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市场调查报告书
商品编码
1997034

硬质包装用可生物分解生质塑胶市场:基于区域和应用的分析及至2034年的预测

Biodegradable Bioplastics in Rigid Packaging Market Analysis By Region, By Applications and Forecast Report Till 2034

出版日期: | 出版商: Prismane Consulting | 英文 195 Pages | 商品交期: 3-5个工作天内

价格
简介目录

预计2025年,用于硬质包装的可生物降解生质塑胶市场规模将达到8万吨,长期预测期内复合年增长率(CAGR)为5.5%。随着产业和政府转向更永续的材料,用于硬质包装的可生物降解生质塑胶市场正迅速发展。硬质包装广泛应用于食品、药品和个人保健产品领域,传统上依赖石油基塑胶。然而,人们对塑胶废弃物环境问题的日益关注,加上监管压力和消费者对环保替代品的需求不断增长,促使製造商探索采用可生物降解生质塑胶。 PLA、PBAT、PHA和淀粉基塑胶等材料正被用于容器、托盘、瓶子、罐子和瓶盖等硬质包装中,因为它们在特定条件下可生物降解,同时保持耐用性和产品安全性。

按类型和应用程式分類的需求

在各种可生物降解生质塑胶中,聚乳酸(PLA)仍然是硬质包装中最常用的材料。 PLA具有优异的机械性能、透明度和易加工性,使其适用于食品容器、化妆品罐和药品泡壳包装。虽然聚丁二烯丙基三丙烯酸酯(PBAT)更常用于柔软性,但其作为共混材料在硬质包装中增强PLA韧性和柔软性的应用也日益增加。聚羟基脂肪酸酯(PHA)是一种相对较新的材料,在海洋和工业环境中均可完全生物降解,因此在精密应用领域备受关注。淀粉基塑胶是短期使用硬质包装的首选材料,尤其适用于餐饮服务业的产品。就应用领域而言,食品和饮料行业仍然是最大的消费产业,这些材料被用于刀叉餐具、外带容器和硬质托盘。在化妆品和个人护理行业,受永续性目标和产品差异化需求的推动,这些材料在罐子和瓶盖中的应用也日益广泛。在製药业,在法规允许的情况下,非处方药、泡壳包装和初级容器正在逐步转向使用可生物降解的包装。

终端用户领域的趋势

由于一次性及半一次性产品的大规模使用,以及业内对塑胶废弃物日益严格的监管,食品饮料行业在采用可生物降解硬质包装方面处于市场领先地位。个人护理品牌正迅速采用可生物降解硬质包装,以满足品牌定位和消费者对永续美容产品的需求。製药公司由于监管的复杂性而采取谨慎态度,但正在探索在其营养补充剂和保健产品线中使用环保包装的先导计画。其他应用领域包括电子配件和非食品消费品的特殊硬质包装。

区域需求分析

在欧盟《包装和包装废弃物指令》等强有力的环境法规的推动下,欧洲目前是可生物降解生质塑胶在硬质包装领域应用的主导地区。欧洲各国,尤其是德国、法国和义大利,对生物降解含量和标示要求有严格的规定。紧随其后的是北美,特别是美国,餐饮品牌、健康零售商和化妆品公司也开始转向可堆肥硬质包装,以实现其内部永续发展目标。亚太地区潜力巨大,这得益于日本、韩国和中国等国家日益增强的环保意识以及地方政府对绿色包装措施的支持。印度的Start-Ups和日常消费品塑胶。

主要製造商

竞争格局由大型化学企业和专注于生质塑胶领域的创新企业组成。 NatureWorks 一直是 PLA 生产领域的先驱,并为硬质包装提供丰富的产品系列。 Braskem 以其生物基聚乙烯而闻名,但其业务也扩展到可生物降解解决方案领域。 Novamont 专注于淀粉基聚合物,并提供与 PLA 和 PBAT 共混的硬质容器产品。

