期刊文献+
共找到6篇文章
< 1 >
每页显示 20 50 100
A Residual Frequency Offset Estimation Method Based on Range Migration Fitting
1
作者 liting zhang Hao Huan +1 位作者 Ran Tao Xiaogang Tang 《Journal of Beijing Institute of Technology》 EI CAS 2024年第2期103-110,共8页
Recently,researchers have proposed an emitter localization method based on passive synthetic aperture.However,the unknown residual frequency offset(RFO)between the transmit-ter and the receiver causes the received Dop... Recently,researchers have proposed an emitter localization method based on passive synthetic aperture.However,the unknown residual frequency offset(RFO)between the transmit-ter and the receiver causes the received Doppler signal to shift,which affects the localization accu-racy.To solve this issue,this paper proposes a RFO estimation method based on range migration fitting.Due to the high frequency modulation slope of the linear frequency modulation(LFM)-mod-ulation radar signal,it is not affected by RFO in range compression.Therefore,the azimuth time can be estimated by fitting the peak value position of the pulse compression in range direction.Then,the matched filters are designed under different RFOs.When the zero-Doppler time obtained by the matched filters is consistent with the estimated azimuth time,the given RFO is the real RFO between the transceivers.The simulation results show that the estimation error of azimuth distance does not exceed 20 m when the received signal duration is not less than 3 s,the pulse repe-tition frequency(PRF)of the transmitter radar signal is not less than 1 kHz,the range detection is not larger than 1000 km,and the signal noise ratio(SNR)is not less than-5 dB. 展开更多
关键词 range migration fitting(RMF) passive localization residual frequency offset(RFO)
下载PDF
Study on Biological Pathway of Carbon Dioxide Methanation Based on Microbial Electrolysis Cell
2
作者 Guanwen Ding Qifen Li +2 位作者 liting zhang Yuanbo Hou Xiaoxiao Yan 《Journal of Renewable Materials》 SCIE EI 2023年第1期197-207,共11页
Realization of CO_(2) resource utilization is the main development direction of CO_(2) reduction.The CO_(2) methana-tion technology based on microbial electrolysis cell(MEC)has the characteristics of ambient temperatu... Realization of CO_(2) resource utilization is the main development direction of CO_(2) reduction.The CO_(2) methana-tion technology based on microbial electrolysis cell(MEC)has the characteristics of ambient temperature and pressure,green and low-carbon,which meets the need of low-carbon energy transition.However,the lack of the system such as the change of applied voltage and the reactor amplification will affect the methane production efficiency.In this research,the efficiency of methane production with different applied voltages and different types of reactors was carried out.The results were concluded that the maximum methane production rate of the H-type two-chamber microbial electrolysis cells(MECs)at an applied voltage of 0.8 V was obtained to be 1.15 times higher than that of 0.5 V;under the same conditions of inoculated sludge,the reactor was amplified 2.5 times and the cumulative amount of methane production was 1.04 times higher than the original.This research can provide a theoretical basis and technical reference for the early industrial application of CO_(2) methanation tech-nology based on MEC. 展开更多
关键词 CO_(2)methanation microbial electrolysis cell(MEC) microbial electrolytic cell enlargement external voltage
下载PDF
Study on Influencing Factors of Methane Production Efficiency of Microbial Electrolytic Cell with CO_(2) as Carbon Source
3
作者 Qifen Li Yuanbo Hou +2 位作者 Yongwen Yang liting zhang Xiaoxiao Yan 《Journal of Renewable Materials》 EI 2023年第8期3333-3350,共18页
Reducing CO_(2) to produce methane through microbial electrolytic cell(MEC)is one of the important methods of CO_(2) resource utilization.In view of the problem of low methanogenesis rate and weak CO_(2) conversion ra... Reducing CO_(2) to produce methane through microbial electrolytic cell(MEC)is one of the important methods of CO_(2) resource utilization.In view of the problem of low methanogenesis rate and weak CO_(2) conversion rate in the reduction process,theflowfield environment of the cathode chamber is changed by changing the upper gas cir-culation rate and the lower liquid circulation rate of the cathode chamber to explore the impact on the reactor startup and operation and products.The results showed that under certain conditions,the CO_(2) consumption and methane production rate could be increased by changing the upper gas recirculation rate alone,but the increase effect was not obvious,but the by-product hydrogen production decreased