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排序方式: 共有163条查询结果,搜索用时 31 毫秒
1.
在挤压模具的零件中,冲头的工作条件最恶劣.传统认为,冷挤压冲头损坏的主要原因是因为工作时金属变形抗力大,作用在冲头上的载荷大而集中所致.此文分析了冷挤压冲头的主要损坏形式,并对其产生原因及损坏形式进行了分析和讨论,提出冲头在交变应力的反复作用下引起的疲劳损伤,是冷挤压冲头容易损坏的主要原因,并就冲头的常见损坏形式提出了相应的解决措施.  相似文献   
2.
Most native polymers used in processing and application technologies are admittedly disposable from the environment in a biologic manner, but products possess low mechanical strength. One of the paths to increasing this attribute (if feasible) is their cross-linking, which may, however, affect their readiness to biodegradation. In the presented work this condition was observed on the example of waste protein (Hykol B) cross-linking by means of glutardialdehyde and glyoxal. Degree and course of cross-linking were determined through impedance spectroscopy. The objective of this work also was to obtain data for constructing a sensor capable of following the cross-linking course in real time, for potential industrial application of Hykol in continuous production. Impedance spectroscopy proved to be applicable even to this kind of material marked by considerable water content and exhibiting relatively high electric conductivity; so far it had been used only for materials of low conductivity. An aqueous environment inoculated with digested anaerobic sludge from a municipal wastewater treatment plant was selected for modeling anaerobic conditions. The relation was studied between cross-linking degree given by content of cross-linking agent (determined by impedance spectroscopy) and biodegradation degree under anaerobic conditions. It was confirmed that network density as given by quantity of added agent not only reduced breakdown degree but also slowed the course of the process. This fact is particularly obvious with cross-linking by means of glyoxal; network density is thus dependent on type of employed substance, which affect type and structure of created network. That not merely forms an obstacle during polymer swelling and dissolution but also prevents access of bacteria to source of metabolized organic carbon.  相似文献   
3.
柴立伟  刘梦娇  蒋大林  樊灏  曹晓峰  黄艺 《环境科学》2016,37(12):4806-4814
球囊霉素相关土壤蛋白是一种菌根真菌产生的耐热糖蛋白,因其与微生物密切联系而常用来表征土壤的健康状况.由于球囊霉素相关土壤蛋白的提取过程中容易产生干扰物质,影响了这个指标在土壤状态评估方面的进一步应用.本研究采集了北京北部山区,中部城区以及南部郊区的土壤样品,使用三维荧光-平行因子模型技术解析球囊霉素相关土壤蛋白中可溶性有机物的荧光特征,将土壤类球囊霉素蛋白分解为5个荧光组分,分别为微生物源UVC腐殖质类物质、UVA人为来源腐殖质类物质、微生物来源的氧化醌物质、土壤富里酸类物质和类蛋白物质,蛋白质在其中所占比例为0~20%.不同采样区域的荧光特征比较显示,球囊霉素土壤相关土壤蛋白的5个荧光组分总体稳定,与山区相比较,城区和郊区的类蛋白质组分受人类活动影响降低,氧化醌类物质组分含量升高.不同采样点的理化特征结果显示,以城市建设和耕作为代表的人类活动减少了土壤中的含水率、有机质含量以及总氮含量.比较球囊霉素相关土壤蛋白的荧光特征与土壤理化特征的相关性结果显示,球囊霉素土壤相关蛋白浓度、UVA腐殖质组分、UVC腐殖质组分与土壤有机质含量、总氮含量显著相关,具有表征土壤健康状况的潜力.  相似文献   
4.
本研究以麻疯树(Jatropha curcas L.)和油桐(Vernicia fordii H.)幼苗为材料,考察了麻疯树和油桐幼苗的生理指标和稳定碳同位素组成对渗透胁迫的响应情况。结果表明,麻疯树比油桐更具有抗渗透胁迫能力,主要体现在:随着渗透胁迫程度的加剧,麻疯树叶片相对含水量与叶绿素含量的下降幅度均小于油桐,脯氨酸含量和可溶性糖含量的增加幅度高于油桐,相对电导率的上升幅度小于油桐;随着渗透胁迫程度的加剧,两种植物幼苗叶片的δ13 C值也都显著升高,但是在同一渗透胁迫水平下,麻疯树幼苗叶片的δ13 C值较油桐高,表明其拥有较高的水分利用效率,能够在干旱胁迫下更好地生长,暗示着植物叶片的δ13 C值在一定情况下可以表征植物的抗旱性。  相似文献   
5.
