據世界能源新聞/2021年8月5日報道,日本三菱造船株式會社一直與川崎Kisen Kaisha有限公司(“K”線)和日本Kaiji Kyokai (ClassNK)合作,對“海上二氧化碳捕獲系統”的小型示范工廠進行測試操作和測量,以驗證設備的使用情況。 目前,該設備已經安裝在日本三菱重工位于橫濱造船廠機械廠的本木工廠的《科羅納公用事業號》船上。這艘船是日本東北電力公司的煤炭運輸船,由“K”線運營。
這個項目得到了日本國土、基礎設施、交通和旅游省(MLIT)海事局的支持,作為其海上資源開發技術進步研究和開發援助項目的一部分。 此次測試包括將陸上發電廠現有的二氧化碳捕獲系統的設計轉換為海洋環境,并將其安裝在實際服役的船舶上。
這個項目被稱為“海上碳捕獲”(CC-Ocean),旨在實現海上二氧化碳捕集獲,這在世界上尚屬首次。
三菱造船株式會社的工程師們將在該船的航行期間在船上進行調試,提供緊湊的二氧化碳捕獲示范裝置,并在海上進行性能評估,以及對分離和回收的二氧化碳進行分析。 到2021年底,三菱重工和“K”線將對操作此演示裝置的船員進行驗證測試,并評估其安全性和可操作性,目的是將該系統作為一個基于海上的、緊湊的二氧化碳回收系統進行實際應用。
李峻 編譯自 世界能源新聞
原文如下:
Japanese Project Tests Ship-based CO2 Capture System
Mitsubishi Shipbuilding has been working in cooperation with Kawasaki Kisen Kaisha, Ltd. (“K” Line) and Nippon Kaiji Kyokai (ClassNK), to conduct test operations and measurements for a small scale demonstration plant of the “Marine-based CO2 Capture System”, in order to verify the equipment’s use. The equipment has now been installed on board the Corona Utility, a coal carrier for Tohoku Electric Power Co., Inc. operated by “K” Line, at MHI’s Honmoku Plant at the Yokohama Dockyard & Machinery Works.
This project is being conducted with support from the Maritime Bureau of Japan's Ministry of Land, Infrastructure, Transport and Tourism (MLIT), as part of its assistance project for research and development of technological advancements in marine resource development. The demonstration involves converting the design of an existing CO2 capture system for onshore power plants to a marine environment, and installing it on board an actual ship in service.
This project, called “Carbon Capture on the Ocean” (CC-Ocean), is intended to achieve CO2 capture at sea, a world first.
Mitsubishi Shipbuilding engineers will travel on the ship during its voyage, providing commissioning of the compact CO2 capture demonstration plant, and conducting performance evaluation assessments while at sea, as well as analysis of the separated and recovered CO2. By the end of fiscal 2021, MHI and “K” Line will conduct verification tests with the ship crew operating the demo plant, and evaluate its safety and operability, with the aim of practical application of the system as a marine-based, compact CO2 recovery system.
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