significantly.Changing the lower liquid circulation rate alone can effectively promote the growth of biofilm,and change the properties of biofilm at the later stage of the experiment,with the peak current density increased by 16%;The methanogenic rate decreased from the peak value of 0.561 to 0.3 mmol/d,and the CO_(2) consumption did not change signifi-cantly,which indicated that CO_(2) was converted into other organic substances instead of methane.The data after coupling the upper gas circulation rate with the lower liquid circulation rate is similar to that of only changing the lower liquid circulation rate,but changing the upper gas circulation rate can alleviate the decline of methane pro-duction rate caused by the change of biofilm properties,which not only improves the current density,but also increases the methane production rate by 0.05 mmol/d in the stable period.This study can provide theoretical and technical support for the industrial application scenario offlowfield regulation intervention of microbial elec-trolytic cell methanogenesis. 展开更多
关键词 BIOMETHANATION microbial electrolytic cell gas circulation rate liquid circulation rate methane production
下载PDF
Optimisation Strategy of Carbon Dioxide Methanation Technology Based on Microbial Electrolysis Cells
4
作者 Qifen Li Xiaoxiao Yan +2 位作者 Yongwen Yang liting zhang Yuanbo Hou 《Journal of Renewable Materials》 EI 2023年第7期3177-3191,共15页
Microbial Electrolytic Cell(MEC)is an electrochemical reaction device that uses electrical energy as an energy input and microorganisms as catalysts to produce fuels and chemicals.The regenerative electrochemical syst... Microbial Electrolytic Cell(MEC)is an electrochemical reaction device that uses electrical energy as an energy input and microorganisms as catalysts to produce fuels and chemicals.The regenerative electrochemical system is a MEC improvement system for methane gas produced by biological carbon sequestration technology using renewable energy sources to provide a voltage environment.In response to the influence of fluctuating disturbances of renewable electricity and the long system start-up time,this paper analyzes the characteristics of two strategies,regulating voltage parameter changes and activated sludge pretreatment,on the methane production efficiency of the renewable gas electrochemical system.In this system,the methane production rate of regenerative electrochemical system is increased by 1.4 times through intermittent boosting start-up strategy;based on intermittent boosting,the methane production rate of regenerative electrochemical system is increased by 2 times through sludge pyrolysis pretreatment start-up strategy,and the start-up time is reduced to 10 days.Meanwhile,according to the simulation test results of power input fluctuation and intermittency,the stability standard deviation of its system operation is 75%of the original one,and the recovery rate is about 1 times higher.This study can provide a theoretical basis and technical reference for the early industrial application of microbial CO_(2)methanation technology based on renewable energy. 展开更多
关键词 Carbon sequestration CO_(2)methanation gap boosting strategy sludge pretreatment strategy
下载PDF
醛固酮腺瘤的关键基因及其生物学功能的生物信息学分析
5
作者 伍豪 卓凤婷 +4 位作者 黎黎 路宗师 蔡泉方 张丽婷 祝之明 《中华内分泌代谢杂志》 CAS CSCD 北大核心 2021年第12期1082-1090,共9页
目的通过生物信息学分析探讨醛固酮腺瘤的关键基因及其相关的生物学功能。方法从GEO数据库2个训练数据集GSE60042和GSE64957鉴定出醛固酮腺瘤差异表达基因,并进行功能、通路富集和转录调控网络分析;使用差异表达基因构建蛋白-蛋白互作(P... 目的通过生物信息学分析探讨醛固酮腺瘤的关键基因及其相关的生物学功能。方法从GEO数据库2个训练数据集GSE60042和GSE64957鉴定出醛固酮腺瘤差异表达基因,并进行功能、通路富集和转录调控网络分析;使用差异表达基因构建蛋白-蛋白互作(PPI)网络,通过节点分析从网络中提取枢纽(Hub)基因作为候选关键基因;以测试数据集GSE8514验证关键基因的表达水平;以受试者工作特征(ROC)曲线分析验证关键基因对醛固酮腺瘤的诊断效能;使用基因集富集分析(GSEA)确定各关键基因的生物学功能。结果从2个数据集获得醛固酮腺瘤中68个差异基因,包括33个上调基因和35个下调基因,这些基因功能体现在醛固酮生物合成过程、细胞内钙信号通路、5-羟色胺受体信号通路、转录激活因子活性和转录调控等方面;转录因子-基因调控网络中JUN和VDR基因处于中心位置。从PPI网络确定了9个Hub基因,在测试数据集,CYP11B2、VDR基因在醛固酮腺瘤中的表达升高,而JUN、NFKBIZ、EGR3、KLF6基因在醛固酮腺瘤中的表达降低(均P<0.05),这些基因的ROC曲线下面积分别为0.936、0.833、0.953、0.854、0.868和0.929。GSEA显示,这些关键基因的变化引起类固醇合成、细胞黏附、免疫细胞信号通路和补体凝集反应通路上调[标准化的富集分数(NES)>1.5,P<0.05],引起DNA复制、核糖体和自噬调节通路下调(均NES<-1.5,P<0.05)。结论生物信息学分析结果提示,JUN和VDR基因为醛固酮腺瘤的关键转录因子,CYP11B2、NFKBIZ、EGR3和KLF6为关键基因,其在醛固酮腺瘤发生中涉及类固醇合成、细胞黏附、免疫细胞信号转导等生物学功能。 展开更多
关键词 醛固酮腺瘤 关键基因 生物学功能 生物信息学
原文传递
为未来记录历史——评《中国服饰文化集成》
6
作者 蒲娇 张丽婷 《民艺》 2022年第5期139-142,共4页
“中国有礼仪之大,故称夏;有服章之美,谓之华。”^(①)饰文化作为一种文化形态伴随着人类文明而兴起,不仅是生产生活需求的体现,也是物质文明和精神文明的重要载体,其重要意义不但之于华夏民族,同样是少数民族精神文化内涵的表征。潘鲁... “中国有礼仪之大,故称夏;有服章之美,谓之华。”^(①)饰文化作为一种文化形态伴随着人类文明而兴起,不仅是生产生活需求的体现,也是物质文明和精神文明的重要载体,其重要意义不但之于华夏民族,同样是少数民族精神文化内涵的表征。潘鲁生先生认为:“服饰文化以鲜明的时代特征和民族特色,传递和表达着人们的生活理念和审美理想,发挥着沟通世界. 展开更多
关键词 中国服饰文化 精神文化内涵 生活理念 人类文明 重要载体 精神文明 华夏民族 少数民族
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部