有机硅防污漆Hempaguard对实船EEXI和CII的案例分析

赵海励[1];李善文[2];张达天[1];张铁城[2];朗明鋆[2];谈利[2];王刚[2]

现代涂料与涂装 ›› 2025, Vol. 28 ›› Issue (1) : 21-23.

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PDF(2252 KB)
现代涂料与涂装 ›› 2025, Vol. 28 ›› Issue (1) : 21-23.

有机硅防污漆Hempaguard对实船EEXI和CII的案例分析

  • 赵海励[1];李善文[2];张达天[1];张铁城[2];朗明鋆[2];谈利[2];王刚[2]
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A Case Study of Silicone-Based Antifouling Coating Hempaguard on EEXI and CII

  • ZHAO Hai-li[1];LI Shan-wen[2];ZHANG Da-tian[1];ZHANG Tie-cheng[2];LANG Ming-jun[2];TAN Li[2];WANG Gang[2]
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摘要

为实现航运温室气体减排战略,EEXI和CII已是当前短期目标的评估措施,同时各种节能技术也应运而生。本文将融合水凝胶技术的有机硅防污漆Hempaguard产品作为一种节能措施,应用在某散货船上,在采取主机功率限制的基础上,进行了实船EEXI和CII案例分析。结果显示:与常规自抛光防污漆对比,有机硅防污漆明显提高了试航速度,使EEXI和CII指数均有所降低,为优化船舶能效提供了助力。

Abstract

For achieving greenhouse gas(GHG)emission reduction strategies for maritime transport,EEXI and CII have been utilized as short-term targets,and then kinds of energy efficiency technologies are innovated.In this paper,hydrogel silicone-based antifouling coating Hempaguard was used as an energy efficiency technology on a real bulk carrier,and then EEXI and CII were analysed under reducing power limit of main engine.The results showed that reference speed was increased obviously during sea trial and EEXI&CII values was optimized,comparing with the marketing self-polishing coatings.The silicone-based antifouling coatings can be regarded as an effective solution for increasing energy efficiency.

关键词

现有船能效指数;碳强度指标;有机硅防污漆;水凝胶硅酮技术;节能技术

Key words

EEXI;CIl;silicone-based antifouling coating;hydrogel silicone technology;energy efficiency technology

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导出引用
赵海励[1];李善文[2];张达天[1];张铁城[2];朗明鋆[2];谈利[2];王刚[2]. 有机硅防污漆Hempaguard对实船EEXI和CII的案例分析[J]. 现代涂料与涂装. 2025, 28(1): 21-23
ZHAO Hai-li[1];LI Shan-wen[2];ZHANG Da-tian[1];ZHANG Tie-cheng[2];LANG Ming-jun[2];TAN Li[2];WANG Gang[2]. A Case Study of Silicone-Based Antifouling Coating Hempaguard on EEXI and CII[J]. Modern Paint & Finishing. 2025, 28(1): 21-23
中图分类号: TQ637   

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