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農業用フィルムの世界市場規模:タイプ別、用途別、地域別、範囲および予測

Global Agricultural Film Market Size By Material (LDPE, LLDPE), By Type (High Grade, Middle Grade), By Application (Shed Plastic Film, Mulch Plastic Film), By Geographic Scope And Forecast


出版日
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英文 202 Pages
納期
2~3営業日
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価格表記: USDを日本円(税抜)に換算
本日の銀行送金レート: 1USD=146.82円
農業用フィルムの世界市場規模:タイプ別、用途別、地域別、範囲および予測
出版日: 2024年08月06日
発行: Verified Market Research
ページ情報: 英文 202 Pages
納期: 2~3営業日
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  • 概要
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概要

農業用フィルムの市場規模と予測

農業用フィルムの市場規模は、2024年に141億3,000万米ドルと評価され、2024年から2031年にかけてCAGR 6.77%で成長し、2031年には227億6,000万米ドルに達すると予測されています。農業用フィルムは、様々な農業用途に使用されるプラスチック材料で、作物の収穫量を向上させ、植物を保護し、農業全体の効率を高める。これらのフィルムは通常、ポリエチレン、ポリプロピレン、その他のポリマーから作られ、雑草防除、保湿、温度調節などの利点を提供します。農業用フィルムは、マルチング、温室被覆、サイレージ包装、トンネル被覆などの用途に広く使用されています。

マルチング用フィルムは、土壌の水分保持、雑草の生育抑制、土壌温度の調節に役立ち、作物の収量向上につながります。

温室用フィルムは、植物の生育に適した環境を作り出し、悪天候や害虫から作物を守ります。

サイレージ用フィルムは、動物の飼料を保存・保管し、栄養価を維持するために使用されます。

農業用フィルムの世界市場力学

世界の農業用フィルム市場を形成している主な市場力学

主な市場促進要因

世界の食品需要の増加:

世界の食糧需要の増加:世界人口の増加により、農業生産性の向上に対する需要が高まっており、農作物の収穫量と農作業の効率性を高める農業用フィルムの必要性が高まっています。FAOによると、世界の食糧生産は2050年までに60%増加し、需要の増加に対応する必要があります。

技術の進歩:

生分解性や光分解性といったフィルム素材の革新と、リアルタイムモニタリングのためのスマートテクノロジーの統合が、農業用フィルムの採用を後押ししています。例えば、2024年3月、BASF社は、土壌の健全性を改善し、農業におけるプラスチック廃棄物を削減するために設計された、同社のecovio(R)材料から作られた生分解性農業用フィルムの新しい製品ラインを発表しました。

気候変動と天候不順:

農業用フィルムは悪天候から農地を守り、農家が気候変動の影響を緩和し、安定した作物生産を確保するのに役立ちます。IPCCの報告によると、気候変動は今世紀中、世界の農業生産性を10年ごとに2%ずつ低下させる可能性があります。

政府の支援と補助金:

さまざまな政府が、食料安全保障と農業の持続可能性を向上させるため、補助金や支援プログラムを通じて、農業用フィルムを含む先進的農業技術の利用を促進しています。

持続可能な実践に対する意識の高まり:

持続可能な農業への関心の高まりと資源利用の最適化の必要性が、保水性、土壌の健全性、作物保護を強化する農業用フィルムの採用を後押ししています。

主な課題

環境への懸念:

非生分解性の農業用フィルムが広く使用されているため、プラスチック廃棄物が大量に発生し、環境上の課題が提起され、効果的な廃棄・リサイクルソリューションの必要性が高まっています。

高いコスト:

高品質の農業用フィルムや先端素材への初期投資は、小規模農家にとって法外な金額となる可能性があり、採用や市場浸透が制限されます。

技術的専門知識:

農業用フィルムの効果的な利用には技術的な知識と専門知識が必要であり、こうした技術に不慣れな農家や適切な研修を受けられない農家にとっては障壁となりうる。

耐久性の問題:

