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Innovative insole ODM solutions in China 》meeting
2025/05/02 02:46
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Introduction – Company Background

GuangXin Industrial Co., Ltd. is a specialized manufacturer dedicated to the development and production of high-quality insoles.

With a strong foundation in material science and footwear ergonomics, we serve as a trusted partner for global brands seeking reliable insole solutions that combine comfort, functionality, and design.

With years of experience in insole production and OEM/ODM services, GuangXin has successfully supported a wide range of clients across various industries—including sportswear, health & wellness, orthopedic care, and daily footwear.

From initial prototyping to mass production, we provide comprehensive support tailored to each client’s market and application needs.

At GuangXin, we are committed to quality, innovation, and sustainable development. Every insole we produce reflects our dedication to precision craftsmanship, forward-thinking design, and ESG-driven practices.

By integrating eco-friendly materials, clean production processes, and responsible sourcing, we help our partners meet both market demand and environmental goals.

Core Strengths in Insole Manufacturing

At GuangXin Industrial, our core strength lies in our deep expertise and versatility in insole and pillow manufacturing. We specialize in working with a wide range of materials, including PU (polyurethane), natural latex, and advanced graphene composites, to develop insoles and pillows that meet diverse performance, comfort, and health-support needs.

Whether it's cushioning, support, breathability, or antibacterial function, we tailor material selection to the exact requirements of each project-whether for foot wellness or ergonomic sleep products.

We provide end-to-end manufacturing capabilities under one roof—covering every stage from material sourcing and foaming, to precision molding, lamination, cutting, sewing, and strict quality control. This full-process control not only ensures product consistency and durability, but also allows for faster lead times and better customization flexibility.

With our flexible production capacity, we accommodate both small batch custom orders and high-volume mass production with equal efficiency. Whether you're a startup launching your first insole or pillow line, or a global brand scaling up to meet market demand, GuangXin is equipped to deliver reliable OEM/ODM solutions that grow with your business.

Customization & OEM/ODM Flexibility

GuangXin offers exceptional flexibility in customization and OEM/ODM services, empowering our partners to create insole products that truly align with their brand identity and target market. We develop insoles tailored to specific foot shapes, end-user needs, and regional market preferences, ensuring optimal fit and functionality.

Our team supports comprehensive branding solutions, including logo printing, custom packaging, and product integration support for marketing campaigns. Whether you're launching a new product line or upgrading an existing one, we help your vision come to life with attention to detail and consistent brand presentation.

With fast prototyping services and efficient lead times, GuangXin helps reduce your time-to-market and respond quickly to evolving trends or seasonal demands. From concept to final production, we offer agile support that keeps you ahead of the competition.

Quality Assurance & Certifications

Quality is at the heart of everything we do. GuangXin implements a rigorous quality control system at every stage of production—ensuring that each insole meets the highest standards of consistency, comfort, and durability.

We provide a variety of in-house and third-party testing options, including antibacterial performance, odor control, durability testing, and eco-safety verification, to meet the specific needs of our clients and markets.

Our products are fully compliant with international safety and environmental standards, such as REACH, RoHS, and other applicable export regulations. This ensures seamless entry into global markets while supporting your ESG and product safety commitments.

ESG-Oriented Sustainable Production

At GuangXin Industrial, we are committed to integrating ESG (Environmental, Social, and Governance) values into every step of our manufacturing process. We actively pursue eco-conscious practices by utilizing eco-friendly materials and adopting low-carbon production methods to reduce environmental impact.

To support circular economy goals, we offer recycled and upcycled material options, including innovative applications such as recycled glass and repurposed LCD panel glass. These materials are processed using advanced techniques to retain performance while reducing waste—contributing to a more sustainable supply chain.

We also work closely with our partners to support their ESG compliance and sustainability reporting needs, providing documentation, traceability, and material data upon request. Whether you're aiming to meet corporate sustainability targets or align with global green regulations, GuangXin is your trusted manufacturing ally in building a better, greener future.

Let’s Build Your Next Insole Success Together

Looking for a reliable insole manufacturing partner that understands customization, quality, and flexibility? GuangXin Industrial Co., Ltd. specializes in high-performance insole production, offering tailored solutions for brands across the globe. Whether you're launching a new insole collection or expanding your existing product line, we provide OEM/ODM services built around your unique design and performance goals.

From small-batch custom orders to full-scale mass production, our flexible insole manufacturing capabilities adapt to your business needs. With expertise in PU, latex, and graphene insole materials, we turn ideas into functional, comfortable, and market-ready insoles that deliver value.

