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通过梳理石峡遗址玉琮不同阶段形制与纹饰设计的变化,以及良渚文化和同时期其他地区玉琮的形制、纹饰和功能的分析,发现广东境内出土的玉琮与良渚文化关系极为密切,石峡遗址的多节玉琮更是直接来自于太湖地区,而那些纹饰设计出现颠倒或发生较大改变者应为本地仿制品。龙山时代,玉琮虽然传播和辐及的范围十分广泛,但是在大部分地区其功能都发生了变化,只有广东地区的玉琮仍最大程度地坚守着传统与信仰。石峡遗址玉琮形制与纹饰设计流变,所反映出的这种文化传播方式、接收程度与再创作,突出地体现了一种强势文化在对外传播和扩散的过程中,因地因时而制宜。这或许可以提示我们,利用传统文化元素进行再设计,欲意达到传统与现代的融合与契合,更理应如此。 相似文献
3.
邵啸 《皮革制作与环保科技》2021,(5):146-147
危险废物具有各种危害性,不仅对人体健康有着威胁,对于环境治理来说也有着极大的消极影响。就目前来说,虽然安全填埋技术已经较为成熟,但在实际实施过程中还是容易出现渗漏事故,渗漏液在地下容易穿透防渗层,从而影响地下水,所以这也是我们需要重视的问题之一。 相似文献
4.
以从自然腐败的樱桃上分离的链格孢霉(Alternaria sp.)LD3.0086为指示菌,研究苯乳酸对链格孢霉的主要抑制作用靶位。应用分光光度法测定苯乳酸对链格孢霉的最小抑菌浓度,通过卡尔科弗卢尔荧光增白剂染液(calcofluor white,CFW)染色观察苯乳酸对菌丝顶端生长的破坏作用,利用扫描电子显微镜和透射电子显微镜观察链格孢霉的超微结构变化,通过测定苯乳酸作用前后链格孢霉上清液中N-乙酰葡萄糖胺质量浓度变化研究苯乳酸对菌丝细胞壁的破坏作用,应用荧光双染色法观察苯乳酸对链格孢霉菌丝细胞膜的损伤作用。结果表明,12.5 mmol/L的苯乳酸能有效抑制链格孢霉的生长;与对照组(无菌水处理)相比,苯乳酸处理后链格孢霉顶端生长细胞无明显形变,经12.5 mmol/L苯乳酸处理的链格孢霉上清液中N-乙酰葡萄糖胺质量浓度基本不变;苯乳酸处理24 h,链格孢霉菌丝细胞壁表面无明显损伤,细胞内结构发生明显变化;苯乳酸短时间(4 h)处理链格孢霉,菌丝细胞膜仍较为完整,加入苯乳酸较长时间(8 h)后细胞膜发生破裂。综合分析可知,苯乳酸对链格孢霉的主要作用靶位应不是菌丝体的细胞壁和细胞膜,而是在菌丝体内部,通过破坏菌丝内部细胞器结构或引起细胞内的生化反应,从而抑制链格孢霉的生长和繁殖,发挥抑菌活性。 相似文献
5.
针对提高轮询控制模型工作效率和区分网络优先级的问题,提出了区分站点忙闲状态的完全-门限两级轮询控制模型(ETTPSS)。模型以两级优先级为基础,依据站点的忙闲状态采用并行处理方式只对忙站点进行信息分组发送服务。模型既能区分传输服务优先级又能避开对无信息分组的空闲站点的查询,从而提高了模型资源利用率和工作效率。运用概率母函数与马尔可夫链相结合的方法对该模型进行理论分析研究,精确解析了模型各个重要性能参数。仿真实验结果表明,仿真值与理论值近似相等,说明理论分析正确合理。与普通轮询模型相比,该模型性能大幅度提高。 相似文献
6.
