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市場調查報告書
商品編碼
1324349
2030 年生物塑膠包裝市場預測:按材料、類型、用途和地區進行的全球分析Bioplastics Packaging Market Forecasts to 2030 - Global Analysis By Material (Non Biodegradable, Biodegradable and Other Materials), Type, Application and By Geography |
據Stratistics MRC預測,2023年全球生物塑膠包裝市場規模將達到69億美元,預計到2030年將達到196億美元,預測期內年複合成長率為16.0%。
生物塑膠是環保包裝材料,可用於運輸、保護和保存各種商品。生物塑膠通常用於包裝和保存乳製品、酒精(碳酸和非碳酸)和個人護理產品。含有澱粉混合物,例如生物聚己二酸對苯二甲酸丁二醇酯 (PBAT)、生物聚乙烯、生物聚醯胺 (PA) 和生物聚對苯二甲酸乙二醇酯 (PET)。薄膜、瓶子、餐具、袋子、標籤、托盤和杯子都是通常使用生物塑膠材料的剛性和軟質包裝的例子。生物塑膠包裝比傳統塑膠包裝具有更低的碳排放,並且具有更大的彈性、韌性和拉伸強度。
據FEA統計,德國每年產生約628萬噸塑膠廢棄物,而全球約為4億噸。一般來說,一個塑膠瓶大約需要500到1000年才能分解。
推動市場擴張的關鍵要素之一是全球對環保和永續包裝解決方案的需求不斷成長。可重複使用且快速分解的生物塑膠包裝有助於保護自然資源並減少危險廢棄物。因此,由於環保意識的增強以及減少塑膠對垃圾掩埋場和海洋影響的願望,市場預計將擴大。此外,許多產品的開拓,例如3D(3D)列印生物塑膠包裝的誕生,正在支持市場擴張。
由於生物塑膠和生物聚合物的性能和耐久性的限制,它們尚未廣泛應用於各種行業,包括包裝、電子、農業和汽車行業。與傳統的石油基聚合物相比,生物基聚合物具有不同的功能特性,例如較低的空氣、水、氧氣和熱阻隔性能,使其在食品、製藥、個人護理和電子設備包裝領域具有吸引力。受限制的。
對剛性生物塑膠的需求不斷增加,有助於市場擴張。這些塑膠用於化妝品的包裝,如面霜、口紅、粉餅和粉底。此外,將生物塑膠材料與其他可接受的廢棄物結合起來以確保資源效率並減少溫室氣體(GHG)排放的趨勢正在加速市場擴張。由於食品和飲料行業產品使用量的增加以及政府為促進使用環保包裝而採取的多項措施的實施,預計該市場將會成長。
雖然生物分解性是一個毫無疑問的優勢,但大多數等級都需要專門的工業堆肥方法來分解,並有足夠密集的基礎設施來處理這些物品,只有少數經濟領域。因此,它們可能會污染回收材料或掩埋垃圾掩埋場,從而使環境惡化。因此,需要其他方法來去除這些聚合物,這增加了最終產品的價格。
由於 COVID-19 大流行對生產、運輸和其他供應鏈的影響,傳統塑膠的價格下跌。該市場成長下降的根本原因是燃油使用量已達到二戰以來的最低水平,因此傳統塑膠的價格也有所下降。此外,疫情還推遲了許多政府和組織提案的關於拋棄式塑膠和綠色投資的立法,減少了對生物基替代品的需求。
由於各種最終用途行業對生物基塑膠的需求不斷成長,預計可生物分解領域在預測期內將出現最高成長。聚乳酸、澱粉混合物、PBAT、PBS、PHA、聚己內酯和醋酸纖維素是可生物分解塑膠的例子。澱粉混合物很容易大量供應,使其成為傳統塑膠的理想替代品。
預計靈活細分市場在預測期內的年複合成長率最高。生物塑膠生產技術、即裝包裝使用案例和改進的包裝方法的發展預計將推動軟包裝中生物塑膠的需求。此外,軟包裝的需求量很大,尤其是休閒食品和食品和食品和飲料。
預計亞太地區在預測期內將佔據最大的市場佔有率。生物塑膠廣泛用於各種重要用途,包括疏散袋、購物袋、散裝包裝、農用地膜和瓶子。此外,該地區的客戶越來越意識到塑膠和不可生物分解的包裝如何影響環境。該地區對環保包裝的需求日益成長,特別是由生物塑膠製成的包裝。
預計歐洲在預測期內將佔據最高的市場佔有率。存在嚴格的環保法律,消費者越來越關注環境。此外,歐盟決定盡量減少拋棄式塑膠產品消耗等政府舉措預計將在評估期間推動生物塑膠的需求。
According to Stratistics MRC, the Global Bioplastics Packaging Market is accounted for $6.9 billion in 2023 and is expected to reach $19.6 billion by 2030 growing at a CAGR of 16.0% during the forecast period. Bioplastics are eco-friendly materials for packaging that can be used to transport, protect, and preserve a variety of items. They are often used for the packaging and storage of dairy products, alcohol (both carbonated and non-carbonated), and personal care products. They contain biopolybutylene adipate terephthalate (PBAT), biopolyethylene, biopolyamide (PA), and biopolyethylene terephthalate (PET) among other starch mixes. Films, bottles, cutlery, pouches, labels, trays, and cups are all examples of rigid and flexible packaging that regularly use bioplastic materials. Packaging made of bioplastic has a lower carbon footprint than conventional plastic packaging and offers superior flexibility, toughness, and tensile strength.
