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11.
HPV、CT感染是引起胎膜早破、早产的重要原因,胎膜早破与早产的发生互为因果。胎膜早破、早产可导致围产儿死亡率高.如何预测和预防胎膜早破、早产,加强围生期保健,对改善母婴预后有重要意义。 相似文献
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13.
为了解外源钙对缓解沙拐枣(Calligonum mongolicum)盐胁迫的主要生理机制,采用盆栽法探究在0、100、200 mmol/L的NaCl胁迫下,分别添加5、10、15和20 mmol/L的Ca(NO3)2对沙拐枣同化枝中w(脯氨酸)、丙二醛含量、w(可溶性蛋白)、w(可溶性糖)的影响.结果表明,单独添加Ca(NO3)2使沙拐枣同化枝内w(脯氨酸)、丙二醛含量、w(可溶性蛋白)以及w(可溶性糖)增加,即Ca(NO3)2对沙拐枣的生长造成了胁迫.对w(脯氨酸)、丙二醛含量、w(可溶性蛋白)、w(可溶性糖)来说,NaCl和Ca(NO3)2之间均存在极显著的交互作用,与对照相比,在c(NaCl)分别为100、200 mmol/L,添加c[Ca(NO3)2]为10、20 mmol/L时,w(脯氨酸)显著增加,分别达到最大值(736.7、1 086.3 μg/g);丙二醛含量分别降低了37.8%和40.5%,w(可溶性蛋白)以及w(可溶性糖)均增加.总之,适宜浓度的钙盐通过增加渗透物质w(脯氨酸)、w(可溶性蛋白)及w(可溶性糖),降低丙二醛的含量来有效缓解盐胁迫对沙拐枣幼苗产生的伤害,当c(NaCl)/c[Ca(NO3)2]为10:1时,缓解作用最佳,并且钙盐对沙拐枣盐胁迫的缓解属于抗性诱导的调节作用. 相似文献
14.
《环境科学与技术》2017,(Z2)
随着工业化和城市化的快速发展,大气颗粒物污染形势严峻,对人体健康和生态环境都造成危害,其中危害植物的典型形式就是叶表降尘。虽然植被具有净化空气的滞尘能力,但是大气降尘也会在植物叶片表面长期积累进而通过影响光合作用、阻塞气孔等对植物的正常生长或作物产量造成不利影响。因此,作物叶表降尘的采集方法和降尘特征研究具有十分重要的现实环境意义,然而由于叶表降尘的"微量"特点,目前可行的能准确收集全部叶表降尘并进行定量的方法非常少,而且通常不能获得降尘样品供后续分析使用。该方法利用针筒与针头过滤器组合将降尘直接洗入针筒并通过微孔滤膜截留,再用叶面积仪确定单位叶面积降尘量,避免了降尘损失和称量误差,且能完整定量收集降尘样品供重金属污染物成分等物理化学分析,在环境科学和生态保护领域具有广泛的应用前景。 相似文献
15.
北京市不同地区土壤中的球囊霉素荧光特征及其与土壤理化性质的关系 总被引:1,自引:1,他引:0
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
16.
Enzymatic decolourization of the azo dye, Direct Yellow (DY106) by Cucurbita pepo (courgette) peroxidase (CP) is a complex process, which is greatly affected by pH, temperature, enzyme activity and the concentrations of H2O2 and dye. Courgette peroxidase was extracted and its performance was evaluated by using the free-CP (FCP) and immobilized-CP (ICP) forms in the decolourization of DY106. Immobilization of peroxidase in calcium alginate beads was performed according to a strategy aiming to minimize enzyme leakage and keep its activity at a maximum value by optimizing sodium alginate content, enzyme loading and calcium chloride concentration. The initial conditions at which the highest DY106 decolourization yield was obtained were found at pH 2, temperature 20℃, H2O2 dose 1 mmol/L (FCP) and 100 mmol/L (ICP). The highest decolourization rates were obtained for dye concentrations 50 mg/L (FCP) and 80 mg/L (ICP). Under optimal conditions, the FCP was able to decolorize more than 87% of the dye within 2 min. While with ICP, the decolourization yield was 75% within 15 min. The decolourization and removal of DY106 was proved by UV-Vis analysis. Fourier transform infrared (FT-IR) spectroscopy analysis was also performed on DY106 and enzymatic treatment precipitated byproduct. 相似文献
17.
18.
Removal of phosphate by Fe-coordinated amino-functionalized 3D mesoporous
silicates hybrid materials
Phosphate removal from aqueous waste streams is an important approach to control the eutrophication downstream bodies of water.
A Fe(III) coordinated amino-functionalized silicate adsorbent for phosphate adsorption was synthesized by a post-grafting and metal
cation incorporation process. The surface structure of the adsorbent was characterized by X-ray di raction, N2 adsoropion/desoprotion
technique, and Fourier transform infrared spectroscopy. The experimental results showed that the adsorption equilibrium data were well
fitted to the Langmuir equation. The maximum adsorption capacity of the modified silicate material was 51.8 mg/g. The kinetic data
from the adsorption of phosphate were fitted to pseudo second-order model. The phosphate adsorption was highly pH dependent and
the relatively high removal of phosphate fell within the pH range 3.0–6.0. The coexistence of other anions in solutions has an adverse
e ect on phosphate adsorption; a decrease in adsorption capacity followed the order of exogenous anions: F?? > SO2?? 4 > NO??3 > Cl??. In
addition, the adsorbed phosphate could be desorbed by NaOH solutions. This silicate adsorbent with a large adsorption capacity and
relatively high selectivity could be utilized for the removal of phosphate from aqueous waste streams or in aquatic environment. 相似文献
19.
The competition between submersed plants has been recognized as an important factor influencing the structure of plant communities
in shallow lakes. The ability of different species to take up and store nutrients from the surrounding ambience varies, and hence plant
community structure might be expected to affect the cycling of nutrients in lake ecosystems. In this study, the uptake of phosphorus
by Hydrilla verticillata and Vallisneria natans was studied and compared in monoculture and competitive mixed-culture plantings.
Results showed that for both studied species the phosphorus concentrations of different tissues and of whole plants was unaffected by
competition. However, the quantity of phosphorus accumulated by whole plants of H. verticillata was significantly higher in mixture
culture than in monoculture, while that of V. natans was lower in the mixed culture. The results indicated that H. verticillata has a
competitive advantage over V. natans, when the two species are grown in competition, and is able to accumulate a greater quantity of
phosphorus. 相似文献
20.
The photocatalytic degradation of methylene blue(MB) over Fe-doped CaTiO3 under UV-visible light was investigated. The as-prepared samples were characterized using X-ray diffraction(XRD), scanning electron microscope(SEM) equipped with an energy dispersive spectrometer(EDS) system, Fourier transform infrared spectra(FT-IR), and UV-visible diffuse reflectance spectroscopy(DRS). The results show that the doping with Fe significantly promoted the light absorption ability of CaTiO3 in the visible light region. The Fe-doped CaTiO3 exhibited higher photocatalytic activity than CaTiO3 for the degradation of MB.However, the photocatalytic activity of the Fe-doped CaTiO3 was greatly influenced by the calcination temperature during the preparation process. The Fe-doped CaTiO3 prepared at500°C exhibited the best photocatalytic activity, with degradation of almost 100% MB(10 ppm)under UV-visible light for 180 min. 相似文献