期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
计及碳捕集和储氢容量协同优化的综合能源系统低碳调度
1
作者 牛明博 庞涵语 +1 位作者 吕友军 李国兴 《西安交通大学学报》 北大核心 2025年第9期41-52,共12页
为满足低碳能源需求的日益增长,协调低碳技术的优化配置、实现系统经济性与低碳性的统一,构建了一个计及碳捕集、绿氢和蓝氢储能的综合能源系统模型,通过仿真分析研究了碳捕集、氢储能容量优化及多能协同运行对系统总成本和碳排放的影... 为满足低碳能源需求的日益增长,协调低碳技术的优化配置、实现系统经济性与低碳性的统一,构建了一个计及碳捕集、绿氢和蓝氢储能的综合能源系统模型,通过仿真分析研究了碳捕集、氢储能容量优化及多能协同运行对系统总成本和碳排放的影响。引入阶梯式碳交易机制建立低碳调度模型,对碳排放量进行动态约束。构建双层模型以优化氢储能容量配置,上层模型以全生命周期综合投资费用最小为目标,下层模型以系统总运行费用最小为目标,用遗传算法和混合整数线性规划相结合求解。仿真结果表明,碳捕集技术和碳交易机制的作用下,碳排放量降低了24.3%,系统总成本降低了9.5%。引入蓝、绿氢协同机制可以显著提升系统对可再生能源的消纳能力,惩罚成本降低了92.7%。采用优化后的氢储能容量进一步使系统总成本降低了1.54%,碳排放量降低了10.18%,为实现多能协同推动能源结构转型提供了新的思路。 展开更多
关键词 综合能源系统 碳捕集 氢储能 阶梯式碳交易
在线阅读 下载PDF
A genome-wide analysis of SWEET gene family in cotton and their expressions under different stresses 被引量:7
2
作者 ZHAO lanjie YAO Jinbo +7 位作者 CHEN Wei lI Yan l youjun GUO Yan WANG Junyi YUAN li lIU Ziyang ZHANG Yongshan 《Journal of Cotton Research》 2018年第2期12-26,共15页
Background: The SWEET (Sugars will eventually be exported transporters) gene family plays multiple roles in plant physiological activities and development process. It participates in reproductive development and in... Background: The SWEET (Sugars will eventually be exported transporters) gene family plays multiple roles in plant physiological activities and development process. It participates in reproductive development and in the process of sugar transport and absorption, plant senescence and stress responses and plant-pathogen interaction. However, thecomprehensive analysis of SWEET genes has not been reported in cotton. Results: In this study, we identified 22, 31, 55 and 60 SWEETgenes from the sequenced genomes of Gossypium orboreum, G. rairnondii, G. hirsutum and G. borbadense, respectively. Phylogenetic tree analysis showed that the SWEET genes could be divided into four groups, which were further classified into 14 sub-clades. Further analysis of chromosomal location, synteny analysis and gene duplication suggested that the orthologs showed a good collinearity and segmental duplication events played a crucial role in the expansion of the family in cotton. Specific MtN3_slv domains were highly conserved between Arabidopsis and cotton by exon-intron organization and motif analysis. In addition, the expression pattern in different tissues indicated that the duplicated genes in cotton might have acquired new functions as a result of sub-functionalization or neo-functionalization. The expression pattern of SWEET genes showed that the different genes were induced by diverse stresses. The identification and functional analysis of SWEET genes in cotton may provide more candidate genes for genetic modification. Conclusion: SWEET genes were classified into four clades in cotton. The expression patterns suggested that the duplicated genes might have experienced a functional divergence. This work provides insights into the evolution of SWEETgenes and more candidates for specific genetic modification, which will be useful in future research. 展开更多
关键词 GOSSYPIUM Sugars will eventually be exported transporters (SWEETs) Gene expression patterns Stress
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部