市場調查報告書
商品編碼
1359024
2030 年加氫催化劑市場預測 - 按產品類型、類型、型態、製程類型、最終用戶和地區進行的全球分析Hydrogenation Catalyst Market Forecasts to 2030 - Global Analysis By Product Type, Type, Form, Process Type, End User and By Geography |
根據Stratistics MRC的數據,2023年全球加氫催化劑市場規模為14.9億美元,預計2030年將達到23.1億美元,預測期內年複合成長率為6.5%。
在鎳、鈀或鉑等催化劑存在下,氫與另一種物質、化合物或元素的化學反應稱為氫化。加氫催化劑是用來生產氫氣的催化劑。這些催化劑在工業中用於去除芐氧基羰基和芐基以及氫化碳-碳(CC)鍵。
根據世界經濟論壇統計,製造業占美國直接碳排放的23%。此外,製藥業對加氫催化劑的需求不斷增加估計值也是推動全球加氫催化劑市場成長的關鍵要素之一。
加氫處理催化劑市場主要是由許多產業對加氫處理產品的需求不斷成長要素的。在石化、食品、醫藥和化學等產業,氫化是將不飽和化合物轉化為飽和化合物的重要過程。此外,隨著此製程提高產品品質和穩定性,對加氫催化劑的需求也隨之增加。
加氫技術雖然提高了產品品質並減少了排放氣體,但並非完全環保。此外,當消耗氫氣時,它通常來自石化燃料,這會增加溫室氣體排放。隨著環境問題的日益嚴重,加氫過程對環境的影響將受到更嚴格的審查,這可能會導致法規的增加以及對更環保的替代的尋找。
由於醫療保健需求不斷成長和創新治療方法的開發要素,製藥業在全球範圍內持續擴張。合成高純度、高選擇性的醫藥中間體和活性成分需要加氫催化劑。此外,催化劑製造商可以透過提供專為滿足藥品製造的苛刻需求而設計的高品質催化劑,從這個快速成長的市場中受益。
新技術和創新製程是傳統加氫處理技術更有效、永續的替代品,有可能顛覆市場。此外,催化劑製造商隨時了解非催化加氫、替代催化劑材料和/或專有技術的發展,這些技術可能最終取代或減少對傳統加氫催化劑的需求。您需要保留它。
COVID-19大流行對加氫催化劑市場產生了多種影響。最初,封鎖和法規擾亂了供應鏈,減少了工業活動並推遲了項目,但儘管工業界,特別是製藥和食品加工部門,優先考慮必需品的生產,但對包裝食品和藥品的需求已經放緩。因應成長,市場復甦。此外,疫情凸顯了催化劑在疫苗開發和藥物研究中的價值,促進了對觸媒技術的投資。
貴金屬基氫催化劑領域預計將佔據最大的市場佔有率。這項優勢主要得益於鉑、鈀、銠等貴金屬優異的催化能力,使得它們成為包括石化、醫藥、特種化學品在內的各個領域高效、選擇性的加氫劑,能夠促進反應。然而,它對於許多工業製程至關重要,因為它能夠實現重要的轉變,例如減少不飽和化合物。
在加氫催化劑市場中,環保領域的年複合成長率最高。世界對永續性和環境責任的日益重視正在推動這一成長。加氫催化劑對於環境用途至關重要,例如淨化空氣污染控制系統中的排放氣體和去除污水中的污染物。此外,環境用途中對加氫催化劑的需求正在穩步成長,由於更嚴格的環境法規和人們對清潔工業流程需求的認知不斷增強,使其成為成長最快的部門市場之一。
亞太地區佔加氫催化劑最大的市場佔有率。強勁的工業成長,特別是在中國和印度等擁有大型化學、石化和精製工業的國家,正在推動該地區的主導地位。亞太地區目前佔據全球加氫催化劑市場的首位,由於這些產業對加氫催化劑的需求不斷增加,以及對環保製造技術的重視,因為它看起來是這樣的。此外,該地區蓬勃發展的食品和製藥產業也促進了加氫催化劑需求的增加,進一步鞏固了其市場領導的地位。
預計中東和非洲 (MEA) 的加氫催化劑市場年複合成長率最高。該地區在石油和石油、天然氣領域擁有強大的影響力,包括原油精製和石化生產,這是其快速成長的驅動力。中東和非洲地區石化和精製項目的大規模投資推動了對加氫催化劑的需求,這些項目需要滿足環境法規和最佳化過程。此外,該地區的戰略定位和原料的便捷獲取使其成為化學品製造中心,支持加氫催化劑市場的快速擴張。
According to Stratistics MRC, the Global Hydrogenation Catalyst Market is accounted for $1.49 billion in 2023 and is expected to reach $2.31 billion by 2030 growing at a CAGR of 6.5% during the forecast period. In the presence of catalysts like nickel, palladium, or platinum, the chemical reaction of hydrogen with another substance, compound, or element is known as hydrogenation. A hydrogenation catalyst is a catalyst used to produce hydrogen. These catalysts are used in industry to remove the benzyloxycarbonyl and benzyl groups as well as hydrogenate the carbon-carbon (C-C) bond.
According to World Economic Forum, in United States, manufacturing industry accounts for 23% of direct carbon emission. Further, increased demand for hydrogenation catalyst from pharmaceutical industry is also estimated to be another important factor to drive the growth of the global hydrogenation catalyst market.
