCL's prebiotic, soluble dietary fibers and their derivatives, focusing on gut health and overall well-being.
In November 2024, BASF and Acies Bio have entered into a transformative partnership to further develop a platform for fermentation technology from methanol for the production of fatty alcohols. Fatty alcohols are essential building blocks for several ingredients in the home and personal care markets, in particular surfactants.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.