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ALTERNATIVE FUELS: THE PRESENT AND FUTURE OF CONTAINMENT SYSTEMS AND THEIR IMPACT ON THE DESIGN AND CONSTRUCTION OF SHIPS

机译:替代燃料:围护系统的现状和未来及其对船舶设计和建造的影响

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In recent years, driven primarily by SOx emissions regulations, there has been a move towards the adoption of Liquefied Natural Gas (LNG) as a marine fuel. More recent decarbonisation targets, and the emissions regulations that are due to follow, will almost certainly trigger a further move towards other low carbon, carbon neutral and zero carbon fuels. Methanol, ammonia, and hydrogen offer a potential pathway for the decarbonisation of the shipping industry. However, the various physical and thermodynamic properties of such alternative fuels will require new containment systems onboard ships requiring the marine industry to embrace containment technologies used in other industries or, where necessary, develop industry-specific solutions. Shipboard containment systems for diesel fuels are currently physical, based on storage at near ambient temperatures and ambient pressures and for natural gas at high pressure (compressed) or low temperature (cryogenic), or a combination of such. Future containment technologies are likely to also include material and chemical based storage, exploiting chemical processes to hydrogenate or dehydrogenate carriers, in both liquid or solid matrices. This paper provides an overview of alternative fuels and their containment technologies and the implications on ship design and construction.
机译:近年来,主要受到SOx排放法规的推动,已经朝着将液化天然气(LNG)用作船用燃料的方向发展。更近期的脱碳目标以及将要遵循的排放法规几乎可以肯定会触发进一步向其他低碳,中性碳和零碳燃料的转变。甲醇,氨和氢为航运业的脱碳提供了潜在的途径。但是,此类替代燃料的各种物理和热力学特性将要求船上使用新的安全壳系统,要求海洋工业采用其他行业中使用的安全壳技术,或在必要时开发针对特定行业的解决方案。当前,用于柴油燃料的船上安全壳系统是物理的,基于在接近环境温度和环境压力下的存储,以及基于在高压(压缩)或低温(低温)或其组合的天然气的存储。未来的围堵技术可能还包括基于材料和化学的存储,利用化学过程对液态或固态基质中的载体进行氢化或脱氢。本文概述了替代燃料及其围护技术及其对船舶设计和建造的影响。

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