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41.
为研制食品中总铬质量浓度检测间接竞争ELISA(icELISA)试剂盒(Cr-Kit)。利用蛋白质连接技术合成免疫原Cr~(3+)-iEDTA-BSA,紫外扫描(UV)和电感耦合等离子体原子发射光谱(ICP-AES)进行鉴定;用Cr~(3+)-iEDTA-BSA免疫BALB/c小鼠,细胞融合技术筛选抗Cr~(3+)-EDTA mAb细胞株,体内诱生腹水法制备Cr~(3+)-EDTA mAb,并对其特性进行分析;应用Cr~(3+)-EDTA mAb研制Cr-Kit,测定其性能并进行初步应用。结果表明,免疫原制备成功,Cr~(3+)-iEDTA-BSA中Cr~(3+)和BSA的质量浓度分别为140.8mg/L和5.81g/L;筛选出2A3C11、2A3D9、2A11G5共3株杂交瘤细胞株,其中2A11G5最好,经6次传代分泌抗体稳定,亲和常数(Ka)为2.69×109 L/mol,与其他重金属离子无交叉反应;Cr-Kit标准曲线的线性范围为1.0~264μg/L,检测限为1.0μg/L,IC50为8.37μg/L,河水样、大米样、面粉样和猪肉样的平均加标回收率分别为101.7%、96.47%、95.8%和84.3%,Cr-Kit与国标(GB5009.123-2014)石墨炉原子吸收光谱法(GFAAS)的符合率为100%。本研究成功研制了Cr-Kit,可满足食品总铬残留的检测要求。 相似文献
42.
The relationship between the charge characteristics and the dispersibility of soils from reclaimed land (highly dispersive) and adjacent forest area (physically stable) was investigated. To evaluate the amount of soil charges quantitatively, the measurement based on cation and anion adsorption (ion adsorption method) was attempted in two ways, where special attention was paid to the solution concentration. In the conventional ion adsorption method, the treatments with concentrated solutions (1 mol L-1) were included in the process. In the modified method, soils were treated with dilute solutions (5 mmol L-1), in taking account of the soil solution concentration in humid temperate regions. The amount of charges derived from the modified method was smaller than that from the conventional one, especially in the high pH zone. In a preliminary experiment, the extraction of polyvalent cations from soils was found to be significantly affected by the salt concentration. Thus, the use of solutions with an excessively high concentration was considered to result in an error in the estimation of the active charges in soils which would contribute to the dispersion behavior in the field. The applicability of the modified method for analyzing the dispersion behavior of soils was evaluated by relating the dispersibility of silts and clays at different pHs with the charge characteristics determined under the same ionic strength. The dispersion ratio of silts of the reclaimed land reached maximum values at pH 5.5, above which the ratio decreased, whereas the ratio of clays began to increase in the pH range above 6. The dispersion ratio of silts of the forest area increased in the pH range above 6, whereas that of clays remained constant at a low level in all the pH ranges below 7. The changes in the dispersibility of silt plus clay fractions corresponded to total charge characteristics determined by the modified method. Thus, the evaluation of soil charges by the modified ion adsorption method was considered to be effective to predict soil dispersibility under field conditions, indicating that it could replace electrokinetic analyses such as electrophoresis in studies on the dispersion/flocculation behavior of soils. 相似文献
43.
无性系培养技术在水稻遗传改良中的应用前景 总被引:1,自引:0,他引:1
概述了体细胞无性系变异发生的特点与其在水稻遗传改良中的应用状况,分析了体细胞无性系变异在实际应用中所存在的问题,并提出了加速水稻育种进程的新途径。 相似文献
44.
为解决果蔬采后易受微生物作用而腐败变质的问题,该文进行了纳米二氧化钛(TiO_2)光催化技术灭活园艺产品冷藏环境中青霉菌的研究:以活性炭纤维(activated carbon fiber,ACF)为载体,以粉末浸渍-提拉法制备TiO_2-ACF薄膜,采用离子溅射法在ACF薄膜上作贵重金属银沉积处理,研究表面溅射与底层溅射纳米Ag粒子及施以外加电压处理对TiO_2-ACF薄膜光催化灭活青霉菌的影响及机理。结果显示,不同的溅射方式对试验结果有不同的影响,其中底层溅射效果较好,120 s时光催化灭活青霉菌速率最高;外加电压可提高TiO_2-ACF薄膜光催化速率,75 V是最优值,且光电催化作用效果优于单独光催化和电催化的总和。对负载的ACF薄膜表征分析,发现离子溅射较均匀地实现了纳米Ag-TiO_2混合粒子在ACF薄膜的表面及内部负载。研究结果为纳米TiO_2光催化技术在灭活园艺产品冷藏环境中青霉菌的实际应用提供参考。 相似文献
45.
