Search History
Clear History
{{item.search_key}}
Hot Searches
Change
{{item.name}}
{{item.english_name}}
Subscribe eNews
Once A Week Once Every Two Weeks
{{sum}}
Login Register

Applications

EREMA to show high-quality recycling solutions at CHINAPLAS 2026

ENGEL’s high-performance automotive solutions at CHINAPLAS 2026

ST BlowMoulding to unveil multiple innovative hollow moulding solutions at CHINAPLAS 2026

Products

Chambroad to highlight specialization and innovation at CHINAPLAS 2026

Evonik displays its latest solutions at CHINAPLAS 2026

Kistler’s cavity pressure sensor for injection molding trainings

Activities

  • CHINAPLAS 2026:VDMA “The Power of Plastics” forum highlights digitalization and circularity

  • Must-attend: CHINAPLAS x CPRJ Plastics Recycling and Circular Economy Conference in Shanghai

  • Beyond procurement: Exploring the concurrent events at CHINAPLAS 2026

Pictorial

News Videos

Ready for CHINAPLAS 2026? Two tools for your visit

Interview: Ada Leung, General Manager, Adsale Exhibition Services Ltd.

KUMHO-SUNNY: Your selection logic is already outdated!

Conference Videos

[Mandarin session: Highlights] Covestro: Innovative thermal conductive material solution for new-generation network devices

[Mandarin session: Highlights] Covestro: The Material Effect: Empowering Innovations in Solar-Storage-Charging Smart Energy and Data Center Applications

[Mandarin session: Highlights] Covestro: In-mold Coating (DC/IMC) Technology - Facilitating Personalized Design for Automotive Interior and Exterior Components

Corporate/Product Videos

About Dow

B Series brush machine

Innovative PVC Compounds for Global Manufacturing | Visit Us Booth 6.2A 39 at CHINAPLAS

Home > News > Recycling

Study: Chemical and biological recycling methods generate most patents

Source:Adsale Plastics Network Date :2022-01-06 Editor :JK

From a global perspective, Europe and the U.S. are leading innovation in plastic recycling and alternative plastics technologies, stated a new study titled "Patents for tomorrow's plastics: Global innovation trends in recycling, circular design and alternative sources" published by the European Patent Office (EPO).

 

The study presents a comprehensive analysis of the innovation trends for the period 2010 to 2019 that are driving the transition to a circular economy for plastics. Europe and the U.S. each accounted for 30% of patenting activity worldwide in these sectors between 2010 and 2019, or 60% combined.

 

Within Europe, Germany posted the highest share of patent activity in both plastic recycling and bioplastic technologies (8% of global total), while France, the UK, Italy, the Netherlands and Belgium stand out for their higher specialization in these fields.


1.jpg

 

The report looks at the number of international patent families (IPFs), each of which represents an invention for which patent applications have been filed at two or more patent offices worldwide (so-called high-value inventions).

 

It aims to provide a guide for business leaders and policymakers to direct resources towards promising technologies, to assess their comparative advantage at different stages of the value chain, and to highlight innovative companies and institutions that could contribute to long-term sustainable growth.

 

The study highlights that of all recycling technologies, the fields of chemical and biological recycling methods generated the highest level of patenting activity in the period under review. These methods accounted for 9000 IPFs in 2010-19, double the number filed for mechanical recycling (4500 IPFs), which is currently the most commonly used solution to transform plastic waste into new products.

 

While the patenting of standard chemical methods reached a peak in 2014, emerging technologies such as biological methods using living organisms (1500 IPFs) or plastic-to-monomer recycling (2300 IPFs) now offer new possibilities to degrade polymers and produce virgin-like plastics.

 

Untapped potential to commercialize European university research

 

The report also finds that in the chemical and biological recycling fields, fundamental research plays a much more significant role than in other plastic recycling technologies, with nearly 20% of inventions originating from universities and public research organizations.


2.jpg


In terms of geographic location of these universities and public research organizations, Europe and the U.S. have a clear lead, each with 29% of those IPFs stemming from research institutions. The report shows that Europe is the only major innovation hub to contribute a larger share of the chemical and biological recycling inventions from fundamental "upstream" research (29%) than overall in the field (26%).

 

By contrast, the U.S. and Japan's contributions to upstream IPFs (29% and 11%) are lower than their respective shares in all IPFs (36% and 17%). Meanwhile, U.S. start-ups and scale-ups generated four times as many IPFs in chemical and biological recycling as their European counterparts (338 v. 84). This suggests that Europe, despite being particularly active in fundamental research, is not exploiting its full potential when it comes to transferring these technologies to industry.

 

Healthcare and cosmetics & detergent industries lead in bioplastic innovation

 

In the area of bioplastic inventions, the study finds that the healthcare sector has by far the most patenting activity in total (more than 19 000 IPFs in 2010-19), despite accounting for less than 3% of the total demand for plastics in Europe.


