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市場調查報告書
商品編碼
1358993
到 2030 年 10 種主要塑膠的市場預測:依產品、用途、最終用戶和地區進行的全球分析Top 10 Plastics Market Forecasts to 2030 - Global Analysis By Product, Application, End User and By Geography |
根據Stratistics MRC預測,2023年全球十大塑膠市場規模將達5,134億美元,預計2030年將達到9,147億美元,預測期內年複合成長率為8.6%。
塑膠是人造或部分人造物質,可以形成固態物體。其生產使用自然資源:纖維素、煤炭、天然氣、鹽、原油。被稱為聚合物的長鏈分子是透過化學處理基本成分而產生的。聚合物彈性、堅固且易於成型。它還重量輕、耐腐蝕,並且能夠抵抗常見的家庭污染物。其獨特的特性使其成為許多行業中金屬的可行替代。
據 PlastIndia 基金會稱,印度僅熱塑性塑膠的產能就達到 15,788 KTA。同樣,工程塑膠、聚烯烴、聚苯乙烯和聚氨酯也是印度的主要市場。
工程聚合物比標準聚合物更堅固、更耐用,從而增加了對其產品的需求。它具有優異的熱性能和機械性能,重量輕且價格便宜。此外,由於金屬替代的需求不斷增加,工程聚合物被廣泛應用於各個產業。由於建築、機械和零件等各種最終用途領域對更先進聚合物解決方案的需求不斷增加,市場正在不斷擴大。
法規產品使用的法規可能會減緩市場擴張。隨著人們越來越擔心聚合物對環境造成的危害,政府已經實施了嚴格的法律和其他措施。許多政府和公司正在嘗試採用環保的塑膠替代,以減少其使用造成的環境破壞。從塑膠轉向永續產品正在限制全球市場的擴張。
許多行業對塑膠的需求都在增加,包括食品和飲料和飲料、消費品、汽車以及電氣和電子產品。全球產品消費背後的驅動力是食品和飲料產業對包裝不斷成長的需求。食品製造商更喜歡能夠減少食品品質劣化並防止污染的包裝。這種需求是由塑膠作為食品和外部環境之間的屏障的能力所驅動的。
大多數塑膠不可生物分解性,不會在環境中自然分解。塑膠可以持續數百年,污染生態系統、海洋和垃圾掩埋場。吃塑膠碎片的海洋和陸地動物面臨傷害甚至死亡的風險。塑膠碎片吞噬動物,塑膠污染破壞生態系統。這是限制市場拓展的因素。
疫情發生後,汽車業、建築業對塑膠的需求大幅下降。這種下降不僅與全球停工限制有關,還與某些領域的工業活動下降有關。同時,對醫用口罩、護目鏡、防護罩、手套、呼吸器、防護服和工作服等個人防護設備的需求可能會推動市場。
預計聚乙烯領域將是預測期內最大的產業。聚乙烯主要用於包裝行業,由地工膜、塑膠袋、塑膠薄膜、容器和瓶子結構。它被用於許多用途。低分子量聚乙烯聚合物用於潤滑油,中分子量聚乙烯聚合物用於製造可與石蠟混溶的蠟,而高分子量聚乙烯聚合物則經常用於塑膠領域。
預計包裝領域在預測期內複合年複合成長率最高。包裝是一個滲透率中等的最終用途市場,具有相當大的潛力。包裝領域嚴重依賴塑膠。此外,生物基塑膠的引入對食品、藥品以及食品和飲料包裝產生了重大影響。塑膠包裝擴大用於飲料、消費品、電器產品產品、玩具和服飾。
由於電氣和電子、醫療保健和製藥以及包裝行業對產品的需求不斷增加,預計北美在預測期內將佔據最大的市場佔有率。聚合物的使用還具有優異的耐熱性、緩蝕性、電絕緣性和低密度等特性。由於對塑膠污染的擔憂和可回收技術的進步,再生塑膠的使用正在增加。
由於都市化和工業化程度不斷提高,預計亞太地區在預測期內將保持最高的年複合成長率。由於低成本原料供應充足,中國預計將保持在該地區的領先地位。該地區的擴張也得益於建築和包裝行業的快速擴張。消費品產業對玩具、纖維和體育用品生產的需求不斷成長,預計將推動該地區的市場。
According to Stratistics MRC, the Global Top 10 Plastics Market is accounted for $513.4 billion in 2023 and is expected to reach $914.7 billion by 2030 growing at a CAGR of 8.6% during the forecast period. Plastic is a man-made or partially man-made substance that can be molded into solid things. Natural resources like cellulose, coal, natural gas, salt, and crude oil are used to make them. Long chains of molecules known as polymers are created by chemically treating the fundamental components. They are flexible, robust, and easily moldable. They are also lightweight, resistant to corrosion and many common home pollutants. They are a feasible alternative to metals in many industries due to their distinguishing characteristics.
