欧洲先进回收技术市场 – 行业趋势和 2030 年预测

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欧洲先进回收技术市场 – 行业趋势和 2030 年预测

  • Chemical and Materials
  • Published Report
  • Oct 2023
  • Europe
  • 350 页面
  • 桌子數: 46
  • 图号: 21

Europe Advanced Recycling Technologies Market

市场规模(十亿美元)

CAGR :  % Diagram

Diagram Forecast Period
2024 –2030
Diagram Market Size (Base Year)
USD MILLION
Diagram Market Size (Forecast Year)
USD 209,752.40
Diagram CAGR
%
Diagram Major Markets Players
  • Dummy1
  • Dummy2
  • Dummy3
  • Dummy4
  • Dummy5

欧洲先进回收技术市场,按技术(热解/裂解、气化、解聚和微波)、工艺输出(石脑油、重质柴油和蜡渣)、最终用途(包装、基础设施和建筑、消费电子产品和汽车)划分 - 行业趋势和预测到 2030 年。

欧洲先进回收技术市场

欧洲先进回收技术市场分析和规模

先进回收技术是指专注于利用创新方法将废料回收为有价值资源的行业。这些技术旨在提高资源效率、减少对环境的影响并促进循环经济原则。

欧洲先进回收技术市场欧洲先进回收技术市场

欧洲先进回收技术市场报告提供了市场份额、新发展和国内和本地市场参与者的影响的详细信息,分析了新兴收入来源、市场法规变化、产品审批、战略决策、产品发布、地域扩张和市场技术创新方面的机会。要了解分析和市场情况,请联系我们获取分析师简报。我们的团队将帮助您创建收入影响解决方案,以实现您的预​​期目标。

预计欧洲先进回收技术市场在 2023 年至 2030 年的预测期内将大幅增长。Data Bridge Market Research 分析称,在 2023 年至 2030 年的预测期内,该市场的复合年增长率为 6.9%,预计到 2030 年将达到 209,752.40 万美元。

报告指标

细节

预测期

2023 至 2030 年

基准年

2022

历史性的一年

2021 (可定制为 2015-2020)

定量单位

收入(千美元)

涵盖的领域

技术(热解/裂解、气化、解聚和微波)、工艺输出(石脑油、重质柴油和蜡渣)、最终用途(包装、基础设施和建筑、消费电子产品和汽车)

覆盖国家

 德国、荷兰、西班牙、英国、比利时、意大利、瑞士、奥地利、法国、土耳其和欧洲其他地区

涵盖的市场参与者

霍尼韦尔国际公司、雪佛龙菲利普斯化学公司、Synova、Gr3n Recycling、Quantafuel ASA、Agilyx、BlueAlp Innovations BV、GARBO SRL、Mura Technology Limited、Olefy Technologies Ltd.、PLASTIC ENERGY 和 Recycling Avenue

市场定义

先进回收技术行业涵盖了旨在再生聚合物或将聚合物链分解为有价值原料的各种工艺。这些技术(包括分子回收和化学回收)利用热化学反应将塑料转化为新产品,例如原生塑料、单体、燃料、能源和其他商品。由于对可持续和循环经济实践的需求不断增加,先进回收技术的市场潜力巨大。

欧洲先进回收技术市场动态

本节旨在了解市场驱动因素、优势、限制和挑战。下面将详细讨论所有这些内容:

驱动程序

  • 转向循环经济

近年来,循环经济的概念引起了人们的极大关注,以应对环境和经济挑战。世界各地的政府、企业和组织都在寻找创新方法,采用循环实践来创建可持续的经济模式。循环经济旨在消除浪费,促进材料和产品的再利用和回收。随着各行各业发现减少浪费的必要性,循环经济举措正在兴起。

先进的回收技术包括各种创新工艺,用于分解废物以生产有价值的材料,例如新塑料、燃料或其他产品。它们为塑料焚烧或填埋等其他回收方法提供了有价值的替代方案,从而加速了向循环经济的过渡。此外,政府还针对促进循环经济的行业实施了法规。此外,通过使用这种先进的回收技术,不同行业组织的行业减少了碳足迹并满足了环保意识强的消费者的期望,这有望推动市场增长。