从活性污泥的絮凝特点、有机物与 NH 4-N 的微生物代谢过程等方面探讨前处理残余铝对曝气池活性污泥的影响规律.结果显示,随着进水Al3 浓度的不断增加,污泥瞬时沉降速度明显增加,而对污泥沉降比影响不大.Al3 对COD去除率基本上没有影响,而对废水中 NH 4-N 氧化过程的影响却非常明显,随着活性污泥中Al3 的逐渐增加, NH 4-N 去除率出现了先升后降的变化趋势. NH 4-N 去除率下降的趋势与Al3 对微生物细胞膜电解质透性的影响规律呈负相关关系,说明Al3 对氨氧化微生物种群的干扰作用最强.  相似文献   
6.
运用有限元软件ABAQUS计算L形带肋钢管混凝土柱阴角相邻两面受火全过程下的耐火极限,分析了阴角邻面受火方式下构件内部温度场和应力场的变化规律,在此基础上分析荷载比、宽厚比、计算长度、加劲肋纵向间距、荷载偏心率、荷载角等参数对耐火极限的影响规律。数据表明:荷载比、计算长度对构件耐火极限影响较大,随着荷载比和计算长度的增大,耐火极限基本呈线性下降;加劲肋间距对构件耐火性能影响较小;由于L形柱的特殊形式,偏心荷载对耐火极限的影响规律较复杂,荷载作用点偏向低温区可以提高耐火极限。  相似文献   
7.
Abstract

The in vivo effects of methomyl, thiodicarb and metaldehyde on total soluble proteins, total lipids and glycogen content, in addition, the activity of glutamic oxaloacetic transaminase, (GOT), (GPT) glutamic pyruvic transaminase and catalase (CAT) enzymes of terrestrial E. vermiculata snails was studied. The experimental snails were treated with low concentration of 0.2% bran bait w/w of the pesticides for a period of 1,3,5,7 and 10 days. The results showed that methomyl and thiodicarb lead to significant reduction in total soluble proteins, lipids, and glycogen content, while significant increases in the activity of all enzymes tested were noted. Metaldehyde treatment showed no significant effect on total soluble proteins, lipids and GOT level, whereas a significant increase in GPT and CAT enzymes was observed. Also, metaldehyde resulted a significant reduction in glycogen content of snails.  相似文献   
8.
9.
Indiscriminate use of agrochemicals worldwide, particularly, persistent organic pollutants (POPs), is of concern. Endosulfan, a POP, is used by various developing/developed nations and is known to adversely affect the development and the hormonal profiles of humans and animals. However, little is known about the molecular players/pathways underlying the adverse effects of endosulfan. We therefore analyzed the global gene expression changes and subsequent adverse effects of endosulfan using Drosophila. We used Drosophila melanogaster keeping in view of its well annotated genome and the wealth of genetic/molecular reagents available for this model organism. We exposed third instar larvae of D. melanogaster to endosulfan (2.0 μg mL−1) for 24 h and using microarray, we identified differential expression of 256 genes in exposed organisms compared to controls. These genes are associated with cellular processes such as development, stress and immune response and metabolism. Microarray results were validated through quantitative PCR and biochemical assay on a subset of genes/proteins. Taking cues from microarray data, we analyzed the effect of endosulfan on development, emergence and survival of the organism. In exposed organisms, we observed deformities in hind-legs, reminiscent of those observed in higher organisms exposed to endosulfan. In addition, we observed delayed and/or reduced emergence in exposed organisms when compared to their respective controls. Together, our studies not only highlight the adverse effects of endosulfan on the organism but also provide an insight into the possible genetic perturbations underlying these effects, which might have potential implications to higher organisms.  相似文献   
10.
Cobalt is an essential element, but at high concentrations it is toxic. In addition to its well-known function as an integral part of cobalamin (vitamin B12), cobalt has recently been shown to be a mimetic of hypoxia and a stimulator of the production of reactive oxygen species. The present study investigated the responses of goldfish, Carassius auratus, to 96 h exposure to 50, 100 or 150 mg L−1 Co2+ in aquarium water (administered as CoCl2). The concentrations of cobalt in aquaria did not change during fish exposure. Exposure to cobalt resulted in increased levels of lipid peroxides in brain (a 111% increase after exposure to 150 mg L−1 Co2+) and liver (30-66% increases after exposure to 50-150 mg L−1 Co2+), whereas the content of protein carbonyls rose only in kidney (by 112%) after exposure to 150 mg L−1 cobalt. Low molecular mass thiols were depleted by 24-41% in brain in response to cobalt treatment. The activities of primary antioxidant enzymes, superoxide dismutase (SOD) and catalase, were substantially suppressed in brain and liver as a result of Co2+ exposure, whereas in kidney catalase activity was unchanged and SOD activity increased. The activities of glutathione-related enzymes, glutathione peroxidase and glutathione-S-transferase, did not change as a result of cobalt exposure, but glutathione reductase activity increased by ∼40% and ∼70% in brain and kidney, respectively. Taken together, these data show that exposure of fish to Co2+ ions results in the development of oxidative stress and the activation of defense systems in different goldfish tissues.  相似文献   
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