市场驱动因素:监管支持与品牌层面的可持续性

推动该市场成长要素是全球监管部门日益加强对化石燃料塑胶的依赖。欧洲政策强制要求各行业减少一次性塑胶的使用,并提高可堆肥包装的比例。同时,全球日常消费品、化妆品和製药品牌也面临来自消费者和投资者的压力,需要证明其在采购原材料和减少废弃物采取了负责任的做法。这促使它们明确承诺用可生物降解的替代品取代传统塑胶。这些自上而下的监管措施正在加速市场需求,并刺激新材料的研发以及与供应商建立合作关係。

目录

第一章:引言

第二章 市场概况

  • 市场演变
  • 需求概览
  • 产业结构
  • 战略挑战
  • 终端用户趋势
  • 成长预测

第三章:经济与能源展望

  • 国内生产毛额和人口统计数据
  • 货币/财政政策
  • 原油产量和价格
  • 天然气
  • 电费

第四章:终端使用者领域的绩效

  • 食品/饮料
  • 化妆品和个人保养用品
  • 製药
  • 其他的

第五章:硬质包装用不可生物分解生质塑胶概况及市场概况

  • 产品描述
  • 等级和特性
  • 原料
  • 製造过程
  • 环境问题
  • 价值链
  • 目的

第六章 市场动态与产业趋势

  • 市场动态及新冠疫情的影响
    • 促进因素
    • 抑制因子
    • 机会
    • 任务

第七章:全球对用于硬质包装的非生物降解生质塑胶的需求分析(按类型和应用)(数量和价值)(2018-2034 年)

  • 战略挑战及新冠疫情的影响
  • 需求分析与预测(2018-2034)
  • 全球用于硬质包装的不可生物降解生质塑胶市场(按类型划分)
  • 全球用于硬质包装的不可生物降解生质塑胶市场(按应用领域划分)

第八章 需求分析与市场概览(按地区和国家)(数量和价值)(2018-2034 年)

  • 战略挑战及新冠疫情的影响
  • 需求分析与预测(2018-2034)
  • 需求成长率(%)
  • 用于硬质包装的不可生物降解生质塑胶市场(按类型划分)
  • 按应用领域分類的硬质包装用不可生物降解生质塑胶市场
  • 北美洲
    • 我们
    • 加拿大
    • 墨西哥
  • 西欧
    • 德国
    • 法国
    • 义大利
    • 英国
    • 西班牙
    • 其他的
  • 中欧/东欧
    • 俄罗斯
    • 波兰
    • 其他的
  • 亚太地区
    • 中国
    • 日本
    • 印度
    • 韩国
    • 其他的
  • 中美洲和南美洲
  • 中东和非洲

註:复合年增长率 (CAGR) 是针对所有类型和应用计算的,以确定预测期 (2026-2034 年) 内的区域/全球需求成长率。

第九章:价格分析

第十章:关键策略挑战与商业机会评估

  • 市场吸引力评估
  • 未来前景及目标市场研究

第十一章 策略建议与提案

第十二章:公司分析与市占率分析

  • 不可生物降解生质塑胶(用于硬质包装)生产商概况/公司分析
    • 基本资料
    • 总部、主要市场
    • 拥有
    • 公司财务
    • 製造地
    • 全球销售
    • 员工总数
    • 产品系列/服务/解决方案
    • 近期趋势
    • 目标公司
    • NatureWorks
    • Braskem
    • Novamont
    • Celanese Corporation
    • Solvay SA
    • Lanxess
    • Evonik
    • Total
    • Corbion
    • BASF
    • 其他製造商

註-本部分包含企业资料、财务报表、製造地和营运区域。财务报表仅收录于已向美国证券交易委员会 (SEC) 提交的文件、年度报告或公司网站上的公司。本报告中所包含的所有财务报表均以美元计价。以其他货币计价的财务报表已使用平均外汇换算。公司简介可能包含製造商、供应商和经销商。

第十三章附录

  • 需求区域
  • 需求国
简介目录

The biodegradable bioplastics market in rigid packaging stood at 80 kilo tons in 2025 and it is poised to grow at a CAGR of 5.5% during the long term forecast period. The biodegradable bioplastics market in rigid packaging is gaining rapid momentum as industries and governments shift toward more sustainable materials. Rigid packaging, used widely in food, pharmaceutical, and personal care applications, traditionally depends on petroleum-based plastics. However, growing environmental concerns over plastic waste, along with regulatory pressure and increasing consumer demand for eco-friendly alternatives, are driving manufacturers to explore biodegradable bioplastics. Materials such as PLA, PBAT, PHA, and starch-based plastics are being incorporated into rigid packaging formats such as containers, trays, bottles, jars, and caps due to their ability to biodegrade under specific conditions while maintaining durability and product safety.

