市場調查報告書
商品編碼
1273263
到2028年的纖維素醚和纖維素醚衍生物市場預測-按類型、最終用戶和地區分類的全球分析Cellulose Ether & Its Derivatives Market Forecasts to 2028 - Global Analysis By Type, End User, and By Geography |
根據Stratistics MRC,2022年全球纖維素醚及纖維素醚衍生物市場規模將達到63.4億美元,預測期內復合年增長率為11.4%,預計達到121億3千萬美元。
纖維素醚是對纖維素進行化學改性而製成的聚合物。 纖維素醚廣泛應用於增稠、粘合、保水、土壤污染防治、保護膠體等行業。 製藥、個人護理、食品和飲料、油漆、塗料等對纖維素醚和纖維素醚衍生物的需求增加是推動市場增長的關鍵因素。
根據印度尼西亞紡織協會 (API) 的數據,儘管全球紡織品需求下降,但 2018 年印度尼西亞的紡織品總出口同比增長 8%
由於其可接受的質量,甲基纖維素、羥丙基纖維素和羧甲基纖維素 (CMC) 等纖維素衍生物被廣泛用於薄膜生產。 纖維素已用於食品包裝應用,單獨使用或與其他基質材料結合使用。 在食品和飲料領域,纖維素醚在果醬、糖、水果糖漿和辣醬的生產中用作增粘劑。 此外,通過使質地均勻細膩,可以獲得漂亮的外觀,因此被用於製作各種甜點。 其他推動市場增長的應用包括冰淇淋穩定劑、檸檬和葡萄飲料製備中的定型劑、半固體食用油以及表面處理中的成膜劑。
來自樹木和其他植物的纖維素被用作各種纖維素製造商生產的所有商業產品的基本原材料。 纖維素醚製造商使用的主要原料是木漿或棉絨。 儘管纖維素醚生產對污染的貢獻不大,但這些設施中的大多數都被歸類為有害空氣污染物 (HAP)。 纖維素醚製造廠排放的主要HAPs包括甲醇、氯甲烷、環氧乙烷和環氧丙烷。 這些環境問題正在減緩和限制纖維素醚行業的增長。
纖維素及其衍生物用於個人護理產品、汽車零部件、藥品、建築材料、電子設備等。 此外,繼續研究將產生新的基於纖維素的產品,預見市場擴張。 纖維素被認為是未來的可持續塑料,因為它可以製成熱塑性塑料和生物複合材料。 政府和大公司都鼓勵使用這些複合材料來創造堅固耐用的可持續產品,為進一步的市場增長創造廣闊的機會。
棉花、廢紙、木質纖維素和甘蔗是用於製造粉狀纖維素醚生物聚合物的基本材料。 棉短絨是用於生產纖維素醚的第一種原材料。 但受極端天氣等因素影響,棉短絨產量正在下降。 棉短絨價格上漲,影響纖維素醚生產商的長期盈利能力。 由於下游需求和現貨供應,這些原材料價格的波動預計將成為纖維素酯製造商關注的問題。 燃料價格上漲導致運輸成本上漲,能源成本上漲導致生產成本上漲,進一步影響纖維素醚市場。
由於 COVID-19 大流行,纖維素醚和衍生物行業預計將在 2020 年下滑。 這種致命病毒已在世界範圍內造成嚴重破壞,尤其是亞太地區和歐洲。 企業已關閉運營和製造設施,政府已遏制建築活動,以防止病毒進一步傳播。 結果,無論應用如何,纖維素醚和纖維素醚衍生物的使用都在減少。 COVID-19 首先襲擊了中國,影響了世界各地的纖維素醚和衍生物供應鏈,導致各種最終用途部門的生產活動減少。 然而,隨著許多終端用途行業開始生產並有望迅速復蘇,對纖維素醚的需求有所增加。
由於羥丙基纖維素被用於建築、製藥、油漆和塗料以及印刷油墨等各個行業,因此預計該行業將實現利潤豐厚的增長。 在建築領域,它廣泛用作瓷磚粘合劑、石膏/砂漿和水泥系統等各種應用中的保水劑、粘合劑和增稠劑。 用於增加瓷磚膠粘劑的流動性和施工性。 它保證了瓷磚和底層地板之間的牢固結合。 它作為石膏和砂漿的粘合劑,增加混合物的強度和可加工性,同時提供光滑、持久的表面。 (HPMC 增強了自流平地坪化合物和灌漿等膠結體系的流變性、可加工性和保水性,並延長了固化時間,推動了市場增長。
由於衍生物用作片劑和糖漿中的膳食纖維來源、粘合劑、乳化劑和流變改性劑,預計製藥行業在預測期內將以最快的複合年增長率增長。 MCC 和納米纖維素廣泛用作催化劑和製藥行業的靶向給藥系統。 在化學合成過程中,纖維素及其衍生物實現了類似的目標,因此市場有望進一步擴大。
隨著製造業在亞洲的滲透推動增長,預計亞太地區在預測期內將佔據最高份額。 隨著紡織品製造業的增加,中國市場有望逐步擴大。 這是由於對包裝食品和飲料的需求不斷增長以及人口增長刺激了該地區產品市場的擴張。 此外,對纖維素衍生物健康益處的了解不斷增加也推動了需求。 市場上的主要參與者正在大量投資於研發,以擴大其產品組合併獲得競爭優勢,從而推動該地區的市場增長。
由於個人護理業務的強勁增長以及對男士護理產品和防曬產品的需求不斷增加,預計歐洲在預測期內的複合年增長率最高。 在歐洲,對個人護理和化妝品的需求不斷增長推動了生產,促進了產品需求。 化妝品公司在該地區變得越來越普遍,推動了對定制護髮配方、護膚霜、乳液和彩妝產品的需求。 此外,該地區廉價的勞動力和具有競爭力的高生產率正在推動市場的增長,因為採礦、建築、油田鑽井液和製藥等應用的需求不斷增加。
2023 年 4 月,塞拉尼斯宣布與 Glaukos Corporation 合作開發一種緩釋青光眼藥物 Glaukos,這是一種微創眼內植入物,旨在降低原發性開角型青光眼或高眼壓症患者的眼壓。宣布達成協議對於 iDose(R) TR。
2023 年 3 月,塞拉尼斯宣布與 alessa therapeutics 開展研究合作,以推進癌症治療。 此次合作將專注於為癌症患者開發局部緩釋藥物輸送系統,以限制全身副作用並改善整體護理。
2023 年 1 月,亞甚蘭宣布推出 The Natural Line 個人護理產品。 該系列專注於推廣具有明確成分的天然成分,這些成分易於通過名稱和 INCI 符號識別。
