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| 1 | Mechanism of lead immobilization by oxalic acid-activated phosphate rocks显示文摘Lead (Pb) chemical fixation is an important environmental aspect for human health. Phosphate rocks (PRs) were utilized as an adsorbent to remove Pb from aqueous solution. Raw PRs and oxalic acid-activated PRs (APRs) were used to investigate the effect of chemical modification on the Pb-binding capacity in the pH range 2.0-5.0. The Pb adsorption rate of all treatments above pH 3.0 reached 90%. The Pb binding on PRs and APRs was pH-independent, except at pH 2.0 in activated treatments. The X-ray diffraction analysis confirmed that the raw PRs formed cerussite after reacting with the Pb solution, whereas the APRs formed pyromorphite. The Fourier Transform Infrared spectroscopy analysis indicated that carbonate (CO32-) in raw PRs and phosphate (PO43-) groups in APRs played an important role in the Pb-binding process. After adsorption, anomalous block-shaped particles were observed by scanning electron microscopy with energy dispersive spectroscopy. The X-ray photoelectron spectroscopy data further indicated that both chemical and physical reactions occurred during the adsorption process according to the binding energy. Because of lower solubility of pyromorphite compared to cerussite, the APRs are more effective in immobilizing Pb than that of PRs. | Guanjie Jiang Yonghong Liu Li Huang Qingling Fu Youjun Deng Hongqing Hu | 2012 | Journal of Environmental Sciences2012,24,5: | 12 |
| 2 | Profilin Regulates Apical Actin Polymerization to Control Polarized Pollen Tube Growth显示文摘花粉试管生长在 flowering 植物复制期间是必要的步,其生长取决于动态顶端的肌动朊细丝的一张人口。顶端的肌动朊细丝被认为涉及泡熔化的规定并且在花粉试管指向。然而,在花粉试管调整顶端的肌动朊结构的构造的分子的机制仍然保持大部分不清楚。这里,我们在花粉试管在顶端的膜在肌动朊聚合的规定作为一个重要播放器识别 profilin。profilin 的 Downregulation 减少了在花粉试管的细丝状的肌动朊的数量和顶端的肌动朊细丝的导致的组织的破坏。肌动朊动力学的直接可视化表明在顶端的膜发源的肌动朊细丝的延伸在 profilin 异种花粉试管减少了。仅仅在有约束力的 poly-L-proline 是有缺点的变异的 profilin 部分在 profilin 异种花粉试管救肌动朊聚合缺点,尽管它充分救肌动朊周转显型。我们建议 profilin 在花粉试管尖端控制肌动朊结构的构造,大概由在顶端的膜赞成调停 formin 的肌动朊聚合。 | Xiaonan Liu Xiaolu Qu Yuxiang Jiang Ming Chang Ruihui Zhang Youjun Wu Ying Fu Shanjin Huang | 2015 | Molecular Plant2015,8,12: | 6 |
| 3 | Effect of pyrophosphate on the light scatter in KDP crystal显示文摘Pyrophosphate doped potassium dihydrogen phosphate (KDP) crystal was grown from aqueous solution by the temperature lowering method. Light scatter in KDP crystal was detected with the ultramicroscopic method. The light scatter in KDP crystal was aggravated when pyro-phosphate was doped into the growth solution, which was distributed ununiformly in prism and pyramidal sectors of KDP crystal. Different effects of pyrophosphate on prism and pyramidal sectors of KDP crystal can explain this case. The transmission in this crystal was measured, showing that pyrophosphate affects the transmission evidently. | Xun Sun Xinguang Xu Youjun Fu Shenglai Wang Hong Zeng Yiping Li Zhangshou Gao | 2001 | Chinese Science Bulletin2001,46,5: | 3 |
| 4 | The Effect of Anionic Impurities on the Growth Habit and Optical Propertie of KDP显示文摘 | Fu Youjun Gao Zhangshou Liu Jiaming | 1999 | Journal of Crystal Growth1999,,: | 1 |
| 5 | Effects of Anions on Rapid Growth and Growth Habit of KDP Crystals显示文摘 | Fu Youjun Gao Zhangshou SunXun | | Accepted by Progress in Crystal Growth and Character of Materials0,,: | 1 |
| 6 | Effects of Anions on Growth Habit of KDP Crystals显示文摘 | Fu Youjun Gao Zhangshou Li Yiping | 1994 | Journal of Synthetic Crystals1994,52,: | 1 |
| 7 | Studies on blended cement with a large amount of fly ash显示文摘 | Xinghua Fu Zhi Wang Wenhong Tao Chunxia Yang Wenping Hou Youjun Dong Xuequan Wu | 2002 | Cement and Concrete Research2002,,7: | 1 |