Mri Miczi Mria Golda Balzs Kunkli Tibor Nagy Jzsef Tzsr Jnos Andrs Mtyn 《International journal of molecular sciences》2020,21(24)
The novel severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is the causative agent of coronavirus disease-19 (COVID-19) being associated with severe pneumonia. Like with other viruses, the interaction of SARS-CoV-2 with host cell proteins is necessary for successful replication, and cleavage of cellular targets by the viral protease also may contribute to the pathogenesis, but knowledge about the human proteins that are processed by the main protease (3CLpro) of SARS-CoV-2 is still limited. We tested the prediction potentials of two different in silico methods for the identification of SARS-CoV-2 3CLpro cleavage sites in human proteins. Short stretches of homologous host-pathogen protein sequences (SSHHPS) that are present in SARS-CoV-2 polyprotein and human proteins were identified using BLAST analysis, and the NetCorona 1.0 webserver was used to successfully predict cleavage sites, although this method was primarily developed for SARS-CoV. Human C-terminal-binding protein 1 (CTBP1) was found to be cleaved in vitro by SARS-CoV-2 3CLpro, the existence of the cleavage site was proved experimentally by using a His6-MBP-mEYFP recombinant substrate containing the predicted target sequence. Our results highlight both potentials and limitations of the tested algorithms. The identification of candidate host substrates of 3CLpro may help better develop an understanding of the molecular mechanisms behind the replication and pathogenesis of SARS-CoV-2. 相似文献
7.
The effects of quenching in different ways following solid-solution treatment on properties and precipitation behaviors of 7050 alloy were investigated by transmission electron microscopy (TEM), scanning electron microscopy (SEM), selected area electron diffraction (SAED), hardness and electrical conductivity tests. Results show that after quenching in different ways, electrical conductivity of the alloy decreases rapidly in the first 48 h of natural aging. The electrical conductivity of 7050 alloy in natural aging state is determined by the size and density of GP zones, and the size of GP zones is the main factor. After natural aging for 70 d, the size of GP zones is 1.8–2.6 nm in matrix of the immersion quenched sample and it is 1.4–1.8 nm in matrix of both water mist and forced air quenched samples. After natural and artificial peak aging, the hardness of the water mist quenched sample is HV 193.6 and its electrical conductivity is 30.5% (IACS) which are both higher than those of the immersion quenched sample. Therefore, water mist quenching is an ideal quenching method for 7050 alloy sheets after solid-solution treatment. 相似文献
8.
9.
Tuning morphology and structure of Fe–N–C catalyst for ultra-high oxygen reduction reaction activity
《International Journal of Hydrogen Energy》2020,45(11):6380-6390
Exploring efficient and durable non-precious metal catalysts for oxygen reduction reaction (ORR) has long been pursued in the field of metal-air batteries, fuel cells, and solar cells. Rational design and controllable synthesis of desirable catalysts are still a great challenge. In this work, a novel approach is developed to tune the morphologies and structures of Fe–N–C catalysts in combination with the dual nitrogen-containing carbon precursors and the gas-foaming agent. The tailored Fe–N1/N2–C-A catalyst presents gauze-like porous nanosheets with uniformly dispersed tiny nanoparticles. Such architectures exhibit abundant Fe-Nx active sites and high-exposure surfaces. The Fe–N1/N2–C-A catalyst shows extremely high half-wave potential (E1/2, 0.916 V vs. RHE) and large limiting current density (6.3 mA cm−2), far beyond 20 wt% Pt/C catalyst for ORR. This work provides a facile morphological and structural regulation to increase the number and exposure of Fe-Nx active sites. 相似文献
10.
Hessam Golmohamadi 《国际能源研究杂志》2021,45(1):938-960
This paper proposes a novel structure to optimize the operational strategies of responsive farms for day‐ahead peak shaving. To achieve the aim, the modern irrigation system of farms, including groundwater, surface water, and booster water pumps, are modeled mathematically. To develop the demand response (DR) potentials of the farms, electrical storage systems, and self‐generation facilities, including thermal distributed generations and on‐farm solar sites, are addressed. In order to facilitate the integration of the agricultural DR programs into the electricity market, a mathematical formulation for agricultural demand response aggregator (ADRA) is suggested. The ADRA participates in the day‐ahead electricity market on behalf of the responsive farms. To overcome the price uncertainty of the electricity market, a robust optimization approach is addressed. This approach determines the robust decisions of farms in the worst‐case realizations of the uncertain electricity price. Regarding on‐farm solar sites located in rural areas, a data‐driven approach is used to estimate the solar power generation of a significant number of sites without needing to install costly communication and measurement infrastructures. Finally, the proposed approach is implemented on agricultural lands in the northeast of Iran. The numerical results show that the suggested approach provides day‐ahead peak shaving for the power systems meeting the crop's water requirements. 相似文献