産業地区におけるポジティブ・エネルギー・ディストリクトの実装に向けて:イタリアのケーススタディ
Towards the implementation of Positive Energy Districts in industrial districts: an Italian case study (原題)
Marrasso, E, Martone, C, Pallotta, G, Roselli, C, Sasso, M
🤖 gxceed AI 要約
日本語
本論文は、イタリア南部の工業地域にポジティブ・エネルギー・ディストリクト(PED)の概念を適用する可能性を検討した。既存の建物や処理場に風力・太陽光発電を導入し、HOMER Proでシミュレーションした結果、ベースライン比で一次エネルギーとCO2排出を55%削減できることを示した。産業地区の脱炭素化へのPED適用の有効性を実証している。
English
This paper explores applying the Positive Energy District (PED) concept to an industrial area in Southern Italy. By equipping existing buildings and a wastewater treatment plant with wind and solar PV, simulations in HOMER Pro show a 55% reduction in primary energy and CO2 emissions compared to grid-only supply, demonstrating PED feasibility for industrial districts.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本では、産業地区の脱炭素化が重要課題であり、再エネ導入によるエネルギーコスト削減とCO2排出削減は、企業の競争力向上に寄与する。本ケースは、工場や事業所を持つ日本企業がPED概念を導入する際の参考となる。
In the global GX context
This case study provides evidence for extending Positive Energy Districts beyond urban centers to industrial zones, relevant to global efforts on industrial decarbonization and energy transition. It offers a replicable model for integrating renewables in existing industrial infrastructure, supporting climate goals.
👥 読者別の含意
🔬研究者:Provides a simulation-based methodology for assessing PED feasibility in industrial settings, useful for further research on district-scale energy systems.
🏢実務担当者:Offers a practical example of renewable integration in industrial areas, potentially informing corporate sustainability strategies and energy management.
🏛政策担当者:Highlights the potential of PEDs in industrial districts, suggesting policy support for renewable deployment in such zones to accelerate decarbonization.
📄 Abstract(原文)
Abstract Owing to the opportunity to provide an annual positive energy balance and net-zero carbon emissions, Positive Energy Districts aim at fostering the energy transition of urban city centres. To fully support the decarbonization of cities, it may be interesting to extend their implementation to other energy intensive districts, such as cities’ industrial areas. In this regard, this paper addresses the opportunity to apply the Positive Energy District concept within the industrial area of a city in the South of Italy. A mixed-use building, the industrial wastewater treatment plant and an office building have been involved as users and equipped with a 250 kW wind turbine and multiple photovoltaic plants installed on the roof of the buildings, in parking areas and in an unused land, for a total peak power equal to 466 kW. The renewable-based plants’ generation has been simulated in HOMER Pro® software, on a quarter-hour basis, and an energy and environmental analysis have been performed using users’ real electric load profiles. The proposed configuration allows to save 55% of primary energy and carbon dioxide emissions compared to the baseline case where users’ electric energy demand is fully met by the power grid. In particular, the primary energy saving is equal to 1 GWh/y and the carbon dioxide emissions reduction is equal to 150 tCO 2 /y.
🔗 Provenance — このレコードを発見したソース
- base https://doi.org/10.1088/1742-6596/2600/8/082039first seen 2026-09-01 11:59:44
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