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增压富氧气氛下NOx均相生成及SNCR反应机理研究 被引量:7
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作者 段元强 洪溥 +1 位作者 仇兴雷 段伦博 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2021年第1期96-105,共10页
采用动力学计算与实验相结合的方式,对增压富氧气氛下的NOx均相生成和选择性非催化还原(selective non-catalytic reduction,SNCR)特性进行研究,分析温度、压力和组分体积分数等关键因素的影响。研究结果表明:对于NOx的均相生成反应,当... 采用动力学计算与实验相结合的方式,对增压富氧气氛下的NOx均相生成和选择性非催化还原(selective non-catalytic reduction,SNCR)特性进行研究,分析温度、压力和组分体积分数等关键因素的影响。研究结果表明:对于NOx的均相生成反应,当反应压力为0.1~0.9 MPa时,最主要的NOx生成路径为NH3→NH2→H2NO→HNO→NO和HCN→CN→NCO→N2O;提高反应压力,上述NO和N2O主要生成路径基本保持不变;反应气氛中H2O分压提高使得部分H2NO中间体以及NO2产物进一步生成HONO,而HONO在H2O作用下快速分解为NO;而对于NOx的均相还原反应,提高反应压力可促进NO还原反应,但同时也在一定程度上可促进烟气中NO2的生成。 展开更多
关键词 增压富氧燃烧 NOx 反应机理 均相生成 SNCR
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Mechanism and application of seed-induced goethite crystal growth for iron removal from rich-zinc solution
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作者 ZHU Qiang YANG Jian-guang +5 位作者 NAN Tian-xiang ZENG Wei-zhi TANG Shi-yang LIU Jiang ZHANG Yan TANG Chao-bo 《Journal of Central South University》 2025年第3期837-852,共16页
The goethite residue generated from zinc hydrometallurgy is classified as hazardous solid waste,produced in large quantities,and results in significant zinc loss.The study was conducted on removing iron from FeSO_(4)-... The goethite residue generated from zinc hydrometallurgy is classified as hazardous solid waste,produced in large quantities,and results in significant zinc loss.The study was conducted on removing iron from FeSO_(4)-ZnSO_(4) solution,employing seed-induced nucleation methods.Analysis of the iron removal rate,residue structure,morphology,and elemental composition involved ICP,XRD,FT-IR,and SEM.The existing state of zinc was investigated by combining step-by-step dissolution using hydrochloric acid.Concurrently,iron removal tests were extended to industrial solutions to assess the influence of seeds and solution pH on zinc loss and residue yield.The results revealed that seed addition increased the iron removal rate by 3%,elevated the residual iron content by 6.39%,and mitigated zinc loss by 29.55%in the simulated solution.Seed-induced nucleation prevented excessive nuclei formation,fostering crystal stable growth and high crystallinity.In addition,the zinc content of surface adsorption and crystal internal embedding in the residue was determined,and the zinc distribution on the surface was dense.In contrast,the total amount of zinc within the crystal was higher.The test results in the industrial solution demonstrated that the introduction of seeds expanded the pH range for goethite formation and growth,and the zinc loss per ton of iron removed was reduced by 50.91 kg(34.12%)and the iron residue reduced by 0.17 t(8.72%). 展开更多
关键词 iron removal crystal growth homogeneous and heterogeneous nucleation goethite process zinc hydrometallurgy
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Preparation and growth mechanism of plate-like basic magnesium carbonate by template-mediated/homogeneous precipitation method 被引量:6
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作者 CHEN Juan HUANG Zhi-liang +2 位作者 CHEN Chang-lian LI Wen-zhao XU Wei-rong 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第4期729-735,共7页
In order to expand the application of the basic magnesium carbonate in the field of flame retardant,the plate-like basic magnesium carbonate(Mg5(CO3)4(OH)2.4H2O)was prepared successfully by template-mediated/homogeneo... In order to expand the application of the basic magnesium carbonate in the field of flame retardant,the plate-like basic magnesium carbonate(Mg5(CO3)4(OH)2.4H2O)was prepared successfully by template-mediated/homogeneous precipitation method,using magnesium chloride hexahydrate(MgCl2.6H2O)and urea(CO(NH2)2)as reaction materials.Phase and morphology of the product were characterized by X-ray diffraction(XRD),scanning electron microscope(SEM)and atomic force microscope(AFM),respectively.The results showed that well-crystallized plate-like Mg5(CO3)4(OH)2.4H2O can be prepared at the water bath temperature of 100°C,water bath time of 24 h,the aging time of 5 h after adding organic template agent.The investigation on organic template mediated mechanism shows that the template affects the crystal morphology by changing surface energy of different crystal plane.Through a preliminary study on the growth mechanism of the product,it is found that the generation of the plate-like Mg5(CO3)4(OH)2.4H2O could be explained by two-dimensional nucleation/step growth mechanism. 展开更多
关键词 plate-like basic magnesium carbonate template-mediated/homogeneous precipitation two-dimensional nucleation step growth
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