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镉胁迫下大豆中镉的分布状况及其籽粒品质   总被引:18,自引:1,他引:18  
溶液培养中0.5μmol·L-1镉胁迫浓度下,大豆表现出轻微受害症状,籽粒减产25 . 7%,而籽粒中粗脂肪和粗蛋白含量变化不大.镉在大豆中的积累分布状况为根>叶>籽>油,比例为32.100:1.690:1.000:0.003.大豆籽粒含镉4.89mg/kg,超过了国家环境标准规定的最高容许量.而大豆粗脂肪中含镉仅0.015mg/kg,远低于国家食品环境卫生标准.豆粕中含镉6.17mg/kg,表明大豆籽粒中的镉主要存在于粗蛋白和淀粉中.  相似文献   
3.
采用不同浓度三苯胂(Triphenylarsine,TPA)沙质室内培养东北代表性作物大豆,研究日本遗弃在华化学武器("日遗化武")装填毒剂的主要降解产物之——TPA(C18H15As)对大豆萌发和幼苗生长的影响。结果表明:在0 mg/kg~400 mg/kg TPA浓度范围内,大豆受到的毒性效应随浓度增大而增大,直至无法生长;试验大豆的萌发率、根长、下胚轴长和株高等形态指标均随着培养介质中TPA浓度的增加而出现抑制效应明显增加的趋势;其中根系是大豆幼苗期砷累积的主要器官,也是对环境TPA毒害效应最敏感、响应最早的部位之一。日遗华武泄漏造成的土壤污染若处理不当会对埋藏地种植的大豆作物生长产生影响。  相似文献   
4.
用SBR法处理豆制品废水的试验表明,该系统具有较好的抗负荷冲击能力,进水COD在300~2000 mg/L之间变化,对系统不造成任何影响;考察了曝气时间、曝气量和污泥浓度等对去除效果的影响,试验结果表明,曝气时间和曝气量对处理效果影响很大,确定该反应系统最佳曝气时间是8 h,适宜的曝气量是800 L/h,而污泥浓度控制在4000 mg/L左右时,处理效率最高,采用进水顶出水的排水方式是可行的,确定系统的最佳排水比是3/5.厌氧段的插入可以减少剩余污泥的产量.  相似文献   
5.
Ce(Ⅲ)对UV-B辐射胁迫下大豆幼苗光化学反应的影响   总被引:2,自引:0,他引:2  
李津津  李靖梅  周青 《环境科学》2007,28(6):1388-1391
用水培法研究Ce(Ⅲ)对UV-B辐射胁迫下大豆幼苗光化学反应的影响.结果表明, 20 mg·L-1 CeCl3使大豆幼苗净光合速率(Pn)、Hill反应、Mg2+-ATPase活性与光合磷酸化活力4项指标较对照提高23.2%~14.3%; 有效抑制UV-B辐射(T1=0.15 W·m-2和T2=0.45 W·m-2)胁迫下4项指标下降, 4项指标降幅[Ce(Ⅲ)+T1为36.6%~15.9%,Ce(Ⅲ)+T2为65.6%~33.2%]小于对应的UV-B辐射组(T1为50.9%~23.3%,T2为77.3%~51.4%). 动态变化显示, Ce(Ⅲ)减缓了胁迫期4项指标的下降趋势,促进了恢复期4项指标上升幅度. 说明Ce(Ⅲ)通过减轻UV-B辐射对大豆幼苗光化学反应的伤害, 遏制UV-B辐射胁迫下大豆幼苗Pn下降.  相似文献   
6.
钒对水稻种子萌发及幼苗生长的影响   总被引:1,自引:0,他引:1  
通过室内培养的方法,研究了不同浓度钒处理对金优63、T优259两个不同品种水稻种子萌发、幼苗生长及部分生理生化指标的影响。结果表明:低浓度的钒处理能在一定程度上促进两种水稻种子的萌发及幼苗的生长,但随着钒污染浓度的增高,逐渐受到抑制,且根长受影响的程度大于芽长。从生长和生理生化各指标变化情况来看,不同浓度钒处理下,两种水稻幼苗根系脱氢酶活性与叶绿素含量均呈先升后降的变化趋势。T优259对钒污染的抗性大于金优63。  相似文献   
7.