  • 对可持续塑料废物管理的积极展望

塑料垃圾问题已成为全球关注的问题,因为它对环境和人类健康造成了严重影响。这导致人们越来越关注可持续的解决方案,以有效地管理和回收塑料垃圾。先进的回收技术在实现可持续的塑料垃圾管理方面发挥着重要作用。它们通过热解或气化等过程帮助塑料垃圾分解成更小的分子。破碎的分子作为新化学反应的原料,生产再生塑料和其他化学品。与传统的机械回收相比,这种先进的回收技术很受欢迎,因为它们可以处理机械回收无法处理的难以回收的塑料。

随着人们越来越意识到塑料废物的有害影响,对可持续解决方案的需求也在增加。先进的回收技术能够生产有价值的产品,如再生塑料、石脑油和重质柴油。它们为传统的回收方法提供了一种替代方案,因此,化学回收提供了一种更可持续的方法来管理塑料废物并减少对原生塑料的依赖。这种先进的回收技术通过将废旧塑料转化为有价值的资源,具有巨大的经济意义,预计将推动市场增长。

欧洲先进回收技术市场

机会

  • 提高优质设备和耗材的获取率,促进回收利用

技术进步始终被视为扩大市场范围的机会,因为它们始终会带来更好、更高质量的产品、成本效益、能源效率等。在这种情况下,回收涉及许多创新技术,例如先进的回收技术。这将有助于实现更有效、更高效的回收过程,并有助于克服污染、可回收性有限等挑战,甚至产生更高质量的回收产品。

因此,塑料回收技术的进步通过提高质量、扩大供应和创造新应用为市场增长创造了机会。这些发展支持可持续发展计划,减少对原生塑料的依赖,并促进塑料的循环经济。

  • 技术提供商与化学品制造商之间的专业知识协同范围广泛

 回收技术提供商与化学品制造商之间的合作和伙伴关系通过协调供需、提高质量、促进创新和研发、实现规模经济、提高市场意识以及影响政策和法规,扩大了欧洲先进回收技术市场的范围。通过与技术提供商的合作,化学品制造商能够贡献专业知识来优化流程。通过这种合作和伙伴关系,它还确保了再生塑料和其他有价值的产品的持续供应,这些产品符合制造商的规格,提高了质量,并推动了回收技术和应用的创新。这些努力共同促进了塑料更可持续、更经济可行的循环经济。

因此,回收技术提供商和化学品制造商之间的合作为发展先进回收技术的全球市场提供了巨大的机会。他们可以共同推动使用这种先进的回收技术,进一步减少塑料垃圾,并支持将废塑料视为资源的循环经济。这种协同作用有望解决塑料垃圾带来的环境问题,同时也开辟了新的市场前景。

限制/挑战

  • 设备设施初装投资成本高

先进的回收技术通常需要专业而复杂的设备和基础设施。购买、安装和维护此类设备可能成本高昂,尤其是对于中小型企业 (SME) 或初创企业而言。实施和操作先进的回收技术需要训练有素的人员和专业知识。培训员工或聘请精通这些技术的熟练专业人员的相关成本可能会增加初始投资。

开发和完善先进的回收技术需要大量的研发工作。开展研发活动、测试原型和实现商业可行性所涉及的成本可能相当高昂。投资新颖和创新的技术具有固有的风险和不确定性。如果不清楚该技术的长期效益和投资回报,公司可能不愿意投入大量资金。

先进的回收技术必须符合各种环境和安全法规。满足监管要求可能涉及额外成本,例如获得许可证、进行环境影响评估以及确保遵守废物管理法规。初始投资可能很高,特别是如果该技术需要有效处理大量废料。

因此,实施先进的回收技术通常需要大量的前期资本投入。购买和设置先进的回收设备、基础设施和设施的成本可能是希望采用这些技术的公司面临的主要障碍,预计这会抑制市场增长。

  • 缺乏完善的回收基础设施和物流挑战

先进的回收技术通常需要根据废物的成分对废物进行分类和分离。缺乏先进的分类设施会阻碍对各种废物流的有效处理,从而难以从混合废物中提取有价值的材料。许多地区缺乏高效、全面的废物收集系统,尤其是在发展中国家或偏远地区。如果没有适当的收集机制,先进回收技术所需的可回收材料的稳定供应就会变得不稳定或不足。

