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市場調查報告書
商品編碼
1603864
六亞甲四胺市場至2030年的預測:按類型、功能、來源、應用、最終用戶和地區的全球分析Hexamine Market Forecasts to 2030 - Global Analysis By Type (Stabilized Grade and Unstabilized Grade), Function, Source, Application, End User and By Geography |
根據 Stratistics MRC 的資料,2024年全球六亞甲四胺市場規模為 4.707億美元,預計到2030年將達到 6.639億美元,預測期內年複合成長率為 5.9%。
六亞甲四胺,又稱優洛托品,是雜環有機化合物,化學式為C6H12N4。它由含有交替的氮原子和碳原子的六元環組成。六亞甲四胺通常用作攜帶式爐具的固態燃料,特別是在軍事和緊急情況下。它也可用作合成樹脂、塑膠和藥物的前體。此外,由於其防腐特性和在酸性條件下釋放甲醛的能力,它也可用於治療尿道感染。
炸藥需求增加
採礦、建築和國防等產業對炸藥的需求不斷成長是市場的主要動力。六亞甲四胺是生產烈性炸藥的重要成分,因其在提高炸藥威力方面的作用而受到越來越多的歡迎。隨著全球基礎設施發展的加速和軍事活動的加劇,對高效、可靠的爆炸材料的需求不斷增加。爆炸物需求的快速成長直接導致這些產業六亞甲四胺消耗量的增加。
嚴格的環境法規
嚴格的環境法規增加了生產成本並限制了某些製造程序,給市場帶來了挑戰。遵守嚴格的環境標準通常需要在清潔技術、廢棄物管理和排放控制方面進行投資,這給中小型製造商帶來了負擔。此外,限制在六亞甲四胺生產中使用某些化學品可能會減緩創新、減緩整體市場成長,並影響供應鏈和產品可得性。
塑膠工業的成長
塑膠產業的成長對市場產生重大影響,因為六亞甲四胺廣泛用於塑膠生產,特別是樹脂、黏合劑和被覆劑的生產。隨著汽車、建築和電子等行業對耐用、輕量塑膠產品的需求不斷增加,六亞甲四胺在增強聚合物性能方面的作用變得越來越重要,推動了市場的擴張。技術進步和工業應用的增加進一步推動了這種成長。
原物料價格波動
原料價格波動會增加生產成本並破壞價格穩定,對市場產生重大影響。甲醇和甲醛等關鍵原物料價格波動較大,製造商在維持利潤率和競爭性價格方面面臨挑戰。這些波動會擾亂供應鏈,導致庫存短缺,導致產品定價不一致,最終影響市場需求和盈利,特別是對中小型製造商而言。
COVID-19 大流行擾亂了市場,導致供應鏈延誤、工廠關閉和產能下降。停工和限制影響了汽車、建築和塑膠等關鍵行業的需求,這些行業廣泛使用六亞甲四胺。此外,勞動力短缺和運輸瓶頸導致營運成本上升和原料採購延遲,阻礙了市場成長。但隨著產業適應疫情後情勢,市場正逐步復甦。
在預測期內,抗氧化劑產業預計將是最大的。
預計抗氧化劑領域將在預測期內作為各種化學製劑的穩定劑佔據最大的市場佔有率。抗氧化劑用於防止氧化劣化,特別是在聚合物和橡膠工業。它能夠提高輪胎、被覆劑和塑膠等產品的耐用性和保存期限,有助於滿足注重提高材料壽命和性能的領域日益成長的需求。
預計製藥業在預測期內年複合成長率最高
由於製藥業用作某些藥品製造的關鍵成分,特別是在胺甲酸乙酯和抗生素的合成中,預計製藥業在預測期內將出現最高的年複合成長率。六亞甲四胺,也稱為美西那胺,在多種製劑中用作穩定劑和抗菌劑,包括用於治療尿道感染感染的製劑。對有效藥物不斷成長的需求,加上六亞甲四胺的多功能特性,預計將在未來幾年支持市場擴張。
預計北美地區在預測期內將佔據最大的市場佔有率。該地區強大的製藥業,特別是抗菌劑和藥物製劑的生產推動了需求。此外,六胺作為固態燃料的使用也支持了成長,特別是在軍事和現場應用中。製造流程的持續進步和對高性能材料的需求不斷增加預計將推動該地區的市場擴張。
預計亞太地區在預測期內將實現最高成長率。印度、越南等新興國家的快速工業化是推動六亞甲四胺市場成長的關鍵因素。隨著越來越多的產業擴大經營規模,對六亞甲四胺等化學中間體的需求不斷增加。開發新技術以提高六亞甲四胺的生產效率。催化作用和節能製程的進步可以降低生產成本並減少環境足跡。
According to Stratistics MRC, the Global Hexamine Market is accounted for $470.7 million in 2024 and is expected to reach $663.9 million by 2030 growing at a CAGR of 5.9% during the forecast period. Hexamine, also known as methenamine, is a heterocyclic organic compound with the formula C6H12N4. It consists of a six-membered ring containing alternating nitrogen and carbon atoms. Hexamine is commonly used as a fuel in solid form for portable stoves, particularly in military and emergency situations. It also serves as a precursor in the synthesis of resins, plastics, and pharmaceuticals. Additionally, it has antiseptic properties and is used in treating urinary tract infections due to its ability to release formaldehyde under acidic conditions.
