We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Biomass Plastics.
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Biomass Plastics Product List and Ranking from 42 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

Biomass Plastics Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

  1. GSアライアンス 冨士色素株式会社 内 Hyogo//Chemical
  2. 大日精化工業 Tokyo//Chemical
  3. ヤスハラケミカル Tokyo//Chemical
  4. 4 NCH Japan(日本エヌ・シー・エイチ株式会社) Tokyo//Other manufacturing
  5. 5 日進FULFIL(旧:白石バイオマス) 本社・京丹後事業所 Kyoto//Resin/Plastic

Biomass Plastics Product ranking

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

  1. Color masterbatch for fluororesin / PFA, FEP, ETFE 大日精化工業
  2. Spray-type SUS-based coating agent "Stayput" NCH Japan(日本エヌ・シー・エイチ株式会社)
  3. PLA (polylactic acid) based coating materials GSアライアンス 冨士色素株式会社 内
  4. 4 Biomass Plastic "Teramack" ユニチカ 樹脂事業部
  5. 5 Cathode material derived from black mass for lithium-ion batteries GSアライアンス 冨士色素株式会社 内

Biomass Plastics Product List

1~30 item / All 98 items

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Proposal for Biomass Plastics

Renewable biomass resources! Maintaining carbon neutrality even when incinerating waste.

"Biomass plastic" refers to plastic obtained by synthesizing renewable biomass resources through scientific or biological methods. This time, we introduce the "Oiless Biomass Plastic Bearing," which excels in wear resistance and low friction. Unlike metals, this bearing does not require oil and can be used as a substitute for mainstream materials like POM. [Features] - Excellent wear resistance and low friction - Oil-free bearing - Can be used as a substitute for mainstream materials like POM *For more details, please refer to the PDF document or feel free to contact us.

  • バイオマスプラスチック2.PNG
  • plastic
  • Engineering Plastics
  • Biomass Plastics

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Contributing to Carbon Neutrality! Basic Knowledge of Biomass Plastics

Contributing to Carbon Neutrality! Basic Knowledge of Biomass Plastics

This time, we would like to introduce some basic knowledge about biomass plastics that we hope everyone will be aware of. It includes a comparison between general plastics and biomass plastics, as well as a Q&A section regarding biomass plastics. Please take a look, and if you have any questions, feel free to consult with us at Equal.

  • others
  • Biomass Plastics

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Proposal for Biomass Plastics Contributing to Carbon Neutrality

Proposal for Biomass Plastics Contributing to Carbon Neutrality

Biomass plastic is a type of plastic obtained by chemically or biologically synthesizing renewable biomass resources. Since it does not use crude oil as a primary raw material, it can significantly reduce carbon dioxide emissions. This allows for maintaining carbon neutrality even during incineration, making it a material that the government is promoting for adoption, and implementing it can also be effective for receiving subsidies. (For information related to subsidies, please refer to past articles.)

  • plastic
  • Biomass Plastics

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Color masterbatch for fluoropolymer PEEK.

Can accommodate small amounts of coloring for fluorine, PEEK, and PES.

Super engineering plastics such as PEEK and PES, and color masterbatches for fluororesins such as PFA, FEP, and ETFE.

  • paint
  • Other polymer materials
  • Biomass Plastics

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"Biomass Plastic" (PA) PasCom

PasCom is a functional resin based on biomass polyamide, with all fillers made from biomass or recycled fillers.

PasCom is a functional resin based on biomass polyamide, with all fillers made from biomass or recycled fillers, and even other additives derived from plants. It contributes to the reduction of fossil-derived raw materials and minerals, and the use of bamboo-derived fillers also helps in the resource utilization of abandoned bamboo forests, which has become a recent issue. It is suitable for parts that require wear resistance, sliding, and lightweight properties, making it ideal for those struggling to find biomass materials that can be used in mechanical components. Additionally, despite having a high biomass content, it offers high rigidity, low warpage, and low shrinkage, allowing for the addition of even greater value to products where the use of biomass materials has previously been difficult.