将废料从收集点运输到回收设施在物流上可能很复杂且成本高昂,尤其是在处理大量废料或偏远地区时。运输网络不足可能会导致延误、成本增加,并阻碍回收业务的可扩展性。建立先进的回收设施需要根据每种技术的要求量身定制特定的基础设施。许多地区缺乏专门的设施,这使得公司很难找到合适的地点来实施其先进的回收工艺。将先进的回收技术整合到现有的废物管理基础设施中可能具有挑战性,因为存在兼容性问题以及需要改造或建造新设施。

获得建立先进回收设施所需的许可和批准可能很繁琐,涉及复杂的法规和行政程序。这可能会阻碍潜在投资者或公司进入市场。先进回收技术的成功实施和发展在很大程度上取决于完善而高效的废物管理基础设施,包括收集、分类、运输和加工设施。

最新动态

  • 2023 年 7 月,雪佛龙菲利普斯化学公司 (Chevron Phillips Chemical Company LLC) 签订了一项先进再生塑料原料的长期供应协议,加强了与 Nexus Circular 的合作。Nexus Circular 是先进回收领域的领导者,利用技术将填埋的塑料转化为高质量液体,从而生产出原始质量的循环塑料。与 Nexus 的合作将使雪佛龙菲利普斯化学公司能够扩大其循环聚合物计划,并为塑料向循环经济的转型做出贡献。
  • 2023 年 4 月,BioBTX 与 Agilyx 达成战略合作,探索 BioBTX 可再生芳烃技术的商业化规模化。Agilyx 将把其热解技术与 BioBTX 的催化技术相结合,从难以回收的塑料废物流中生产可再生芳烃化学品 (BTX)。此次合作旨在打造符合化学工业规范的高质量 BTX 产品,为循环经济做出贡献。
  • 2023 年 3 月,Garbo SRL 与 Saipem SpA 合作,推进其塑料化学回收技术 Chempet 的工业发展。此次合作包括在意大利塞拉诺建造世界上第一座 PET 化学回收工业工厂。此次合作使 Garbo 成为化学回收领域的领导者,并支持日益增长的 PET 回收需求,提供更简单的工艺和更广泛的可处理 PET 废物。
  • 2022 年 11 月,Synova、SABIC Global Technologies BV 和 Technip Energies 签署了一项联合开发和合作协议,合作开发一个商业工厂,该工厂将从塑料废物中生产烯烃和芳烃。该工厂将 Synovia 的 MILENA 固体裂解技术、OLGA 气体调节和焦油去除技术与 T.EN 的 Pure.rGas 气体处理技术相结合。这项综合技术有效地将塑料废物转化为高价值化学品,为 SABIC 实现废旧塑料闭环的愿景做出了贡献。
  • 2022年11月,化学回收技术全球领导者PLASTIC ENERGY宣布在英国拉夫堡大学开设新的研发实验室,该实验室将成为Plastic Energy进一步开发和优化其独特化学回收技术的中心。

欧洲先进回收技术市场范围

欧洲先进回收技术市场根据技术、工艺产出和最终用途分为三个显著的细分市场。这些细分市场之间的增长将帮助您分析行业中的主要增长细分市场,并为用户提供有价值的市场概览和市场洞察,以便做出战略决策以确定核心市场应用。

技术

  • 热解/裂解
  • 气化
  • 解聚
  • 微波

根据技术,市场分为热解/裂解、气化、解聚和微波。

过程输出

  • 石脑油
  • 重质气油
  • 蜡渣

根据工艺产出,市场分为石脑油、重质柴油和蜡渣。

最终用途

  • 包装
  • 基础设施与建设
  • 消费电子产品
  • 汽车

根据最终用途,市场分为包装、基础设施和建筑、消费电子产品和汽车。

欧洲先进回收技术市场

欧洲先进回收技术市场区域分析/见解

欧洲先进回收技术市场根据技术、工艺产出和最终用途进行细分。

本市场报告涵盖的国家包括德国、荷兰、西班牙、英国、比利时、意大利、瑞士、奥地利、法国、土耳其和欧洲其他国家。

由于德国越来越重视可持续解决方案以有效管理和回收塑料废物,预计它将主导欧洲先进回收技术市场。先进的回收技术在实现可持续塑料废物管理方面发挥着重要作用,促进了市场增长。