Contact us today to discuss your next insole project. Let GuangXin help you create custom insoles that stand out, perform better, and reflect your brand’s commitment to comfort, quality, and sustainability.

🔗 Learn more or get in touch:
🌐 Website: https://www.deryou-tw.com/
📧 Email: shela.a9119@msa.hinet.net
📘 Facebook: facebook.com/deryou.tw
📷 Instagram: instagram.com/deryou.tw

 

Memory foam pillow OEM factory Taiwan

Are you looking for a trusted and experienced manufacturing partner that can bring your comfort-focused product ideas to life? GuangXin Industrial Co., Ltd. is your ideal OEM/ODM supplier, specializing in insole production, pillow manufacturing, and advanced graphene product design.

With decades of experience in insole OEM/ODM, we provide full-service manufacturing—from PU and latex to cutting-edge graphene-infused insoles—customized to meet your performance, support, and breathability requirements. Our production process is vertically integrated, covering everything from material sourcing and foaming to molding, cutting, and strict quality control.Taiwan custom neck pillow ODM factory

Beyond insoles, GuangXin also offers pillow OEM/ODM services with a focus on ergonomic comfort and functional innovation. Whether you need memory foam, latex, or smart material integration for neck and sleep support, we deliver tailor-made solutions that reflect your brand’s values.

We are especially proud to lead the way in ESG-driven insole development. Through the use of recycled materials—such as repurposed LCD glass—and low-carbon production processes, we help our partners meet sustainability goals without compromising product quality. Our ESG insole solutions are designed not only for comfort but also for compliance with global environmental standards.Arch support insole OEM from Thailand

At GuangXin, we don’t just manufacture products—we create long-term value for your brand. Whether you're developing your first product line or scaling up globally, our flexible production capabilities and collaborative approach will help you go further, faster.Taiwan high-end foam product OEM/ODM

📩 Contact us today to learn how our insole OEM, pillow ODM, and graphene product design services can elevate your product offering—while aligning with the sustainability expectations of modern consumers.Taiwan graphene product OEM service

Thousands of species are currently listed as “data deficient.” We know very little about a large number of species. Unfortunately, it is not always a good sign. Often, we just do not understand a species well enough to tell how it is doing. There are thousands of plants and animals on the International Union for Conservation of Nature’s (IUCN) recognized red list that are classified as “data deficient.” Simply put, the researchers don’t know enough about these species to be able to say whether or not they are in danger of becoming extinct. However, with a little more knowledge now at hand, the news is once again not good. “We looked at species that are relatively poorly known, but where at least the geographical distribution is known. These species tend to be threatened with extinction more often than ones that we know more about,” says Francesca Verones, a professor at the Norwegian University of Science and Technology’s (NTNU) Industrial Ecology Programme. In fact, more than half of these lesser-known species may be in danger of disappearing. Additionally, there are other species that are even less well recognized. We don’t even know whether these species are in danger. Oedipina capitalina was discovered a few years ago. This specimen was found in Honduras. It is listed as “insufficient data” but may in fact be in great danger of extinction. Credit: Josue Ramos Galdamez, Creative Commons 1,000,000 or 147,000? IPBES, an international panel of leading biodiversity researchers, estimates that at least one million of the species on our planet are in danger of becoming extinct. But it’s possible that you also heard other numbers. The IUCN has evaluated about 147,000 species. 41,000 of them, or 2 percent, are threatened Why This Gap? Partly this gap exists because we haven’t discovered many of the species yet. Scientists assume that our planet has 10 million species, but we know less than 20 percent of them. Some species probably disappear without us ever knowing they existed. If we’re to take care of life on the planet, we first need to know what exists, so it is important to find out as much as possible about the organisms we share the planet with. However, we often know very little, including about the species that we’re already aware of. Threats and trends are constantly changing, and we just don’t have enough researchers and helpers to survey everything. But technology can help. Computer Tools Calculate the Probability “We used machine learning to calculate the risk of extinction for 7,699 of the little-known species,” says Jan Borgelt, a postdoctoral fellow at NTNU’s Department of Energy and Process Engineering. IUCN lists 20,469 species as “data deficient.” Various statistical tools can fill in some of these knowledge gaps with probabilities that computers arrive at. These computer model-created probabilities were compared with individual examples that the researchers had gone through manually. The computer models proved to be extremely accurate. Borgelt stresses that the intention of the models isn’t to replace the researchers’ work. But “they can provide a first estimate of the risk of species becoming extinct in cases where we don’t yet have enough data,” he says. The researchers can save themselves work by using these computer models, which come in handy when the resources don’t match the workload. But cheerful reading it’s not. Useful for Protecting Species “We found that as many as 85 percent of the amphibians that we have limited knowledge of are in danger of becoming extinct. For other groups, like mammals and reptiles, this applies to around half of the species,” says Borgelt. So species unknown to us often face an uphill battle. But the consolation is that the new knowledge can be of great use if used correctly. “More areas could become worthy of protective measures if we take species that we have little data on into account,” says Borgelt. For example, so-called biodiversity “hotspots” – areas particularly in need of being protected – could thereby become both more numerous and considered even more important. The results can also be of help to IUCN, as well as when they arrive at their results themselves. “We find that the probability of extinction across species groups and regions varies a lot. This could indicate that some research that’s based on the risk assessments is not always correct,” says Verones. Reference: “More than half of data deficient species predicted to be threatened by extinction” by Jan Borgelt, Martin Dorber, Marthe Alnes Høiberg and Francesca Verones, 4 August 2022, Communications Biology. DOI: 10.1038/s42003-022-03638-9