According to Stratistics MRC, the Global Cellulose Ether & Its Derivatives Market is accounted for $6.34 billion in 2022 and is expected to reach $12.13 billion by 2028 growing at a CAGR of 11.4% during the forecast period. Cellulose ethers are polymers created through the chemical modification of cellulose. In numerous industries, cellulose ethers provide a range of tasks such as thickening, binding, water retention, soil ant re disposition, and acting as a protective colloid. Rising demand for cellulose ether and its derivatives in pharmaceuticals, personal care, foods and beverages, and paints and coatings actives is a critical factor driving market growth.
According to the Indonesian Textile Association (API) despite the global decline in the textile demand, the overall textile exports of Indonesia rose by 8% on a year-on-year basis in 2018
Because of its acceptable qualities, cellulose derivatives such as methylcellulose, hydroxypropyl cellulose, and carboxymethyl cellulose (CMC) are widely utilised to manufacture films. Cellulose has been used in food packaging applications, either alone or in conjunction with other matrix materials. In the food and beverage business, cellulose ether is employed as an adhesive agent extender in the manufacturing of jam, sugar, fruit syrup, and spicy sauce. It is also employed in various dessert preparations since it allows the tissue to be homogenous and fine, giving the treat a beautiful appearance. Other applications include ice cream stabilising agents, shape fixing agents in the preparation of lemon and grape drinks, semi-fluid edible oil, and as a film forming agent in surface treatment which encourages in the growth of the market.
Cellulose collected from trees or other plants serves as the foundational raw material for all commercial items manufactured by various cellulose manufacturing companies. The principal raw material used by cellulose ether makers is either wood pulp or cotton linter. Although the manufacture of cellulose ether does not contribute considerably to pollution, the majority of these facilities are classified as hazardous air pollutants (HAPs). Some of the principal HAPs released by cellulose ether manufacturing plants include methanol, methyl chloride, ethylene oxide, and propylene oxide. These environmental concerns slow the growth of the cellulose ethers sector and act as a restraint.
Cellulose and its derivatives are used in personal care appliances, vehicle parts, pharmaceuticals, construction materials, and electronics. Furthermore, ongoing research has resulted in the creation of novel cellulose-based products, which are projected to enhance the market. Because of its ability to make bio composites with thermoplastics, cellulose is seen as the sustainable plastic of the future. Both governments and huge corporations are encouraging the use of these composites to build robust yet sustainable good are creating wide range of opportunities in further market growth.
