세계 농업용 플라스틱 시장 – 2023-2030

Global Agricultural Plastics Market - 2023-2030

상품코드MA2277
발행기관DataM Intelligence
발행일2023.06.12
페이지 수195 Pages
포맷PDF + EXCEL
커버리지Global

6,525,00011,775,000

보고서 요약(국문)

시장 개요
세계 농업용 플라스틱 시장은 2022년 106억 달러 규모에 달했으며, 2023년부터 2030년까지 연평균 6.2%의 성장률을 기록하며 2030년에는 171억 달러에 이를 것으로 예상됩니다. 재생 에너지 프로젝트의 성장은 중장기적으로 농업용 플라스틱 수요를 견인하는 주요 요인이 될 것입니다.
세계 농업용 플라스틱 시장은 농업 기술의 발전과 함께 지속적으로 진화하고 있습니다. 특히 선진국의 도시 및 준도시 지역에서 수직 농업이 확대됨에 따라, 이러한 농업 환경에 특화된 새로운 유형의 플라스틱 개발 기회가 창출될 것입니다.
플라스틱 제조업체들은 산업의 지속가능성을 향상시키기 위해 생산 공정을 개선하고 있습니다. 예를 들어, 미국에 본사를 둔 다국적 화학 기업인 다우(Dow)는 2023년 5월, 재생 가능한 폴리에틸렌 생산을 위한 바이오 기반 에틸렌 원료의 장기 공급 계약을 확보했다고 발표했습니다.