3.jpg


However, the cosmetics and detergents sector has the largest share of its patenting activity in bioplastics, with the ratio of bioplastics IPFs to conventional plastics IPFs being 1:3, compared to 1:5 in the healthcare sector. Packaging, electronics and textiles are also significant contributors to innovation in bioplastics.

 

Rapid rise in innovation in plastics which are easier to recycle

 

Looking ahead, the study highlights significant potential in new plastic designs for easier recycling, an area of alternative plastics which has developed exponentially in recent years, with an average annual growth rate of 10% since 2010. These technologies have potential applications in aerospace, construction, transportation, wind turbines and microelectronics.


4.jpg


The rapid growth of patenting in these fields is almost entirely driven by innovation in dynamic covalent bonding - an approach allowing for novel designs of durable plastic materials capable of self-repairing. While Japan has a strong lead in this field, most of the inventions coming from universities and public research organizations in this field originate from European and U.S. research institutions.

 

Read the full study here.

 Like 丨  {{details_info.likes_count}}
Recycling
Circular economy
 SACMI (SHANGHAI) MACHINERY EQUIPMENT CO., LTD.      
 DONGGUAN DEHUA PRECISION MOLD CO., LTD      
 ZHANGJIAGANG XINRONG MACHINERY CO.,LTD      
 JUHESHUN ADVANCED MATERIALS CO., LTD.      
 HEFEI TAIHE INTELLIGENT TECHNOLOGY GROUP CO.,LTD.      
 BEIJING ENERGY ENGINEERING TECHNOLOGIES CO.,LTD.      
 WINDORA MATERIALS LLC      
 GREENWICH (CHINA) TECHNOLOGY DEVELOPMENT LIMITED      
 GREENCORE RESOURCES LIMITED      
 LINKER NEW MATERIALS CO., LTD      
 Coperion GmbH      
 SHANGHAI HAWKWAY PROCESS SOLUTIONS CO., LTD      
 GUANGXI HENGYI NEW MATERIALS CO., LTD.      
 TAIZHOU MIXIN MACHINERY CO., LTD.      
 ZHEJIANG ROTOUN PLASTIC TECHNOLOGY CORP.      
 GUANGDONG GUOHENG YOUHE ADVANCED MATERIALS CO., LTD.      
 KADIDE      
 GUANGXI WUZHOU GUOLONG RECYCLABE RESOURCES DEVELOPMENT CO., LTD.      
 SUZHOU BECHTON PLASTIC MACHINERY CO., LTD      
 YUYAO KAWAGUCHI Manufacturing Co., Ltd.      
 LINYI HUASU ELECTRONIC TECHNOLOGY CO., LTD.      
 GUANGDONG ENMEI CHEMICAL TECHNOLOGY CO., LTD      
 ANHUI ZHONGXIN HONGWEI TECHNOLOGY CO.,LTD      
 FUJIAN NAN'AN STAR RUBBER&PLASTIC MACHINERY CO., LTD.      
 ZHANGJIAGANG GREENLANDPLAST MACHINERY CO.,LTD      
 FUJIAN YANGZHU NEW MATERIAL SCIENCE & TECHNOLOGY CO., LTD      
 HUBEI XINJIANSHI MACHINERY TECHNOLOGY CO.,LTD      
 HEBEI GELIA PLASTIC MACHINERY SALES COMPANY      
 FOSHAN SHUNDE MINGSANFENG MOULD CO., LTD.      

The content you're trying to view is for members only. If you are currently a member, Please login to access this content.   Login

Source:Adsale Plastics Network Date :2022-01-06 Editor :JK

From a global perspective, Europe and the U.S. are leading innovation in plastic recycling and alternative plastics technologies, stated a new study titled "Patents for tomorrow's plastics: Global innovation trends in recycling, circular design and alternative sources" published by the European Patent Office (EPO).

 

The study presents a comprehensive analysis of the innovation trends for the period 2010 to 2019 that are driving the transition to a circular economy for plastics. Europe and the U.S. each accounted for 30% of patenting activity worldwide in these sectors between 2010 and 2019, or 60% combined.

 

Within Europe, Germany posted the highest share of patent activity in both plastic recycling and bioplastic technologies (8% of global total), while France, the UK, Italy, the Netherlands and Belgium stand out for their higher specialization in these fields.


1.jpg

 

The report looks at the number of international patent families (IPFs), each of which represents an invention for which patent applications have been filed at two or more patent offices worldwide (so-called high-value inventions).

 

It aims to provide a guide for business leaders and policymakers to direct resources towards promising technologies, to assess their comparative advantage at different stages of the value chain, and to highlight innovative companies and institutions that could contribute to long-term sustainable growth.