报告的国家部分还提供了影响市场当前和未来趋势的各个市场影响因素和市场监管变化。数据点下游和上游价值链分析、技术趋势、波特五力分析和案例研究是用于预测各个国家市场情景的一些指标。此外,在提供国家数据的预测分析时,还考虑了区域品牌的存在和可用性以及它们因来自本地和国内品牌的大量或稀缺竞争而面临的挑战、国内关税的影响和贸易路线。

竞争格局和欧洲先进回收技术市场份额分析

欧洲先进回收技术市场竞争格局提供了竞争对手的详细信息。详细信息包括公司概况、公司财务状况、产生的收入、市场潜力、研发投资、新市场计划、生产基地和设施、公司优势和劣势、产品发布、产品试验渠道、产品批准、专利、产品宽度和广度、应用主导地位、技术生命线曲线。以上提供的数据点仅与公司对市场的关注有关。

欧洲先进回收技术市场的一些主要市场参与者包括霍尼韦尔国际公司、雪佛龙菲利普斯化学公司、Synova、Gr3n Recycling、Quantafuel ASA、Agilyx、BlueAlp Innovations BV、GARBO SRL、Mura Technology Limited、Olefy Technologies Ltd.、PLASTIC ENERGY 和 Recycling Avenue 等。


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目录

1 INTRODUCTION

1.1 OBJECTIVES OF THE STUDY

1.2 MARKET DEFINITION

1.3 OVERVIEW

1.4 LIMITATIONS

1.5 MARKETS COVERED

2 MARKET SEGMENTATION

2.1 MARKETS COVERED

2.2 GEOGRAPHICAL SCOPE

2.3 YEARS CONSIDERED FOR THE STUDY

2.4 CURRENCY AND PRICING

2.5 DBMR TRIPOD DATA VALIDATION MODEL

2.6 MULTIVARIATE MODELING

2.7 PRIMARY INTERVIEWS WITH KEY OPINION LEADERS

2.8 DBMR MARKET POSITION GRID

2.9 DBMR VENDOR SHARE ANALYSIS

2.1 MARKET END USE COVERAGE GRID

2.11 SECONDARY SOURCES

2.12 ASSUMPTIONS

3 EXECUTIVE SUMMARY

4 PREMIUM INSIGHTS

4.1 PESTLE ANALYSIS

4.1.1 ECONOMIC FACTORS

4.1.2 SOCIAL FACTORS

4.1.3 TECHNOLOGICAL FACTORS

4.1.4 LEGAL FACTORS

4.1.5 ENVIRONMENTAL FACTORS

4.2 PORTER'S FIVE FORCES

4.2.1 THREAT OF NEW ENTRANTS

4.2.2 THREAT OF SUBSTITUTES

4.2.3 CUSTOMER BARGAINING POWER

4.2.4 SUPPLIER BARGAINING POWER

4.2.5 INTERNAL COMPETITION (RIVALRY)

4.3 CLIMATE CHANGE SCENARIO

4.3.1 ENVIRONMENTAL CONCERNS

4.3.2 INDUSTRY RESPONSE

4.3.3 GOVERNMENT’S ROLE

4.3.4 ANALYST RECOMMENDATION

4.4 TECHNOLOGICAL ADVANCEMENTS

4.5 VENDOR SELECTION CRITERIA

4.6 RAW MATERIAL COVERAGE

5 REGULATION COVERAGE

5.1 REGULATORY FRAMEWORK AND GUIDELINES

6 MARKET OVERVIEW

6.1 DRIVERS

6.1.1 SHIFTING INCLINATION TOWARDS CIRCULAR ECONOMY

6.1.2 POSITIVE OUTLOOK TOWARDS SUSTAINABLE PLASTIC WASTE MANAGEMENT

6.1.3 INCREASE IN THE CAPABILITY OF CHEMICAL COMPANIES TO UNLOCK VALUABLE RESOURCES

6.2 RESTRAINTS

6.2.1 THE LACK OF WELL-ESTABLISHED RECYCLING INFRASTRUCTURE AND LOGISTICAL CHALLENGE

6.2.2 HIGH INVESTMENT COST ASSOCIATED WITH INITIAL INSTALLATION OF EQUIPMENT AND FACILITIES

6.3 OPPORTUNITIES

6.3.1 RISING ACCESS TOWARDS PREMIUM QUALITY EQUIPMENT AND CONSUMABLES

6.3.2 EXTENSIVE SCOPE OF SYNERGIZING THE EXPERTISE

6.4 CHALLENGE

6.4.1 ISSUES ASSOCIATED WITH HANDLING OF RECYCLABLE WASTE