시장 동향
새로운 농업 기술의 인기 증가
최근 도시화로 인해 경작 가능한 비옥한 토지가 줄어들면서 수직 농업, 수경재배, 아쿠아포닉스와 같은 새로운 농업 기술이 점점 더 인기를 얻고 있습니다. 아랍에미리트, 싱가포르, 이스라엘과 같은 국가들은 경작지가 부족한 상황에서 신선한 과일과 채소의 국내 생산량을 늘리기 위해 수직 농업과 수경재배를 대규모로 도입하고 있습니다.
거의 모든 새로운 농업 기술은 단열 및 미기후 조절을 위해 농업용 플라스틱을 광범위하게 사용합니다. 플라스틱은 작물을 악천후, 해충, 질병 ​​및 자외선으로부터 보호합니다. 또한 플라스틱은 효율적인 물과 ​​영양분 분배를 촉진하여 작물의 성장과 생산성을 최적화합니다.
기후 변화의 심각성 증가
기후 변화는 가뭄, 홍수, 극심한 기온 변화와 같은 예측 불가능한 기상 현상을 증가시켰습니다. 더욱이 기후 변화의 심각성이 증가함에 따라 농작물 병해충의 분포 범위가 넓어져 작물 손실 가능성이 커지고 있습니다. 대기 중 이산화탄소 농도 증가는 식량 작물의 영양가를 떨어뜨리는 것으로 알려져 있습니다.
농업용 플라스틱은 온실이나 터널과 같은 보호 구조물을 제공하여 작물을 악천후로부터 보호함으로써 이러한 기상 현상의 영향을 완화하는 데 도움이 됩니다. 플라스틱은 통제된 환경을 조성하여 농부들이 보다 안정적이고 유리한 기후에서 작물을 재배할 수 있도록 함으로써 기후 변화 및 예측 불가능한 기상 패턴과 관련된 위험을 줄여줍니다.
제한된 재활용 인프라
최근 몇 년 동안 플라스틱을 광범위하게 사용하는 대안 농업 방식이 크게 증가했지만, 재활용 인프라는 이러한 성장을 따라가지 못하고 있습니다. 일부 국가에서는 플라스틱 폐기물의 발생 및 재활용에 대해 매우 엄격한 규제를 시행하고 있습니다. 이러한 국가의 농업 생산자들은 플라스틱 폐기물 처리 인프라가 부족하여 엄중한 법적 처벌을 받고 있습니다.
재활용 노력이 탄력을 받고 있지만, 농업용 플라스틱 분야는 재활용 인프라 부족으로 어려움을 겪고 있습니다. 다층 필름이나 오염 물질과 같은 농업용 플라스틱의 복잡한 특성으로 인해 재활용이 더욱 어려워집니다. 적절한 수거, 분류 및 재활용 시설의 부족은 농업용 플라스틱의 재활용 선택지를 제한하여 폐기물 증가로 이어집니다.
코로나19 영향 분석
코로나19 팬데믹은 전 세계 공급망을 교란시키고 세계 농업 산업에 상당한 영향을 미쳤습니다. 봉쇄 조치와 노동력 부족은 농업 활동에 영향을 미쳐 농업용 플라스틱 수요 감소를 초래했습니다. 팬데믹 관련 제한으로 인해 농업용 플라스틱 생산 또한 차질을 빚었습니다.
또한 경기 침체와 소비 감소는 농산물 수요에 연쇄적인 영향을 미쳐 농업용 플라스틱 수요에도 간접적으로 영향을 미쳤습니다. 그러나 팬데믹 이후 농업 부문이 회복되면서 농업용 플라스틱 수요도 다시 증가했습니다.
AI 영향
인공지능(AI) 기술의 발전은 농업에 혁명을 일으키고 농업용 플라스틱 사용에 영향을 미칠 잠재력을 가지고 있습니다. 정밀 농업 및 자율 시스템과 같은 AI 기반 솔루션은 자원 배분, 작물 관리 및 수확량 예측을 최적화합니다. 이러한 기술은 식물의 필요에 따라 정확하게 물을 공급하는 정밀 관개 시스템과 같은 특정 용도에서 과도한 플라스틱 사용의 필요성을 줄여줍니다.
또한 AI는 농업용 플라스틱 사용에 있어 데이터 기반 의사결정을 촉진하여 효율성을 높이고 폐기물을 줄일 수 있습니다. 데이터 기반 농업용 플라스틱 사용은 미세 플라스틱 오염이 식량 생산에 미치는 영향을 억제하는 데 도움이 될 것입니다. AI는 새로운 플라스틱 연구 개발 프로세스를 최적화하는 데에도 적용될 수 있습니다.
우크라이나-러시아 전쟁의 영향
우크라이나-러시아 전쟁은 우크라이나와 러시아의 농업 산업을 파괴하여 양국의 농업용 플라스틱 수요 감소로 이어졌습니다. EU와 미국은 농업을 포함한 러시아 경제의 모든 주요 부문에 강력한 경제 제재를 가했습니다. 이러한 제재로 인해 러시아는 농업용 플라스틱 수요를 충족하기 위해 아시아 공급업체로 눈을 돌렸습니다.
전쟁은 또한 러시아의 에너지 공급 차질로 인해 유럽의 에너지 가격을 급등시켰습니다. 높은 에너지 가격은 유럽 플라스틱 제조업체의 경쟁력을 약화시켰습니다. 이러한 상황은 아시아와 북미 제조업체들이 유럽 시장 점유율을 확대할 수 있는 기회를 만들어냈습니다.

시장 세분화
세계 농업용 플라스틱 시장은 소재, 용도 및 지역별로 세분화됩니다.
높은 다용도성과 내구성 덕분에 폴리에틸렌은 가장 널리 사용되는 농업용 플라스틱입니다.
폴리에틸렌은 플라스틱 소재 시장 점유율의 거의 3분의 1을 차지합니다. 폴리에틸렌은 성형, 압출 또는 가공을 통해 다양한 모양과 크기로 쉽게 만들 수 있는 매우 다용도적인 플라스틱입니다. 이러한 다용도성 덕분에 필름, 시트, 백, 튜브, 파이프 등 다양한 농업용 플라스틱 제품을 생산할 수 있습니다.
폴리에틸렌은 농업 분야에 필수적인 뛰어난 내구성과 수명을 자랑합니다. 농업용 플라스틱은 햇빛, 습기 및 화학 물질 노출을 포함한 가혹한 환경 조건을 견뎌야 합니다. 폴리에틸렌은 자외선, 습기 및 많은 농업용 화학 물질에 대한 내성이 강하여 심각한 열화 없이 장기간 현장에서 사용할 수 있습니다.
지역 분석
강력한 정부 인센티브로 북미 지역이 주요 시장 점유율 확보
북미 지역은 세계 농업용 플라스틱 시장의 거의 4분의 1을 차지합니다. 미국과 캐나다는 강력한 정부 인센티브를 통해 농업 산업의 혁신을 장려해 왔습니다. 미국 연방 정부는 농업 기업에 대한 보조금으로 매년 약 200억 달러를 지출합니다.
미국 농무부(USDA)는 또한 새로운 농업 혁신에 대한 우대 보조금 및 대출을 제공합니다. 미국의 농업 연구 개발은 주로 생분해성 플라스틱, 플라스틱 폐기물 감소, 농업용 플라스틱의 기능적 특성 향상과 같은 분야에 집중되어 있습니다. 2022년 12월, USDA는 농업 산업을 위한 새로운 바이오 제품 및 바이오 플라스틱 개발을 위해 950만 달러의 보조금을 지원한다고 발표했습니다.
경쟁 환경
주요 글로벌 기업으로는 AEP Industries Inc., BASF SE, Dow, ExxonMobil Chemical, Novamont S.p.A., Trioplast Group, Berry Global, Grupo Armando Alvarez, Ab Rani Plast Oy 및 BioBag International AS 등이 있습니다.
보고서 ​​구매 이유

