Creating a Green Campus: The Role of Rainwater Storage Ponds at Telkom University

Creating a Green Campus: The Role of Rainwater Storage Ponds at Telkom University

Telkom University has taken significant steps toward realizing the vision of a Green Campus through the construction of a rainwater storage pond. Strategically located and integrated into the campus system, this pond not only serves as a water reservoir but also contributes to broader environmental conservation efforts.

Strategic Location and Pond Design

The rainwater storage pond at Telkom University is located behind the TUCH Building, a central hub of campus activities. This location was chosen to maximize rainwater collection during the rainy season. With an efficient design, the pond can capture surface rainwater flow and store it for various campus needs, such as garden irrigation and other non-potable uses.

In addition to the pond, the campus also employs biopore technology to support water management efforts. Biopores are small infiltration holes made in the soil to accelerate the process of water infiltration into the ground. By using biopores, rainwater that cannot be stored in the pond can still be absorbed effectively, reducing waterlogging risks and simultaneously replenishing groundwater reserves.

Modern Filtration System

To ensure the quality of the collected water, Telkom University has installed a modern filtration system in the pond. This system removes dirt and harmful substances from rainwater before it is used. As a result, the water stored in the pond is not only safe but also of high quality.

Benefits for the Environment and Campus Greening

The use of rainwater storage ponds provides significant benefits to the campus environment. The collected water is used to irrigate plants in garden areas, reducing reliance on groundwater resources. Moreover, biopores also contribute to environmental preservation efforts. The benefits of biopores include enhancing the soil’s water absorption capacity, preventing erosion, and improving soil structure by supporting microbial activity.

The combination of the pond and biopores creates a dual positive impact: maintaining soil quality and fostering the sustainability of the local ecosystem.

Raising Environmental Awareness

The construction of the rainwater storage pond and the application of biopores also serve as educational tools for students and staff. The campus actively organizes educational programs to promote awareness about rainwater management, biopores, and other sustainable practices. Through these initiatives, Telkom University not only builds green infrastructure but also fosters a culture of environmental awareness within the academic community.

Contribution to Global Sustainability

This initiative reflects Telkom University’s commitment to global sustainability. By adopting effective water management practices, including the use of biopores, the campus not only benefits the local environment but also sets an example for other educational institutions. Through innovative steps such as the construction of rainwater storage ponds and the implementation of biopore technology, Telkom University contributes to water resource preservation and builds a more sustainable future for generations to come.

Conclusion

The construction of rainwater storage ponds at Telkom University, complemented by the application of biopores, is an essential step in realizing a sustainable green campus. With efficient systems, technological innovation, and a commitment to environmental education, the campus demonstrates that small actions can have a significant impact on environmental conservation. The benefits of biopores and rainwater storage ponds serve as tangible evidence that effective water resource management can create a balanced and sustainable ecosystem. It is hoped that this initiative will continue to grow and inspire other educational institutions to adopt similar sustainable practices.

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