農業用フィルムは、紫外線や害虫、機械的摩耗による損傷を受けやすいため、頻繁な交換が必要となり、農家の長期的コストが増大します。

規制上のハードル:

農業におけるプラスチックの使用に関する厳しい規制や、環境基準を遵守する必要性により、市場力学が複雑になり、特定のタイプのフィルムの使用が制限される可能性があります。

主要動向

生分解性フィルム:

環境問題への懸念と規制圧力により、生分解性農業用フィルムを使用する傾向が強まっています。これらのフィルムは土壌中で自然に分解されるため、プラスチック廃棄物を削減し、性能を犠牲にすることなく持続可能な農業を推進することができます。European Bioplastics, 2023によると、EUでは2025年までに生分解性マルチフィルムが農業用プラスチックフィルム市場全体の9%を占めると予想されています。

センサー内蔵のスマートフィルム:

土壌の水分、温度、養分レベルをリアルタイムで監視するセンサーなど、農業用フィルムにスマート技術を組み込む動きが活発化しています。こうした技術革新は精密農業を可能にし、農家が資源利用を最適化し、作物収量を向上させるのに役立ちます。世界経済フォーラムによると、2023年には、スマートフィルムが促進する精密農業技術によって、水の使用量を最大30%、肥料の使用量を20%削減できるといいます。

リサイクル可能で再利用可能なフィルム:

リサイクル可能で再利用可能な農業用フィルムの開発と採用は、ますます普及しています。これらのフィルムは、プラスチック廃棄物を削減し、複数の使用サイクルを通じて費用対効果の高いソリューションを提供することで、環境問題に対処するもので、循環型経済の原則が重視されるようになってきています。RPC bpi agriculture社(英国)は2023年12月、消費者使用後の再生プラスチックを使用した100%リサイクル可能なサイレージ用フィルムの新シリーズを発売しました。

目次

第1章 農業用フィルムの世界市場イントロダクション

  • 市場の定義
  • 市場セグメンテーション
  • 調査スケジュール
  • 前提条件
  • 制限事項

第2章 VERIFIED MARKET RESEARCHの調査手法

  • データマイニング
  • データの三角測量
  • ボトムアップアプローチ
  • トップダウンアプローチ
  • 調査の流れ
  • 業界専門家による主要な洞察
  • データソース

第3章 VERIFIED MARKET RESEARCHの調査手法

  • データマイニング
  • 検証
  • 一次資料
  • データソース一覧

第4章 農業用フィルムの世界市場展望

  • 世界の農業用フィルムの進化
  • 促進要因
  • 抑制要因
  • 機会
  • ポーターのファイブフォースモデル
  • バリューチェーン分析
  • 価格分析
  • マクロ経済分析

第5章 農業用フィルムの世界市場:タイプ別

  • 概要
  • 直鎖状低密度ポリエチレン(LLDPE)
  • 低密度ポリエチレン(LDPE)
  • エチレンビニルアセテート(EVA)
  • 高密度ポリエチレン(HDPE)
  • 再生
  • その他

第6章 農業用フィルムの世界市場:用途別

  • 概要
  • マルチング
  • 温室
  • サイレージ
  • その他

第7章 農業用フィルムの世界市場:地域別

  • 概要
  • 北米
    • 米国
    • カナダ
    • メキシコ
  • 欧州
    • ドイツ
    • 英国
    • フランス
    • イタリア
    • スペイン
    • その他欧州
  • アジア太平洋
    • 中国
    • 日本
    • インド
    • その他アジア太平洋地域
  • ラテンアメリカ
    • ブラジル
    • アルゼンチン
    • その他ラテンアメリカ
  • 中東・アフリカ
    • アラブ首長国連邦
    • サウジアラビア
    • 南アフリカ
    • その他中東とアフリカ

第8章 農業用フィルムの世界市場:競合情勢

  • 概要
  • 各社の市場ランキング
  • 主な発展
  • 企業の地域別フットプリント
  • 企業の業界フットプリント
  • ACEマトリックス

第9章 企業プロファイル

  • Berry Global Inc.
  • BASF SE
  • Plastika Kritis SA
  • Armando Alvarez Group
  • RKW SE
  • AB Rani Plast Oy
  • Novamont SpA
  • ExxonMobil Chemical
  • Group Barbier
  • INDAECO Group