  • Engineering Plastics
  • Biomass Plastics

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[Fine Coat Introduction Case Study] Commercial Facility

The introduction of fine coats is accelerating in commercial facilities nationwide!

We would like to introduce a case study of the glass-based coating agent "Fine Coat." We have started its introduction in the main aisles of a furniture and interior goods store chain with locations nationwide. Initially, we switched 129 stores across the country, and we are considering the remaining stores based on the situation, with plans to reflect this in next year's budget. We have received high evaluations in terms of both quality and cost, and we have been fortunate to receive plans for introductions to partner companies as well. Additionally, we have implementation records in commercial facilities nationwide, including supermarkets, home centers, and discount stores. For more details, please refer to the catalog or feel free to contact us.

  • Coating Agent
  • Biomass Plastics

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【English Market Research Report】Lithium Sulfur Battery Market

"Free samples" are currently being offered! Please check the application method from the [PDF download] button, or apply directly from the related links.

The global lithium-sulfur battery market size has recently experienced significant growth, driven by several key factors. The main driving force is the increasing demand for energy storage solutions characterized by higher energy density and longer lifespan, particularly in the automotive and electronics sectors. Lithium-sulfur batteries are expected to offer greater energy storage capacity than traditional lithium-ion batteries, making them suitable for electric vehicles and portable electronic devices. Furthermore, the abundant availability of sulfur as a raw material and its cost-effectiveness compared to conventional cathode materials enhance the economic feasibility of lithium-sulfur batteries, further promoting their adoption. This report investigates the global lithium-sulfur battery market, providing an overview of the market along with trends by application, type, component, capacity, and region, as well as profiles of companies entering the market.

  • Other services
  • Biomass Plastics

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What is biomass plastic?

Used in various situations! Plastics that contain all or part of polylactic acid or starch as raw materials.

Biomass refers to "renewable biological resources derived from living organisms, excluding fossil resources." It is classified into three categories: waste-based, unused biomass, and resource crops, which are utilized in various contexts as energy resources or raw materials for products. The CO2 generated during the use of biomass fuels or the disposal of biomass products is absorbed from the atmosphere through photosynthesis during the growth of living organisms. By substituting fossil resource-derived energy and products with biomass, we can significantly contribute to the reduction of greenhouse gases. Plastics that contain all or part of polylactic acid or starch extracted from resource crops are commonly referred to as "biomass plastics." 【Three Categories】 ■ Waste-based (discarded paper, livestock manure, food waste, sewage sludge, etc.) ■ Unused biomass (rice straw, husks, etc.) ■ Resource crops (sugarcane, corn, etc.) *For more details, please refer to the PDF document or feel free to contact us.

  • plastic
  • Other polymer materials
  • Biomass Plastics

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Next-Generation Battery Development: Lithium-Sulfur Batteries Aiming for High Energy Density

More than twice the advantage in weight energy density! It is used in products that require safety and lightweight, such as high-altitude unmanned aerial vehicles.

Our efforts towards lithium-sulfur batteries are being promoted in collaboration with major domestic and international partners as one of our challenging development themes, focusing on the practical application of medium to large lithium-sulfur batteries. With an energy density of over 400Wh/kg, they are very high-density and lightweight, making them suitable as the main power source or auxiliary power for airplanes, airships, and balloons that conduct observations at high altitudes for several months or more. Additionally, compared to conventional liquid lithium-ion batteries, they offer significantly higher safety and a wider usable temperature range, preventing potential fire accidents and minimizing the necessary components for insulation. **Features** - Excellent for low-rate long-duration operation - Higher safety - Low-cost materials - Maintenance-free - Low environmental impact *For more details, please refer to the PDF materials or feel free to contact us.*

  • Lithium-ion battery
  • Other contract services
  • Biomass Plastics

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Products of nano and micro particles that have surpassed mass production technology ☆ Low cost and short delivery time

Monodisperse microparticles with precise particle sizes and sharp distributions, ranging from 5 nm to 1000 μm, with organic, inorganic, metal coatings, and functional group attachments.

