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市場調查報告書
商品編碼
1355002
全球生物聚醯胺市場評估:按類型、產品類型、最終用戶、地區、機會、預測(2016-2030)Bio-polyamide Market Assessment, By Type, By Product Type, By End-user, By Region, Opportunities and Forecast, 2016-2030F |
全球生物聚醯胺市場規模預計將從2022年的2.087億美元增至2030年的7.687億美元,2023-2030年預測期間複合年增長率為17.7%。由於政府法規和政策促進生物基和可生物降解材料的使用,生物聚醯胺的需求和採用量正在激增。激勵措施、補貼和強制措施鼓勵世界各地的製造商和產業將生物聚醯胺納入其產品中,以實現永續發展目標和環境標準。
在紡織領域,消費者對永續時尚的需求不斷增長是採用生物聚醯胺的主要動力。時尚界對利用生物聚醯胺的可回收性和生物降解性的環保紡織品的追求凸顯了它們作為永續製造實踐不可或缺的一部分的作用。此外,在法規以及不斷變化的行業和消費者偏好的推動下,生物聚醯胺正在成為一種可持續的解決方案。
此外,汽車產業不斷努力減輕重量和提高燃油效率是生物聚醯胺採用的主要動力。隨著永續性在汽車製造中變得越來越重要,生物聚醯胺的輕質和堅固特性使其成為傳統材料的有吸引力的替代品,可減輕車輛重量和排放。
生物聚醯胺使紡織業能夠創造出可生物降解、可組合和可回收的環保紡織品。這些屬性對於減少生態足跡並支持循環經濟原則的時尚品牌來說很有吸引力。因此,生物聚醯胺正日益成為紡織業為消費者提供可持續和負責任的選擇的努力的一部分。
生物聚醯胺是金屬和其他塑膠製成的傳統重型零件的有吸引力的替代品。此外,生物聚醯胺有助於汽車產業的可持續發展,因為它們源自可再生資源,滿足汽車製造商的可持續發展目標,並有助於遵守有關排放和環境影響的監管標準。不斷增加努力在促進汽車產業的可持續發展方面發揮著重要作用。採用生物聚醯胺。
2022年,全球汽車產業銷量較2020年成長10%。在預測期內,全球汽車銷售的成長可能會持續下去,從而推動全球對生物聚醯胺的需求。
政府法規和政策正在推動生物聚醯胺的採用,主要是為了推廣生物基和可生物降解材料。這些法規通常包括激勵措施、補貼和強制措施,鼓勵製造商和產業將生物聚醯胺納入其產品線。生物聚醯胺的使用具有減少溫室氣體排放和提高永續性的潛力,因為生物聚醯胺源自可再生原料,與傳統的化石基材料相比,有可能顯著減少碳排放。這符合該產業改善環境的目標。其產品的品質。
COVID-19 大流行引發的全球供應鏈中斷對生物聚醯胺造成了沉重打擊。重要原料的短缺和物流挑戰擾亂了生物聚醯胺的生產和分銷,導致某些地區可能出現延誤和短缺。此外,各國實施封鎖及人員流動限制,導致汽車、紡織等下游產業出現勞動力短缺。這進一步阻礙了生物聚醯胺的使用並阻礙了其在多個地區的採用。經濟不穩定和金融限制影響了消費者的購買決策並削弱了市場。
本報告研究和分析了全球生物聚醯胺市場,提供市場規模和預測、市場動態以及主要參與者的現狀和前景。
Global bio-polyamide market size was valued at USD 208.7 million in 2022, which is expected to grow to USD 768.7 million in 2030, with a CAGR of 17.7% during the forecast period between 2023 and 2030. Bio-polyamides are experiencing a surge in demand and adoption driven by government regulations and policies that promote the use of bio-based and biodegradable materials. Incentives, subsidies, and mandates have incentivized manufacturers and industries across the globe to integrate bio-polyamides into their products to align with their sustainability goals and environmental standards.
In the textile sector, an increasing consumer demand for sustainable fashion has become a significant catalyst for adopting bio-polyamides. The fashion industry's pursuit of eco-friendly textiles, harnessing the recyclability and biodegradability of bio-polyamides, underscores their role as an essential component in sustainable manufacturing practices. Moreover, bio-polyamides have emerged as a sustainable solution driven by regulations and the evolving preferences of industries and consumers alike.