第10章 付録

  • 関連調査

第11章 VERIFIED MARKET INTELLIGENCE

  • VERIFIED MARKET INTELLIGENCEについて
  • ダイナミックなデータの可視化
目次
Product Code: 8817

Agricultural Film Market Size And Forecast

Agricultural Film Market size was valued at USD 14.13 Billion in 2024 and is projected to reach USD 22.76 Billion by 2031, growing at a CAGR of 6.77% from 2024 to 2031. Agricultural films are plastic materials used in various farming applications to improve crop yield, protect plants, and enhance overall agricultural efficiency. These films are typically made from polyethylene, polypropylene, and other polymers, providing benefits such as weed control, moisture retention, and temperature regulation. Agricultural films are widely used in applications such as mulching, greenhouse covering, silage wrapping, and tunnel covers.

Mulching films help retain soil moisture, suppress weed growth, and regulate soil temperature, leading to better crop yields.

Greenhouse films create controlled environments for plant growth, protecting crops from adverse weather conditions and pests.

Silage films are used to preserve and store animal fodder, maintaining its nutritional value.

Global Agricultural Film Market Dynamics

The key market dynamics that are shaping the global agricultural film market include:

Key Market Drivers

Increasing Global Food Demand:

The rising global population is driving the demand for higher agricultural productivity, which in turn fuels the need for agricultural films to enhance crop yields and efficiency in farming practices. According to the FAO, global food production will need to increase by 60% by 2050 to meet the rising demand.

Technological Advancements:

Innovations in film materials, such as biodegradable and photodegradable options, along with the integration of smart technologies for real-time monitoring, are boosting the adoption of agricultural films. For instance, In March 2024, BASF introduced a new line of biodegradable agricultural films made from their ecovio(R) material, designed to improve soil health and reduce plastic waste in agriculture.

Climate Change and Weather Variability:

Agricultural films provide protection against adverse weather conditions, helping farmers mitigate the effects of climate change and ensure consistent crop production. The IPCC reports that climate change could reduce global agriculture productivity by 2% each decade for the rest of this century.

Government Support and Subsidies:

Various governments are promoting the use of advanced agricultural techniques, including agricultural films, through subsidies and support programs to improve food security and farming sustainability.

Growing Awareness of Sustainable Practices:

The increasing focus on sustainable agriculture and the need to optimize resource use are driving the adoption of agricultural films that enhance water retention, soil health, and crop protection.

Key Challenges:

Environmental Concerns:

The widespread use of non-biodegradable agricultural films leads to significant plastic waste, posing environmental challenges and increasing the need for effective disposal and recycling solutions.

High Costs:

The initial investment for high-quality agricultural films and advanced materials can be prohibitive for small-scale farmers, limiting their adoption and market penetration.

Technical Expertise:

Effective use of agricultural films requires technical knowledge and expertise, which can be a barrier for farmers unfamiliar with these technologies or lacking access to proper training.

Durability Issues:

Agricultural films can be prone to damage from UV radiation, pests, and mechanical wear, necessitating frequent replacements and increasing long-term costs for farmers.

Regulatory Hurdles:

Stringent regulations regarding the use of plastics in agriculture and the need to comply with environmental standards can complicate market dynamics and restrict the use of certain film types.

Key Trends

Biodegradable Films:

There is a growing trend towards using biodegradable agricultural films, driven by environmental concerns and regulatory pressures. These films break down naturally in the soil, reducing plastic waste and promoting sustainable farming practices without compromising on performance. According to European Bioplastics, 2023 in the EU, biodegradable mulch films are expected to account for 9% of the total agricultural plastic film market by 2025.