We offer a lineup of microparticles with the following characteristics, and we can also accommodate custom orders as needed. 1. Monodisperse microparticles made of organic, inorganic, and composite materials in any size within the range of 1.5 nm to 1000 μm. 2. Microparticles in various forms such as hollow, porous, core-filled, and solid. (Pore size and specific surface area can be controlled as needed within the range of 3-800 nm.) 3. Microparticles with functional groups of different types and densities bonded to their surfaces, enhancing dispersibility and improving the adsorption selectivity and affinity of the microsphere surface. 4. Microparticles whose photoelectromagnetic properties and mechanical strength are controlled by varying material compositions. 5. Mass production technology for microparticles: This leads to shorter delivery times and cost reductions through mass production techniques. They are widely used in the following fields: Liquid crystal spacers, ACF, optical films, surface finishing agents, lithium batteries, heavy metal absorption, water treatment, LEDs, solar panels, standard microparticles, HPLC analysis columns, solid-phase extraction, fluorescent microparticles, and magnetic beads. For more details, please download the catalog, view related links, or contact us.

  • Other polymer materials
  • Biomass Plastics

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Glass-based coating agent R-800

A gloss and super water-repellent property that has never been experienced before.

I've never seen water repellency like this before! The water-repellent power that bounces off stubborn dirt. Amazingly, the water droplets don't just slide off; they roll off in a spherical shape! A next-generation coating agent that is constantly evolving.

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  • Biomass Plastics

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Glass-based coating agent Si-700

Glossy Super Slip Property

Even cats can't grip and will slip off! Super slippery! Furthermore, it has a durability of over 180 days, and after 30 minutes of application, it creates a wonderful shine and an ultra-repellent coating.

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  • Biomass Plastics

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Glass-based coating agent SiF Hybrid 3000

Can be applied while wet, excellent durability of fluorine coating.

Simultaneously forms a glass-based coating and a fluorine coating. Moreover, it can be applied directly to a wet body. Not only does it provide shine, but it also enables an unprecedented level of super hydrophobicity! With the addition of fluorine, its durability is outstanding.

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  • Biomass Plastics

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Glass-based coating agent Water Barrier

Water-repellent quickness

Incredible! With a speed of 50 km/h, the water droplets on the body fly off due to the ultra-strong water-repellent feature. Please experience it for yourself.

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  • Biomass Plastics

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Measurement of Biodegradation Rate of Biodegradable Resins and Biodegradable Plastics (MODA)

Our company is a testing institution certified by the Japan BioPlastics Association (JBPA)!

We would like to introduce our service for "Measurement of Biodegradation Rate of Biodegradable Plastics (MODA)." For biodegradable plastics such as PLA (polylactic acid) and PBS (polybutylene succinate), we can measure the biodegradation rate in accordance with standards (JIS K 6953-2, ISO 14855-2). The measurement principle involves calculating the degree of degradation (degradation rate) by measuring the CO2 produced during respiration when microorganisms decompose the plastic. 【Equipment Information】 ■ Testing Equipment: Microbial Oxidative Decomposition Measurement Device (MODA-CS) manufactured by Yahata Bussan Co., Ltd. ■ Analysis Items: Degree of Degradation, Degradation Rate ■ Testing Standards: JIS K 6953-2, ISO 14855-2, ISO 17556 *For more details, please refer to the related links or feel free to contact us.

  • Contract measurement
  • Biomass Plastics

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Biomass Plastic "Reseam SERIES"

Eco-friendly materials developed seriously from the perspective of a molding manufacturer. They can also contribute to waste reduction.

