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71.
针对农村生活污水是造成农村水环境污染最重要的原因,且会随着农村生活方式的改变而加剧,而对其进行治理又是我国社会主义新农村建设的重要内容,本文以某农村治理模式的工程为例,对比分析了几种不同的污水处理工艺及其相互之间的组合利用方式和预计可以实现的排放标准,这为该类型其他工程今后的建设和改进提供了可以参考的依据.同时,工程整体的设计和运营管理模式的选择为工程可多年稳定地建设实施奠定了可靠的基础,这对加速推进该项国家任务的进程有着决定性的作用. 相似文献
72.
本文通过对各项治理技术比选,提出了生态封场技术在非正规垃圾堆放场治理中的应用,并结合实际案例给出了详细治理方案. 相似文献
73.
谢良根 《柴油机设计与制造》2021,27(4):1-6
连杆大头轴瓦是柴油机关键零件之一,不仅承载柴油机缸内气体爆发压力,而且承载活塞连杆组惯性力及曲轴连杆弯曲变形造成的附加力.某新开发V型柴油机,高爆压设计,为提高连杆大头轴瓦的设计可靠性,利用多体动力学软件,创建连杆大头轴瓦弹性液体动力学仿真模型,完成仿真计算并对关键仿真结果逐一分析.针对轴瓦仿真结果中出现的粗糙接触压力超差的失效模式,给出了结构优化方案并通过轴瓦弹性液体动力学仿真完成方案有效性验证.同时,探讨了轴瓦在磨损状况下弹性液体动力学变化情况,为轴瓦材料选择提供了一定的理论依据. 相似文献
74.
Hefei Zhao Xiaoqing Xie Paul Read Benjamin Loseke Stephen Gamet Wenkuan Li Changmou Xu 《International Journal of Food Science & Technology》2021,56(2):825-837
Enriching the micronutrients, selenium (Se) and lithium (Li), in grapes to improve their nutraceutical properties were implemented by foliar application of organic fertiliser rich in Se and Li onto five grape cultivars. The effects of this biofortification on vine vigour, fruit quality, overall micronutrients and phenolic compounds also were investigated. Agronomic biofortification was found greatly increased the Se and Li content in the whole grape by multiple times, meanwhile it did not significantly affect the vine vigour and fruit quality of grapes. However, the biofortification did impact the Ionome (including all the mineral nutrients and trace elements) and phenolic compounds in grapes and this varied among cultivars. This study demonstrated foliar spray of organic Se/Li fertiliser was a very effective strategy to biofortify these micronutrients in grape berries, particularly in the skin, and therefore might be a promising strategy to increase the consumption and awareness of these grapes. 相似文献
75.
76.
Shuangjiang Feng Shuxue Wang Yuanfei Lv Lei He Qiurong Li Tao Zhang 《Polymer International》2019,68(3):494-502
Hydrogels have been widely used as mild biomaterials due to their bio‐affinity, high drug loading capability and controllable release profiles. However, hydrogel‐based carriers are greatly limited for the delivery of hydrophobic payloads due to the lack of hydrophobic binding sites. Herein, nano‐liposome micelles were embedded in semi‐interpenetrating poly[(N‐isopropylacrylamide)‐co‐chitosan] (PNIPAAm‐co‐CS) and poly[(N‐isopropylacrylamide)‐co‐(sodium alginate)] (PNIPAAm‐co‐SA) hydrogels which were responsive to both temperature and pH, thereby establishing tunable nanocomposite hydrogel delivery systems. Nano‐micelles formed via the self‐assembly of phospholipid could serve as the link between hydrophobic drug and hydrophilic hydrogel due to their special amphiphilic structure. The results of transmission and scanning electron microscopies and infrared spectroscopy showed that the porous hydrogels were successfully fabricated and the liposomes encapsulated with baicalein could be well contained in the network. In addition, the experimental results of response release in vitro revealed that the smart hydrogels showed different degree of sensitiveness under different pH and temperature stimuli. The results of the study demonstrate that combining PNIPAAm‐co‐SA and PNIPAAm‐co‐CS hydrogels with liposomes encapsulated with hydrophobic drugs is a feasible method for hydrophobic drug delivery and have potential application prospects in the medical field. © 2018 Society of Chemical Industry 相似文献
77.
78.
Qian Li Xiaoman Zhu Yanli Xie Shilin Ren 《International Journal of Food Science & Technology》2021,56(1):178-184
This study investigated the antifungal activity and the potential antifungal mechanisms of 2-hydroxy-4-methoxybenzaldehyde (HMB) against Aspergillus flavus (A. flavus). The minimum inhibitory concentration (MIC) of HMB in preventing spore germination was 70 μg mL−1. HMB at MIC disrupted cell wall integrity by reducing the number of septa by 86.66% (P < 0.05) in mycelia and increased cell membrane permeability by about 14-fold (P < 0.05) evidenced by propidium iodide (PI) staining. Furthermore, HMB at MIC inhibited respiration by 33.33%. These results revealed that the antifungal activity of HMB against A. flavus could be attributed to the damaged cell wall integrity, cell membrane permeability and respiration metabolism. What’s more, A. flavus was completely restrained in corn kernels due to HMB. Therefore, HMB could be applied as an effective antifungal agent. 相似文献
79.
Zi-Zi Li Lei Lei Min-Xi Huo Zi-Rui Liu Xin-Quan Yang Yu-Lin Wang Yang Yuan 《International Journal of Food Science & Technology》2021,56(1):269-277
The objective of this paper was to investigate the complex of grape seed procyanidins (GSP) with zein hydrolysate (ZH). The interaction was determined using isothermal titration calorimetry (ITC) and fluorescence spectroscopy. The particle size, ζ-potential, scanning electronic microscopy (SEM) and stability test of the ZH-GSP complex were measured. The results of ITC, particle size and SEM suggested that there was a hydrogen bond-dominated interaction between GSP and ZH, and the ZH-GSP complex presented as a spherical shape with particle size of 234 nm, polydispersity index of 0.11 and ζ-potential of −46.4 mV. The results of the fluorescence spectroscopy showed that the fluorescence quenching effect of GSP on ZH was GSP concentration-dependent and the quenching process was mainly static quenching. The ZH-GSP complex had better physical stability in aqueous solution, and their solution was more stable than GSP solution under illumination and high-temperature treatment at 75°C. 相似文献
80.
Di An Wei Liu Zhipeng Xie Hezhen Li Xudong Luo Haidong Wu Meipeng Huang Jianwei Liang Zhuo Tian Rongxuan He 《Journal of the American Ceramic Society》2019,102(5):2263-2271
In this study, we developed a unique defect healing method for 3D printed ceramic compact via cold isostatic pressing (CIP) after debinding, and typical features of interlayer interface defects of 3D-printed zirconia compact were characterized and found to be reduced significantly. The characteristic sintering kinetics window and microstructure evolution of the healed sintered bodies were systematically investigated, which was found to be quite different from conventional shaping methods. The three sintering stages are probed by their feature microstructure details such as the mechanically flattening surface at the early sintering stage, the heterogeneous microstructure and high porosity in the interlayer interface region at the middle stage, and the slightly ripple-like structural features combined with the healed interlayer defects at the final stage. The evolution of the pore structure of the healed 3D printed bodies were traced and the mechanical properties such as the Young's modulus, hardness, and fracture toughness were measured to understand the significance of the heal effect. 相似文献