Demand by Type and Application

Among the various types of biodegradable bioplastics, PLA remains the most commonly used in rigid packaging. PLA offers good mechanical properties, clarity, and ease of processing, making it suitable for food containers, cosmetic jars, and pharmaceutical blister packs. PBAT, though more commonly used in flexible packaging, is increasingly used in blends to enhance the toughness and flexibility of PLA in rigid formats. PHA is a newer entrant offering full biodegradability in both marine and industrial conditions, finding traction in sensitive applications. Starch-based plastics are preferred for short-life rigid packaging needs, especially in food service items. Application-wise, the food and beverage industry continues to be the largest consumer, using these materials in cutlery, takeaway boxes, and rigid trays. The cosmetics and personal care sector is seeing increased adoption in jars and caps, driven by sustainability goals and product differentiation. Pharmaceuticals are gradually transitioning toward biodegradable packaging for over-the-counter products, blister packs, and primary containers, as regulations allow.

End-Use Sector Performance

The food and beverage sector leads the market in adopting biodegradable rigid packaging due to high-volume use of disposable and semi-disposable items and increasing scrutiny on plastic waste in the industry. Personal care brands are quickly embracing biodegradable rigid packaging to support brand positioning and consumer demand for sustainable beauty products. Pharmaceutical companies are more cautious due to regulatory complexities but are exploring pilot projects in eco-friendly packaging for nutraceuticals and wellness lines. Other end-uses include electronics accessories and specialty rigid packaging for non-food consumer goods.

Regional Demand Analysis

Europe is currently the leading region in the adoption of biodegradable bioplastics for rigid packaging, driven by robust environmental regulations such as the EU Packaging and Packaging Waste Directive. European countries, especially Germany, France, and Italy, have stringent mandates for biodegradable content and labeling requirements. North America follows, particularly the United States, where food service brands, health retailers, and cosmetics companies are shifting to compostable rigid formats to meet internal sustainability targets. Asia-Pacific is a high-potential region, led by growing environmental consciousness in countries such as Japan, South Korea, and China, along with support from local governments for green packaging initiatives. India is also witnessing early adoption through startups and FMCG companies.

Key Manufacturers

The competitive landscape comprises a mix of large chemical corporations and niche bioplastics innovators. NatureWorks remains a pioneer in PLA production and offers a broad portfolio for rigid packaging. Braskem, while known for bio-based polyethylene, has also expanded into biodegradable solutions. Novamont specializes in starch-based polymers and blends with PLA or PBAT for rigid formats.

Market Driver: Regulatory Support and Brand-Level Sustainability

A major growth driver for this market is the increasing regulatory pressure worldwide to reduce reliance on fossil-based plastics. European policies have made it mandatory to reduce single-use plastic and increase compostable packaging shares in various sectors. Simultaneously, global FMCG, cosmetics, and pharmaceutical brands are under pressure from consumers and investors to demonstrate responsible sourcing and waste reduction. This has led to clear commitments toward replacing traditional plastics with biodegradable alternatives. These top-down mandates are accelerating demand and encouraging new material development and supplier partnerships.