• 소재, 적용 분야 및 지역별 글로벌 농업용 플라스틱 시장 세분화를 시각화하고 주요 상업 자산 및 주요 업체를 파악합니다.

• 트렌드 분석 및 공동 개발을 통해 사업 기회를 발굴합니다.

• 모든 세그먼트를 포함한 농업용 플라스틱 시장 수준의 다양한 데이터가 담긴 엑셀 자료를 제공합니다.

• 심층적인 질적 인터뷰와 연구를 바탕으로 종합적인 분석 결과를 담은 PDF 보고서를 제공합니다.

• 주요 업체들의 핵심 제품을 모두 포함한 제품 맵핑 자료를 엑셀 파일로 제공합니다.

글로벌 농업용 플라스틱 시장 보고서는 약 50개의 표, 53개의 그림, 195페이지 분량입니다.
주요 고객 (2023년 기준)
• 플라스틱 제조업체
• 석유화학 회사
• 제조업체/구매자
• 산업 투자자/투자은행
• 시장 조사 전문가
• 신흥 기업

보고서 요약(영어 원문)

Market Overview
The Global Agricultural Plastics Market reached US$ 10.6 billion in 2022 and is expected to reach US$ 17.1 billion by 2030 growing with a CAGR of 6.2% during the forecast period 2023-2030. The growth of renewable energy projects will be a key factor in driving the demand for agricultural plastics in the medium term.
The global agricultural plastics market is witnessing continuous evolution, with new advances in farming technology. The expansion of vertical farming, especially in urban and semi-urban areas in developed countries will create new opportunities for the development of new types of plastics uniquely suited to its needs.
Plastic manufacturers are modifying their production processes to improve sustainability in the industry. For instance, in May 2023, Dow, the U.S.-based multinational chemical company, announced that it secured a long-term supply of bio-based ethylene feedstock for the production of renewable polyethylene.
Market Dynamics
Growing Popularity of New Farming Techniques
New farming techniques such as vertical farming, hydroponics and aquaponics have become increasingly popular in recent years, as growing urbanization shrinks the availability of fertile and arable land. Countries such as the UAE, Singapore and Israel are adopting vertical farming and hydroponics on a large scale to increase domestic production of fresh fruits and vegetables in the absence of arable land.
Almost all new farming techniques extensively rely on the usage of agricultural plastics for insulation and microclimate control. Plastics protect crops from adverse weather conditions, pests, diseases and UV radiation. Furthermore, plastics also facilitate efficient water and nutrient distribution, optimizing crop growth and productivity.
Increasing Severity of Climate Change
Climate change has resulted in the rise of unpredictable weather events, including droughts, floods, and extreme temperatures. Furthermore, the rising severity of climate change has increased the range of distribution of agricultural pests and weeds, thus creating more potential for crop loss. Rising atmospheric CO2 levels are also purported to reduce the nutritional value of food crops.
Agricultural plastics help mitigate the impact of these weather events by providing protective structures, such as greenhouses and tunnels, which shield crops from adverse weather conditions. By creating a controlled environment, plastics enable farmers to cultivate crops in a more stable and favorable climate, reducing the risks associated with climate change and unpredictable weather patterns.
Limited Recycling Infrastructure
Alternative farming methods that extensively use plastic have grown tremendously in recent years, however, recycling infrastructure hasn’t scaled up to account for this growth. Some countries have extremely stringent regulations on the generation and recycling of plastic waste. Agricultural producers in these countries face tough legal penalties due to the limited infrastructure available for handling plastic waste.
Although recycling initiatives are gaining momentum, the agricultural plastics sector faces challenges due to limited recycling infrastructure. The complex nature of agricultural plastics, such as multi-layer films and contaminated materials, makes recycling more difficult. The lack of proper collection, sorting and recycling facilities limits the recycling options for agricultural plastics, leading to increased waste.
COVID-19 Impact Analysis
The COVID-19 pandemic disrupted global supply chains and had a significant impact on the global agricultural industry. Lockdowns and labor shortages affected agricultural activities which led to a reduction in demand for agricultural plastics. The production of agricultural plastics was also disturbed due to pandemic restrictions.
Furthermore, the economic downturn and reduced consumer spending had a ripple effect on the demand for agricultural products, indirectly affecting the demand for agricultural plastics. However, in the aftermath of the pandemic, the agricultural sector rebounded, leading to a resurgence in the demand for agricultural plastics.