Smart Films with Embedded Sensors:

The integration of smart technologies into agricultural films, such as sensors for real-time monitoring of soil moisture, temperature, and nutrient levels, is gaining traction. These innovations enable precision farming, helping farmers optimize resource use and improve crop yields. According to World Economic Forum, 2023 precision agriculture techniques, facilitated by smart films, can reduce water usage by up to 30% and fertilizer use by 20%

Recyclable and Reusable Films:

The development and adoption of recyclable and reusable agricultural films are becoming increasingly popular. These films address environmental issues by reducing plastic waste and offering cost-effective solutions through multiple usage cycles, aligning with the growing emphasis on circular economy principles. RPC bpi agriculture (UK) launched a new range of 100% recyclable silage films in December 2023, made from post-consumer recycled plastics.

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Global Agricultural Film Market Regional Analysis

Here is a more detailed regional analysis of the global agricultural film market:

North America

North America holds a significant share in the agricultural film market due to advanced farming techniques and high adoption rates of modern agricultural practices. According to the USDA's 2022 Census of Agriculture, released in February 2024, Approximately 37% of U.S. vegetable and melon farms use plastic mulch or other temporary covers.

The presence of large-scale farms, government support for sustainable agriculture, and a strong focus on increasing crop yields contribute to the demand for agricultural films in this region. According to the U.S. Environmental Protection Agency (EPA), as of March 2024, the agency has set a goal to increase the recycling rate of agricultural plastics to 50% by 2030.

Additionally, innovations in biodegradable and recyclable films are gaining traction, driven by environmental regulations. For instance, Groupe Barbier opened a new production facility in Mexico in January 2024 to better serve the North American market, focusing on biodegradable mulch films for fruit and vegetable production.

Asia Pacific

The Asia Pacific region is experiencing rapid growth in the agricultural film market, driven by increasing population, rising food demand, and expanding agricultural activities. According to the Food and Agriculture Organization of the United Nations (FAO), in a report published in March 2024, Agricultural plastic film usage in Asia Pacific increased by 18% between 2020 and 2023.

Countries like China, India, and Japan are significant contributors, focusing on improving agricultural productivity and efficiency. According to the Chinese Ministry of Agriculture and Rural Affairs, as of January 2024, The use of plastic mulch films in China covered over 20 million hectares in 2023. The government aims to increase the recycling rate of agricultural plastics to 80% by 2025.

Government support, growing awareness of sustainable practices, and the adoption of advanced farming technologies are key factors propelling the market. The region is also seeing increased investments in research and development for innovative agricultural film solutions. For instance, Trioplast established a partnership with a leading Japanese agricultural cooperative in February 2024 to develop custom biodegradable films for high-value crop production.

Global Agricultural Film Market: Segmentation Analysis

The Global Agriculture Film Market is segmented on the basis of Type, Application, and Geography.

Agricultural Film Market, By Type

  • Linear Low-density Polyethylene (LLDPE)
  • Low-density Polyethylene (LDPE)
  • Ethylene-vinyl Acetate (EVA)
  • High-density Polyethylene (HDPE)
  • Reclaim

Based on Type, the Global Agricultural Film Market is bifurcated into LLDPE, LDPE, EVA, HDPE, Reclaim. In the agricultural film market, the segment currently dominating is Low-density Polyethylene (LDPE). LDPE films are widely used in agriculture due to their flexibility, ease of handling, and cost-effectiveness. They are commonly employed in applications such as greenhouse covers, silage bags, and mulching films, providing protection against pests, weather elements, and soil erosion while promoting crop growth. Conversely, the rapid-growing segment is Ethylene-vinyl Acetate (EVA).

Agricultural Film Market, By Application

  • Mulching
  • Greenhouses
  • Silage

Based on Application, the Global Agricultural Film Market is bifurcated into Mulching, Greenhouses, and Silage. In the agricultural film market, the segment currently dominating is greenhouses. Greenhouse films are widely used to create controlled environments that optimize growing conditions for plants by regulating temperature, humidity, and light exposure. These films protect crops from adverse weather conditions and pests while extending the growing season, making them essential for commercial horticulture and intensive farming practices globally. Conversely, the rapid-growing segment is Mulching.

