Jump to the main content block

13.2.1

  1. Measure the amount of low carbon energy used across the university 測量整個大學的低碳能源使用量

NTOU's low-carbon energy is generated mainly through on-campus offshore wind power, and amount of low carbon energy used is calculated as follows:

Generation Rate (2023) = total generation by wind power / (total device capacity)

  = 6238 (GWh/year) / (2678.02 (MW) × 8760 (h/year))

  = 6238000 MW / (2678.02 (MW) × 8760 (h/year))

  = 0.266

Low carbon energy generated = device capacity × generation rate

  = 19.8 (kW) × 0.266

  = 19.8 × 1000 (J/s) × 0.266

Our annual amount of low carbon energy used (GJ/year)

  = 19.8 × 1000 (J/sec) × 0.266 × 31536000 (sec/year)

  = 166093804800 (J/year)

  ~ 166.09 (GJ/year)

Sustainable impact : National Taiwan Ocean University (NTOU) actively promotes a low-carbon campus transition, with its offshore wind turbine system serving as the university’s primary source of renewable energy. Based on 2024 data, the wind power generation rate is 0.266, and the 19.8 kW installed capacity produces approximately 166.09 GJ of low-carbon energy per year.

This system significantly reduces fossil fuel dependency and greenhouse gas emissions while functioning as a practical platform for renewable energy research, education, and demonstration. By continuously monitoring generation efficiency and carbon reduction performance, the university integrates energy transition strategies into campus operations and sustainability management.

This initiative exemplifies NTOU’s commitment to SDG 13.2.1 — integrating climate action into institutional policy and operational practice, demonstrating leadership in renewable energy application and climate change mitigation within higher education.

本校的低碳能源主要來自校內的離岸風力發電,低碳能源使用量的計算方式如下:

1.發電率(2024

  = 風力發電總量 ÷(總裝置容量)

  = 6238GWh/年) ÷(2678.02MW)× 8760h/year))

  = 6238000 MW ÷(2678.02MW)× 8760h/year))

  = 0.266

2.低碳能源產出量

  = 裝置容量 × 發電率

  = 19.8kW)× 0.266

  = 19.8 × 1000J/s)× 0.266

本校年度低碳能源使用量(GJ/year

  = 19.8 × 1000J/s)× 0.266 × 31536000sec/year

  = 166093804800J/year

  ~ 166.09GJ/year

永續影響力:本校積極推動低碳校園轉型,校內離岸風力發電系統為主要低碳能源來源。根據2024年發電率計算(0.266),校內19.8 kW裝置容量可產生年度低碳能源使用量約166.09 GJ/year。此發電系統有效減少對化石燃料的依賴,降低溫室氣體排放,並作為全校能源教育與再生能源研究的重要示範場域。學校透過持續監測風能發電效率與碳減量效益,推動校園能源轉型、環境教育與永續治理,展現大學在氣候行動上的實質貢獻。此舉不僅強化校內能源管理政策,更具體實踐 SDG 13.2.1 將氣候行動納入校務治理與營運實踐 的永續發展目標。

Evidence: https://sharon860918.wixsite.com/coee-fre2025

  1. Net Zero Emissions and Greenhouse Gas Inventory Planning 淨零排放與溫室氣體盤查規劃

The university has set 2024 as the baseline year for the greenhouse gas inventory and plans to formally launch the whole-campus GHG inventory operation in 2025. This inventory serves as the foundation for promoting sustainable campus and carbon reduction actions, helping to identify campus carbon emission hotspots to guide energy saving and energy management.

Sustainable Impact: By launching the whole-campus GHG inventory operation, the university establishes a formal process to measure low-carbon energy consumption and map the carbon footprint trajectory of the university's energy consumption. This action implements climate measures at the management level, aiding in the scientific formulation of carbon reduction strategies and enhancing the resilience of campus governance for sustainable development.

學校已將2024年設定為溫室氣體盤查基準年,並將於2025年正式啟動全校性溫室氣體盤查作業。此盤查是推動永續校園與減碳行動的基礎工程,有助於掌握校園碳排熱區,作為推動節能減碳與能源管理的依據。

永續影響力: 透過啟動全校性溫室氣體盤查作業,學校建立了一個衡量低碳能耗的正式流程,以描繪貴校能源消耗的碳足跡路線圖。這項行動將氣候行動具體落實到管理層面,有助於科學化制定減碳策略,並提升校園永續發展的治理韌性

Evidence: https://usrsdg.ntou.edu.tw/var/file/103/1103/img/1514/599406774.pdf

Click Num: