Allsunnyenergy Agarwood Oud's patented 16-month natural fermentation technology revolutionizes agarwood production, enhancing efficiency, quality, and medicinal value. As this technology matures, it is set to be widely adopted across the industry, driving growth and innovation. We remain committed to technological advancement to satisfy the market's demand for premium agarwood products. ??
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A subsection of #biobased materials, #biofabricated materials utilize living organisms (such as microbes) rather than plants or animals. Their appeal and power are therefore found in their low-impact and regenerative qualities. The advent of these biomaterials signals that greater infrastructures are now in place to make consumer adoption and global scalability an economic reality. Today, green technologies have more investment, raw components for biomaterials are more abundant, and automation is optimizing manufacturing. Additionally (and crucially!) consumers are no longer viewing the product as a poor cousin of more traditional materials. https://lnkd.in/eAmxjh5z
From 'shrimp leather' to synthetic dye, are biomaterials finally ready to scale up?
fastcompany.com
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A new organic LED material has been developed that could revolutionize display technology by eliminating the need for heavy metals like iridium and platinum. This innovation maintains sharp color and contrast while enhancing the speed of phosphorescence, crucial for modern displays operating at 120 frames per second. The material uses a hybrid structure of molybdenum and sulfur to achieve rapid light emission without chemical bonding, potentially extending device lifespan and reducing environmental impact. Additionally, this breakthrough may pave the way for stable blue phosphorescent pixels, addressing a longstanding challenge in OLED technology.
Organic LED material achieves faster organic phosphorescence for better display tech
phys.org
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?? They developed technology to produce fats from carbon and hydrogen ???? ?? #innovation #hydrogen #carbon #technology #sustainability. ?? Recently, a U.S. startup developed a new technology that makes it possible to produce butter-like fats from carbon and hydrogen. ?? According to a study published by the journal Nature Sustainability, the company Savor has managed to implement a method with zero CO2 production, whereby simple molecules are extracted from air and water to produce “complex organic molecules.” ?? It is precisely this process that allows the products obtained to taste remarkably similar to the originals, despite the fact that such technology “does not seek to emulate the taste with an alternative”, as has been done previously, for example, with hamburgers made from plants and synthesized proteins. ???? Details: https://bit.ly/3ya6AOx .
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In a gleaming laboratory in Edinburgh, robotic machines whirr and mix. The final product that they are creating will be a pine-smelling chemical that can be used as an ingredient in perfumes. But the starting point is very different: a brown, gloopy, fat mixture, recently fished out from below ground - fatbergs. Fatbergs are the foul phenomenon found lurking in (and blocking up) sewers. The development of the technology used to perform this apparent alchemy is being described by some as a new industrial revolution. This is the fast-moving field of bioengineering. The good news is that Britain is currently strong in the science compared with other countries. It is potentially great news for the environment too because it can recycle waste and make things more sustainably. Plus the government is keen because it may mean new industries and new jobs. https://lnkd.in/dNsJp6P6
Fatbergs turned into perfume: Britain's new industrial revolution
bbc.com
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There are a number of developments in the field of gels and films where texture analysis is already being applied. Examples include the development of biodegradable films from false banana starch or Brazilian propolis by-product, the development of hydrogels that are antimicrobial for food surfaces, or able to intelligently regulate solar radiation for smart windows, 3D printable gels for the food industry and research into dysphagia diets, edible films for packaging, or the development of films for mulching applications. All of these ideas need a mechanical assessment to monitor they physical properties and this is where a Texture Analyser is a vital research tool. Read our blog post: https://bit.ly/3WliHC5
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Sustainability in beauty is increasingly about how ingredients are sourced. Thanks to biotechnology, we're witnessing a significant shift. By mimicking natural processes, scientists are developing sustainable alternatives to traditionally sourced ingredients. Take squalane, originally sourced from shark liver but now sustainably produced from sugarcane. This innovative method replicates the molecular structure of shark-derived squalane, eliminating the ethical and environmental drawbacks associated with its traditional sourcing. This approach showcases how biotechnology can fulfill the demand for beauty products that do not compromise on performance or principles. How do you think biotechnology will further transform the beauty industry? Are there other industries that could benefit from similar biotechnological advances? Share your insights below! ?? ?? : Biossance #beautytrends #beautynews #beautyindustry #BiotechBeauty #SustainableInnovation #CleanBeauty
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?? Make Biodegradable Packaging Safe Again Surprisingly, environmentally friendly products may require the use of hazardous materials. Manufacture of biodegradable packaging is one of such cases. The main ingredient in the process is glycolic acid, predominantly synthesised from formaldehyde that can cause cancer. ?? The only way forward for production growth is a shift to a more eco-friendly process in terms of both raw materials and technology. At a recent European Symposium on Surface Science in Athens, our scientist presented an innovative solution for obtaining glycolic acid via the liquid-phase oxidation of ethylene glycol. ?? The linchpin of this reaction is the newly developed catalyst — palladium nanoparticles. It accelerates the oxidation of ethylene glycol and can replace formaldehyde. This emerging technology will be instrumental for the production of higher volumes of biodegradable packaging with a reduced environmental cost. #ESG #innovation #palladium #sustainability #health
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???World's First: Signal Hill Products Embraces Lyras UV Technology to Revolutionize Cider Pasteurization!????? ? Signal Hill Products, a pioneering innovator in beverage production, proudly announces the world's first commercial-scale implementation of Lyras UV technology as a game-changing alternative to traditional flash pasteurization in the production of cider prior to fermentation.? Lyras UV technology harnesses the power of ultraviolet light to inactivate potential spoilage microorganisms, eliminating the need for traditional heat-based pasteurization methods. This chemical-free, non-thermal process has multiple benefits: ??Preserves delicate flavours and nutrients ??Maintains the original colour ??Reduces energy consumption by up to?70% ??Minimizes water usage ??Increases production efficiency and capacity ? Our commitment to sustainability, quality, and innovation drives everything we do. With Lyras UV technology, we’re crafting cider that’s better for you and the environment. ? Cheers to a future where technology and tradition work together!???
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At BSensible, we're excited to introduce a game-changing innovation: NaturZinc. This technology not only enhances your bedding experience but also keeps your bed healthier while protecting your mattress and pillow. ???? Our fitted sheets and pillowcases are perfect for those who seek more than just a good night’s sleep. Thanks to their antibacterial and natural dermatological properties, they help keep you and your bed feeling fresh for longer. ??Some standout features include: ? Lasting antibacterial protection without harmful substances ? Excellent dermatological tolerance, clinically tested ? Reduction of unpleasant odours ? Protective barrier against dust mites, fungi, and allergens ? Fabric made from natural origins ? Consistent performance, free from harmful substances ? Produced with social responsibility, traceability, and sustainability in mind
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