According to the PlastIndia Foundation, India has 15,788 KTA production capacity of thermoplastics alone. Similarly, engineering plastics, polyolefin, polystyrene, and polyurethane have a major marketplace in India.
The demand for products has expanded as a result of engineering polymers' superior strength and durability over standard ones. They have superior thermal and mechanical qualities, are lightweight, and are inexpensive. Engineering polymers are also being used more widely across a range of industries as a result of the growing need for metal replacement. The market is expanding because there is an increasing need for more advanced polymer solutions across a variety of end-use sectors, including construction, machinery, and components.
Regulations governing the use of a product are likely to slow market expansion. As worries about the environmental harm that polymers cause have grown, strict government laws and other measures have been implemented. Many governments and businesses have tried to embrace non-plastic and greener alternatives in an effort to lessen the environmental damage brought on by the use of plastic. The switch from plastic to sustainable products restrains the expansion of the worldwide market.
Numerous industries, including food & beverage, consumer goods, automotive, and electrical & electronics, are seeing an increase in demand for plastic. Global product consumption is fueled by the food and beverage industry's growing demand for packaging. Packaging that reduces food quality deterioration and prevents contamination is preferred by food manufacturers. The need is being fuelled by plastics' capacity to serve as a barrier between food goods and the outside environment.
The majority of plastics cannot decompose naturally in the environment because they are non-biodegradable. They may remain for hundreds of years, contaminating ecosystems, oceans, and landfills. Marine and land animals that consume plastic debris risk harm or perhaps death. Debris made of plastic can entangle animals, and plastic pollution disturbs ecosystems. This is the element limiting market expansion.
Plastics demand from the automotive and building and construction industries has significantly decreased in the aftermath of the epidemic. This drop was linked to reduced industrial activity in certain sectors as well as global shutdown limitations. The need for personal protective equipment, such as face masks, goggles, shields, gloves, respirators, gowns, and coveralls, from the medical business, on the other hand, will drive the market.
The polyethylene segment is expected to be the largest during the forecast period. It is mostly utilized in the packaging industry, which comprises geo membranes, plastic bags, plastic films, and containers and bottles. It is employed in numerous applications. PE polymers with low molecular weight are used in lubricants, while those with medium molecular weight are utilized to make wax that is miscible with paraffin and those with high molecular weight are frequently employed in the plastics sector.
The packaging segment is expected to have the highest CAGR during the forecast period. Packaging is a moderately penetrated end-use market with considerable potential. The packaging sector has relied heavily on plastic. Additionally, the introduction of bio-based plastic has had a big impact on packaging for food, medicine, and beverages. Packaging for beverages, consumer products, appliances, toys, and clothing is increasingly made of plastic.