Increasing demand for explosives
The growing demand for explosives in sectors such as mining, construction, and defense is significantly driving the market. Hexamine, a crucial component in the production of high-performance explosives, is increasingly sought after for its role in enhancing explosive efficacy. As infrastructure development accelerates globally and military activities intensify, the need for efficient and reliable explosive materials rises. This surge in demand for explosives directly contributes to the growing consumption of hexamine in these industries.
Strict environmental regulations
Strict environmental regulations have posed challenges to the market by increasing production costs and limiting certain manufacturing processes. Compliance with stringent environmental standards often requires investments in cleaner technologies, waste management, and emission control, which can strain small and mid-sized manufacturers. Additionally, restrictions on the use of certain chemicals in hexamine production may slow down innovation and reduce overall market growth, affecting supply chains and product availability.
Growth of the plastics industry
The growth of the plastics industry has significantly impacted the market, as Hexamine is widely used in producing plastics, particularly in the manufacture of resins, adhesives, and coatings. As demand for durable and lightweight plastic products continues to rise across industries like automotive, construction, and electronics, Hexamine's role in enhancing polymer performance becomes increasingly vital, driving its market expansion. This growth is further fueled by technological advancements and increasing industrial applications.
Fluctuating raw material prices
Fluctuating raw material prices significantly impact the market by increasing production costs and creating pricing instability. As key raw materials, such as methanol and formaldehyde, experience price volatility, manufacturers face challenges in maintaining profit margins and competitive pricing. These fluctuations can disrupt supply chains, cause inventory shortages, and lead to inconsistent product pricing, ultimately affecting market demand and profitability, especially for small and medium-sized producers.
The COVID-19 pandemic disrupted the market by causing supply chain delays, factory shutdowns, and reduced production capacity. Lockdowns and restrictions affected the demand from key sectors like automotive, construction, and plastics, where Hexamine is widely used. Additionally, labor shortages and transportation bottlenecks led to increased operational costs and delays in raw material sourcing, hampering market growth. However, the market has gradually recovered as industries adapt to post-pandemic conditions.
The antioxidants segment is projected to be the largest during the forecast period
The antioxidants segment is projected to account for the largest market share during the projection period driven by acting as a stabilizing agent in various chemical formulations. It is used in the production of certain antioxidants, especially in the polymer and rubber industries, where it helps prevent degradation due to oxidation. Its ability to enhance the durability and shelf life of products like tires, coatings, and plastics contributes to its growing demand in sectors focused on improving material longevity and performance.
The pharmaceuticals segment is expected to have the highest CAGR during the forecast period
The pharmaceuticals segment is expected to have the highest CAGR during the extrapolated period driven by its use as a key ingredient in the production of certain drugs, particularly in the synthesis of urethanes and antibiotics. Hexamine, also known as methenamine, is employed as a stabilizer and antimicrobial agent in various formulations, including urinary tract infection treatments. The growing demand for effective medications, coupled with hexamine's versatile properties, is likely to support market expansion in the coming years.
North America region is projected to account for the largest market share during the forecast period. The region's strong pharmaceutical sector, particularly in the production of antimicrobial agents and drug formulations, contributes to demand. Additionally, hexamine's use in solid fuels, especially for military and outdoor activities, supports growth. Ongoing advancements in manufacturing processes and increasing demand for high-performance materials are expected to drive market expansion in the region.
Asia Pacific is expected to register the highest growth rate over the forecast period. The rapid industrialization in developing countries like India and Vietnam is a significant factor driving the growth of the hexamine market. As more industries scale up operations, the need for chemical intermediates like hexamine grows. New technologies are being developed to improve the efficiency of hexamine production. Advances in catalysis and energy-efficient processes can lower production costs and reduce the environmental footprint.
Key players in the market
Some of the key players in Hexamine market include Huntsman Corporation, BASF SE, SABIC, Lanxess AG, Eastman Chemical Company, Mitsui Chemicals, Inc., Solvay, DSM, Vibrant Group, Tosoh Corporation, Evonik Industries AG, Thermo Fisher Scientific, Merck KGaA, Clariant, Chevron Phillips Chemical and Dow.
In November 2023, SABIC announced the official launch of its new US$170 (S$220) million ULTEM(TM) resin manufacturing facility in Singapore, marking the company's first advanced specialty chemical manufacturing facility in the region producing the high-performance thermoplastic, ULTEM(TM) resin.
In April 2024, BASF, SABIC, and Linde have inaugurated the world's first demonstration plant for large-scale electrically heated steam cracking furnaces. Following three years of development, engineering, and construction work, the regular operation of the demonstration plant is now ready to start at BASF's Verbund site in Ludwigshafen, Germany.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.