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1.
Ilaria Fraudentali Renato A. Rodrigues-Pousada Riccardo Angelini Sandip A. Ghuge Alessandra Cona 《International journal of molecular sciences》2021,22(10)
Polyamines are ubiquitous, low-molecular-weight aliphatic compounds, present in living organisms and essential for cell growth and differentiation. Copper amine oxidases (CuAOs) oxidize polyamines to aminoaldehydes releasing ammonium and hydrogen peroxide, which participates in the complex network of reactive oxygen species acting as signaling molecules involved in responses to biotic and abiotic stresses. CuAOs have been identified and characterized in different plant species, but the most extensive study on a CuAO gene family has been carried out in Arabidopsis thaliana. Growing attention has been devoted in the last years to the investigation of the CuAO expression pattern during development and in response to an array of stress and stress-related hormones, events in which recent studies have highlighted CuAOs to play a key role by modulation of a multilevel phenotypic plasticity expression. In this review, the attention will be focused on the involvement of different AtCuAOs in the IAA/JA/ABA signal transduction pathways which mediate stress-induced phenotypic plasticity events. 相似文献
2.
为了提高高温构件的热疲劳性能、减少表面裂纹,研究激光冲击对ZCuAl10Fe3Mn2合金硬度、表面形貌、残余应力和热疲劳性能的影响。采用扫描电子显微镜(SEM)和能谱仪(EDS)分析合金的显微组织和裂纹形貌。结果表明:在4 J脉冲能量下,激光冲击能显著改善合金的热疲劳性能。在热应力和交变应力的作用下,试样缺口附近组织氧化而变得疏松多孔,促使萌生多条微裂纹。其中,竖直方向的微裂纹变为主裂纹,主要以裂尖前沿空洞连体的形式扩展;其他方向的微裂纹沿晶界生长而发生组织脱落现象。 相似文献
3.
Rongbin Li Qiyu Huang Dongxu Zhang Xiangrui Zhu Jinxu Shan Zhimin Li 《American Institute of Chemical Engineers》2021,67(1):e17077
In this study, the thickness and wax content of wax deposits were found to be thinner and lower in the polyethylene (PE) pipe than in the stainless steel (SS) pipe using a flow loop apparatus. The diffusivity of wax, radial thermal gradient, and wax precipitation rate in the PE and SS pipes were calculated and compared. It was found the diffusivity of wax in the PE pipe was higher and tended to enhance the wax deposition in the PE pipe, while the radial thermal gradient and wax precipitation rate were lower in the PE pipe and had the opposite effects. These factors are shown to be comparable with each other and the effect of the thermal gradient dominates the mass flux of wax from bulk to the oil-deposit interface and into the deposits finally, thus causing differences in thickness and wax content of deposits between the PE and SS pipes. 相似文献
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5.
Rui-Qi Zhang Ang Ma Xiang Liang Li-Min Zhao Hui Zhao Zhong-Yong Yuan 《Frontiers of Chemical Science and Engineering》2021,15(6):1550
The low cost and highly efficient construction of electrocatalysts has attracted significant attention owing to the use of clean and sustainable energy technologies. In this work, cobalt nanoparticle decorated N-doped carbons (Co@NC) are synthesized by the pyrolysis of a cobalt covalent organic framework under an inert atmosphere. The Co@NC demonstrates improved electrocatalytic capabilities compared to N-doped carbon without the addition of Co nanoparticles, indicating the important role of cobalt. The well-dispersed active sites (Co–Nx) and the synergistic effect between the carbon matrix and Co nanoparticles greatly enhance the electrocatalytic activity for the oxygen reduction reaction. In addition, the Co content has a significant effect on the catalytic activity. The resulting Co@NC-0.86 exhibits a superb electrocatalytic activity for the oxygen reduction reaction in an alkaline electrolyte in terms of the onset potential (0.90 V), half-wave potential (0.80 V) and the limiting current density (4.84 mA·cm–2), and a high selectivity, as well as a strong methanol tolerance and superior durability, these results are comparable to those of the Pt/C catalyst. Furthermore, the superior bifunctional activity of Co@NC-0.86 was also confirmed in a home-built Zn-air battery, signifying the possibility for application in electrode materials and in current energy conversion and storage devices. 相似文献
6.
