Exergy study of hydrogen cogeneration and seawater desalination coupled to the HTR-PM nuclear reactor

被引:7
|
作者
Rodriguez, Daniel Gonzalez [1 ]
Lira, Carlos Alberto Brayner de Oliveira [1 ]
Lima, Fernando Roberto de Andrade [1 ]
Hernandez, Carlos Garcia [2 ]
机构
[1] CRCN NE, Ctr Reg Ciencias Nucl Nordeste, BR-28610974 Recife, PE, Brazil
[2] Univ La Habana, Inst Super Tecnolo & Ciencias Aplicadas, InSTEC, Ave Salvador Allende Esq Luaces, Havana 10400, Cuba
关键词
Nuclear hydrogen production; Sulfur-iodine; HTR-PM nuclear Reactor; CPS; Efficiency; Exergy; SULFUR-IODINE CYCLE; BUNSEN REACTION; THERMOCHEMICAL CYCLE; LIQUID-EQUILIBRIA; HIGH-TEMPERATURE; DECOMPOSITION; ENERGY; EFFICIENCY; FLOWSHEET; ELECTROLYSIS;
D O I
10.1016/j.ijhydene.2022.10.162
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This work presents a novel integration system of the high-temperature gas-cooled reactor-pebble bed module project to a hydrogen production process using the iodine-sulfur cycle in cogeneration with seawater desalination. The current approach includes a Rankine cycle, a sulfur-iodine thermochemical cycle for hydrogen production and a multi-stage flash desalination process. The use of a catalyst that allows the H2SO4 decomposition re-action to being carried out at temperatures compatible with the nuclear reactor project is considered. The residual heat from the acid decomposition reactions is used to desalinate seawater through the multi-stage flash process. A chemical process simulator is used to create a computational model that allows estimates of global and local efficiencies of the proposed flow diagram. Some operating parameters were sized, and their influence on the efficiency is also reported. The proposed model for the sulfur-iodine cycle can produce 0.41 kg/s of hydrogen with partial energy and exergetic efficiency of 37.35% and 38.64%. The desalination process can process 40.70 kg/s with energy and exergy efficiencies of 58.78% and 82.66%, respectively. The higher exergy destruction share is obtained in the heat ex-changers (36.55%), chemical reactors (16.56%) and separators (12.80%). The global system showed efficiencies of 40.13% and 52.04%, respectively.(c) 2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:2483 / 2509
页数:27
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