AI Impact
Advancements in artificial intelligence (AI) technologies have the potential to revolutionize agriculture and impact the usage of agricultural plastics. AI-powered solutions, such as precision farming and autonomous systems, optimize resource allocation, crop management and yield prediction. The technologies reduce the need for excessive plastic use in certain applications, such as precision irrigation systems that precisely deliver water based on plant needs.
AI can also facilitate better data-driven decision-making in the use of agricultural plastics, improving their efficiency and reducing waste. Data-driven usage of agricultural plastics will help to curb the impact of microplastic pollution on food production. AI can also be applied to optimize the research and development process for new plastics.
Ukraine-Russia Impact
The Ukraine-Russia war disrupted the agricultural industries of Ukraine and Russia, thus leading to a reduced demand for agricultural plastics from both countries. Stringent economic sanctions were imposed by the EU and the U.S., on all major sectors of the Russian economy, including agriculture. The sanctions caused Russia to switch towards Asian suppliers to fulfill its demand for agricultural plastics.
The war also caused a major jump in European energy prices, as Russia disrupted supplies to the region. High energy prices have eroded the competitiveness of European plastic manufacturers. The scenario has created opportunities for Asian and North American manufacturers to increase their market shares at Europe’s expense.
Segment Analysis
The global agricultural plastics market is segmented based on material, application and region.
Due to its High Versatility and Durability, Polyethylene is the Most Widely Used Agricultural Plastic
Polyethylene accounts for nearly a third of the market share of plastic materials. Polyethylene is a highly versatile plastic that can be easily molded, extruded, or formed into various shapes and sizes. The versatility allows for various agricultural plastic products such as films, sheets, bags, tubes, and pipes to be produced from polyethylene.
Polyethylene exhibits excellent durability and longevity, which are essential characteristics for agricultural applications. Agricultural plastics need to withstand harsh environmental conditions, including exposure to sunlight, moisture and chemicals. Polyethylene resists degradation from UV radiation, moisture and many agricultural chemicals, ensuring prolonged use in the field without significant deterioration.
Geographical Analysis
Strong Government Incentives Enable North America to Garner Major Market Share
North America occupies a share of nearly a quarter of the global agricultural plastics market. U.S. and Canada have encouraged innovation in their agriculture industries through strong government incentives. The U.S. federal government spends nearly US$ 20 billion annually on subsidies for farm businesses.
The U.S. Department of Agriculture (USDA) also grants preferential grants and loans for new agricultural innovations. Agricultural R&D in the U.S. mainly focuses on areas such as biodegradable plastics, reducing plastic waste and enhancing the functional properties of agricultural plastics. In December 2022, the USDA announced a grant of US$ 9.5 million to develop new bioproducts and bioplastics for the agricultural industry.
Competitive Landscape
The major global players include AEP Industries Inc., BASF SE, Dow, ExxonMobil Chemical, Novamont S.p.A., Trioplast Group, Berry Global, Grupo Armando Alvarez, Ab Rani Plast Oy and BioBag International AS.
Why Purchase the Report?
• To visualize the global agricultural plastics market segmentation based on material, application and region, as well as understand key commercial assets and players.
• Identify commercial opportunities by analyzing trends and co-development.
• Excel data sheet with numerous data points of agricultural plastics market-level with all segments.
• PDF report consists of a comprehensive analysis after exhaustive qualitative interviews and an in-depth study.
• Product mapping available as Excel consisting of key products of all the major players.
The global agricultural plastics market report would provide approximately 50 tables, 53 figures and 195 Pages.
Target Audience 2023
• Plastics Manufacturers
• Petrochemical Companies
• Manufacturers/ Buyers
• Industry Investors/Investment Bankers
• Research Professionals
• Emerging Companies

