在稀硝酸装置反应及余热回收的工程设计中,存在反应动力学和热力学交织在同一传热过程中的情况,导致工程设计难度加大。采用Aspen plus V14、Origin 2022等软件,对稀硝酸反应及余热回收过程进行计算分析。通过数据分析,为简化硝酸装置...在稀硝酸装置反应及余热回收的工程设计中,存在反应动力学和热力学交织在同一传热过程中的情况,导致工程设计难度加大。采用Aspen plus V14、Origin 2022等软件,对稀硝酸反应及余热回收过程进行计算分析。通过数据分析,为简化硝酸装置工程设计及优化提供新的思路。展开更多
1.Introduction The activation and conversion of the Earth’s abundant inert nitrogen resources into high-value-added products epitomize one of nature’s most critical processes[1-3].Nitric acid(HNO_(3)),as a pivotal i...1.Introduction The activation and conversion of the Earth’s abundant inert nitrogen resources into high-value-added products epitomize one of nature’s most critical processes[1-3].Nitric acid(HNO_(3)),as a pivotal industrial raw material,showcases an extensive range of applications and possesses substantial economic value in the production of indispensable chemical compounds[4-6].展开更多
基金supported by the National Natural Science Foundation of China,China(22109078,21908120 and 22206094)the Natural Science Outstanding Youth Fund of Shandong Province,China(ZR2023YQ018)the Youth Natural Science Foundation of Hunan Province,China(2021JJ540044)。
文摘1.Introduction The activation and conversion of the Earth’s abundant inert nitrogen resources into high-value-added products epitomize one of nature’s most critical processes[1-3].Nitric acid(HNO_(3)),as a pivotal industrial raw material,showcases an extensive range of applications and possesses substantial economic value in the production of indispensable chemical compounds[4-6].