Agricultural Film Market, By Geography

  • North America
  • Europe
  • Asia Pacific
  • Rest of the World

Based on Geography, the Global Agricultural Film Market is classified into North America, Europe, Asia Pacific, and the Rest of the World. In the agricultural film market, North America currently dominates as the largest geographical segment. This dominance is driven by advanced agricultural practices, extensive greenhouse farming, and significant investments in agribusiness infrastructure. North America benefits from a well-established agricultural industry and strong adoption of advanced technologies to enhance crop production and efficiency, including the widespread use of greenhouse films. Conversely, the rapid-growing segment is Asia Pacific. The Asia Pacific region is experiencing substantial growth in the agricultural film market due to increasing agricultural activities, rising population, and expanding food demand.

Key Players

  • The "Global Agricultural Film Market" study report will provide valuable insight with an emphasis on the global market. The major players in the market are
  • Berry Global, Inc., BASF SE, Plastika Kritis SA, Armando Alvarez Group, RKW SE, AB Rani Plast Oy, Novamont SpA, ExxonMobil Chemical, Group Barbier, INDAECO Group, Kuraray Co., Ltd., Trioplast Industries AB, RPC Group PLC, Achilles Corporation, Mondi, Cotesi, Coveris Group, and The Dow Chemical Company.

Our market analysis also entails a section solely dedicated to such major players wherein our analysts provide an insight into the financial statements of all the major players, along with its product benchmarking and SWOT analysis. The competitive landscape section also includes key development strategies, market share, and market ranking analysis of the above-mentioned players globally.

Global Agricultural Film Market Key Developments

  • In October 2023, Dow Inc. unveiled the VISION(TM) agricultural film, integrating advanced polymer technology for enhanced durability and UV protection. This film improves crop productivity by shielding plants from harsh environmental conditions and minimizing pesticide use.
  • In January 2024, ExxonMobil Chemical Company introduced the Vistamaxx(TM) performance polymers for agricultural films. These polymers offer superior elasticity and puncture resistance, extending the lifespan of mulch and greenhouse films while optimizing crop growth.
  • In April 2024, Novamont S.p.A. launched the Mater-Bi(R) biodegradable mulch film, aimed at promoting sustainable agriculture practices. This film decomposes into organic matter, enriching soil fertility and reducing environmental impact compared to traditional plastic films.
  • In June 2024, RKW Group expanded its range of Agricover(R) silage films, tailored for preserving animal feed quality. These films enhance feed storage efficiency by protecting silage bales from oxygen and moisture, ensuring nutritional value and livestock health.

TABLE OF CONTENTS

1 INTRODUCTION OF THE GLOBAL AGRICULTURAL FILM MARKET

  • 1.1 Market Definition
  • 1.2 Market Segmentation
  • 1.3 Research Timelines
  • 1.4 Assumptions
  • 1.5 Limitations

2 RESEARCH METHODOLOGY OF VERIFIED MARKET RESEARCH

  • 2.1 Data Mining
  • 2.2 Data Triangulation
  • 2.3 Bottom-Up Approach
  • 2.4 Top-Down Approach
  • 2.5 Research Flow
  • 2.6 Key Insights from Industry Experts
  • 2.7 Data Sources

3 RESEARCH METHODOLOGY OF VERIFIED MARKET RESEARCH

  • 3.1 Data Mining
  • 3.2 Validation
  • 3.3 Primary Interviews
  • 3.4 List of Data Sources

4 GLOBAL AGRICULTURAL FILM MARKET OUTLOOK

  • 4.1 Global Agriculture Films Evolution
  • 4.2 Drivers
  • 4.3 Restraints
  • 4.4 Opportunities
  • 4.5 Porters Five Force Model
  • 4.6 Value Chain Analysis
  • 4.7 Pricing Analysis
  • 4.8 Macroeconomic Analysis