| 8 | Mechanical regulation of bone regeneration during distraction osteogenesis显示文摘Distraction osteogenesis(DO)is a mechanobiological process of regenerating bone tissue by tension stress.DO is used clinically to lengthen bones or to treat critical size bone defects.Although DO provides satisfactory results in many cases,the prolonged period of treatment remains a major challenge that needs to be overcome.Various attempts have been devoted to accelerating bone regeneration during DO.One common approach is manipulation of the applied mechanical loading by altering distraction strategies.In this article,we reviewed relevant in vivo animal studies exploring the effects of changing mechanical environments,by varying distraction parameters(e.g.,rate and frequency)or adding compression loading,on bone regeneration in DO.We further presented how the mechanically-regulated bone regeneration process during DO could be simulated by in silico models incorporating mechano-regulatory tissue differentiation rules.A comprehensive review of those in vivo and in silico studies may not solely provide important references for development of improved DO protocols in clinic,but also promote a deeper understanding of the mechanobiological mechanism of bone regeneration. | Ruisen Fu Yili Feng Youjun Liu Haisheng Yang | 2021 | Medicine in Novel Technology and Devices2021,,3: | 0 |
| 9 | Effects of tissue heterogeneity on trabecular micromechanics examined by microCT-based finite element analysis and digital volume correlation显示文摘Trabecular bone is natural material with heterogeneous tissue properties.The effect of tissue heterogeneity on the micromechanical behavior of trabecular bone is commonly evaluated by microCT-based finite element(microFE)analysis.Results from prior work remain inconclusive and lack of experimental validation.To address these issues,we combined microFE analysis with mechanical testing and microCT-based digital volume correlation(DVC),as a validation for the microFE approach.Porcine trabecular specimens were tested in compression as sequential microCT scans were taken.DVC was performed to extract“realistic”boundary conditions that were applied to microFE models,and to measure microstructural deformation and strain of the trabecular specimens.Heterogeneous and homogeneous microFE models of each trabecular specimen were created and compared with the experimentally measured microstructural displacement and strains.Results showed strong correlations between DVC-measured and microFE-predicted trabecular displacement and strain fields(R^(2)>0.9,p<0.05),regardless of heterogeneous or homogeneous material assignments.The heterogeneous and homogeneous models predicted similar magnitudes for maximum or minimum principal strains(R^(2)=1,p<0.05).However,incorporation of tissue heterogeneity decreased more than 16.5%in the overall stress level of the trabecular tissues.Regardless,very strong correlations were found between the heterogeneous and homogeneous model-predicted principal strains or stresses.These results together suggest that tissue heterogeneity may have little effect on microFE modeling of typical elastic displacement and strains in the trabecular bone,suggesting that homogeneous material models might be sufficient to predict general trabecular micromechanics. | Jizhi Fu Haoye Meng Changhao Zhang Youjun Liu Duanduan Chen Aiyuan Wang Russell P.Main Haisheng Yang | 2021 | Medicine in Novel Technology and Devices2021,,3: | 0 |
| 10 | Effects of impurities on growth habit of KDP crystal显示文摘The effects of metaphosphate, boric acid and quaternary ammonium cations with different concentration on the growth habit of KDP crystal are reported. The results are analyzed and discussed, which show that the effects of different impurities on the growth habit of KDP are not the same. It is due to the different adsorption mechanism of the impurities. | Sun Xun Fu Youjun Gao Zhangshou Wang Shenglai Zeng Hong Li Yiping | 2001 | Chinese Science Bulletin2001,46,13: | 0 |