市場調查報告書
商品編碼
1617209
奈米包裝市場至2030年的預測:按包裝類型、材料、技術、應用和地區的全球分析Nano-enabled Packaging Market Forecasts to 2030 - Global Analysis By Packaging Type, Material, Technology, Application and By Geography |
根據Stratistics MRC預測,2024年全球奈米包裝市場規模將達到379.1億美元,預計2030年將達到849.8億美元,預測期內年複合成長率為14.4%。奈米包裝利用奈米技術來增強傳統包裝解決方案的功能、性能和效率。這種巧妙的包裝方法結合了奈米級材料,如奈米顆粒、奈米複合材料和奈米塗層,以提供卓越的功能,如改進的阻隔品質、抗菌活性和智慧監控功能。這些開發即時追蹤包裝完整性、延長保存期限並保持產品新鮮度。
根據《MDPI Nanomaterials》發表的研究,將奈米材料納入食品包裝中可以顯著提高水和氧的阻隔性,在某些應用中將產品保存期限延長高達 50%。
提高食品安全和保存期限
奈米包裝使用奈米複合材料和奈米塗層等材料,提供極強的紫外線、濕氣和氧氣防護。由於這些屏障可以防止食品、飲料和藥物劣化,因此它們可以更長時間地保持新鮮。嵌入包裝材料中的銀奈米顆粒和其他抗菌劑可有效防止細菌和真菌的生長,降低污染的可能性。此外,這些功能還可以維持肉類和乳製品等溫度敏感產品的品質,減少食品廢棄物。
奈米材料價格高
奈米材料(例如奈米粒子和奈米複合材料)的生產和納入包裝材料需要先進的技術和專用設備,這增加了成本。這些成本反映在材料生產和產品製造階段,使得奈米包裝比傳統替代品昂貴得多。這種成本障礙阻礙了中小型企業採用它。此外,這些技術需要大量的研發投資,進一步限制了其大眾市場的承受能力和擴充性。
對智慧包裝系統的需求不斷成長
消費者和企業對食品安全、品管和供應鏈透明度的日益關注推動奈米技術智慧包裝的機會。奈米感測器可以追蹤濕度和溫度等環境參數,或識別排氣等腐爛徵兆。此類解決方案在食品、飲料和製藥等領域特別有益。此外,隨著物聯網(IoT)變得越來越普遍,奈米技術支援的智慧包裝可以與數位系統連接,以改善庫存管理並提供即時資料。
監管難度與不可預測性
由於缺乏統一的國際法規,基於奈米技術的包裝的採用受到了威脅。製造商面臨合規性挑戰,因為評估食品接觸應用中奈米材料安全性的標準因國家而異。例如,歐洲食品安全局(EFSA)和美國食品藥物管理局(FDA)提供了指南,但核准過程成本高且耗時。此外,監管的不確定性可能會降低投資興趣並推遲新產品的推出。
COVID-19 大流行對奈米技術包裝市場產生了兩個影響。一方面,食品安全和衛生意識的增強,特別是在食品、飲料和製藥行業,增加了對創意包裝解決方案的需求。隨著消費者和企業越來越關注健康和安全,具有抗菌和阻隔性的奈米包裝越來越受歡迎。然而,最初,生產和分銷受到勞動力短缺、小規模工業營運和供應鏈中斷的阻礙。經濟低迷也導致對高階包裝解決方案的支出謹慎,減緩了一些行業的採用。
聚合物細分市場預計將在預測期內成為最大的細分市場
在預測期內,聚合物細分市場預計將佔據奈米包裝市場的最大佔有率。聚合物基奈米複合材料的使用提高了傳統包裝材料的品質,是推動市場的主要因素。聚乙烯和聚丙烯等聚合物由於其經濟性、適應性和重量輕而被經常使用。這些聚合物非常適合食品和飲料包裝應用,因為奈米材料的添加顯著提高了它們的機械強度、熱穩定性和阻隔性。此外,由於食品和藥品等行業對有效且永續的包裝解決方案的需求不斷成長,基於聚合物的奈米包裝變得越來越受歡迎。
活性包裝領域預計在預測期內年複合成長率最高
奈米包裝市場的活性包裝領域預計將以最高的年複合成長率成長。由於消費者對具有更好保護和更長保存期限的產品的需求不斷成長,該市場快速成長。食品和飲料的品質和安全取決於除氧、水分控制和抗菌等特性,所有這些特性都融入了活性包裝技術。隨著公司尋找減少食品廢棄物和提高產品新鮮度的新方法,活性包裝越來越受到重視。此外,它們對環境變化快速反應的能力使它們在食品工業中特別有用,因為在食品工業中保持產品完整性非常重要。
基於奈米技術的包裝市場預計將由亞太地區(APAC)主導。這種主導地位很大程度上是由於中國和印度等人口大國食品和飲料行業的快速擴張,導致消費者對包裝商品的需求大幅增加。該地區對創新和效率的高度重視進一步加速了先進包裝解決方案的採用。此外,對永續性和食品安全的日益關注導致對基於奈米技術的包裝技術的投資增加,這些技術可提高產品品質和保存期限。
奈米技術包裝市場預計將在北美地區擁有最高的年複合成長率。包裝產業對創新的高度重視和顯著的技術進步是該成長的主要驅動力。該地區蓬勃發展的製藥業需要高品質的包裝解決方案來確保產品的功效和安全性。此外,隨著消費者越來越渴望衛生和方便的食品包裝,市場也不斷成長。為了應對不斷變化的消費者需求和環境問題,北美成為全球市場格局的主要參與者,因為它注重永續性和監管環境,並加速了奈米包裝技術的採用。
According to Stratistics MRC, the Global Nano-enabled Packaging Market is accounted for $37.91 billion in 2024 and is expected to reach $84.98 billion by 2030 growing at a CAGR of 14.4% during the forecast period. Nano-enabled packaging leverages nanotechnology to enhance the functionality, performance, and efficiency of traditional packaging solutions. This creative packaging method incorporates nanoscale materials like nanoparticles, nanocomposites, and nanocoatings to provide better features like improved barrier qualities, antimicrobial activity, and intelligent monitoring capabilities. These developments offer real-time tracking of package integrity, increase shelf life, and maintain product freshness.