Cotton, recycled paper, wood cellulose, and sugarcane are among the basic materials utilised to create cellulose ether biopolymers in powder form. Cotton linter is the first raw material utilised in the production of cellulose ethers. However, causes such as extreme weather and various variables have contributed to the low production of cotton linter. Cotton linter costs have risen, affecting the profitability of cellulose ether makers in the long run. Fluctuations in the prices of these raw materials are projected to be a concern for cellulose ester makers due to downstream demand and spot availability. The cellulose ethers market is additionally impacted by high transportation costs caused by rising fuel prices, as well as higher manufacturing costs caused by growing energy expenses.
Because to the COVID-19 pandemic, the cellulose ether and derivatives industry is predicted to fall in 2020 this lethal virus has wreaked havoc on the entire world, particularly in APAC and Europe. Companies have shut down operations and manufacturing facilities to prevent the virus from spreading further, and the government has curtailed construction activities. As a result, the use of cellulose ether and derivatives has decreased across applications. COVID-19 struck China first, affecting the worldwide cellulose ether and derivatives supply chain and leading in reduced production operations across various end-use sectors. However, numerous end-use industries have begun manufacture and are projected to rebound quickly, leading in an increase in demand for cellulose ether.
The hydroxypropyl cellulose segment is estimated to have a lucrative growth, due to its use in a variety of industries, including construction, pharmaceutical, paints and coatings, and printing inks. It is widely utilised in the construction sector as a water-retention agent, binder, and thickening in a variety of applications such as tile adhesives, plaster and mortar, and cementation systems. It is used to increase the flow and workability of tile adhesives. It guarantees that the tiles and the substrate have a firm bond. It functions as a binder in plaster and mortar, increasing the strength and workability of the mix while also providing a smooth and lasting surface. (HPMC) increases the rheology, workability, and water retention qualities of cementation systems such as self-leveling flooring compounds and grouts while also extending the setting time thereby boosting the growth of the market.
The pharmaceutical segment is anticipated to witness the fastest CAGR growth during the forecast period, due to the derivatives which are employed as dietary fibre sources, binders, emulsifiers, and rheology modifiers in tablets and syrups. MCC and nanocellulose are widely utilised as catalysts and in targeted drug delivery systems in the pharmaceutical industry. During chemical synthesis, cellulose and its derivatives achieve similar goals, which are projected to enhance market expansion further.
Asia Pacific is projected to hold the highest market share during the forecast period owing to the rising penetration of the Asian manufacturing base is likely to promote growth. The market in China is likely to rise gradually as textile manufacturing increases. This is due to expanding demand for packaged food and beverages, as well as a growing population, which is fueling expansion in the region's product market. Furthermore, increased knowledge of the health benefits of cellulose derivatives is driving up demand. The market's key players are extensively spending in research and development in order to expand their product portfolio and obtain a competitive advantage thus driving the growth of the market in this region.
Europe is projected to have the highest CAGR over the forecast period; owing to the region's personal care business is expanding significantly, to increased demand for men's care and sun protection goods. The growing demand for diverse personal care and cosmetics items in Europe has prompted production, which has contributed to product demand. The region's increased penetration of cosmetics companies has increased demand for customised hair care formulas, skin care creams, lotions, and makeup products. Furthermore, due to rising demand for applications such as mining, construction, drilling fluids in oilfields, and medicines, among others, this region has cheap labour and competitive production rates are propelling the growth of the market.
Some of the key players profiled in the Cellulose Ether & Its Derivatives Market include: DuPont, Eastman Chemical Company, Mitsubishi Chemical Corporation, Grasim, Futamura Chemical Co. Ltd, Xinjiang Zhongtai Chemical Co. Ltd, Sappi Limited, Celanese Corporation, Ashland, Daicel Corporation, Cerdia International GmbH, Nouryon, Lenzing AG, The Dow Chemical Company, Shin-Etsu Chemical Co., Ltd, LOTTE Fine Chemicals, Rayonier Advanced Materials Inc., Shandong Head Co., Ltd, J.M. Huber Corporation and Hebei Jiahua Cellulose Co., Ltd.
In April 2023, Celanese announced agreement with Glaukos Corporation for sustained release glaucoma treatment, Glaukos' iDose® TR, a micro-invasive intraocular implant designed to lower intraocular pressure in patients with primary open-angle glaucoma or ocular hypertension.
In March 2023, Celanese announced collaboration with alessa therapeutics for the advancement of oncology treatments, the collaboration will focus on developing a localized and sustained-release drug delivery system for oncology patients that will limit systemic side effects and improve overall treatment.
In Jan 2023, Ashland announced the launch of The Natural Line for personal care products. This line is focused on promoting natural ingredients that can be easily recognized by their name, INCI description and have a defined composition.