Optimization system for the operation of building wastewater deodorization equipment

By acquiring real-time data and calculating dynamic parameters, combined with corrosion assessment and optimization decisions, the system achieves precise deodorant distribution and spray volume adjustment for building wastewater deodorization equipment. This solves the problems of humidity affecting atomization efficiency, uneven odor distribution, and equipment corrosion, thereby improving deodorization effect and equipment lifespan.

CN122076210APending Publication Date: 2026-05-26四川宇阳环境工程有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
四川宇阳环境工程有限公司
Filing Date
2026-03-03
Publication Date
2026-05-26

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Abstract

This invention discloses an operation optimization system for building wastewater deodorization equipment, relating to the field of wastewater deodorization technology. It includes a data acquisition component configured to collect multi-dimensional operational data in real time; a dynamic parameter calculation component configured to calculate humidity correction coefficients, spatial gradient weights, and real-time deodorant spray volume based on the multi-dimensional operational data, and to perform environmental adaptation and precise regional allocation of the real-time deodorant spray volume; a corrosion assessment component configured to quantify the corrosion contribution of the deodorant to the equipment and the protective layer repair effect, and to calculate the cumulative corrosion increment; an optimization decision component configured to combine the cumulative corrosion increment with constraint parameters to generate a basic spray volume correction coefficient to dynamically adjust the rated basic spray volume of the wastewater deodorization equipment; and an execution feedback component configured to execute the optimized spray volume command. This invention achieves a three-way balance between achieving deodorization standards, minimizing energy consumption, and maximizing equipment lifespan through multi-parameter fusion control and closed-loop optimization.
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