5 GLOBAL AGRICULTURAL FILM MARKET, BY TYPE

  • 5.1 Overview
  • 5.2 Linear Low-density Polyethylene (LLDPE)
  • 5.3 Low-density Polyethylene (LDPE)
  • 5.4 Ethylene-vinyl Acetate (EVA)
  • 5.5 High-density Polyethylene (HDPE)
  • 5.6 Reclaim
  • 5.7 Others

6 GLOBAL AGRICULTURAL FILM MARKET, BY APPLICATION

  • 6.1 Overview
  • 6.2 Mulching
  • 6.3 Greenhouses
  • 6.4 Silage
  • 6.5 Others

7 GLOBAL AGRICULTURAL FILM MARKET, BY GEOGRAPHY

  • 7.1 Overview
  • 7.2 North America
    • 7.2.1 U.S.
    • 7.2.2 Canada
    • 7.2.3 Mexico
  • 7.3 Europe
    • 7.3.1 Germany
    • 7.3.2 U.K.
    • 7.3.3 France
    • 7.3.4 Italy
    • 7.3.5 Spain
    • 7.3.6 Rest of Europe
  • 7.4 Asia Pacific
    • 7.4.1 China
    • 7.4.2 Japan
    • 7.4.3 India
    • 7.4.4 Rest of Asia Pacific
  • 7.5 Latin America
    • 7.5.1 Brazil
    • 7.5.2 Argentina
    • 7.5.3 Rest of Latin America
  • 7.6 Middle East and Africa
    • 7.6.1 UAE
    • 7.6.2 Saudi Arabia
    • 7.6.3 South Africa
    • 7.6.4 Rest of Middle-East and Africa

8 GLOBAL AGRICULTURAL FILM MARKET COMPETITIVE LANDSCAPE

  • 8.1 Overview
  • 8.2 Company Market Ranking
  • 8.3 Key Developments
  • 8.4 Company Regional Footprint
  • 8.5 Company Industry Footprint
  • 8.6 ACE Matrix

9 COMPANY PROFILES

  • 9.1 Berry Global Inc.
    • 9.1.1 Overview
    • 9.1.2 Financial Performance
    • 9.1.3 Product Outlook
    • 9.1.4 Key Developments
  • 9.2 BASF SE
    • 9.2.1 Overview
    • 9.2.2 Financial Performance
    • 9.2.3 Product Outlook
    • 9.2.4 Key Developments
  • 9.3 Plastika Kritis SA
    • 9.3.1 Overview
    • 9.3.2 Financial Performance
    • 9.3.3 Product Outlook
    • 9.3.4 Key Developments
  • 9.4 Armando Alvarez Group
    • 9.4.1 Overview
    • 9.4.2 Financial Performance
    • 9.4.3 Product Outlook
    • 9.4.4 Key Developments
  • 9.5 RKW SE
    • 9.5.1 Overview
    • 9.5.2 Financial Performance
    • 9.5.3 Product Outlook
    • 9.5.4 Key Developments
  • 9.6 AB Rani Plast Oy
    • 9.6.1 Overview
    • 9.6.2 Financial Performance
    • 9.6.3 Product Outlook
    • 9.6.4 Key Developments
  • 9.7 Novamont SpA
    • 9.7.1 Overview
    • 9.7.2 Financial Performance
    • 9.7.3 Product Outlook
    • 9.7.4 Key Developments
  • 9.8 ExxonMobil Chemical
    • 9.8.1 Overview
    • 9.8.2 Financial Performance
    • 9.8.3 Product Outlook
    • 9.8.4 Key Developments
  • 9.9 Group Barbier
    • 9.9.1 Overview
    • 9.9.2 Financial Performance
    • 9.9.3 Product Outlook
    • 9.9.4 Key Developments
  • 9.10 INDAECO Group
    • 9.10.1 Overview
    • 9.10.2 Financial Performance
    • 9.10.3 Product Outlook
    • 9.10.4 Key Developments

10 Appendix

  • 10.1 Related Research

11 VERIFIED MARKET INTELLIGENCE

  • 11.1 About Verified Market Intelligence
  • 11.2 Dynamic Data Visualization