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1.
海上风电作为可再生清洁能源之一,受到世界各国的高度重视与大力发展。我国将海上风电提升至解决能源危机、减缓气候变化、调整能源结构的国家战略高度,到2030年我国单位国内生产总值二氧化碳排放将比2005年下降65%以上,非化石能源占一次能源消费比重将达到25%左右。安装平台不足将是我国海上风电场无法如期建成投产的主要障碍。对自升自航式海上风电安装平台系列高端装备及其设计制造的三大技术难题——腿站立作业易“失稳”、大平台大跨距大倾覆力矩自升易“失控”、高空吊装巨型叶片逾百螺栓精准定位易“失准”,以及焊缝缺陷修复和局部裂纹损伤的激光锻造修复再制造进行了介绍,研制的具有不同规格的系列装备在中国、英国、丹麦、德国等国家的著名海上风电场建设应用情况良好。  相似文献   
2.
黄晓芳  许家友  邓海铭 《塑料》2020,49(1):6-10
为解决聚乳酸(PLA)易燃、熔滴等问题,以绿色天然高聚物壳聚糖为原料,采用甲磺酸、五氧化二磷、三聚氰胺对其改性,得到了一种绿色环保型阻燃剂———MPCS,与三聚氰胺聚磷酸盐(MPP)复配,形成了膨胀型阻燃剂(IFR)。将IFR、α-磷酸锆(α-ZrP)和PLA用转矩流动仪熔融共混制备了阻燃聚乳酸复合材料。采用傅立叶红外光谱(FT-IR)、X射线粉末衍射(XRD)对MPCS的结构进行了表征;用垂直燃烧法(UL-94)、锥形量热测试(CCT)、热重分析(TGA)及电子扫描电镜(SEM)研究了聚乳酸复合材料的阻燃性能及其阻燃机理。结果表明,当添加3%α-ZrP和22%IFR时,PLA复合材料的阻燃性能达到UL-94V-0级且无熔融滴落;由于α-ZrP具有片层阻隔作用和催化成炭作用,α-ZrP能提高PLA/IFR复合材料的阻燃效果,降低热释放量和烟密度。  相似文献   
3.
为提高风电预测的精度,提出一种鲸鱼优化支持向量机SVM(support vector machine)的组合预测模型。该模型针对风电序列的非平稳波动特性,首先应用集合经验模态分解技术EEMD(ensemble empirical mode de?composition)将原始风电序列分解为一系列不同特征尺度的子序列;并引入鲸鱼优化算法WOA(whales optimiza?tion algorithm)解决SVM中学习参数选择难的问题,进而对各子序列建立WOA_SVM预测模型;最后,叠加各子序列的预测值以得到最终预测值。仿真表明,所提EEMD_WOA_SVM模型具有较高的风电预测精度,显著优于其他基本模型。  相似文献   
4.
本研究构建经密码子优化后的UDP-糖基转移酶UGT76G1和蔗糖合成酶AtSUS基因的重组毕赤酵母菌株GS115/p PIC9KUGT/p PICZA-At SUS,实现双酶在毕赤酵母中的胞内共表达。利用共表达菌株作为全细胞催化剂在体外进行催化反应,可成功将ST转化为RA,并在此基础上对其最适反应温度、反应p H、底物UDP浓度与底物蔗糖浓度条件进行优化。重组菌株经甲醇诱导,对不同发酵时间菌体的催化能力进行探究,确定发酵120 h菌体催化能力最佳,RA产量为0.58 mg/mL。对共表达菌株催化体系中全细胞催化条件进行优化,优化后的催化体系为:反应pH 7.0,UDP浓度1 mM,蔗糖浓度70 mM,MgCl_2浓度3 mM,ST浓度10 mg/mL,将OD_(600)为30的细胞与上述体系混合后在最适温度45℃下,200 r/min反应15 h,重组菌可将10 mg/mL ST转化为7.46 mg/mL RA,为RA酶法生物合成及其产业化应用提供技术支持。  相似文献   
5.
基于自组装肽ELK16能在大肠杆菌细胞内自聚集的特性,本研究将Aglycin通过一个内含肽Mxe GyrA与自组装肽连接,构建能在体外自剪切的重组表达载体pET30a-Aglycin-Mxe-PT-ELK16。将重组质粒转化大肠杆菌BL21(DE3)并进行蛋白表达条件的优化,得到目的蛋白聚集体,随后对聚集体进行DTT切割条件的优化,经过进一步纯化最终可得到纯度为98.15%、产量为5.53mg/g菌体湿重的Aglycin肽。采用基因工程手段重组表达Aglycin的产量比目前化学提取方法提高了近100倍。此外,经体外实验证明,Aglycin对α-葡萄糖苷酶抑制的IC50(36.48μmol/L)比阿卡波糖(991.33μmol/L)低,说明Aglycin比阿卡波糖有更强的α-葡萄糖苷酶抑制活性,这进一步证明Aglycin有开发为α-葡萄糖苷酶抑制剂的潜力。  相似文献   
6.
