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Meryl Medical is revolutionising the textile industry with latest launch

By: Issuewire
Meryl Medical Directors left to right Grant Clodd Broom Kevin Simpson and Peter Clodd Broom

London, England Jul 27, 2021 (Issuewire.com) - Meryl Medical, a hi-tech, innovative, textile manufacturer, has launched a new range of environmentally sustainable fabrics, revolutionising the way we think about, use, and dispose of textiles.  

In partnership with Nylstar Hydrogen Technologies, Meryl Medical has developed strong and durable textiles that can be completely reused, focusing on environmental impact, quality and protection built around a sustainable circular economy. The company is committed to supporting the UN's sustainable development goal of responsible consumption and production by changing the way we produce and consume goods and resources.

Meryl Medical's impressive material is completely non-shedding, zero microfibre pollution in air or water. The company prides itself on virtually eradicating all production waste at the manufacturing stage, which can be as high as 22%, by returning weaving and cutting waste for reuse in new yarns.

The fabric can also be washed at a lower temperature than cotton-based materials and has a hugely reduced transport route, significantly lowering the carbon footprint of the product from its creation stage through to the end of its life when it can be fully recycled and made into another sustainable product.

The team at Meryl Medical were also keen to address the flexibility of the fabric ensuring that as many people as possible could benefit from the innovation, so it was important to use fabric that could function in different types of settings and product designs including bedding, doctors coats, underclothes, workwear, polo shirts, and face covers.

The specialised fabrics are made with superior construction to ensure high-quality specifications that are soft to the touch. The fabrics contain zero shedding microplastics and are made with zero water for colouring process with antiviral and antibacterial properties.

Kevin Simpson, Co-founder, and Innovator at Meryl Medical commented: "This is an exciting time for Meryl Medical and the textile industry as we have created a product that will greatly reduce the environmental impact on society with its recyclability and sustainability components. Our fabrics are manufactured with zero water waste, zero chemicals or solvents, and zero microfibres."

Kevin continued, "The average lifecycle of textiles, including laundering, accounts for 6.7% of all global greenhouse emissions, which is equivalent to every person taking a 2,500-mile flight every year. Meryl Medical is passionate about the environment and sustainability and we are ready to do our part in helping to disrupt and change the textile industry for the better."

Ingo Mangold, Meryl Medical's German Textile Design Engineer, also commented: "Throughout our research and development process, we have put the environment at the forefront of everything we do. From the manufacturing process to the development of fibers that protect against viruses and bacteria, our main goal is to deliver a sustainable quality fabric that provides an environmental saving. We have successfully managed to combine design, comfort, quality, and wellbeing and put it all at the core of our products and designs, creating safer environments for workers and a cleaner planet for everyone."

All Meryl Medical products are treated with a permanent antiviral effect, antibacterial, and anti-fungal technology co-developed alongside their virology partner, HeiQ. HeiQ helps improve the lives of billions of people by adding functionalities to all kinds of materials through scientific research, specialty materials manufacturing, and consumer ingredient branding.

For more information about Meryl Medical, visit: https://merylmedical.com/

 

Kevin Simpson Co Founder and Innovator at  Meryl Medical

Media Contact

Planet Zeus Limited


anthea.fosti@zeuspr.co.uk

01260 2715450

http://zeuspr.co.uk

Source :Meryl Medical

This article was originally published by IssueWire. Read the original article here.

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