113年無機再生粒料於港區工程應用及管理專案工作計畫
中文摘要 | 無機再生粒料由無機資源物經資源化處理產製而成,其性質與天然砂石相近,可替代天然資源應用於陸域及港區工程。日本等先進國家於港區填築工程,除使用營建剩餘土石方外,也使用無機再生粒料填築,減少天然資源使用。計畫盤點國內6處既有填築區位之無機再生粒料潛在填築量能,約5,147~7,718萬公噸,預估轉爐石、焚化再生粒料、氧化碴、還原碴之港區填築情形。為推廣及驗證焚化再生粒料應用於港區填築工程,完成編修「第02704章焚化再生粒料填海造地」施工綱要規範,持續針對焚化再生粒料應用於港區工程便道及消波塊試體浸泡於純水或海水中進行重金屬檢測。 依據行政院於110年6月11日核定之「再生粒料應用於港區造地填築作業程序」,辦理焚化再生粒料於高雄港區現地填築試驗,6月17日填築量體113.97公噸,其重金屬溶出、戴奧辛、粒徑大小、比重及吸水率皆符合施工綱要規範「第02704章 焚化再生粒料填海造地」。延續前期現地填築試驗成果,並配合今年度高雄港區現地填築試驗之環境監測作業,臺北港、臺中港及高雄港試驗分別完成填築後11次(至第29個月)、填築後5次(至第14個月)及填築後2次(至第4個月)之環境監測,採集樣品於重金屬(鎘、鉛、砷、汞、鉻、銅、鎳、鋅)及戴奧辛濃度均符合其對應之相關標準,且填築後歷次監測值與填築前背景值沒有明顯差異。 | ||
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中文關鍵字 | 無機再生粒料、填海造陸、現地試驗 |
基本資訊
專案計畫編號 | 經費年度 | 113 | 計畫經費 | 18900 千元 | |
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專案開始日期 | 2024/01/02 | 專案結束日期 | 2024/12/02 | 專案主持人 | 方孟德 |
主辦單位 | 循環署循環處理組 | 承辦人 | 許百竣 | 執行單位 | 財團法人工業技術研究院 |
成果下載
類型 | 檔名 | 檔案大小 | 說明 |
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期末報告 | 113CA007-113 年無機再生粒料於港區工程應用及管理專案工作計畫-成果報告.pdf | 11MB | 無機再生粒料由無機資源物經資源化處理產製而成,其性質與天然砂石相近,可替代天然資源應用於陸域及港區工程。日本等先進國家於港區填築工程,除使用營建剩餘土石方外,也使用無機再生粒料填築,減少天然資源使用。計畫盤點國內6處既有填築區位之無機再生粒料潛在填築量能,約5,147~7,718萬公噸,預估轉爐石、焚化再生粒料、氧化碴、還原碴之港區填築情形。為推廣及驗證焚化再生粒料應用於港區填築工程,完成編修「第02704章焚化再生粒料填海造地」施工綱要規範,持續針對焚化再生粒料應用於港區工程便道及消波塊試體浸泡於純水或海水中進行重金屬檢測。 依據行政院於110年6月11日核定之「再生粒料應用於港區造地填築作業程序」,辦理焚化再生粒料於高雄港區現地填築試驗,6月17日填築量體113.97公噸,其重金屬溶出、戴奧辛、粒徑大小、比重及吸水率皆符合施工綱要規範「第02704章 焚化再生粒料填海造地」。延續前期現地填築試驗成果,並配合今年度高雄港區現地填築試驗之環境監測作業,臺北港、臺中港及高雄港試驗分別完成填築後11次(至第29個月)、填築後5次(至第14個月)及填築後2次(至第4個月)之環境監測,採集樣品於重金屬(鎘、鉛、砷、汞、鉻、銅、鎳、鋅)及戴奧辛濃度均符合其對應之相關標準,且填築後歷次監測值與填築前背景值沒有明顯差異。 |
Application and management of inorganic recycled aggregates in the harbor area projects
英文摘要 | Inorganic recycled aggregates are produced from inorganic resource materials through resource processing. Their properties are similar to natural sand and gravel, and they can replace natural resources and be used in land and port projects. In port filling projects in advanced countries such as Japan, in addition to using leftover earth and stone from construction, they also use inorganic recycled aggregates to reduce the use of natural resources. It is planned to take inventory of the potential filling capacity of inorganic recycled aggregates in 6 existing domestic filling locations, which is approximately 51.47 to 77.18 million metric tons, and to develop preliminary basic-oxygen-furnace (BOF) slag, incinerating bottom ash, electric-arc-furnace (EAF) slag port area filling assign volume. In order to promote and verify the application of incinerated recycled aggregates in port area reclamation projects, the construction outline specification of "Chapter 02704 Incinerated Regenerated Aggregate Reclamation" has been completed, and the application of incinerated recycled aggregates in port engineering access roads and wave elimination has been continued. The block specimen is immersed in pure water or seawater for heavy metal detection. In accordance with the "Procedures for the Application of Recycled Aggregate in Land Reclamation and Filling in Port Areas" approved by the Executive Yuan on June 11, 2010, an on-site filling test of incinerated recycled aggregates in Kaohsiung Port Area was carried out, and 113.97 metric tons of heavy metals were filled. The dissolution, dioxin, particle size, specific gravity and water absorption are all in compliance with the construction outline specification "Chapter 02704 Reclamation of Reclaimed Granules by Incineration". Continuing the previous in-situ reclamation tests, and cooperating with the environmental monitoring operations of this year's Kaohsiung Port in-situ reclamation test, the Taipei Port, Taichung Port and Kaohsiung Port tests respectively completed the filling and filling 11 Environmental monitoring was carried out once (to the 29th month), 5 times after the filling (to the 14th month) and 2 times after the filling (to the 4th month). Samples were collected for heavy metals (cadmium, lead, arsenic, mercury), chromium, copper, nickel, zinc) and dioxin concentrations all meet the corresponding relevant standards, and there is no significant difference between the previous monitoring values after filling and the background value before filling. | ||
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英文關鍵字 | Inorganic recycled aggregate, Land reclamation, Field test |