7 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET, BY REGION

7.1 EUROPE

7.1.1 GERMANY

7.1.2 NETHERLANDS

7.1.3 SPAIN

7.1.4 U.K.

7.1.5 BELGIUM

7.1.6 ITALY

7.1.7 SWITZERLAND

7.1.8 AUSTRIA

7.1.9 FRANCE

7.1.10 TURKEY

7.1.11 REST OF EUROPE

8 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: COMPANY LANDSCAPE

8.1 COMPANY SHARE ANALYSIS: EUROPE

9 SWOT ANALYSIS

10 COMPANY PROFILES

10.1 HONEYWELL INTERNATIONAL INC.

10.1.1 COMPANY SNAPSHOT

10.1.2 REVENUE ANALYSIS

10.1.3 PRODUCT PORTFOLIO

10.1.4 RECENT DEVELOPMENT

10.2 CHEVRON PHILLIPS CHEMICAL COMPANY LLC

10.2.1 COMPANY SNAPSHOT

10.2.2 PRODUCT PORTFOLIO

10.2.3 RECENT DEVELOPMENTS

10.3 SYNOVA

10.3.1 COMPANY SNAPSHOT

10.3.2 PRODUCT PORTFOLIO

10.3.3 RECENT DEVELOPMENTS

10.4 PLASTIC ENERGY

10.4.1 COMPANY SNAPSHOT

10.4.2 PRODUCT PORTFOLIO

10.4.3 RECENT DEVELOPMENT

10.5 GR3N RECYCLING

10.5.1 COMPANY SNAPSHOT

10.5.2 PRODUCT PORTFOLIO

10.5.3 RECENT DEVELOPMENTS

10.6 AGILYX

10.6.1 COMPANY SNAPSHOT

10.6.2 REVENUE ANALYSIS

10.6.3 PRODUCT PORTFOLIO

10.6.4 RECENT DEVELOPMENTS

10.7 BLUEALP INNOVATIONS BV

10.7.1 COMPANY SNAPSHOT

10.7.2 PRODUCT PORTFOLIO

10.7.3 RECENT DEVELOPMENT

10.8 GARBO SRL

10.8.1 COMPANY SNAPSHOT

10.8.2 PRODUCT PORTFOLIO

10.8.3 RECENT DEVELOPMENT

10.9 MURA TECHNOLOGY LIMITED

10.9.1 COMPANY SNAPSHOT

10.9.2 PRODUCT PORTFOLIO

10.9.3 RECENT DEVELOPMENTS

10.1 OLEFY TECHNOLOGIES LTD.

10.10.1 COMPANY SNAPSHOT

10.10.2 PRODUCT PORTFOLIO

10.10.3 RECENT DEVELOPMENT

10.11 QUANTAFUEL ASA

10.11.1 COMPANY SNAPSHOT

10.11.2 REVENUE ANALYSIS

10.11.3 PRODUCT PORTFOLIO

10.11.4 RECENT DEVELOPMENT

10.12 RECYCLING AVENUE

10.12.1 COMPANY SNAPSHOT

10.12.2 PRODUCT PORTFOLIO

10.12.3 RECENT DEVELOPMENT

11 QUESTIONNAIRE

12 RELATED REPORTS

表格列表

TABLE 1 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET, BY COUNTRY, 2021-2030 (USD THOUSAND)

TABLE 2 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TECHNOLOGY, 2021-2030 (USD THOUSAND)

TABLE 3 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET, BY PROCESS OUTPUT, 2021-2030 (USD THOUSAND)

TABLE 4 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET, BY END USE, 2021-2030 (USD THOUSAND)

TABLE 5 EUROPE PACKAGING IN ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 6 GERMANY ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TECHNOLOGY, 2021-2030 (USD THOUSAND)

