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( Xue Song Gao ),( Qi Wang ),( Wei Li ),( Biao Yang ),( Hao Song ),( Wei Ju ),( Shu Nai Liu ),( Jun Cheng ) 생화학분자생물학회(구 한국생화학분자생물학회) 2011 BMB Reports Vol.44 No.1
Nucleolar and coiled-body phosphoprotein 1 (NOLC1) is a phosphoprotein that transiently associates with the mature nucleolar H/ACA and C/D box small nucleolar ribonucleoproteins (snoRNPs). Several lines of evidence indicate that NOLC1 plays an important role in the synthesis of rRNA and the biosynthesis of ribosomes. In the present study, we examined the transcriptional regulation mechanisms that govern the expression of NOLC1. We first performed functional dissection of the NOLC1 promoter. We demonstrated that transcription factors NF-κB and CREB could bind to the minimal NOLC1 promoter. This was demonstrated by electrophoretic mobility shift assays and chromatin immunoprecipitation. Mutagenesis and overexpression assays revealed that NF-κB and CREB positively regulated the NOLC1 promoter. These findings may provide new insight into the mechanisms that regulate NOLC1 expression. [BMB reports 2011; 44(1): 70-75]
Yang Li,Liu Liu,Cheng Zhang,Qingxin Yang,Jianxiong Li,Xian Zhang,Ming Xue 전력전자학회 2018 JOURNAL OF POWER ELECTRONICS Vol.18 No.5
Recently, wireless power transfer (WPT) via coupled magnetic resonances has attracted a lot of attention owing to its long operation distance and high efficiency. However, the WPT systems is over-coupling and a frequency splitting phenomenon occurs when resonators are placed closely, which leads to a decrease in the transfer power. To solve this problem, an adaptive frequency tracking control (AFTC) was used based on a closed-loop control scheme. An improved particle swarm optimization (PSO) algorithm was proposed with the AFTC to track the maximum power point in real time. In addition, simulations were carried out. Finally, a WPT system with the AFTC was demonstrated to experimentally validate the improved PSO algorithm and its tracking performance in terms of optimal frequency.
Single‑wire power transfer method and verification
Yang Li,Yu-jie Zhai,Yao Li,Xue-liang Wang,Tao-cheng Hu 전력전자학회 2022 JOURNAL OF POWER ELECTRONICS Vol.22 No.4
As a novel power supply method, single-wire power transfer has gained a great deal of attention. However, most of the related studies were based on using loops to realize a two-way power transfer. To further develop single-wire power transfer technology, a single-wire power transfer method is proposed in this paper, which does not rely on loops for power transfer. Through theoretical derivation, its transfer principle is analyzed, and a single-wire power transfer structure is designed. In addition, the theoretical derivation is verified by simulation analysis. Finally, the factors and laws that affect transfer efficiency are obtained through simulations and experiments. The research conducted in this paper is conducive to the development of single-wire power transfer methods, and lays a foundation for further research on transfer characteristics.
Further Education for Asian University Sports: AUSF Education and Development Centre
( Hao Cheng ),( Pei Liu ),( Jian Wang ),( Tieli Yang ),( Jun Xie ),( Bingshu Zhong ),( Qing Song ),( Cheng Fave Seetow ),( Yuetong Yan ),( Zhen Shen ),( Yanqing Xue ),( Kunning Chen ) 한국체육학회 2015 국제스포츠과학 학술대회 Vol.2015 No.1
Low Cost and Simple PMMA Nozzle Fabrication by Laser Cutting and PDMS Curing Bonding
E. Cheng,Xue Yang,Zhifu Yin,Wei Hu,Lu Li 한국정밀공학회 2021 International Journal of Precision Engineering and Vol.22 No.1
Electrohydrodynamic (EHD) printing can rapidly fabricate micro- or nano-scale lines without employment of any mask, which is suitable for small volume production in industrial applications. However, it is required that the nozzles should be disposable since they can easily be blocked by the un-cleaned ink. CO 2 laser is an excellent tool for fabrication of microtrenches in most of polymers with low-cost and high-speed. This paper presented a low-cost PMMA (Polymethyl methacrylate) nozzle fabrication method based on laser cutting and PDMS (Polydimethylsiloxane) curing bonding. The influence of thickness on the maximum stress and deformation rate of PMMA substrate was investigated to decrease the deformation of PMMA nozzle after laser cutting. To avoid stress concentration in PMMA nozzle after thermal bonding, PDMS curing bonding method was proposed. The effect of spin-coating speed on PDMS thickness was studied. The O 2 plasma conditions were optimized based on contact angle to improve the bonding strength of PMMA nozzle. The EHD printing experiments demonstrated the practicability of proposed nozzle fabrication method.