The "Reseam SERIES" is a biomass plastic that reduces petroleum usage and utilizes corn starch as an alternative material. We offer a variety of products, including "Reseam ST," which accommodates diverse plastic molding methods, and "Reseam α," which can achieve a thickness of less than 20μ. Additionally, we provide the biomass sealant film "Pireeru," which can impart various properties depending on the base material it is bonded to. 【Features】 <Reseam ST> ■ Formulation can be adjusted according to required physical properties ■ Low CO2 emissions during combustion ■ Compatible with various plastic molding methods *For more details, please refer to the PDF materials or feel free to contact us.

  • plastic
  • Biomass Plastics

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Biomass plastic "WOODLY"

Biomass plastic "WOODLY" supporting a decarbonized society.

"WOODLY" is a high transparency cellulose resin that is carbon-neutral and derived from coniferous forests. - Injection molding - Blow molding - Cast molding Conventional plastic molding methods can be applied. This product complies with EFSA (European Food Safety Authority) standards for raw materials and is increasingly being adopted in Europe as soft packaging film for food. We also have processing experience in Japan, so please feel free to consult with us. (*We will upload photos!)

  • Composite Materials
  • Biomass Plastics

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Biomass Plastic "NeCycle" (Plastic Container)

Can reduce CO2 emissions by about 40%! Decomposes for a long time in the sea and soil! Can be freely adjusted to your desired color!

"NeCycle" is a plastic made from cellulose derived from inedible plants such as wood and straw. It has a high biomass content of about 50% and decomposes over a long period in natural environments (marine and soil). It can be tinted to any desired color and can embody the aesthetic and decorative qualities of traditional crafts. Additionally, it can reduce CO2 emissions by approximately 40% compared to conventional plastics. 【Features】 ■ Plastic made from cellulose ■ High biomass content of about 50% ■ Can be tinted to any desired color ■ Can embody the aesthetic and decorative qualities of traditional crafts ■ Can reduce CO2 emissions by approximately 40% (compared to conventional plastics) *For more details, please refer to the PDF document or feel free to contact us.

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  • Biomass Plastics

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Biodegradable bag

Biodegradable bags that return to nature with Green Pla Mark certification.

At Naruse Co., Ltd., we sell products made from "biodegradable bags (films) that return to nature." We have obtained the Green Plastic Mark certified by the Japan Plastic Association. Since we can manufacture products with controllable biodegradation speeds, we can accommodate various applications such as overseas exports, slow degradation, and fast degradation. 【Features】 ■ Green Plastic Mark obtained ■ Capable of accommodating various applications ■ Biodegradation speed can be controlled according to customer requirements *Please feel free to contact us for more details.

  • Packaging materials
  • Other packaging materials
  • Packaging Bags
  • Biomass Plastics

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Ultra-high heat-resistant bismaleimide resin "HR3030/3032/3070"

Low softening point, ultra-high heat resistance, high thermal decomposition temperature, and low shrinkage bismaleimide-based resin!

"HR3030/3032/3070" is a bismaleimide resin characterized by low softening point, ultra-high heat resistance, high thermal decomposition temperature, and low shrinkage. When measured for molecular weight by GPC, "HR3030" is 670 Mw, "HR3032" is 1000 Mw, and "HR3070" is 660 Mw. 【Features】 ■ Low softening point ■ Ultra-high heat resistance ■ High thermal decomposition temperature ■ Low shrinkage ■ Bismaleimide resin *For more details, please refer to the PDF document or feel free to contact us.

  • Other polymer materials
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Cellulose nanofiber composite biodegradable resin "Color Masterbatch"

Introduction of environmentally friendly plastic colorants!

"Color Masterbatch" is a coloring agent for plastics. It utilizes cellulose nanofibers, which provides strength. In the future, we will also create products using other biodegradable resins and combinations of multiple colors. Please feel free to consult us anytime regarding your resin and color requests. 【Features】 ■ Cellulose nanofiber composite biodegradable resin ■ Excellent strength ■ Available in a total of 7 colors *For more details, please refer to the PDF document or feel free to contact us. *If you would like a paid sample, please inquire.

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100% natural biomass-based (0 petroleum) cellulose-based resin

Oil usage 0! Introducing environmentally friendly biodegradable resin materials.

