Maison

>

Nouvelles

>

Textile Digital Printing Wastewater Treatment Costs Drop 30% with New Filtration Tech

Textile Digital Printing Wastewater Treatment Costs Drop 30% with New Filtration Tech

New filtration technology for textile digital printing wastewater has reduced treatment costs by 30%, making it easier for print shops to comply with environmental regulations. The system uses ceramic membranes and advanced oxidation to remove dyes, pigments, and chemicals from wastewater, allowing up to 90% of water to be recycled. Traditional treatment methods for digital printing effluent were often too expensive for small to medium shops, leading to non‑compliance or excessive costs. The new modular systems are scalable, with entry‑level units starting at $15,000.

For print shops using Imprimantes DTF Xinflying ou Imprimantes DTG, which generate wastewater from pre‑treatment and cleaning, the technology offers a path to near‑zero liquid discharge. The treated water can be reused for cooling, la lessive, or even as input for pre‑treatment mixing. Payback periods range from 1 à 3 years depending on water costs and discharge fees. As water scarcity worsens and regulations tighten, such systems are expected to become standard. Early adopters can also market their sustainable water management as a competitive advantage.

Source: Water Technology Report

Table des matières

Obtenir un devis gratuit

    Actions

    Parlons

    Xinflying propose une gamme complète de solutions d'impression textile numérique, conçu pour aider les fabricants et les marques à accroître leur potentiel commercial. Envoyez-nous un message : nous serions ravis de vous en dire plus et de vous montrer comment nous pouvons soutenir votre croissance.

    Lorsque vous fournissez les informations ci-dessus, vous consentez à la collecte et au traitement des données par Xin Flying selon les termes de notre POLITIQUE DE CONFIDENTIALITÉ .

    Contactez-nous pour plus d'informations

    En savoir plus sur notre DTF, DTG, imprimantes et consommables à sublimation.