상세 목차

1. Methodology and Scope
1.1. Research Methodology
1.2. Research Objective and Scope of the Report
2. Definition and Overview
3. Executive Summary
3.1. Snippet by Material
3.2. Snippet by Application
3.3. Snippet by Region
4. Dynamics
4.1. Impacting Factors
4.1.1. Drivers
4.1.1.1. Global Drive for Improving Crop Yields
4.1.1.2. Growing Adoption of Vertical Farming
4.1.1.3. Growing Popularity of New Farming Techniques
4.1.1.4. Increasing Severity of Climate Change
4.1.2. Restraints
4.1.2.1. Growing Concerns about the Microplastic Contamination of the Food Chain
4.1.2.2. Limited Recycling Infrastructure
4.1.3. Opportunity
4.1.4. Impact Analysis
5. Industry Analysis
5.1. Porter's Five Force Analysis
5.2. Supply Chain Analysis
5.3. Pricing Analysis
5.4. Regulatory Analysis
6. COVID-19 Analysis
6.1. Analysis of COVID-19
6.1.1. Scenario Before COVID
6.1.2. Scenario During COVID
6.1.3. Scenario Post COVID
6.2. Pricing Dynamics Amid COVID-19
6.3. Demand-Supply Spectrum
6.4. Government Initiatives Related to the Market During Pandemic
6.5. Manufacturers Strategic Initiatives
6.6. Conclusion
7. By Material
7.1. Introduction
7.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Material
7.1.2. Market Attractiveness Index, By Material
7.2. Polyethylene (PE)*
7.2.1. Introduction
7.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
7.3. Polypropylene (PP)
7.4. Polyolefin
7.5. Polly-Vinyl Chloride (PVC)
7.6. Ethylene-Vinyl Acetate Copolymer (EVA)
7.7. Others
8. By Application
8.1. Introduction
8.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
8.1.2. Market Attractiveness Index, By Application
8.2. Plant Protection Films*
8.2.1. Introduction
8.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
8.2.3. Greenhouse
8.2.4. Mulching
8.2.5. Tunnels
8.2.6. Others
8.3. Water Management
8.3.1. Plastic Reservoirs
8.3.2. Irrigation Systems
8.4. Silage
8.5. Shading Nets
8.6. Nursery Pots
8.7. Others
9. By Region
9.1. Introduction
9.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Region
9.1.2. Market Attractiveness Index, By Region
9.2. North America
9.2.1. Introduction
9.2.2. Key Region-Specific Dynamics
9.2.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Material
9.2.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
9.2.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
9.2.5.1. The U.S.
9.2.5.2. Canada
9.2.5.3. Mexico
9.3. Europe
9.3.1. Introduction
9.3.2. Key Region-Specific Dynamics
9.3.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Material
9.3.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
9.3.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
9.3.5.1. Germany
9.3.5.2. The UK
9.3.5.3. France
9.3.5.4. Italy
9.3.5.5. Spain
9.3.5.6. Rest of Europe
9.4. South America
9.4.1. Introduction
9.4.2. Key Region-Specific Dynamics
9.4.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Material
9.4.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
9.4.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
9.4.5.1. Brazil
9.4.5.2. Argentina
9.4.5.3. Rest of South America
9.5. Asia-Pacific
9.5.1. Introduction
9.5.2. Key Region-Specific Dynamics
9.5.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Material
9.5.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
9.5.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
9.5.5.1. China
9.5.5.2. India
9.5.5.3. Japan
9.5.5.4. Australia
9.5.5.5. Rest of Asia-Pacific
9.6. Middle East and Africa
9.6.1. Introduction
9.6.2. Key Region-Specific Dynamics
9.6.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Material
9.6.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
10. Competitive Landscape
10.1. Competitive Scenario
10.2. Market Positioning/Share Analysis
10.3. Mergers and Acquisitions Analysis
11. Company Profiles
11.1. AEP Industries Inc.*
11.1.1. Company Overview
11.1.2. Product Portfolio and Description
11.1.3. Financial Overview
11.1.4. Key Developments
11.2. BASF SE
11.3. Dow
11.4. ExxonMobil Chemical
11.5. Novamont S.p.A.
11.6. Trioplast Group
11.7. Berry Global
11.8. Grupo Armando Alvarez
11.9. Ab Rani Plast Oy
11.10. BioBag International AS
LIST NOT EXHAUSTIVE
12. Appendix
12.1. About Us and Services
12.2. Contact Us