We have developed biodegradable cellulose-based resins while minimizing complex chemical reactions. Taking additives into consideration, the composition is made from 100% natural biomass, with zero petroleum usage. Additionally, it possesses thermoplastic properties, making it an environmentally friendly biodegradable resin material. Furthermore, we already have technology to combine plant-derived cellulose nanofibers with resins, and by applying this technology to this material, we have created a composite material of biodegradable cellulose-based resin and cellulose nanofibers. Please feel free to consult us at any time for technical details. 【Features】 ■ Tensile strength: 42-54 MPa ■ Composition of 100% natural biomass ■ Zero petroleum usage ■ Possesses thermoplastic properties *For more details, please refer to the PDF document or feel free to contact us. *If you would like a paid sample, please inquire.

  • Other polymer materials
  • plastic
  • Biomass Plastics

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Biodegradable resin for injection molding (100% natural biomass-based)

It is a biodegradable resin for injection molding based on polylactic acid and cellulose nanofibers.

Typically, it is very difficult to injection mold with polylactic acid (PLA), a biodegradable resin, making mass production of injection-molded products challenging. This product is a biodegradable resin for injection molding based on polylactic acid and cellulose nanofibers. It is composed entirely of 100% natural biomass materials, without any petroleum use. This enables the mass production of injection-molded products primarily made from polylactic acid resin. 【Features】 ■ No petroleum used ■ 100% natural biomass materials ■ Based on polylactic acid and cellulose nanofibers ■ Enables mass production of injection-molded products primarily made from polylactic acid resin *If you would like a paid sample, please contact us. *For more details, please refer to the PDF document or feel free to contact us.

  • Other polymer materials
  • Biomass Plastics

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Antimicrobial natural biomass-based biodegradable resin coating materials and paints.

Introducing biomass-based biodegradable coating materials and paints with antibacterial and antiviral properties!

Our company has replaced the materials of general resin products with natural biomass-based biodegradable resins and developed biomass-based biodegradable coating materials and paints that possess antibacterial and antiviral properties. The antibacterial properties have been confirmed by a third-party testing organization, and while the antiviral effects are still under verification, we strongly suspect that they also possess antiviral properties with a high probability. We will continue to investigate detailed characteristic data, including further strength. 【Features】 ■ Replacement of materials in general resin products with natural biomass-based biodegradable resins ■ Possesses antibacterial and antiviral properties ■ Non-edible biomass is used as raw material ■ Antibacterial properties confirmed by a third-party testing organization *For more details, please refer to the PDF document or feel free to contact us.

  • paint
  • Coating Agent
  • Biomass Plastics

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Biomass-based biodegradable resin with antibacterial and antiviral properties.

The raw material is non-edible biomass cellulose! Here is an introduction to the biomass-based biodegradable resin developed by our company.

Our company has developed a biomass-based biodegradable resin with antibacterial and antiviral properties to replace the materials used in general resin products. Many biodegradable resins are made from petroleum or edible biomass resources such as corn, sugarcane, grains, and tubers, raising concerns about competition with human food. However, our biodegradable resin material is made from cellulose, a non-edible biomass, making it a preferable material from the perspective of raw materials. We have devised ways to impart antibacterial and antiviral properties to such materials. [Features] - Replaces the materials used in general resin products with biomass-based biodegradable resins - Possesses antibacterial and antiviral properties - Made from cellulose, a non-edible biomass *For more details, please refer to the PDF document or feel free to contact us.

  • Composite Materials
  • Other polymer materials
  • Biomass Plastics

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Biodegradable resins, plastics, coatings, colorants, etc. made from biomass.

We have developed a group of chemical products (resins, plastics, coatings, colorants) that minimize the use of petroleum-based materials.