Additionally, the automotive sector's relentless pursuit of lightweight and improved fuel efficiency has emerged as a substantial driver for bio-polyamide adoption. With the growing emphasis on sustainability in vehicle manufacturing, bio-polyamides' lightweight and high-strength properties make them an appealing alternative to traditional materials, reducing vehicle weight and emissions.
Bio-polyamides allow the textile sector to create eco-friendly fabrics with biodegradability, composability, and recyclability attributes. These qualities appeal to fashion brands dedicated to reducing their ecological footprint and championing circular economy principles. Consequently, bio-polyamides are becoming increasingly integral to the textile industry's efforts to provide sustainable and responsible choices to consumers.
For instance, in July 2023, the business conditions within the global textile industry are improving as per the findings of the Global Textile Industry Survey (GTIS) conducted by the International Textile Manufacturers Federation (ITMF) during the first half of July 2023. Notably, many companies have demonstrated resilience and adaptability, with an increasing proportion reporting positive changes in their business situations despite the challenging economic environment. This improvement in the textile sector will increase the requirement for bio-polyamide in the global market.
Bio-polyamides are known for their lightweight properties and the ability to be engineered for high strength-to-weight ratios. They are an attractive alternative for replacing heavier components traditionally made from metals or other plastics. Furthermore, the automotive industry's growing commitment to sustainability plays a crucial role in driving the adoption of bio-polyamides as they are derived from renewable sources, aligned with the sustainability goals of the automakers, and contribute to meeting regulatory standards related to emissions and environmental impact.
In 2022, the global automotive industry experienced a 10% increase in sales compared to 2020. This increase in automotive sales will likely continue globally during the forecast period, driving the demand for bio-polyamides globally.
Government regulations and policies have driven bio-polyamide adoption primarily because they promote bio-based and biodegradable materials. These regulations often include incentives, subsidies, and mandates encouraging manufacturers and industries to integrate bio-polyamides into their product lines. Since bio-polyamides are derived from renewable feedstocks and have the potential to significantly reduce the carbon footprint compared to their traditional fossil-based counterparts, the usage of bio-polyamides aligns with the goals of industries aiming to curtail greenhouse gas emissions and achieve greater sustainability.
For instance, the scarcity of carbon credit will force industries to switch towards commodities from renewable feedstock, which drives the demand for bio-polyamides in the global market.
The global supply chain disruptions were triggered by the COVID-19 pandemic, which hurt bio-polyamide. Shortages of essential raw materials and logistic challenges disrupted the production and distribution of bio-polyamide, leading to potential delays and scarcities in specific regions. Additionally, lockdowns and movement restrictions imposed in various countries resulted in labor shortages in downstream sectors such as automotive and textile. This further impeded bio-polyamide application, hindering their adoption in multiple regions. Economic instability and financial constraints influenced consumer purchase decisions and weakened the bio-polyamide market.
The bio-polyamide market experienced relatively limited impacts from the Russia-Ukraine war. However, disrupted transportation routes are critical for raw materials and distribution network supply chains. Consequently, there were delays in the production and distribution, leading to occasional shortages of bio-polyamide supply. Simultaneously, the geopolitical instability resulting from market uncertainty influenced investment choices made in textile and transportation industries, affecting bio-polyamide adoption. Moreover, trade disruptions stemming from the conflict extended the operation of the automotive and textile sectors, weakening the demand for bio-polyamide.
Prominent bio-polyamide manufacturers strategically establish new manufacturing facilities to address the changing consumer preferences for biodegradable components. DOMO Chemicals announced the beginning of construction in March 2023 for its new plant in Haiyan, Jiaxing, Zhejiang, China. The new plants will produce TECHNYL polyamide-based grades and are expected to operate entirely by the end of Q1 2024.
The bio-polyamide market is promising, driven by sustainability demands, supportive regulations, expanding applications, and alignment with circular economy principles. The applications of bio-polyamides are rapidly growing. These versatile materials find utility across diverse industries, including automotive, textiles, packaging, and electronics. Continuous research and development are expected to yield bio-polyamides with enhanced properties, unlocking new application areas and propelling the market growth. Additionally, bio-polyamides are well-suited to embrace the principles of the circular economy. The potential for recyclability and composability positions them as key players in pursuing sustainable and closed-loop systems, resonating strongly with environmentally conscious industries and consumers.
All segments will be provided for all regions and countries covered
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.