Table of Contents

1. Introduction

  • Scope
  • Market Coverage
    • Types
    • Applications
    • Regions
    • Countries
  • Years Considered
    • Historical - 2018 - 2024
    • Base - 2025
    • Forecast Period - 2026 - 2034
  • Research Methodology
    • Approach
    • Research Methodology
    • Prismane Consulting Market Models
    • Assumptions & Limitations
    • Abbreviations & Definitions
    • Conversion Factors
    • Data Sources

2. Market Synopsis

  • Market Evolution
  • Demand Overview
  • Industry Structure
  • Strategic Issues
  • End-use Trends
  • Growth Forecast

3. Economic & Energy Outlook

  • GDP and Demographics
  • Monetary & Fiscal Policies
  • Crude Oil Production and prices
  • Natural Gas
  • Electricity Prices

4. End-use Sector Performance

  • Food & Beverages
  • Cosmetics & Personal Care
  • Pharmaceutical
  • Others

5. Introduction to Non-Biodegradable Bioplastics in Rigid Packaging and Market Overview

  • Product Description
  • Grades & Properties
  • Raw Material
  • Manufacturing Process
  • Environmental Issues
  • Value Chain
  • Applications

6. Market Dynamics and Industry Trends

  • Market Dynamics and COVID-19 Impact
    • Drivers
    • Restraints
    • Opportunities
    • Challenges

7. Global Non-Biodegradable Bioplastics in Rigid Packaging Demand Analysis, By Types, By Applications (Volume, Value) (2018-2034)

  • Strategic Issues and COVID-19 Impact
  • Demand Analysis and Forecast (2018 - 2034)
    • Demand
    • Demand Growth Rate (%)
    • Driving Force Analysis
  • Global Non-Biodegradable Bioplastics in Rigid Packaging Market, By Types
    • Bio Polyethylene (Bio-PE)
    • Bio Polyethylene Terephthalate (Bio-PET)
    • Bio Polytrimethylene Terephthalate (Bio-PTT)
    • Others
  • Global Non-Biodegradable Bioplastics in Rigid Packaging Market, By Applications
    • Food & Beverages
    • Cosmetics & Personal Care
    • Pharmaceutical
    • Others

8. Demand Analysis and Market Review, By Region, By Country (Volume, Value), (2018- 2034)

  • Strategic Issues and COVID-19 Impact
  • Demand Analysis and Forecast (2018-2034)
  • Demand Growth Rate (%)
  • Non-Biodegradable Bioplastics in Rigid Packaging Market, By Types
  • Non-Biodegradable Bioplastics in Rigid Packaging Market, By Applications

Note: Demand Analysis has been provided for all major Regions / Countries as mentioned below. The demand(consumption) split by types and applications has been provided for each of the countries/regions in Volume (Kilotons) and Value (USD Million).

  • North America
    • USA
    • Canada
    • Mexico
  • Western Europe
    • Germany
    • France
    • Italy
    • United Kingdom
    • Spain
    • Rest of Western Europe
  • Central & Eastern Europe
    • Russia
    • Poland
    • Rest of Central & Eastern Europe
  • Asia-Pacific
    • China
    • Japan
    • India
    • South Korea
    • Rest of Asia-Pacific
  • Central & South America
  • Middle East & Africa

Note: CAGR will be calculated for all the types and applications to arrive at the regional/global demand growth for the forecast period (2026 - 2034)

9. Pricing Analysis

10. Key Strategic Issues and Business Opportunity Assessment

  • Market Attractiveness Assessment
  • Prospective & Target Market Study

11. Strategic Recommendation & Suggestions

12. Company Analysis and Market Share Analysis

  • Non-Biodegradable Bioplastics in Rigid Packaging Manufacturers Profiles/ Company Analysis
    • Basic Details
    • Headquarter, Key Markets
    • Ownership
    • Company Financial
    • Manufacturing Bases
    • Global Turnover
    • Total Employee
    • Product Portfolio / Services / Solutions
    • Recent Developments
    • Companies Covered
    • NatureWorks
    • Braskem
    • Novamont
    • Celanese Corporation
    • Solvay SA
    • Lanxess
    • Evonik
    • Total
    • Corbion
    • BASF
    • Other Manufacturers

Note: This section includes company information, company financials, manufacturing bases, and operating regions. Company financials have been mentioned only for those companies where financials were available in SEC Filings, annual reports, or company websites. All the reported financials in this report are in U.S. Dollars. Financials reported in other currencies have been converted using average currency conversion rates. Company profiles may include manufacturers, suppliers, and distributors.

13. Appendices

  • Demand- Regions
  • Demand- Countries