In recent years, in order to address the increasingly serious issue of environmental destruction caused by plastic waste, our company has developed various biodegradable materials. We offer grades made from 100% natural biodegradable components, and by using these materials, we can promote CO2 reduction and recycling. Additionally, it is possible to incorporate our technology, cellulose nanofiber, into these materials. [Development Examples] - Plastics made from raw materials such as paper, wood, bamboo, and starch - Bottles, knives, forks, spoons, and plates made from cellulose nanofiber composite biodegradable resin - Biodegradable paints and inks *For more details, please refer to the PDF materials or feel free to contact us.

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Nail tips made of 100% biodegradable resin composition from biomass.

Nail tips, artificial nails, and ethical tips developed using our biodegradable resin!

In recent years, the issue of environmental destruction caused by plastic waste has become increasingly serious, particularly the problem of microplastics in the oceans, which is reaching a catastrophic level that threatens ecosystems worldwide. Amidst these challenges, our company has developed nail tips, artificial nails, and ethical chips (0 petroleum-based materials) made from 100% natural biomass-based biodegradable resin composition using our biodegradable resin. Thanks to our unique technology, we have made it possible to mass-produce using conventional injection molding machines without any petroleum-based materials, incorporating natural additives such as cellulose nanofibers. 【Features】 ■ Environmentally friendly as it is made from 100% natural biomass-based biodegradable resin composition ■ Cellulose nanofibers are compounded within the resin, creating a porous structure ■ Oxygen and moisture can easily pass through the nail tips (artificial nails) ■ Development of nail colors made from 100% natural biomass-based biodegradable resin *For more details, please refer to the PDF document or feel free to contact us.

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  • Organic Natural Materials
  • Other polymer materials
  • Biomass Plastics

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Non-edible biomass-derived cellulose-based biodegradable resin

Highly considerate of both the environment and the economy! Developing biodegradable cellulose-based resins with minimal complex chemical reactions.

There is research and development attempting to create cellulose-based resins by breaking down cellulose with acids or enzymes and converting it into sugars. However, due to the labor-intensive processes involved in the decomposition and pre-treatment stages, there are issues with production costs for practical application. From this perspective, our company is developing biodegradable cellulose-based resins while minimizing complex chemical reactions. As a result, the cost becomes lower during mass production, making it a biodegradable resin material that is considerate of both the environment and the economy. Furthermore, our company already has technology for compounding cellulose nanofibers, which are also plant-derived, with resins. By applying this technology to the material, we can also create a composite material of biodegradable cellulose-based resin and cellulose nanofibers. 【Features】 ■ Minimize complex chemical reactions ■ Lower costs during mass production ■ Highly considerate of both the environment and the economy ■ Composite material of biodegradable cellulose-based resin and cellulose nanofibers is also available ・Improvement in mechanical strength confirmed through cellulose nanofiber compounding *For more details, please refer to the PDF document or feel free to contact us.

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  • Biomass Plastics

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Lithium-sulfur battery

All electrode materials and electrolytes are synthesized and optimized in-house! We also aim to manufacture and commercialize lithium-sulfur batteries.

In modern society, lithium-ion batteries are representative energy storage devices, used in various applications including electric vehicles, hybrid cars, smartphones, and computers. However, initially, while secondary batteries with capacities significantly exceeding those of oxide positive electrodes can be developed, they generally exhibit poor cycle characteristics and degradation, which remains a challenge. From this perspective, our company is also advancing research and development on lithium-sulfur batteries, and as a result of trial and error, we are developing lithium-sulfur batteries that show an initial discharge capacity of 1200mAh/g and approximately 500mAh/g after 130 cycles. We will continue our research and development, including the synthesis of other materials, optimization of nanoscale structures at interfaces, and aim for further improvements in battery capacity. 【Features】 - The positive electrode uses a composite material of sulfur and carbon, the negative electrode material is lithium metal, and the electrolyte is optimized for a composition suitable for lithium-sulfur batteries. - All electrode materials and electrolytes are synthesized and optimized in-house by our company. *For more details, please refer to the PDF document or feel free to contact us.

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  • Other polymer materials
  • Lithium-ion battery
  • Biomass Plastics

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