North America is projected to hold the largest market share during the forecast period owing to increasing product demand from the electrical & electronics, healthcare & pharmaceuticals, and packaging industries. The use of polymers is also aided by qualities including superior heat resistance, corrosion inhibition, electric insulation, and low density. The usage of recovered plastics in the area has increased as a result of worries about plastic pollution and the advancement of recyclable technologies.
Asia Pacific is projected to hold the highest CAGR over the forecast period owing to its increasing urbanization and industrialization. Due to the plentiful supply of low-cost raw materials in China, it is expected that it will continue to hold the top position in the regionThe expansion is also credited to the building and packaging sectors' rapid expansion. The market in the region is anticipated to be driven by expanding consumer products industry demand for the production of toys, textiles, and sporting goods.
Some of the key players in Top 10 Plastics market include: Polyplastics Co., Ltd., Dow Chemical Company, ExxonMobil Chemical Company, Solvay SA, Huntsman Corporation, SABIC, Ach Foam Technologies, Vinnolit GmbH & Co. Kg, Borealis AG, TotalEnergies, Arkema, Eastman Chemical Company, Chevron Phillips Chemical Co., Sumitomo Chemical Co., Ltd. and Covestro AG.
In May 2023, TotalEnergies acquired Iber Resinas to expand its plastic recycling activity in Europe. The company aims to establish the key presence of circular polymers in Europe, increase its recycled product offerings, and extend its access to raw materials through Iber Resinas's suppliers.
In April 2022, ExxonMobil launched Exceed S, a Performance Polyethylene (PE) resins that provide toughness and stiffness and is easy to process. The new PE will aid the company to offer lucrative opportunities to decrease the complexity of film designs and formulations while improving conversion efficiency, packaging durability, and film performance from its competitors.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.
List of Figures
Figure 1 Top 10 Plastics - Market Segmentation
Figure 2 Research Methodology
Figure 3 Data Mining
Figure 4 Data Analysis
Figure 5 Data Validation
Figure 6 Research Pipeline
Figure 7 Research Approach
Figure 8 Research Sources
Figure 9 Top 10 Plastics Market Scenario, Product (2023) (% Market Share)
Figure 10 Top 10 Plastics Market Scenario, Application (2023) (% Market Share)
Figure 11 Top 10 Plastics Market Scenario, End User (2023) (% Market Share)
Figure 12 Top 10 Plastics Market Scenario, Emerging Markets (2023) (% Market Share)
Figure 13 Porter's Five Forces Analysis - Top 10 Plastics
Figure 14 Global Top 10 Plastics Market Analysis & Projection, By Product (2023 VS 2030) (US$MN)
Figure 15 Global Top 10 Plastics Market Analysis & Projection, By Acrylonitrile Butadiene Styrene (2023 VS 2030) (US$MN)
Figure 16 Global Top 10 Plastics Market Analysis & Projection, By Polyethylene Terephthalate (2023 VS 2030) (US$MN)
Figure 17 Global Top 10 Plastics Market Analysis & Projection, By Polyoxymethylene (2023 VS 2030) (US$MN)
Figure 18 Global Top 10 Plastics Market Analysis & Projection, By Polyvinyl chloride (2023 VS 2030) (US$MN)
Figure 19 Global Top 10 Plastics Market Analysis & Projection, By Polyethylene (2023 VS 2030) (US$MN)
Figure 20 Global Top 10 Plastics Market Analysis & Projection, By Polycarbonate (2023 VS 2030) (US$MN)