언급된 주요 기업들

AEP Industries Inc., 4. Key Developments, BASF SE, Dow, ExxonMobil Chemical, Novamont S.p.A., Trioplast Group, Berry Global, Grupo Armando Alvarez, Ab Rani Plast Oy, BioBag International AS

표 목록 (Tables)

List of Tables

Table 1 Global Agricultural Plastics Market Value, By Material, 2023, 2027 & 2031 (US$ Million)

Table 2 Global Agricultural Plastics Market Value, By Material, 2022-2031 (US$ Million)

Table 3 Global Agricultural Plastics Market Value, By Application, 2023, 2027 & 2031 (US$ Million)

Table 4 Global Agricultural Plastics Market Value, By Application, 2022-2031 (US$ Million)

Table 5 Global Agricultural Plastics Market Value, By Region, 2023, 2027 & 2031 (US$ Million)

Table 6 Global Agricultural Plastics Market Value, By Region, 2022-2031 (US$ Million)

Table 7 North America Agricultural Plastics Market Value, By Material, 2022-2031 (US$ Million)

Table 8 North America Agricultural Plastics Market Value, By Application, 2022-2031 (US$ Million)

Table 9 North America Agricultural Plastics Market Value, By Country, 2022-2031 (US$ Million)

Table 10 South America Agricultural Plastics Market Value, By Material, 2022-2031 (US$ Million)

Table 11 South America Agricultural Plastics Market Value, By Application, 2022-2031 (US$ Million)

Table 12 South America Agricultural Plastics Market Value, By Country, 2022-2031 (US$ Million)

Table 13 Europe Agricultural Plastics Market Value, By Material, 2022-2031 (US$ Million)

Table 14 Europe Agricultural Plastics Market Value, By Application, 2022-2031 (US$ Million)

Table 15 Europe Agricultural Plastics Market Value, By Country, 2022-2031 (US$ Million)

Table 16 Asia-Pacific Agricultural Plastics Market Value, By Material, 2022-2031 (US$ Million)

Table 17 Asia-Pacific Agricultural Plastics Market Value, By Application, 2022-2031 (US$ Million)

Table 18 Asia-Pacific Agricultural Plastics Market Value, By Country, 2022-2031 (US$ Million)

Table 19 Middle East & Africa Agricultural Plastics Market Value, By Material, 2022-2031 (US$ Million)

Table 20 Middle East & Africa Agricultural Plastics Market Value, By Application, 2022-2031 (US$ Million)

