A formaldehyde removal agent quantitative release device

By designing a formaldehyde removal agent quantitative release device, and utilizing the synergistic effect of internal and external swirl and photocatalyst, the problem of insufficient intelligence in existing formaldehyde removal devices is solved, achieving a highly efficient and well-coordinated formaldehyde purification effect.

CN122076201APending Publication Date: 2026-05-26杭州良工装饰有限公司

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
杭州良工装饰有限公司
Filing Date
2026-04-08
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing formaldehyde removal devices have low levels of intelligence and cannot adapt their operation to formaldehyde concentration, resulting in mediocre removal efficiency and energy waste.

Method used

A formaldehyde removal agent quantitative release device was designed, comprising a shell, an inner liner, an atomizing nozzle, a diversion pipe, a photocatalyst, and a mechanical linkage system. By precisely delivering the formaldehyde removal agent to the photocatalyst, the device achieves efficient mixing and purification through the synergistic effect of internal and external swirling flow and the photocatalyst.

Benefits of technology

It achieves thorough mixing of formaldehyde with air, enhances the formaldehyde removal effect, improves purification efficiency, reduces reliance on additional power sources, has a compact structure, good operational coordination, and ensures continuous and efficient dust removal and formaldehyde degradation processes.

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Abstract

This invention belongs to the field of formaldehyde removal technology, specifically a formaldehyde removal agent quantitative release device, comprising a shell structure; the shell has an inner liner connected to it, which together with the inner wall of the shell forms a sandwich space for diverting the incoming formaldehyde removal agent; the inner sidewall of the inner liner is evenly distributed with multiple atomizing nozzles; in this invention, a liquid pump accurately delivers formaldehyde removal agent mixed with a photocatalyst, which is atomized by the atomizing nozzles and flows to the diversion pipe under the drive of the internal swirling flow, and the first fin rotates to expand the diffusion range and accelerate the diffusion speed, and works with the first lamp to activate the photocatalyst, achieving full mixing of the agent with the air, enhancing the formaldehyde removal effect; the various functional components achieve coordinated action through mechanical linkage, reducing dependence on additional power sources, with a compact structure and good operational coordination; the overall equipment forms a highly efficient and coordinated purification system in terms of dust removal, formaldehyde removal, photocatalytic activation, and agent diffusion.
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