The market for hydrogenation catalysts is primarily driven by the rising demand for hydrogenated goods across numerous industries. In industries like petrochemicals, food, pharmaceuticals, and chemicals, hydrogenation is a critical procedure that is used to change unsaturated compounds into saturated ones. Moreover, the demand for hydrogenation catalysts is increased by this process, which improves the quality and stability of products.
Although hydrogenation techniques can enhance product quality and lower emissions, they are not entirely eco-friendly. Additionally, when hydrogen gas is consumed, it frequently comes from fossil fuels, which can increase greenhouse gas emissions. As environmental concerns increase, the environmental impact of hydrogenation processes may come under more scrutiny, which could lead to stricter regulations or the investigation of more environmentally friendly alternatives.
Due to factors like rising healthcare needs and the development of innovative therapies, the pharmaceutical industry is still expanding globally. In order to synthesize pharmaceutical intermediates and active ingredients with high purity and selectivity, hydrogenation catalysts are necessary. Furthermore, manufacturers of catalysts can benefit from this burgeoning market by offering high-quality catalysts that are specifically designed to meet the demanding needs of pharmaceutical production.
Alternatives to conventional hydrogenation techniques that are more effective or sustainable could cause market disruptions thanks to new technologies and inventive processes. Moreover, manufacturers of catalysts must keep track of developments in non-catalytic hydrogenation, alternative catalyst materials, and/or proprietary technologies that may eventually replace or lessen the need for conventional hydrogenation catalysts.
On the market for hydrogenation catalysts, the COVID-19 pandemic had a wide range of effects. While lockdowns and restrictions initially caused supply chains to be disrupted, industrial activity to decline, and projects to be delayed, the market recovered as a result of industries, particularly the pharmaceutical and food processing sectors, prioritizing the production of necessities while attempting to meet a rise in demand for packaged foods and pharmaceuticals. Additionally, the pandemic highlighted the value of catalysts in vaccine development and pharmaceutical research, encouraging investment in catalyst technologies.
It is anticipated that the precious metal-based hydrogen catalyst segment will hold the largest market share. This dominance is mainly attributable to the superior catalytic capabilities of precious metals like platinum, palladium, and rhodium, which allow for highly effective and selective hydrogenation reactions in a variety of sectors, including petrochemicals, pharmaceuticals, and specialty chemicals. However, they are crucial to many industrial processes because of how well they enable crucial transformations like the reduction of unsaturated compounds.
In the hydrogenation catalyst market, the environmental segment is growing at the highest CAGR. The growing global emphasis on sustainability and environmental responsibility is what fuels this growth. In environmental applications like the purification of emissions in air pollution control systems and the removal of pollutants from wastewater, hydrogenation catalysts are essential. Moreover, the demand for hydrogenation catalysts in environmental applications is steadily rising, making it one of the fastest-growing market segments due to strict environmental regulations and a growing awareness of the need for cleaner industrial processes.
The Asia-Pacific region holds the largest market share for hydrogenation catalysts. The region's strong industrial growth, particularly in nations like China and India, which have sizable chemical, petrochemical, and refining industries, is what's fueling this dominance. Asia-Pacific currently holds the top spot in the global hydrogenation catalyst market thanks to the rising demand for hydrogenation catalysts in these industries as well as the growing emphasis on environmentally friendly manufacturing techniques. Additionally, the region's booming food and pharmaceutical sectors also help to increase demand for these catalysts, further solidifying its position as the market leader.
The Middle East and Africa (MEA) is predicted to have the highest CAGR in the market for hydrogenation catalysts. The region has a sizable presence in the oil and gas sector, including the refining of crude oil and the production of petrochemicals which is driving this rapid growth. The demand for hydrogenation catalysts is being driven by significant investments in petrochemical and refining projects in MEA, which are necessary to meet environmental regulations and optimize processes. Additionally, the area's strategic location and easy access to feedstock make it a center for chemical manufacturing, which will help fuel the market for hydrogenation catalysts' anticipated rapid expansion.
Some of the key players in Hydrogenation Catalyst Market include: Haldor Topsoe A/S, SOLVIAS AG, Albemarle Corporation, China National Petroleum Corporation, CRI/Criterion Inc., BASF SE, SINOPEC Catalyst Company, W. R. Grace and Co., Advanced Refining Technologies (ART), Haldor Topsoe, Johnson Matthey, Axens, Honeywell International, Inc., SJEP and Evonik Industries AG.
In June 2023, QatarEnergy signed on Tuesday with China National Petroleum Corporation (CNPC) a long-term Liquefied Natural Gas sales agreement at its headquarters in Doha. The agreement entails the delivery of 4 million tonnes of LNG per year from QatarEnergy's North Field East LNG expansion project to CNPC's receiving terminals in China, spanning the course of 27 years, according to the Qatari state-owned company and the CNPC.
In May 2023, Albemarle Corporation, a global leader in providing essential elements for mobility, energy, connectivity and health, today announced a definitive agreement with Ford Motor Company to deliver battery-grade lithium hydroxide to support the automaker's ability to scale electric vehicle (EV) production. Albemarle will supply more than 100,000 metric tons of battery-grade lithium hydroxide for approximately 3 million future Ford EV batteries. The five-year supply agreement starts in 2026 and continues through 2030.
In May 2023, BASF Environmental Catalyst and Metal Solutions, a global leader in precious metals and catalysis, and Advent Technologies Holdings, Inc., an innovation-driven leader in the fuel cell and hydrogen technology sectors, have concluded the terms of a new agreement to join efforts in building a full loop component supply chain for fuel cells and enter discussions to extend the partnership into the field of water electrolysis.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.