Figure 21 Global Top 10 Plastics Market Analysis & Projection, By Polyamide (2023 VS 2030) (US$MN)
Figure 22 Global Top 10 Plastics Market Analysis & Projection, By Polystyrene (2023 VS 2030) (US$MN)
Figure 23 Global Top 10 Plastics Market Analysis & Projection, By Polyurethane (2023 VS 2030) (US$MN)
Figure 24 Global Top 10 Plastics Market Analysis & Projection, By Polypropylene (2023 VS 2030) (US$MN)
Figure 25 Global Top 10 Plastics Market Analysis & Projection, By Other Products (2023 VS 2030) (US$MN)
Figure 26 Global Top 10 Plastics Market Analysis & Projection, By Application (2023 VS 2030) (US$MN)
Figure 27 Global Top 10 Plastics Market Analysis & Projection, By Compression Molding (2023 VS 2030) (US$MN)
Figure 28 Global Top 10 Plastics Market Analysis & Projection, By Roto Molding (2023 VS 2030) (US$MN)
Figure 29 Global Top 10 Plastics Market Analysis & Projection, By Thermoforming (2023 VS 2030) (US$MN)
Figure 30 Global Top 10 Plastics Market Analysis & Projection, By Casting (2023 VS 2030) (US$MN)
Figure 31 Global Top 10 Plastics Market Analysis & Projection, By Injection Molding (2023 VS 2030) (US$MN)
Figure 32 Global Top 10 Plastics Market Analysis & Projection, By Blow Molding (2023 VS 2030) (US$MN)
Figure 33 Global Top 10 Plastics Market Analysis & Projection, By Calendering (2023 VS 2030) (US$MN)
Figure 34 Global Top 10 Plastics Market Analysis & Projection, By Extrusion (2023 VS 2030) (US$MN)
Figure 35 Global Top 10 Plastics Market Analysis & Projection, By Other Applications (2023 VS 2030) (US$MN)
Figure 36 Global Top 10 Plastics Market Analysis & Projection, By End User (2023 VS 2030) (US$MN)
Figure 37 Global Top 10 Plastics Market Analysis & Projection, By Electrical & Electronics (2023 VS 2030) (US$MN)
Figure 38 Global Top 10 Plastics Market Analysis & Projection, By Building & construction (2023 VS 2030) (US$MN)
Figure 39 Global Top 10 Plastics Market Analysis & Projection, By Medical devices (2023 VS 2030) (US$MN)
Figure 40 Global Top 10 Plastics Market Analysis & Projection, By Automotive (2023 VS 2030) (US$MN)
Figure 41 Global Top 10 Plastics Market Analysis & Projection, By Packaging (2023 VS 2030) (US$MN)
Figure 42 Global Top 10 Plastics Market Analysis & Projection, By Agriculture (2023 VS 2030) (US$MN)
Figure 43 Global Top 10 Plastics Market Analysis & Projection, By Utility (2023 VS 2030) (US$MN)
Figure 44 Global Top 10 Plastics Market Analysis & Projection, By Furniture & Bedding (2023 VS 2030) (US$MN)
Figure 45 Global Top 10 Plastics Market Analysis & Projection, By Consumer Goods (2023 VS 2030) (US$MN)
Figure 46 Global Top 10 Plastics Market Analysis & Projection, By Textile (2023 VS 2030) (US$MN)
Figure 47 Global Top 10 Plastics Market Analysis & Projection, By Other End Users (2023 VS 2030) (US$MN)
Figure 48 Polyplastics Co., Ltd. - Swot Analysis
Figure 49 Dow Chemical Company - Swot Analysis
Figure 50 ExxonMobil Chemical Company - Swot Analysis
Figure 51 Solvay SA - Swot Analysis
Figure 52 Huntsman Corporation - Swot Analysis
Figure 53 SABIC - Swot Analysis
Figure 54 Ach Foam Technologies - Swot Analysis
Figure 55 Vinnolit GmbH & Co. Kg - Swot Analysis
Figure 56 Borealis AG - Swot Analysis
Figure 57 TotalEnergies - Swot Analysis
Figure 58 Arkema - Swot Analysis
Figure 59 Eastman Chemical Company - Swot Analysis
Figure 60 Chevron Phillips Chemical Co. - Swot Analysis
Figure 61 Sumitomo Chemical Co., Ltd. - Swot Analysis
Figure 62 Covestro AG - Swot Analysis