Thermal effects in a H2O and CO2 assisted tubular direct carbon solid oxide fuel cell (DC-SOFC) are numerically investigated. Parametric simulations are further conducted to study the effects of operating potential, the distance between carbon and anode, inlet gas temperature, and anode inlet gas flow rate on the thermal behaviors of the fuel cell. It is found that the fuel cell with H2O as gasification agent performs considerably better than the cell with CO2 as gasification agent in all cases. It is also found that the temperature field of the fuel cell is highly uneven. The breakdown of the heat sources in the fuel cell shows that the H2O assisted DC-SOFC has much higher heat generation and consumption than the CO2 assisted cell. Interestingly, a thermal neutral voltage is observed, at which no heating or cooling of the cell is needed. In addition, the distance between the anode and the carbon layer is required to be as small as possible, which improves the temperature uniformity of the fuel cell. The results of this study demonstrates the importance of thermal effects in DC-SOFCs and form a solid foundation for DC-SOFC thermal management.  相似文献   
7.
ZrB2-SiC coatings with different ZrB2 contents were prepared by liquid phase sintering. The oxidation processes of coatings were explained according to TG results of ZrB2-SiC coatings and powders tested from 298 K to 1773 K. Results show that, increasing ZrB2 content made the weight of the samples changed from weight-loss of 10.04% to weight-gain of 0.14%, while the fastest weight-loss regions were narrowed, whose inflection points reduced from 1310℃ to 1050℃. Increasing ZrB2 content made the relative oxygen permeability of the ZrB2-SiC/SiC coatings reduced from 40%–60% to -10%-5%. Increasing ZrB2 content enhanced high-temperature stability of coatings, making final weight of samples changed from weight-loss of 0.16% to weight-gain of 0.11% after oxidation at 1773 K for 200 h. The peeling and dispersion of Zr-oxides formed Zr-B-Si-O compound glass layer, presenting enhanced stability, dispersion strengthening and pinning effect of Zr-oxides, which were responsible for the excellent anti-oxidation protective effect of coatings in a broad temperature region.  相似文献   
8.
In the present paper, the refrigerant mixture R32/R290 (68%/32% by weight) is investigated as the drop-in replacement for R410A in household air conditioners. The GWP of it is only 22% of that of R410A. Theoretical and experimental investigations are conducted on the performance of the air conditioners working with both R32/R290 and R410A. Experimental results show that the refrigerant charge amount of R32/R290 is reduced by 30.0%–35.0%; the cooling and heating capacities are increased by 14.0%–23.7%. For further reducing charge amount and flammability, the micro-channel heat exchanger (condenser) is employed to replace the finned tube one. Compared with the R32/R290 system using finned tube heat exchanger, the R32/R290 charge amount and the power consumption are reduced by 34.1% and 0.4%, respectively; the cooling capacity and the COP are increased by 6.4% and 6.8%, respectively.  相似文献   
9.
Continuous flow (CF) dipper wells, or small countertop sinks, are used in the foodservice industry for rinsing utensils such as stirring spoons and dishers. In addition, these dipper wells are designed as continuous flow not only to rinse and clean but to also control for the buildup of microorganisms. Here, we evaluate a reduced water (RW) dipper well – with and without ultraviolet subtype C (UV-C) disinfection – for control and inactivation of Escherichia coli present on a stainless steel utensil. Overall, the RW dipper well (with and without UV-C) performed significantly better than the CF dipper well for removal of E. coli in 10% skim milk medium at various exposure and rinse times. More specifically, at 5, 10, and 30 s, the RW dipper well without UV-C achieved 1.04, 1.72, and 2.03 greater log10 (CFU/ml) reduction in E. coli compared to the CF dipper well at the same treatment times, respectively. When combined with UV-C, the RW dipper well increased reduction of E. coli by 0.36–1.68 log10 (CFU/ml) over prolonged use (i.e. 2 h continuous use). Moreover, the RW dipper well combined with UV-C may provide a preventative step to reduce the growth and/or persistence of bacteria on the utensil as well as the dipper well reservoir, especially for E. coli in 10% skim milk medium. To our knowledge this is the first study to evaluate the efficacy of dipper wells – both RW and CF systems – in the removal of E. coli on a stainless steel utensil.  相似文献   
10.
针对封闭深窄盲槽结构的加工难点,提出了一种管电极电解铣削加工工艺。通过仿真软件对电解铣削过程中的流场进行建模仿真,利用高速摄影仪观测流场分析该方法的可行性。采用外径0.8 mm的管电极在不锈钢上进行电解铣削加工深窄槽试验,研究电解液压强对深窄槽轮廓精度的影响规律,成功加工出槽宽(1±0.05)mm、槽深(2.5±0.05)mm的高精度、侧壁陡直的封闭深窄盲槽。  相似文献   
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