Tunisia Nitrokym Chemical Factory 930kW Hot Water Absorption Chiller
Project Overview:
Location: Tunis, Tunisia
Equipment Selection: 1 unit 930kW Hot Water Absorption Chiller
Main Feature: Combined Cooling, Heating, and Power (CCHP) System integrated with Generator
Project Description: This project in Tunis, Tunisia, features the integration of a 930kW hot water absorption chiller with a generator, forming a Combined Cooling, Heating, and Power (CCHP) system. The system is designed to provide cooling and heating while simultaneously generating power, maximizing energy efficiency and reducing operational costs.
The hot water absorption chiller uses waste heat from the generator’s operation as its energy source, eliminating the need for additional electricity to drive the cooling process. This setup ensures that the system operates with high energy efficiency by utilizing available waste heat, providing cooling for the facility and heating when required, all while generating power.
This CCHP system is especially beneficial for environments where energy costs are high, offering significant savings through the integrated use of waste heat. The project's success underscores the potential of utilizing combined systems to optimize energy usage and reduce environmental impact.
Introduction
Project Overview:
Location: Tunis, Tunisia
Customer: Nitrokym Chemical Plant (Subsidiary of a major chemical group in Tunisia)
Equipment Selection: 1 unit of 930kW Hot Water Absorption Chiller
Main Feature: CCHP/Tri-generation System with Waste Heat Recovery
Project Description: Nitrokym Chemical Plant, a subsidiary of one of the largest chemical groups in Tunisia, specializes in the production of products such as calcium chloride (CaCl₂) and bleach, which are used in various technical processes. To meet the plant's cooling needs throughout the year, a 930kW hot water absorption chiller has been installed, driven by the waste heat from the generator set's jacket water. This forms a Combined Cooling, Heating, and Power (CCHP) or tri-generation system, designed to efficiently provide cooling for the production processes.
The system utilizes the waste heat from the generator to power the absorption chiller, significantly reducing energy consumption by avoiding the need for additional electrical energy for cooling. In addition to cooling, the system also provides heating and power generation, further enhancing energy efficiency and reducing operational costs.
By integrating the chiller with the generator and leveraging waste heat, the plant achieves significant savings in both energy costs and environmental impact, while maintaining continuous cooling for their production operations. This project is an excellent example of utilizing a CCHP/tri-generation system in an industrial setting to maximize efficiency and sustainability.
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Post time: Apr-03-2023