Table 21 AEP Industries Inc.: Overview

Table 22 AEP Industries Inc.: Product Portfolio

Table 23 AEP Industries Inc.: Key Developments

Table 24 BASF SE: Overview

Table 25 BASF SE: Product Portfolio

Table 26 BASF SE: Key Developments

Table 27 Dow: Overview

Table 28 Dow: Product Portfolio

Table 29 Dow: Key Developments

Table 30 ExxonMobil Chemical: Overview

Table 31 ExxonMobil Chemical: Product Portfolio

Table 32 ExxonMobil Chemical: Key Developments

Table 33 Novamont S.p.A.: Overview

Table 34 Novamont S.p.A.: Product Portfolio

Table 35 Novamont S.p.A.: Key Developments

Table 36 Trioplast Group: Overview

Table 37 Trioplast Group: Product Portfolio

Table 38 Trioplast Group: Key Developments

Table 39 Berry Global: Overview

Table 40 Berry Global: Product Portfolio

Table 41 Berry Global: Key Developments

Table 42 Grupo Armando Alvarez: Overview

Table 43 Grupo Armando Alvarez: Product Portfolio

Table 44 Grupo Armando Alvarez: Key Developments

Table 45 Ab Rani Plast Oy: Overview

Table 46 Ab Rani Plast Oy: Product Portfolio

Table 47 Ab Rani Plast Oy: Key Developments

Table 48 BioBag International AS: Overview

Table 49 BioBag International AS: Product Portfolio

Table 50 BioBag International AS: Key Developments

그림 목록 (Figures)

List of Figures

Figure 1 Global Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 2 Global Agricultural Plastics Market Share, By Material, 2022 & 2031 (%)

Figure 3 Global Agricultural Plastics Market Share, By Application, 2022 & 2031 (%)

Figure 4 Global Agricultural Plastics Market Share, By Region, 2022 & 2031 (%)

Figure 5 Global Agricultural Plastics Market Y-o-Y Growth, By Material, 2022-2031 (%)

Figure 6 Polyethylene (PE) Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 7 Polypropylene (PP) Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 8 Polyolefin Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 9 Polly-Vinyl Chloride (PVC) Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 10 Ethylene-Vinyl Acetate Copolymer (EVA) Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 11 Others Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 12 Global Agricultural Plastics Market Y-o-Y Growth, By Application, 2022-2031 (%)

Figure 13 Plant Protection Films Application in Global Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 14 Water Management Application in Global Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 15 Silage Application in Global Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 16 Shading Nets Application in Global Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 17 Nursery Pots Application in Global Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 18 Others Application in Global Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 19 Global Agricultural Plastics Market Y-o-Y Growth, By Region, 2022-2031 (%)

Figure 20 North America Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 21 Asia-Pacific Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 22 Europe Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 23 South America Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 24 Middle East and Africa Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 25 North America Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 26 North America Agricultural Plastics Market Share, By Material, 2022 & 2031 (%)

Figure 27 North America Agricultural Plastics Market Share, By Application, 2022 & 2031 (%)

Figure 28 North America Agricultural Plastics Market Share, By Country, 2022 & 2031 (%)

Figure 29 South America Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 30 South America Agricultural Plastics Market Share, By Material, 2022 & 2031 (%)

Figure 31 South America Agricultural Plastics Market Share, By Application, 2022 & 2031 (%)

Figure 32 South America Agricultural Plastics Market Share, By Country, 2022 & 2031 (%)

Figure 33 Europe Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 34 Europe Agricultural Plastics Market Share, By Material, 2022 & 2031 (%)

Figure 35 Europe Agricultural Plastics Market Share, By Application, 2022 & 2031 (%)

Figure 36 Europe Agricultural Plastics Market Share, By Country, 2022 & 2031 (%)

Figure 37 Asia-Pacific Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 38 Asia-Pacific Agricultural Plastics Market Share, By Material, 2022 & 2031 (%)

Figure 39 Asia-Pacific Agricultural Plastics Market Share, By Application, 2022 & 2031 (%)

Figure 40 Asia-Pacific Agricultural Plastics Market Share, By Country, 2022 & 2031 (%)

Figure 41 Middle East & Africa Agricultural Plastics Market Value, 2022-2031 (US$ Million)

Figure 42 Middle East & Africa Agricultural Plastics Market Share, By Material, 2022 & 2031 (%)

Figure 43 Middle East & Africa Agricultural Plastics Market Share, By Application, 2022 & 2031 (%)

Figure 44 AEP Industries Inc.: Financials

Figure 45 BASF SE: Financials

Figure 46 Dow: Financials

Figure 47 ExxonMobil Chemical: Financials

Figure 48 Novamont S.p.A.: Financials

Figure 49 Trioplast Group: Financials

Figure 50 Berry Global: Financials

Figure 51 Grupo Armando Alvarez: Financials

Figure 52 Ab Rani Plast Oy: Financials

Figure 53 BioBag International AS: Financials