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Dirty Labs is at the forefront of pushing the outdated cleaning industry forward. Most cleaning products today rely on technologies that were developed nearly a century ago. While laundry cleaning has evolved over time with some updates and improvements, deep-cleaning formulas still heavily depend on harmful, petroleum-based chemicals.
Dirty Labs, however, is taking a different approach. By combining advanced enzymes and next-generation biobased ingredients, the company has created Phytolase, a unique, enzyme-driven cleaning technology that delivers exceptional cleaning power without the use of toxic chemicals.
The precision targeting of Phytolase is a key feature. Each enzyme class in the formula is designed to target a specific type of stain. Once an enzyme finds its target, it breaks down the stain into simpler components that can be easily lifted and rinsed away. This active stain processing continues throughout the wash cycle, with enzymes continuously targeting and breaking down new stains.
In addition to the enzymes, Phytolase also utilizes plant and sugar-derived surfactants to unlock additional enzyme performance and effectively break down grease and oils. This synergistic, full-spectrum coverage allows the formula to tackle a wide range of tough stains.
Another benefit of Phytolase is its anti-redeposition properties. Traditional detergents can often allow stains to redeposit onto clothing and fabrics during the wash cycle. Dirty Labs' enzymes, however, break down stains into water-miscible components, enabling them to be lifted and rinsed away with the wash water.
Furthermore, Dirty Labs' biobased ingredients are gentler on clothing, demonstrating better color stability and reduced color bleeding in fabrics. The formula also removes dirt and microfibrils that can make clothes and fabrics appear dull and less vibrant, helping to keep them looking newer for longer.
Dirty Labs' commitment to cleanliness and sustainability extends beyond its formulations. The company's products are consciously formulated with nontoxic, biobased ingredients, making them safe for sensitive skin and all clothing types. Dirty Labs is also cruelty-free, vegan, hypoallergenic, and safe for babies and pets.
In addition to its focus on clean ingredients, Dirty Labs prioritizes effectiveness. The company puts its products through rigorous testing to ensure they can handle even the toughest of dirt and odors. Phytolase, the brand's advanced enzyme cleaning technology, targets stains and odors at their source while remaining gentle on users, their clothes, and the environment.
Dirty Labs' commitment to sustainability is further demonstrated through its efforts to reduce its carbon footprint. By creating hyper-concentrated formulas, the company is able to significantly reduce the size of its packaging, which is made of aluminum and can be infinitely recycled. The ingredients used in Dirty Labs' products are responsibly sourced and manufactured through biorenewable processes, with the company examining every aspect of the product life cycle to achieve the safest and most sustainable solutions.
The brand's Wool Dryer Balls are another testament to its dedication to sustainability. These long-lasting, reusable balls can be used for more than a thousand loads, making them a sustainable alternative to traditional dryer sheets and fabric softeners. By fluffing and separating laundry as it tumbles, the Wool Dryer Balls allow for more even air circulation, reducing drying time, static, and wrinkles, while also saving time, money, and energy.
In summary, Dirty Labs is revolutionizing the cleaning industry by offering a range of effective, gentle, and environmentally friendly products that are formulated with advanced, nontoxic technologies. From its innovative Phytolase enzyme-based cleaning formula to its sustainable Wool Dryer Balls, Dirty Labs is committed to providing consumers with clean, high-performing, and eco-conscious solutions for their laundry needs.
product information:
Attribute | Value | ||||
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material_feature | Biodegradable Warning | ||||
date_first_available | March 20, 2024 | ||||
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