TABLE 7 GERMANY ADVANCED RECYCLING TECHNOLOGIES MARKET, BY PROCESS OUTPUT, 2021-2030 (USD THOUSAND)

TABLE 8 GERMANY ADVANCED RECYCLING TECHNOLOGIES MARKET, BY END USE, 2021-2030 (USD THOUSAND)

TABLE 9 GERMANY PACKAGING IN ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 10 NETHERLANDS ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TECHNOLOGY, 2021-2030 (USD THOUSAND)

TABLE 11 NETHERLANDS ADVANCED RECYCLING TECHNOLOGIES MARKET, BY PROCESS OUTPUT, 2021-2030 (USD THOUSAND)

TABLE 12 NETHERLANDS ADVANCED RECYCLING TECHNOLOGIES MARKET, BY END USE, 2021-2030 (USD THOUSAND)

TABLE 13 NETHERLANDS PACKAGING IN ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 14 SPAIN ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TECHNOLOGY, 2021-2030 (USD THOUSAND)

TABLE 15 SPAIN ADVANCED RECYCLING TECHNOLOGIES MARKET, BY PROCESS OUTPUT, 2021-2030 (USD THOUSAND)

TABLE 16 SPAIN ADVANCED RECYCLING TECHNOLOGIES MARKET, BY END USE, 2021-2030 (USD THOUSAND)

TABLE 17 SPAIN PACKAGING IN ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 18 U.K. ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TECHNOLOGY, 2021-2030 (USD THOUSAND)

TABLE 19 U.K. ADVANCED RECYCLING TECHNOLOGIES MARKET, BY PROCESS OUTPUT, 2021-2030 (USD THOUSAND)

TABLE 20 U.K. ADVANCED RECYCLING TECHNOLOGIES MARKET, BY END USE, 2021-2030 (USD THOUSAND)

TABLE 21 U.K. PACKAGING IN ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 22 BELGIUM ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TECHNOLOGY, 2021-2030 (USD THOUSAND)

TABLE 23 BELGIUM ADVANCED RECYCLING TECHNOLOGIES MARKET, BY PROCESS OUTPUT, 2021-2030 (USD THOUSAND)

TABLE 24 BELGIUM ADVANCED RECYCLING TECHNOLOGIES MARKET, BY END USE, 2021-2030 (USD THOUSAND)

TABLE 25 BELGIUM PACKAGING IN ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 26 ITALY ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TECHNOLOGY, 2021-2030 (USD THOUSAND)

TABLE 27 ITALY ADVANCED RECYCLING TECHNOLOGIES MARKET, BY PROCESS OUTPUT, 2021-2030 (USD THOUSAND)

TABLE 28 ITALY ADVANCED RECYCLING TECHNOLOGIES MARKET, BY END USE, 2021-2030 (USD THOUSAND)

TABLE 29 ITALY PACKAGING IN ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 30 SWITZERLAND ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TECHNOLOGY, 2021-2030 (USD THOUSAND)

TABLE 31 SWITZERLAND ADVANCED RECYCLING TECHNOLOGIES MARKET, BY PROCESS OUTPUT, 2021-2030 (USD THOUSAND)

TABLE 32 SWITZERLAND ADVANCED RECYCLING TECHNOLOGIES MARKET, BY END USE, 2021-2030 (USD THOUSAND)

TABLE 33 SWITZERLAND PACKAGING IN ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 34 AUSTRIA ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TECHNOLOGY, 2021-2030 (USD THOUSAND)

TABLE 35 AUSTRIA ADVANCED RECYCLING TECHNOLOGIES MARKET, BY PROCESS OUTPUT, 2021-2030 (USD THOUSAND)

TABLE 36 AUSTRIA ADVANCED RECYCLING TECHNOLOGIES MARKET, BY END USE, 2021-2030 (USD THOUSAND)

TABLE 37 AUSTRIA PACKAGING IN ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 38 FRANCE ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TECHNOLOGY, 2021-2030 (USD THOUSAND)

TABLE 39 FRANCE ADVANCED RECYCLING TECHNOLOGIES MARKET, BY PROCESS OUTPUT, 2021-2030 (USD THOUSAND)

TABLE 40 FRANCE ADVANCED RECYCLING TECHNOLOGIES MARKET, BY END USE, 2021-2030 (USD THOUSAND)

