The main issues in the water sector are water quality and scarcity. The utilization of membrane technology, such as ultrafiltration, for recovered water recycling and reuse is becoming a more appealing alternative. This study includes the design and feasibility assessment of a project proposal for wastewater recycling and reuse. The primary purpose of this work was to replicate intermediate-treated wastewater from a sewage treatment facility using ultra-filtration membrane technology. This effort established a development and implementation plan based on simulation technique for optimizing UF plants. To build a comprehensive design for the intended facility, DuPont WAVE design software version 1.72 is used. A statistical analysis is carried out, and a quantitative model is developed to provide information on processing parameters and the optimum choice for producing the required grade of tertiary treated water. According to the specific design, the current plan is a scientifically and financially feasible solution for municipal water, surface water, and wastewater, and it will meet the state industrial development corporation's tertiary quality requirements.

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Design of Wastewater Treatment Plant Using Ultra-Filtration Membrane Technology

  • Saima Parveen,
  • Arti Malviya

摘要

The main issues in the water sector are water quality and scarcity. The utilization of membrane technology, such as ultrafiltration, for recovered water recycling and reuse is becoming a more appealing alternative. This study includes the design and feasibility assessment of a project proposal for wastewater recycling and reuse. The primary purpose of this work was to replicate intermediate-treated wastewater from a sewage treatment facility using ultra-filtration membrane technology. This effort established a development and implementation plan based on simulation technique for optimizing UF plants. To build a comprehensive design for the intended facility, DuPont WAVE design software version 1.72 is used. A statistical analysis is carried out, and a quantitative model is developed to provide information on processing parameters and the optimum choice for producing the required grade of tertiary treated water. According to the specific design, the current plan is a scientifically and financially feasible solution for municipal water, surface water, and wastewater, and it will meet the state industrial development corporation's tertiary quality requirements.