According to statistics from the FEA, Germany produces almost 6.28 million tons of plastic waste each year, and globally, the figure is about 400 million tons. In general, a plastic bottle takes approximately 500 to 1,000 years to decompose.
One of the main factors fueling the market's expansion is the rising need for environmentally friendly and sustainable packaging solutions around the world. Reusable and quicker-decomposing bioplastic packaging materials help conserve natural resources and reduce harmful waste. Accordingly, the market is expected to increase as a result of growing environmental awareness and the desire to lessen the impact of plastic on landfills and seas. Additionally, a number of product developments, like the creation of three-dimensional (3D) printed bioplastic packaging materials, are boosting market expansion.
Bioplastics and biopolymers' performance and durability limitations prevent them from being widely used in a variety of industries, such as packaging, electronics, agriculture, and the automobile industry. When compared to traditional petroleum-based polymers, bio-based polymers have different functional characteristics, including lower barriers to air, water, oxygen, and heat, which limit their use in the packaging of food, medicines, personal care items, and electronics.
The need for rigid bioplastics is rising, which is helping the market expand. These plastics are used to package cosmetic products like creams, lipstick, compact powders, and foundations. In addition, growing trends to combine bioplastic materials with other acceptable wastes to assure resource efficiency and reduce greenhouse gas (GHG) emissions are accelerating market expansion. The market is expected to grow thanks to rising product usage in the food and beverage sector and the implementation of several government efforts to promote the use of eco-friendly packaging.
Even though biodegradability is unquestionably a benefit, the majority of grades require specialised industrial composting methods to break down, and only a small number of economies have a dense enough infrastructure to handle these items. As a result, they could contaminate the recycling feedstock or end up in landfills, hurting the environment. Therefore, a separate method is needed to get rid of these polymers, which drives up the price of the final product.
Prices for conventional plastics have decreased as a result of the COVID-19 pandemic's effects on production, shipping, and other aspects of the supply chain. The fundamental cause of the decline in this market's growth is the use of crude oil for fuel, which has reached its lowest level since World War II and has resulted in reduced pricing for traditional plastics. Additionally, the pandemic delays legislation on single-use plastics and green investments proposed by numerous governments and organisations, which lowers the need for bio-based alternatives.
The biodegradable segment is expected to be the largest during the forecast period, owing to owing to the rising demand for bio-based plastics in various end-use industries, which is expected to drive their demand during the assessment period. Polylactic acid, starch blends, PBAT, PBS, PHA, polycaprolactone, and cellulose acetate are examples of biodegradable plastics. Starch blends are a great substitute for traditional plastics since they are so readily available in large quantities.
The flexible segment is expected to have the highest CAGR during the forecast period. Developments in the production of bioplastic technologies, the use of case-ready packaging, and improved packaging practices are anticipated to drive the demand for bioplastics in flexible packaging. Furthermore, the demand for flexible packaging is high, especially for snack foods and beverages.
Asia Pacific is projected to hold the largest market share during the forecast period. Bioplastics are broadly used in various essential applications such as refuge bags, shopping bags, loose packaging, agricultural mulch films, and bottles, among others. Additionally, customers in the area are becoming more and more aware of how plastic and non-biodegradable packaging affects the environment. In the area, there is a growing need for eco-friendly packaging, especially packaging made of bioplastic.
Europe is projected to hold the highest market share during the forecast period. The presence of stringent environment-friendly laws, and increasing environmental concerns among consumers. In addition, government initiatives, such as the decision of the EU to minimize the overall consumption of single-use plastic products, are anticipated to propel the demand for bioplastics during the assessment period.
Some of the key players in Bioplastics Packaging market include: Alpagro Packaging, Amcor Limited, Mitsubishi Chemical Corporation, BASF SE, Novamont S.p.A, Alpha Packaging, Mondi plc, Transcontinental Inc., Constantia Flexibles Group GmbH, NatureWorks, Coveris, Eastman Chemical Company, Koninklijke DSM N.V., WestRock Company, Braskem and Tetra Laval International SA.
In October 2022, Braskem announced to expand its I'm greenTM biopolymer production capacity by 30%. The company is investing USD 60 million to expand the capacity. Braskem and SCG chemicals are the partners for the project. This partnership helps to double the current capacity for I'm greenTM products.
In June 2021, BASF launched COSMOS-approved texturizing biopolymer Hydagen. The cold processable rheology modifier obtained from the tuber of the konjac plant native to Southwest China is suitable for aqueous systems such as gels, fluids, serums, and novel formats such as patches, jellies, and peel-off formulations.