TABLE 41 FRANCE PACKAGING IN ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 42 TURKEY ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TECHNOLOGY, 2021-2030 (USD THOUSAND)

TABLE 43 TURKEY ADVANCED RECYCLING TECHNOLOGIES MARKET, BY PROCESS OUTPUT, 2021-2030 (USD THOUSAND)

TABLE 44 TURKEY ADVANCED RECYCLING TECHNOLOGIES MARKET, BY END USE, 2021-2030 (USD THOUSAND)

TABLE 45 TURKEY PACKAGING IN ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 46 REST OF EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET, BY TECHNOLOGY, 2021-2030 (USD THOUSAND)

图片列表

FIGURE 1 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: SEGMENTATION

FIGURE 2 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: DATA TRIANGULATION

FIGURE 3 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: DROC ANALYSIS

FIGURE 4 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: REGIONAL VS COUNTRY MARKET ANALYSIS

FIGURE 5 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: COMPANY RESEARCH ANALYSIS

FIGURE 6 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: MULTIVARIATE MODELLING

FIGURE 7 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: INTERVIEW DEMOGRAPHICS

FIGURE 8 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: DBMR MARKET POSITION GRID

FIGURE 9 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: VENDOR SHARE ANALYSIS

FIGURE 10 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: MARKET END USE COVERAGE GRID

FIGURE 11 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: SEGMENTATION

FIGURE 12 POSITIVE OUTLOOK TOWARDS SUSTAINABLE PLASTIC WASTE MANAGEMENT IS EXPECTED TO DRIVE THE GROWTH OF THE EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET IN THE FORECAST PERIOD OF 2023 TO 2030

FIGURE 13 THE PYROLYSIS/CRACKING SEGMENT IS EXPECTED TO ACCOUNT FOR THE LARGEST MARKET SHARE OF THE EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET IN 2023 AND 2030

FIGURE 14 VENDOR SELECTION CRITERIA

FIGURE 15 DRIVERS, RESTRAINTS, OPPORTUNITIES, AND CHALLENGES OF THE EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET

FIGURE 16 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: SNAPSHOT (2022)

FIGURE 17 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: BY COUNTRY (2022)

FIGURE 18 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: BY COUNTRY (2023 & 2030)

FIGURE 19 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: BY COUNTRY (2022 & 2030)

FIGURE 20 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: BY TECHNOLOGY (2023 - 2030)

FIGURE 21 EUROPE ADVANCED RECYCLING TECHNOLOGIES MARKET: COMPANY SHARE 2022 (%)

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研究方法

Data collection and base year analysis are done using data collection modules with large sample sizes. The stage includes obtaining market information or related data through various sources and strategies. It includes examining and planning all the data acquired from the past in advance. It likewise envelops the examination of information inconsistencies seen across different information sources. The market data is analysed and estimated using market statistical and coherent models. Also, market share analysis and key trend analysis are the major success factors in the market report. To know more, please request an analyst call or drop down your inquiry.

The key research methodology used by DBMR research team is data triangulation which involves data mining, analysis of the impact of data variables on the market and primary (industry expert) validation. Data models include Vendor Positioning Grid, Market Time Line Analysis, Market Overview and Guide, Company Positioning Grid, Patent Analysis, Pricing Analysis, Company Market Share Analysis, Standards of Measurement, Global versus Regional and Vendor Share Analysis. To know more about the research methodology, drop in an inquiry to speak to our industry experts.

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Frequently Asked Questions

The Europe advanced recycling technologies market size will be worth USD 209,752.40 thousand by 2030.
The growth rate of the Europe advanced recycling technologies market is 6.9% in the forecast period by 2030
Shifting inclination towards circular economy & positive outlook towards sustainable plastic waste management are the growth drivers of the Europe advanced recycling technologies market.
Technology, process output, and end-use are the factors on which the Europe advanced recycling technologies market research is based.
Major companies in the Europe advanced recycling technologies market are Honeywell International Inc., Chevron Phillips Chemical Company LLC, Synova, Gr3n Recycling, Quantafuel ASA, Agilyx, BlueAlp Innovations BV, GARBO SRL, Mura Technology Limited, Olefy Technologies Ltd., PLASTIC ENERGY, and Recycling Avenue