Egyptian goose (Alopochen aegyptiaca) originally from Africa and now established in Central and Western Europe. Credit: Professor Tim Blackburn, UCL The number of alien (non-native) species, particularly insects, arthropods, and birds, is expected to increase globally by 36% by the middle of this century, compared to 2005, finds new research by an international team involving UCL. Published in Global Change Biology, the study also predicts the arrival of around 2,500 new alien species in Europe, which translates to an increase of 64% for the continent over the 45-year period. The research team led by the German Senckenberg Biodiversity and Climate Research Centre hope it should be possible to reduce this number with stricter biosecurity regulations. Alien species are those that humans have moved around the world to places where they do not naturally occur. More than 35,000 such species had been recorded by 2005 (the date of the most recent comprehensive global catalog). Some of these aliens can go on to become invasive, with damaging impacts to ecosystems and economies. Alien species are one of the main drivers of extinction of animals and plants. Co-author Professor Tim Blackburn (UCL Centre for Biodiversity & Environment Research and the Institute of Zoology, ZSL) said: “Our study predicts that alien species will continue to be added to ecosystems at high rates through the next few decades, which is concerning as this could contribute to harmful biodiversity change and extinction. “But we are not helpless bystanders: with a concerted global effort to combat this, it should be possible to slow down or reverse this trend.” Box tree moth, native to east Asia and now found across Europe. Credit: Professor Tim Blackburn, UCL For the study, the research team developed a mathematical model to calculate for the first time how many more aliens would be expected by 2050, based on estimated sizes of source pools (the species that could end up becoming invasive) and dynamics of historical invasions, under a ‘business-as-usual’ scenario that assumes a continuation of current trends. The model predicts a 36% increase in the number of alien plant and animal species worldwide by 2050, compared to 2005 levels. The study identifies high levels of variation between regions. The largest increase is expected in Europe, where the number of alien species will increase by 64% by the middle of the century. Additional alien hotspots are predicted to include temperate latitudes of Asia, North America, and South America. The lowest relative increase in alien species is expected in Australia. Europe will also see the largest increase in absolute numbers of alien species, with around 2,500 new aliens predicted. Lead author Dr Hanno Seebens (Senckenberg Biodiversity and Climate Research Centre, Germany) said: “These will primarily include rather inconspicuous new arrivals such as insects, mollusks, and crustaceans. In contrast, there will be very few new alien mammal species such as the well-known raccoon.” Co-author Dr Franz Essl (University of Vienna) added: “Increases are expected to be particularly large for insects and other arthropods, such as arachnids and crustaceans. We predict the number of aliens from these groups to increase in every region of the world by the middle of the century – by almost 120% in the temperate latitudes of Asia.” The study also predicts that the rate of arrival of alien species will continue to increase, at least in some animal groups. Globally, by 2050, alien arthropods and bird species in particular will arrive faster than before, compared to the period 1960 – 2005. In Europe, the rate of new alien arrivals is expected to increase for all plant and animal groups except mammals. Neither a reversal nor even a slowdown in the spread of alien species is in sight, as global trade and transport are expected to increase in the coming decades, allowing many species to infiltrate new habitats as stowaways. Dr Seebens said: “We will not be able to entirely prevent the introduction of alien species, as this would mean severe restrictions in international trade. “However, stricter regulations and their rigorous enforcement could greatly slow the flow of new species. The benefits of such measures have been shown in some parts of the world. Regulations are still comparatively lax in Europe, and so there is great potential here for new measures to curtail the arrival of new aliens.” Reference: “Projecting the continental accumulation of alien species through to 2050” by Hanno Seebens, Sven Bacher, Tim M. Blackburn, César Capinha, Wayne Dawson, Stefan Dullinger, Piero Genovesi, Philip E. Hulme, Mark van Kleunen, Ingolf Kühn, Jonathan M. Jeschke, Bernd Lenzner, Andrew M. Liebhold, Zarah Pattison, Jan Pergl, Petr Pyšek, Marten Winter and Franz Essl, 1 October 2020, Global Change Biology. DOI: 10.1111/gcb.15333