According to a study published in MDPI Nanomaterials, the incorporation of nanomaterials into food packaging significantly improves barrier properties against water and oxygen, enhancing product shelf life by up to 50% in certain applications.
Improved food safety and shelf life
Nano-enabled packaging uses substances like nanocomposites and nanocoatings to make extremely strong defenses against UV light, moisture, and oxygen. Food drinks, and medications are kept fresher for longer owing to these barriers that stop their deterioration. Silver nanoparticles and other antimicrobial agents embedded in packaging materials actively prevent the growth of bacteria and fungi, lowering the possibility of contamination. Additionally, the quality of temperature-sensitive goods, such as meat and dairy, is preserved, and food waste is decreased owing to these features.
High price of nanomaterials
Costs are increased by the use of sophisticated technologies and specialized equipment in the production and incorporation of nanomaterials, such as nanoparticles and nanocomposites, into packaging materials. Nano-enabled packaging is substantially more expensive than traditional alternatives due to these costs, which are reflected in both the material production and product manufacturing stages. This cost barrier prevents small and medium-sized businesses from adopting. Furthermore, these technologies affordability and scalability for mass-market use are further constrained by the significant investment needed for research and development.
Increasing need for intelligent packaging systems
The growing emphasis on food safety, quality control, and supply chain transparency by consumers and businesses is propelling opportunities in nanotechnology-enabled smart packaging. Nanosensors can track environmental parameters like humidity and temperature or identify signs of spoiling, like gas emissions. In sectors like food, beverages, and pharmaceuticals, these solutions are especially beneficial. Moreover, as the Internet of Things (IoT) gains traction, smart packaging with nanotechnology can interface with digital systems to improve inventory management and deliver real-time data.
Regulatory difficulties and unpredictability
The adoption of packaging enabled by nanotechnology is threatened by the absence of uniform international regulations. Manufacturers face compliance issues because different nations have different standards for evaluating the safety of nanomaterials in applications involving food contact. For example, although the European Food Safety Authority (EFSA) and the U.S. Food and Drug Administration (FDA) offer guidelines, the approval procedures can be expensive and time-consuming. Additionally, uncertainty in regulations may discourage investment and delay the release of new products.