Heavy metal removal from aqueous solution by granular hydrated Portland cement
Peng Cheng,Yongxiang Ren,Lei Yang,Rituan Li,Xue Wang,Bin Li,Honglin Yuan 한국화학공학회 2022 Korean Journal of Chemical Engineering Vol.39 No.12
Granular hydrated Portland cement (HPC) was prepared as adsorbent to remove heavy metals in aqueoussolution. Batch experiment results confirmed that heavy metals were removed through a combination of adsorptionand precipitation. Adsorption played a more important role in the initial stage of the removal process or at lower concentrationsof the heavy metals. After adsorption equilibrium was obtained in two days, the removal process continuedfor about three days due to the precipitation. Besides precipitation, the maximum Langmuir adsorption capacity reached132.27, 87.14, 123.43 and 112.05mg/g for Pb, Cu, Zn, and Cd, respectively. When various heavy metals coexisted, theremoval capacity followed the order of Cu>Pb>Cd>Zn. The adsorption on the surfaces of HPC was mainly governedby surface precipitation and Ca2+ exchange, as suggested by XRD, SEM-EDS and released Ca2+ results. Most of theadsorbed heavy metals on the HPC and the precipitation formed in the liquid phase were stable under neutral andalkaline conditions. Overall, HPC particles exhibited a large potential for heavy metal removal. When cement-relatedmaterials containing HPC are employed for heavy metal removal, the dissolution of the precipitate at low pH mightfacilitate the migration of the heavy metals.
Kai Yang,Cheng FangWang,Chun Xue You,Zhu Feng Geng,Rui Qi Sun,Shan Shan Guo,Shu Shan Du,Zhi Long Liu,Zhi Wei Deng 한국응용곤충학회 2014 Journal of Asia-Pacific Entomology Vol.17 No.3
During our screening program for agrochemicals from Chinese medicinal herbs and wild plants, the essential oilof Litsea cubeba fruits was found to possess strong contact toxicity against the cigarette beetle Lasiodermaserricorne adults and the booklouse Liposcelis bostrychophila, with LD50 values of 27.33 μg/adult and71.56 μg/cm2, respectively, and also showed strong fumigant toxicity against the two stored product insectswith LC50 values of 22.97 and 0.73 mg/L, respectively. The essential oil obtained by hydrodistillation wasinvestigated by GC MS. The main components of the essential oil were identified to be E-citral (geranial)(27.49%), Z-citral (neral) (23.57%) and D-limonene (18.82%) followed by β-thujene (3.34%), β-pinene (2.85%), α-pinene (2.57%), 6-methyl-5-hepten-2-one (2.40%) and linalool (2.36%). Citral (Z/E-citral), D-limonene, β-pinene,α-pinene and linalool were separated and purified by silica gel column chromatography and preparative thinlayer chromatography, and further identified by means of physicochemical and spectrometric analysis. Citral andlinalool showed strong contact toxicity against L. serricorne and L. bostrychophila (LD50 = 11.76, 12.74 μg/adultand 20.15, 99.97 μg/cm2, respectively) and fumigant toxicity against L. serricorne and L. bostrychophila (16.54,18.04 mg/L air and 0.14, 0.71 mg/L air, respectively). Otherwise, citral, D-limonene and linalool were strongly repellentagainst the cigarette beetle L. serricorne as the essential oil whereas β-pinene and α-pinene exhibited weakerrepellency against the cigarette beetle compared with the positive control, DEET. Moreover, except α-pinene andlinalool, the other three compounds as well as the essential oil exhibited comparable repellency against thebooklouse relative to DEET.