Simple laboratory cultivation of cyanobacteria in aerated tubes. Credit: University of Tübingen Cyanobacteria Could Revolutionize the Plastic Industry Microbiologists at the University of Tübingen modify bacteria to produce climate-neutral and rapidly degradable bioplastics. Cyanobacteria produce plastic naturally as a by-product of photosynthesis — and they do it in a sustainable and environmentally friendly way. Researchers at the University of Tübingen have now succeeded for the first time in modifying the bacteria’s metabolism to produce this natural plastic in quantities enabling it to be used industrially. This new plastic could come to compete with environmentally harmful petroleum-based plastics. The researchers, headed by Professor Karl Forchhammer of the Interfaculty Institute of Microbiology and Infection Medicine, recently presented their findings in several studies that appeared in the journals Microbial Cell Factories and PNAS. Larger quantities of cyanobacteria can be cultivated in the photobioreactor. Credit: University of Tübingen “The industrial relevance of this form of bioplastic can hardly be overestimated,” says Forchhammer. Around 370 million tons of plastics are currently produced each year. According to forecasts, global plastic production is set to increase by another 40 percent in the next decade. On the one hand, plastic can be used in a variety of ways and is inexpensive, for example as packaging for food. On the other hand, it is the cause of increasing environmental problems. More and more plastic waste ends up in the natural environment, where it pollutes the oceans or enters the food chain in the form of microplastics. Furthermore, plastic is mainly made from petroleum, which releases additional CO2 into the atmosphere when it is burned. From Photosynthesis to Polyhydroxybutyrate (PHB) A solution to these problems may lie in a strain of cyanobacteria with surprising properties. Cyanobacteria of the genus Synechocystis produce polyhydroxybutyrate (PHB), a natural form of plastic. PHB can be used in a similar way to the plastic polypropylene but is rapidly degradable in the environment, as well as pollutant-free. However, the amount produced by these bacteria is usually very small. The Tübingen research group succeeded in identifying a control system in the bacteria that limits the intracellular flow of fixed carbon towards PHB. After removing the corresponding regulator and implementing several further genetic changes, the amount of PHB produced by the bacteria increased enormously and eventually accounted for more than 80 percent of the cell’s total mass. “We have created veritable plastic bacteria,” says Dr. Moritz Koch, first author of the study published in Microbial Cell Factories. Cyanobacteria, also known as microalgae or blue-green algae, are among the most inconspicuous yet powerful players on our planet. It was blue-green algae that created our atmosphere and the ozone layer protecting us from UV radiation through photosynthesis about 2.3 billion years ago. New variants show increased PHB production. Credit: University of Tübingen “Cyanobacteria are, in a sense, the hidden champions of our planet,” Koch emphasizes. “This underscores the enormous potential of these organisms.” Since the blue-green bacteria only need water, CO2 and sunlight, the researchers believe they are ideal candidates for climate-friendly and sustainable production. “Once this is established in industry, the entire production of plastics could be revolutionized,” Koch says. The long-term goal, he says, is to optimize the use of the bacteria and to increase it to the point where large-scale use becomes possible. References: “The novel PII-interactor PirC identifies phosphoglycerate mutase as key control point of carbon storage metabolism in cyanobacteria” by Tim Orthwein, Jörg Scholl, Philipp Spät, Stefan Lucius, Moritz Koch, Boris Macek, Martin Hagemann and Karl Forchhammer, 9 February 2021, Proceedings of the National Academy of Sciences. DOI: 10.1073/pnas.2019988118 “Maximizing PHB content in Synechocystis sp. PCC 6803: a new metabolic engineering strategy based on the regulator PirC” by Moritz Koch, Jonas Bruckmoser, Jörg Scholl, Waldemar Hauf, Bernhard Rieger and Karl Forchhammer, 22 December 2020, Microbial Cell Factories. DOI: 10.1186/s12934-020-01491-1

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