There is a growing demand to develop epoxy resins (EP) with smoke suppression as well as satisfactory flame retardancy. Herein, bio-based cobalt alginate is successfully fabricated and incorporated into EP to prepare EP/Cobalt Alginate composites with better fire safety performance. The addition of cobalt alginate reduces the thermal-decomposition rate, temperature at maximum weight-loss rate of EP, whereas obviously improves the thermal stabilities at a higher temperature range. Furthermore, the addition of cobalt alginate substantially reduces the fire hazard of EP, resulting in 56.2% reduction in peak heat release rate, as well as 17.8% and 56.3% reduction in total smoke production and peak smoke production rate, respectively, compared with EP matrix. Moreover, the presence of cobalt alginate increases smoke-suppressant properties, according to the smoke density test. Additionally, the incorporation of cobalt alginate has no obviously destructive effect on the mechanical properties of EP, while EP/Cobalt Alginate-3 exhibits a 27.0% improvement in impact strength. In prospective, this study may provide a significant method for producing eco-friendly flame retardant EP. 相似文献
7.
纳雍枝铅锌矿床是黔西北地区迄今研究程度较高的大型矿床之一,为探讨成矿物质来源和矿床成因,应用ICP-MS方法对该矿床的主要矿物闪锌矿和白云石进行了微量、稀土元素分析,结果表明:闪锌矿微量元素相对地壳元素丰度,富集Ga、Cd、Sb,贫In;白云石和围岩的稀土元素都具有富集LREE和低异常δEu(δEu<1)的特征,且白云石的稀土元素总量略高于围岩的稀土元素总量,表明成矿物质具有多源性;该矿床地质特征与MVT型矿床相似,结合lnω(Ga)-lnω(In)关系图解认为该矿床为MVT型矿床。 相似文献
8.
资源绿色开发和冶炼废渣的高效利用成为战略技术需求。本文结合炼铜尾渣的矿物学性质和重介质选矿的现实需求,采用分级-磁选-浓缩脱泥流程获得炼铜尾渣重介质产品,采用化学分析、XRD、SEM和EDS等手段,考察了其化学成分、物相组成及残余铅锌杂质的矿物学特征,探讨了炼铜尾渣重介质产品应用的环境影响。研究表明:重介质产品密度为4.42 t/m3,含铁(TFe)56.57%、SiO2含量为23.49%,少量Pb、Zn、Cu等金属杂质;主要矿物为磁铁矿、铁橄榄石、铅铁硅质玻璃体和石英,含量达99.41%。因磁铁矿和铁橄榄石的嵌布粒度较细,解离度低,磁性物含量可达95.4%,便于回收使用;残余铅锌铜重金属元素溶出率很低、环境影响风险较小,为炼铜尾渣的资源化应用开辟了新的途径。 相似文献
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10.
位于巴音戈壁盆地南部的塔木素铀矿床在矿化特征上明显有别于我国北方其他砂岩型铀矿床,对于该矿床的成因也存在较大的争议。通过岩石学、同位素地质学、扫描电子显微镜、阴极发光、径迹蚀刻等综合研究,结果显示塔木素铀矿床巴音戈壁组上段第三岩性段(K 1 b 2-3)含铀泥灰岩至少经历了4个阶段的成岩作用,铀矿物呈微粒(粒径<1μm)浸染状分布于最早期的角砾中,具有沉积成岩成因特征,成矿物质主要来自于沉积成岩期水体中溶解的铀并因蒸发浓缩作用而富集在特定的层位。巴音戈壁组上段第二岩性段(K 1 b 2-2)含铀砂岩在沉积成岩阶段盆地内封存的高矿化度地下水与碎屑物之间以及成岩后酸性地表水与碳酸盐胶结物之间共发生了两个阶段的水岩作用,每个阶段形成了表现特征不同的铀矿化。沥青铀矿U-Pb同位素测试结果显示,区内最早的铀矿化形成时间为111.6±8.1 Ma,与砂岩形成时间接近,而最新的铀矿化形成时间为2.5 Ma,具有明显后生成因特征,综合研究显示砂岩中的铀矿化具有沉积成岩及后期层间氧化叠加改造双重成因特征,沉积成岩期成矿物质主要来自封存的地下水,而层间氧化期成矿物质主要来自地表水带入的铀及富铀岩层。同时研究认为塔木素铀矿床存在后期热液活动,但暂未发现热液活动与铀成矿具有直接的成因联系。 相似文献