 

The study highlights that of all recycling technologies, the fields of chemical and biological recycling methods generated the highest level of patenting activity in the period under review. These methods accounted for 9000 IPFs in 2010-19, double the number filed for mechanical recycling (4500 IPFs), which is currently the most commonly used solution to transform plastic waste into new products.

 

While the patenting of standard chemical methods reached a peak in 2014, emerging technologies such as biological methods using living organisms (1500 IPFs) or plastic-to-monomer recycling (2300 IPFs) now offer new possibilities to degrade polymers and produce virgin-like plastics.

 

Untapped potential to commercialize European university research

 

The report also finds that in the chemical and biological recycling fields, fundamental research plays a much more significant role than in other plastic recycling technologies, with nearly 20% of inventions originating from universities and public research organizations.


2.jpg


In terms of geographic location of these universities and public research organizations, Europe and the U.S. have a clear lead, each with 29% of those IPFs stemming from research institutions. The report shows that Europe is the only major innovation hub to contribute a larger share of the chemical and biological recycling inventions from fundamental "upstream" research (29%) than overall in the field (26%).

 

By contrast, the U.S. and Japan's contributions to upstream IPFs (29% and 11%) are lower than their respective shares in all IPFs (36% and 17%). Meanwhile, U.S. start-ups and scale-ups generated four times as many IPFs in chemical and biological recycling as their European counterparts (338 v. 84). This suggests that Europe, despite being particularly active in fundamental research, is not exploiting its full potential when it comes to transferring these technologies to industry.

 

Healthcare and cosmetics & detergent industries lead in bioplastic innovation

 

In the area of bioplastic inventions, the study finds that the healthcare sector has by far the most patenting activity in total (more than 19 000 IPFs in 2010-19), despite accounting for less than 3% of the total demand for plastics in Europe.


3.jpg


However, the cosmetics and detergents sector has the largest share of its patenting activity in bioplastics, with the ratio of bioplastics IPFs to conventional plastics IPFs being 1:3, compared to 1:5 in the healthcare sector. Packaging, electronics and textiles are also significant contributors to innovation in bioplastics.

 

Rapid rise in innovation in plastics which are easier to recycle

 

Looking ahead, the study highlights significant potential in new plastic designs for easier recycling, an area of alternative plastics which has developed exponentially in recent years, with an average annual growth rate of 10% since 2010. These technologies have potential applications in aerospace, construction, transportation, wind turbines and microelectronics.


4.jpg


The rapid growth of patenting in these fields is almost entirely driven by innovation in dynamic covalent bonding - an approach allowing for novel designs of durable plastic materials capable of self-repairing. While Japan has a strong lead in this field, most of the inventions coming from universities and public research organizations in this field originate from European and U.S. research institutions.

 

Read the full study here.

全文内容需要订阅后才能阅读哦~
立即订阅

Recommended Articles

Recycling
EREMA to show high-quality recycling solutions at CHINAPLAS 2026
 2026-04-14
Recycling
ST BlowMoulding to unveil multiple innovative hollow moulding solutions at CHINAPLAS 2026
 2026-04-13
Recycling
Recycling production waste from diaper manufacturing
 2026-04-08
Recycling
Report: Unraveling the secrets to a thriving plastic recycling sector
 2026-04-04
Recycling
Röhm invests in chemical recycling
 2026-04-02
Recycling
Japanese plastics market accelerates green material transformation
 2026-03-26

You May Be Interested In

Change

  • People
  • Company
loading... No Content
{{[item.truename,item.truename_english][lang]}} {{[item.company_name,item.company_name_english][lang]}} {{[item.job_name,item.name_english][lang]}}
{{[item.company_name,item.company_name_english][lang]}} Company Name    {{[item.display_name,item.display_name_english][lang]}}  

Polyurethane Investment Medical Carbon neutral Reduce cost and increase efficiency CHINAPLAS Financial reports rPET INEOS Styrolution Evonik Borouge Polystyrene (PS) mono-material Sustainability Circular economy BASF SABIC Multi-component injection molding machine All-electric injection molding machine Thermoforming machine

Study: Chemical and biological recycling methods generate most patents

识别右侧二维码,进入阅读全文
下载
x 关闭
订阅
亲爱的用户,请填写一下信息
I have read and agree to the 《Terms of Use》 and 《Privacy Policy》
立即订阅
Top
Feedback
Chat
News
Market News
Applications
Products
Video
In Pictures
Specials
Activities
eBook
Front Line
Plastics Applications
Chemicals and Raw Material
Processing Technologies
Products
Injection
Extrusion
Auxiliary
Blow Molding
Mold
Hot Runner
Screw
Applications
Packaging
Automotive
Medical
Recycling
E&E
LED
Construction
Others
Events
Conference
Webinar
CHINAPLAS
CPS+ eMarketplace
Official Publications
CPS eNews
Media Kit
Social Media
Facebook
Linkedin