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81.
为初步探讨农药对海胆胚胎的急性毒性效应,以虾夷马粪海胆(Strongylocentyotus internedius)为实验材料,研究了8种常见农药--草甘膦(Glyphosate)、百草枯(Paraquat)、异菌脲(Iprodione)、代森锰锌(Mancozeb)、三唑醇(Triadimenol)、霜霉威(Propamocarb)、百菌清(Chlorothalonil)和速克灵(Procymidone)对海胆胚胎各发育期(二细胞期、四细胞期、上浮囊胚期、原肠期、棱柱幼体期、四腕幼虫期)的半数效应浓度(EC50),并分析了正辛醇/水分配系数(LogP)与EC50的关系.结果显示:1)8种农药对海胆胚胎各发育期均具有一定的急性毒性,以四腕幼虫期为例,8种农药的EC50值分别为草甘膦(3.99mg·L-1)>百草枯(10.38mg·L-1)>代森锰锌(20.77mg·L-1)>速克灵(55.42mg·L-1)>霜霉威(56.09mg·L-1)>异菌脲(86.29mg·L-1)>三唑醇(273.20mg·L-1)>百菌清(647.38mg·L-1).2)LogP与EC50呈现一定的正相关性,即随着LogP的增加,各农药对海胆胚胎的抑制率逐渐降低. 相似文献
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研究了粘土和明矾去除饮用水中氟离子的机理,探讨了pH值、溶液温度、氟离子浓度和吸附时间对粘土吸附饮用水中氟离子的影响.结果表明,粘土对饮用水中氟离子具有较好的吸附效果,是较为理想的饮水除氟材料. 相似文献
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随着改革开放进一步扩大和经济建设的持续快速发展,我国再生资源回收利用事业得到了较快发展。但是,再生资源产业存在着市场混乱、法律政策不完善及综合利用水平低等问题。通过对我国再生资源现状分析对我国再生资源产业发展作了展望。 相似文献
87.
为系统地实施污染控制和生态保护措施,国家环保总局从2005年起组织开展"长江口及毗邻海域碧海行动计划"调查与研究工作.评估行动计划实施效果,开展海域水质和生态动力学模型研究是十分必要的.在长江口及毗邻海域流场、盐度场、温度场和泥沙场模型的基础上建立了二维水质模型,主要模拟指标为高锰酸盐指数、氨氮、无机氮、无机磷,通过2005年夏季和秋季实测水质资料进行了模型的验证和率定,确定了污染物的综合降解参数,利用二维水质模型进行设计水文条件下33个概化排污口控制污染物的水质响应系数场的模拟计算,为海域容量计算和总量分配奠定了基础.建立了长江口及毗邻海域三维生态动力学模型,利用三维生态模型对应用水质模型计算得出的总量控制方案进行了校验模拟.结果表明实施全海区功能达标控制方案后,原赤潮易发区叶绿素浓度值显著降低,叶绿素高浓度区域面积基本消失,中高浓度区域的面积也由现状方案约1万km2减少了90%. 相似文献
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Soybean [ (L.) Merr.] stalk-based carbons were prepared by phosphoric acid activation at different carbonization temperatures. Characteristics of the prepared carbon, including specific surface area, iodine number, and amount of methylene blue sorption, were determined. Experiments on phenanthrene, naphthalene, and acenaphthene, as representatives of polycyclic aromatic hydrocarbons (PAHs), removal from aqueous solution by the prepared carbon were conducted at different levels of carbon addition. The results indicated that the specific surface area, iodine number, and amount of methylene blue sorption increased with an increase of carbonization temperature. The maximum values were observed at 700°C and were 287.63 m g, 508.99 mg g, and 90.14 mg g, respectively. The removal efficiencies of phenanthrene, naphthalene, and acenaphthene tended to increase with increasing carbon amounts and carbonization temperature. The optimal removal performance was obtained under the experimental conditions of carbon concentrations of 0.04 g 32 mL and carbonization temperature of 700°C, and the removal efficiencies of phenanthrene, naphthalene, and acenaphthene were 99.89, 100, and 95.64%, respectively. The performance of the prepared carbon was superior to that of commercial activated carbon. Additionally, for the same carbon concentrations, the removal efficiency of PAHs on prepared carbons followed the order: phenanthrene > naphthalene > acenaphthene. Results obtained from this work provide some insight into the reuse of an agricultural residue, and also provide a new application for the treatment of PAHs in contaminated water utilizing activated carbon prepared from agricultural residues. 相似文献
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Xu H Bi XH Feng YC Lin FM Jiao L Hong SM Liu WG Zhang XY 《Environmental monitoring and assessment》2011,183(1-4):581-592
To understand the origin and chemical characteristics of precipitation in Hangzhou, rainwater samples were collected from June 2006 to May 2008. All samples were analyzed for pH, electrical conductivity, and major ions (NH??, Ca2?, Mg2?, Na?, K?, SO?2?, NO??, F?, and Cl?). Acidification of precipitation in Hangzhou was serious with volume-weighted mean pH value of 4.5, while frequency of acid rain was 95%. The calculated SO?2?/NO?? ratio in Hangzhou precipitation was 2.87, which indicated that the precipitation of Hangzhou belonged to sulfate-based acid rain. The results of acid neutralization analysis showed that not all the acidity in the precipitation of Hangzhou was neutralized by alkaline constituents. The results of sea salt contribution analysis showed that nearly all SO?2?, Ca2?, and Mg2? and 33.7% of K? were of non-sea origins, while all Na? and Cl? and 66.3% of K? originated from sea sources. The principal component analysis which was used to analyze the sources of various ions indicated that chemical compositions of precipitation in Hangzhou mainly came from terrestrial sources, factory emissions, fuel wood burning, and marine sources. 相似文献