46.
为了准确评估带裂缝工作混凝土结构的耐久性能,针对氯离子在带裂缝混凝土中的扩散过程进行研究。提出了无损制备裂缝的方法,可高效易行地在混凝土侧面及内部产生裂缝。对带裂缝的水泥砂浆试件进行氯盐溶液浸泡试验,深入研究了单缝和双缝试件中氯离子的扩散作用,修正了氯离子的扩散系数,并对带裂缝混凝土的氯离子扩散过程进行了数值模拟。研究结果表明:氯离子会沿裂缝发展方向及垂直于裂缝发展方向扩散,随着水灰比的减小,砂浆试件的抗氯离子扩散性能明显提高,在一定范围内,当裂缝间距增大,双缝间的氯离子扩散交互影响作用明显减小,ANSYS软件的模拟结果与试验数据吻合良好。 相似文献
47.
以橙皮作为吸附剂研究了橙皮对Fe2+的吸附性能.探讨了溶液pH、初始浓度、投加量及温度等因素对Fe2+吸附效果的影响,采用正交试验法得出橙皮对Fe2+的最佳吸附条件,并对吸附过程进行动力学与热力学研究.结果表明,吸附过程符合Langmuir吸附等温模式,橙皮对Fe2+的吸附动力学模型符合准二级动力学方程.当pH为5、温度为50℃、投加量为8 g/L、溶液的初始浓度为10 mg/L时,橙皮对Fe2+的吸附效果最佳,废水的pH对吸附效果的影响最大,溶液的初始浓度和吸附温度次之,吸附剂的用量影响最小. 相似文献
48.
菲律宾蛤仔对镉、铜暴露的蓄积作用及其抗氧化酶系统的响应研究 总被引:1,自引:0,他引:1
研究了镉(Cd)、铜(Cu)2种重金属单一暴露下菲律宾蛤仔(Ruditapes philippinarum)肝胰腺和鳃组织内的重金属富集特征和抗氧化酶活力变化特点。结果表明,蛤仔肝胰腺与鳃对Cd、Cu的富集量随重金属浓度与暴靠时间的增加而增火,具有明显的浓度效应与时间效应;菲律宾蛤仔对Cd的富集能力高于Cu,H.肝胰腺中审盖属的蓄积量高于鳃;蛤仔肝胰腺和鳃组织中超氧化物歧化酶(SOD)、谷胱廿肽过氧化物酶((;Px)和谷胱竹肽硫转移酶(CST)活力在暴露的某些时段被显著诱导(P〈0.05),似随暴露时问延长或重金属浓度增加,SODf11GST活力则被显著抑制(P〈O.05),而CPx活力随暴露时问延K逐渐恢复至对照组水平、菲律宾蛤仔肝胰腺和鳃2种组织中SOD和GST的活性变化可作为海洋Cu^2+Cd^2+钙染的牛物标志物. 相似文献
49.
William S. Marshall Sharon E. Bryson M. Michelle Sapp 《Fish physiology and biochemistry》1990,8(1):19-28
Brook trout erythrocytes that were washed with and suspended in Ringer's solution with reduced glutathione (1.0 mM) maintained
steady state cell volume for up to 24h, while those without the thiol-protective agent steadily shrank. Changes in cell volume
(measured as packed cell volume, PCV) were evoked by acidic media (Ringer's at pH 6.8), hypoosmotic solutions (or both) and
intracellular K+ and Cl− concentrations were monitored over 4h. Acid-swollen cells failed to volume regulate or release K+ but had significantly elevated intracellular Cl− Osmotically-swollen cells at pH 7.8 but not at pH 6.8 underwent regulatory volume decrease (RVD) and returned to initial
levels in 2h, accompanied by release of K+ and Cl− In contrast, osmotically-shrunken cells did not show regulatory volume increase. The regulatory volume decrease and concomitant
K+ release were dependent on Cl− implying a direct or indirect coupling of K+ to Cl− transport in volume regulation. RVD was partially blocked by 4,4′-diisothiocyanatostilbene-2,2′-disulfonic acid (DIDS, 0.1
mM), an anion exchange blocker, but was unaffected by amiloride (1.0 mM) which blocks Na+/H+ exchange. Amiloride and DIDS prevented the swelling response to low pH but had no effect on control cells, suggesting involvement
of Na+/H+ and Cl−/HCO3
− exchanges in acid-induced cell swelling. Quinine (1.0 mM) a known blocker of K+ channels, exacerbated the osmotically-induced swelling but had little effect on the subsequent RVD and release of KCl. The
results suggest that low extracellular pH inhibits neutral C−-dependent K+ release and the resultant regulatory volume decrease in osmotically-swollen cells. 相似文献
50.