Environmental protection and sustainability
PLA Mesh Tea bags are leading the way in sustainable packaging solutions. Made from polylactic acid, which is derived from renewable resources such as corn starch or sugar cane, these tea bags are biodegradable and compostable1. This means that they break down naturally in the environment, reducing waste and minimizing the impact on landfills. In contrast to traditional plastic tea bags that can take hundreds of years to decompose, PLA Mesh Tea bags offer a more environmentally friendly alternative, aligning with the growing global demand for sustainable products.
Excellent safety performance
When it comes to our health, PLA Mesh Tea bags are a top choice. They do not contain harmful chemicals like some other plastic materials, ensuring that no harmful substances leach into your tea during brewing. This is especially important as consumers become more conscious about the potential health risks associated with ingesting microplastics or other contaminants from conventional tea bags. With PLA Mesh Tea bags, you can enjoy a pure and worry-free cup of tea.
Powerful physical properties
The physical properties of PLA Mesh make it an ideal material for tea bags. It has strong tensile strength, allowing it to hold the loose tea leaves securely without the risk of tearing or breaking, even when filled with a large amount of tea. Additionally, its fine mesh structure provides excellent permeability, enabling hot water to flow through easily and extract the maximum flavor from the tea leaves, resulting in a rich and satisfying cup of tea.
The perfect combination of customization and beauty
PLA Mesh Tea bags offer great flexibility in terms of customization. They can be easily shaped and sized to meet different packaging requirements, and tags can be added for branding or product information. The transparent nature of the PLA mesh also allows consumers to see the tea leaves inside, enhancing the visual appeal of the tea bag and adding an element of authenticity to the product.
Market potential and future trend
Post time: Dec-25-2024