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991.
Immobilization is an effective method to promote the application of enzyme industry for improving the stability and realizing recovery of enzyme.To some extent,the performance of immobilized enzyme depends on the choice of carrier material.Therefore,the development of new carrier materials has been one of the key issues concerned by enzyme immobilization researchers.In this work,a novel organic-inorganic hybrid material,nickel-carnosine complex (NiCar),was synthesized for the first time by solvothermal method.The obtained NiCar exhibits spherical morphology,hierarchical porosity and abun-dant unsaturated coordination nickel ions,which provide excellent anchoring sites for the immobiliza-tion of proteins.His-tagged organophosphate-degrading enzyme (OpdA) and ω-transaminase (ω-TA)were used as model enzymes to evaluate the performance of NiCar as a carrier.By a simple adsorption process,the enzyme molecules can be fixed on the particles of NiCar,and the stability and reusability are significantly improved.The analysis of protein adsorption on NiCar verified that the affinity adsorp-tion between the imidazole functional group on the protein and the unsaturated coordination nickel ions on NiCar was the main force in the immobilization process,which provided an idea way for the develop-ment of new enzyme immobilization carriers.  相似文献   
992.
CH_4 storage associated with adsorbed natural gas(ANG) technology is an issue attracting great concern.Following the Advanced Research Project Agency-Energy(ARPA-E) targeted deliverable capacity of 315 cm~3·cm~(-3)(STP), hundreds of thousands of materials have been experimentally or theoretically evaluated,while the best results still show a 35% gap from the target. Moreover, recent theoretical research reveals that the target is beyond the possibility that real materials can be designed. To get rid of the awkward situation, we make attempts on investigating the CH_4 delivery performance under other operation conditions. Methods of raising the discharge temperature(to infinite high) or elevating the storage pressure(to 25 MPa) have been proved to show limited effectiveness. In this work, it is found that the ARPA-E target can be achieved by using a decreasing storage temperature strategy. By taking 280 Co RE(computation-ready, experimental) COFs(covalent organic frameworks) as ANG materials, when reduce the storage temperature to 190.6 K, the highest deliverable capacity can reach 392 cm~3·cm~(-3)(STP), and16.1% Co RE COFs can surpass the target. The target is also achievable when storage at 220 K. Structure performance relationships study shows strong correlation between deliverable capacity and void fraction. Hence, 120 hypothetical COFs are generated to ascertain the optimum void fraction. In addition,the performance of 2 D-COFs can be greatly enhanced by increasing the interlayer spacings, e.g. CH_4 deliverable capacity(storage at 190.6 K) of ATFG-COF can be improved from 239 to 411 cm~3·cm~(-3)(STP) when interlayer spacing is enlarged to 1.65 nm.  相似文献   
993.
Nowadays,water pollution has become more serious,greatly affecting human life and healthy.Electrochemical biosensor,a novel and rapid detection technique,plays an important role in the real-time and trace detection of water pollutants.However,the stability and sensitivity of electrochemical biosensors remain a great challenge for practical detections in real samples to the strong interferences derived from complex components and coagulation effects.In this work,we reported a novel three-dimensional architecture of Prussian blue nanoparticles (PBNPs)/ Pt nanoparticles (PtNPs) composite film,using 3D interweaved carbon nanofibers as a supporting matrix,for the construction of screen-printed microchips-based biosensor.PtNPs with diameters of~2.5 nm was highly dispersed on the carbon nanofibers (CNFs) to build a 3D skeleton nanostructure through a solvothermal reduction.Subsequently,uniform PBNPs were in-situ self-assembled on this skeleton to construct a 3D architecture of PB/Pt-CNF composite film.Due to the synergistic effects derived from this special feature,the as-prepared hydro-quinone (HQ) biosensor chips can synchronously promote both surface area and conductivity to greatly enhance the electrocatalysis from enzymatic reaction.This biosensor has exhibited a high sensitivity of 220.28 μA·L·mmol-1·cm-2 with an ultrawide linear range from 2.5μmol·L-1 to 1.45 mmol·L-1 at a low potential of 0.15 V,as well as the satisfactory reproducibility and usage stability.Besides,its accuracy was also verified in the assays of real water samples.It is highly expected that the 3D PB/Pt-CNF based screen-printed microchips will have wide applications in dynamic monitoring and early warning of ana-lytes in the various practical fields.  相似文献   
994.