电感耦合等离子体质谱法直接测定酱油中的铅   总被引:4,自引:0,他引:4  
采用电感耦合等离子体质谱(ICP-MS)法直接测定酱油样品中的痕量铅,样品无需前处理与稀释,直接进行测定.外标法绘制工作曲线、在线内标法校准基体效应,方法简便、快速.根据所建立的方法,对实验室间比对实验的酱油考察样品进行了分析,测定值与参考值吻合,相对标准偏差为2.5%.用加标回收实验评价了该方法的准确性,回收率为94.2%-102%,结果令人满意.  相似文献   
8.
This article focuses on the optimization of the production of fatty acid ethyl esters from soybean oil using CaO-based heterogeneous catalysts. Three different catalytic promoters were evaluated: Magnesium, zinc, and potassium. The reaction has evaluated the promoter content (promoter to calcium molar ratio), catalyst load, alcohol to oil molar ratio, and temperature. Response surface methodology (RSM) was used to evaluate the influence of each variable on the yield of biodiesel. The addition of K2O or MgO in the catalyst has enhanced the yield in fatty acid ethyl esters, while the use of ZnO as a promoter was not successful.  相似文献   
9.
Experiments were carried out in two steps to determine the effect of anaerobically digested swine manure on soybean cyst nematode (SCN) egg control. In the first step, liquid swine manure underwent anaerobic digestion to search for the best digestion time for both volatile fatty acids (VFA) and ammonium nitrogen (NH4 +) enrichment. The results showed that about 17 and 28 days of incubation were needed, respectively, to reach the maximal levels of VFA and NH4 + in the manure. In the second step, raw, VFA-enriched, and NH4 +-enriched manure were applied separately, at four different rates (25, 50, 100, and 200 mL/pot), to soil pots inoculated with nematode eggs in a greenhouse environment. Soil samples were collected 35 and 61 days after inoculation to determine the effect of such treated manure on SCN egg productivity. The data indicated that the SCN egg counts were inversely related to the manure application rates in a linear manner with correlation coefficients of 0.998, 0.967, and 0.900 for raw, NH4 +-enriched, and VFA-enriched manure for the 35-day samples. While no such relationships were found for the 61-day samples, implying that none of the treatments were still effective 61 days after application. At the four application rates, the VFA-enriched manure performed best in reducing SCN egg counts (by 18.1, 19.5, 34.3, and 18.6%) as compared to the raw manure treatment. In contrast, the NH4 +-enriched manure achieved mostly negative reductions. To achieve the best control of SCN egg growth, the VFA-enriched manure should be used and applied to soybean fields every 35 days.  相似文献   
10.
Chiral herbicides may have enantioselective effects on plants. In this study, we assessed and compared the enantioselectivity of the chiral herbicides rac-metolachlor and S-metolachlor to maize seedlings. The superoxide dismutase activity (SOD) activity of roots and stem leaves treated by rac-metolachlor was 1.38 and 1.99 times that of roots and stem leaves treated by S-metolachlor. The peroxidase activity (POD) activity of roots and stem leaves was 1.48 and 2.79 times that of roots and stem leaves treated by S-metolachlor, respectively, while the catalase activity (CAT) activity was 4.77 and 8.37 times greater, respectively. The Hill reaction activity of leaves treated by rac-metolachlor were 1.45, 1.33, and 1.14 times those treated by S-metolachlor with treatments of 18.6, 37.2, and 74.4 μM. The differences observed between treatments of rac- and S-metolachlor were significant. Significant differences in maize seedling morphology were also observed between rac- and S-metolachlor treatments. The degradation rate of S-metolachlor in roots was greater than that of rac-metolachlor. The half-lives of rac- and S-metolachlor were 80.6 and 60.3 h at 18.6 μM; 119.5 and 90 h at 37.2 μM; and 169 and 164.8 h at 74.4 μM, respectively. Using the liquid chromatography-mass spectrometry method, hydroxymetolachlor, deschlorometolachlor and deschlorometolachlor propanol were considered to be possible metabolites. We determined the enantioselective toxicity of rac- and S-metolachlor to maize and speculated on the proposed metabolic pathway of metolachlor in maize roots. These results will help to develop an understanding of the proper application of rac- and S-metolachlor in crops, and give some information for environmental safety evaluation of rac- and S-metolachlor.  相似文献   
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