The COVID-19 pandemic affected the market for packaging enabled by nanotechnology in two ways. On the one hand, increased demand for creative packaging solutions, especially in the food, beverage, and pharmaceutical industries, was fuelled by growing awareness of food safety and hygiene. As consumers and businesses concerns about health and safety grew, nano-enabled packaging with antimicrobial and barrier-enhancing qualities gained popularity. However, at first, production and distribution were hindered by labor shortages, smaller industrial operations, and supply chain disruptions. The economic downturn also caused cautious spending on high-end packaging solutions, which delayed adoption in some industries.
The Polymers segment is expected to be the largest during the forecast period
Over the course of the forecast period, the Polymers segment is expected to hold the largest share in the nano-enabled packaging market. The use of polymer-based nanocomposites, which improve the qualities of conventional packaging materials, is the main factor driving this market. Polymers like polyethylene and polypropylene are frequently used because of their affordability, adaptability, and lightweight nature. These polymers are perfect for food and beverage packaging applications because the addition of nanomaterials greatly enhances their mechanical strength, thermal stability, and barrier qualities. Moreover, polymer-based nano-enabled packaging is becoming more and more popular as a result of the growing need for effective and sustainable packaging solutions in sectors like food and pharmaceuticals.
The Active Packaging segment is expected to have the highest CAGR during the forecast period
The active packaging segment of the nano-enabled packaging market is anticipated to grow at the highest CAGR. Due to rising consumer demand for goods with improved protection and longer shelf lives, this market is growing quickly. The quality and safety of food and beverages depend on features like oxygen scavenging, moisture control, and antimicrobial qualities, all of which are incorporated into active packaging technologies. As businesses look for new ways to cut down on food waste and enhance product freshness, active packaging is starting to gain traction. Additionally, it is especially useful in the food industry, where preserving product integrity is crucial, due to its capacity to react quickly to changes in the environment.
The market for packaging enabled by nanotechnology is anticipated to be dominated by the Asia Pacific (APAC) region. The fast expansion of the food and beverage sectors in populous nations like China and India, where there is a considerable rise in consumer demand for packaged goods, is primarily responsible for this dominance. The adoption of advanced packaging solutions is further accelerated by the region's strong emphasis on technological innovation and efficiency. Furthermore, increased investments in packaging technologies enabled by nanotechnology, which improve product quality and shelf life, are a result of the growing emphasis on sustainability and food safety.
The market for packaging enabled by nanotechnology is expected to grow at the highest CAGR in the North American region. The packaging industry's strong emphasis on innovation and notable technological advancements are the main drivers of this growth. Because of the region's thriving pharmaceutical industry, high-quality packaging solutions are necessary to guarantee the efficacy and safety of the products. Moreover, the market is also growing as a result of consumers growing desire for hygienic and convenient food packaging. As it adjusts to changing consumer demands and environmental concerns, North America is a major player in the global market landscape because of its emphasis on sustainability and regulatory compliance, which also promotes the adoption of nano-enabled packaging technologies.
Key players in the market
Some of the key players in Nano-enabled Packaging market include BASF SE, Chevron Phillips Chemical Company, 3M Company, CCL Industries Inc., Honeywell International, Inc, Avery Dennison Corporation, Tetra Pak International S.A., Sonoco Products Company, Checkpoint Systems, Inc, Amcor Plc, DuPont Teijin Films, Bemis Company, Inc, Sealed Air Corporation, Klockner Pentaplast Ltd and Danaflex Nano LLC.
In July 2024, BASF and ENGIE signed a 7-year Biomethane Purchase Agreement (BPA). Under the BPA, ENGIE will supply BASF with 2.7 to 3.0 terawatt hours of biomethane throughout the term of the agreement. BASF uses certified biomethane at its Ludwigshafen/Germany and Antwerp/Belgium sites as a sustainable alternative to fossil raw materials in its manufacturing process.
In May 2024, CCL Industries Inc announced it has signed a binding agreement to acquire the remaining 50% equity interest in its Middle East joint venture, Pacman-CCL ("PCCL"), from its partner, Albwardy Investment LLC headquartered in Dubai.
In March 2024, 3M and HD Hyundai Korea Shipbuilding & Marine Engineering (KSOE) have signed a joint research project agreement to develop large liquid hydrogen storage tanks using Glass Bubbles from 3M - a high-strength, low-density hollow glass microsphere. The collaborative research will focus on developing a high-performance vacuum insulation system for liquified hydrogen storage and transportation.