故障建模是电力系统仿真分析的重要基础,如何快速准确对某类(N-1、N-2等)故障进行建模一直困扰电网分析人员。首先,分析了电力系统故障建模需要考虑的故障发展路径、故障动作时序两个要素,其中故障发展路径的搜索是故障建模的难点;其次,结合电力系统数据结构特征,提出了基于图计算的电力系统故障建模方法;最后,通过一个规模较大的省级电网验证了所提方法的有效性。在未来“双碳”“双高”电力系统发展的背景下,所提方法为电力系统在线、离线仿真分析所依赖的全网故障建模提供了新的思路和工具。  相似文献   
995.
为解决高海拔地区输电线路运行维护检修存在的传感器供电可靠性差、无移动信号区域数据传输难度大的问题,文中提出了一种基于异构物联网络的输电线路智慧巡检方法。首先,研究了风光协同的传感器供电技术,实现了高海拔地区恶劣环境下输电线路监测传感器的可靠供电;其次,建立了异构的输电线路物联网络,实现了输电线路无移动信号传感器的数据采集。在此基础上,通过深度学习对所采集数据样本进行分析,实现对输电线路的智慧巡检;最后,将所提方法在某无信号地区110 kV线路的现场运行,其结果验证了所提方法的有效性和可行性。  相似文献   
996.
依据ASTM D6641/D6641M-16《采用组合加载方式(CLC)测定聚合物基复合材料层压板压缩性能试验方法》标准,对风电叶片大梁用碳纤维拉挤板材进行压缩性能测试,通过采用不同类型的加强片制备压缩试样,对所测得的压缩强度、压缩模量和压缩应变的试验结果与失效模式进行分析.结果 表明,采用文中C型加强片制备的压缩试样,测得的压缩强度、压缩模量、压缩应变以及失效模式均较为理想,试验结果重复性较好.  相似文献   
997.
丁军  史兴华 《玻璃纤维》2021,(4):22-26,38
采用ANSYS有限元分析软件,对某船用天线罩进行冲击响应分析.考察罩体结构的危险区,分析敏感部位的应力、位移和加速度等的时间历程,并且通过冲击试验验证仿真分析的正确性,最终仿真结果与测试结果基本符合,验证了仿真分析的准确性.  相似文献   
998.
黄艳  高从闯 《电工技术》2021,(16):77-78
某水电厂经红外热成像检测发现线路闸刀B相出线座过热,通过对线路闸刀导电回路电阻测试情况和出线座内部结构进行分析,推测引起过热的原因为出线座与导电杆上抱箍的连接部位接触不良.对缺陷进行了处理,并对闸刀的运行维护提出了建议.  相似文献   
999.
针对旅游旺季期间某地区负荷出现较严重的过载现象,且当地可再生能源存在功率波动较大、难以消纳的问题,依托云南省某配电网智能化改造升级示范项目,研制了一套多能(含小水电、光伏、储能)、多端口的能量路由器装置及其能量管理系统,并对基于多端口能量路由器的多能互补系统进行了研究与测试.首先对多端口能量路由器的拓扑结构和技术参数进行了介绍;其次对能量管理系统的功能进行了阐述;最后在对各端口分别进行调试后,进行全端口联合运行功能测试.测试结果表明,各端口能分别正常运行,全端口联合运行功能正常,能有效平抑直流母线电压波动,实现上层功率指令跟踪,同时在大功率运行状态下,输出波形畸变率较低,效率基本满足要求,能用于解决当地负荷过载问题,实现能量的合理配置与利用.  相似文献   
1000.
TRPM7 plays an important role in cellular Ca2+, Zn2+ and Mg2+ homeostasis. TRPM7 channels are abundantly expressed in ameloblasts and, in the absence of TRPM7, dental enamel is hypomineralized. The potential role of TRPM7 channels in Ca2+ transport during amelogenesis was investigated in the HAT-7 rat ameloblast cell line. The cells showed strong TRPM7 mRNA and protein expression. Characteristic TRPM7 transmembrane currents were observed, which increased in the absence of intracellular Mg2+ ([Mg2+]i), were reduced by elevated [Mg2+]i, and were inhibited by the TRPM7 inhibitors NS8593 and FTY720. Mibefradil evoked similar currents, which were suppressed by elevated [Mg2+]i, reducing extracellular pH stimulated transmembrane currents, which were inhibited by FTY720. Naltriben and mibefradil both evoked Ca2+ influx, which was further enhanced by the acidic intracellular conditions. The SOCE inhibitor BTP2 blocked Ca2+ entry induced by naltriben but not by mibefradil. Thus, in HAT-7 cells, TRPM7 may serves both as a potential modulator of Orai-dependent Ca2+ uptake and as an independent Ca2+ entry pathway sensitive to pH. Therefore, TRPM7 may contribute directly to transepithelial Ca2+ transport in amelogenesis.  相似文献   
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