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851.
序言     
近年来,纳米材料的广泛使用使其大量进入环境.为保障纳米科技可持续发展,各国政府不断加大力 度,支持纳米环境健康安全领域的研究.例如,欧盟第六和第七框架计划将人体安全、健康和环境效应列为 最优先支持课题,投入达24亿欧元.之后制定了2015-2025纳米材料安全研究路线图,即《欧盟纳米安全 2015-2025:向安全和可持续的纳米材料和纳米技术创新迈进》(Nanosafety in Europe 2015-2025: Towards Safe and Sustainable Nanomaterials and Nanotechnology Innovations).  相似文献   
852.
853.
以福建省震害快速评估系统为依托,以分析处理现场实际调查数据为基础,提出了主要影响易损性分析结果的四个区域因素及其影响指数值、区域综合指数值,提供了各分区的划分依据、各分区影响指数值的评定标准以及区域综合指数值的计算方法,为合理应用不同地区之间的易损性矩阵或易损性曲线提供了参考依据。  相似文献   
854.
Platelet-activating factor acetylhydrolase (PAF-AH) derived from Trichoderma harzianum was upregulated by the interaction of T. harzianum with maize roots or the foliar pathogen Curvularia lunata. PAF-AH was associated with chitinase and cellulase expressions, but especially with chitinase, because its activity in the KO40 transformant (PAF-AH disruption transformant) was lower, compared with the wild-type strain T28. The result demonstrated that the colonization of maize roots by T. harzianum induced systemic protection of leaves inoculated with C. lunata. Such protection was associated with the expression of inducible jasmonic acid pathway-related genes. Moreover, the data from liquid chromatography-mass spectrometry confirmed that the concentration of jasmonic acid in maize leaves was associated with the expression level of defense-related genes, suggesting that PAF-AH induced resistance to the foliar pathogen. Our findings showed that PAF-AH had an important function in inducing systemic resistance to maize leaf spot pathogen.  相似文献   
855.
856.
泰乐菌素的微生物降解途径及其降解产物研究   总被引:1,自引:0,他引:1  
研究了越南伯克霍尔德氏菌(Burkholderia vietnamiensis)对泰乐菌素的降解能力,并通过对降解产物的分析,推测了泰乐菌素的微生物降解途径.在自主筛选驯化分离到1株泰乐菌素高效降解菌B.vietnamiensis的基础上,采用高效液相色谱法测定其在不同条件下降解泰乐菌素的能力,并利用制备液相色谱分离纯化降解产物,质谱鉴定其结构.实验结果表明:B.vietnamiensis能高度耐受并快速降解泰乐菌素,用B.vietnamiensis处理初始浓度为50、100、200、300、400或500 mg·L-1的泰乐菌素培养基7 d,泰乐菌素的降解率均达到99%以上.B.vietnamiensis降解泰乐菌素的可能途径是:泰乐菌素A首先脱去碳霉糖转化为泰乐菌素B,然后分子中内酯键和醛基再经水解和还原生成2个新的降解产物.研究结果为泰乐菌素微生物降解机制的研究以及在此基础上降解酶的确定提供有价值的技术参考.  相似文献   
857.
从石灰石-石膏湿法烟气脱硫工艺的流程、基本原理,研究了脱硫效率的影响因素:石灰石浆液pH值、钙硫比、液气比、吸收塔进口粉尘含量、烟气中SO_2浓度、烟气含氧量等烟气脱硫工艺条件对脱硫效率的影响。根据上述研究结果,从工艺及设备运行角度探讨如何控制适宜的工艺条件,优化提高石灰石-石膏湿法烟气脱硫工艺的脱硫效率,使烟气中SO_2排放浓度控制在25 mg/m~3左右,达到GB 13223—2011《火电厂大气污染物排放标准》中SO_2小于200 mg/m~3的排放标准。  相似文献   
858.
Heavy metal concentrations in muscle and their relation to thegrowth of two marine fish species,including tonguefish( Cynoglossus arel) and mullet( Mugil cephalus),were studied. The samples were collected in Bach Dang estuary andconcentrations of heavy metals( As,Cd,Co,Mn,Cu,Zn,Pb,and V) in muscle of the fisheswere determined. The result showed that the accumulated trend of heavy metal is different between fish species. The concentration of As,Zn,Mn,V,Cu,Pb,Co and Cd in tonguefish were 73. 7 ± 30. 6,22. 82 ± 4.87,3. 44 ± 2. 13,1. 61 ± 0. 15,0. 71 ± 0. 13,0. 45 ± 0. 24,0. 03 ± 0. 02 and 0. 02 ± 0. 02 mg·g-1,respectively. Meanwhile the concentration of Zn,As,V,Mn,Cu,Pb,Co and Cd in mullet were 83. 41 ±19. 68,9. 78 ± 1. 92,1. 36 ± 0. 54,1. 29 ± 0. 51,0. 65 ± 0. 12,0. 42 ± 0. 20,0. 06 ± 0. 03 and0. 03 ± 0. 01mg·g-1,respectively. Comparison of metal levels among thesespecies indicated that the concentrations of As and Mn in tonguefish were significantly higher than those in mullet,whereas Zn levels in mullet were found to be higher than that in tonguefish. There is no significant differences of Cd,Co,Cu,Pb and V levels in muscle between two species. Significant inversed relationshipsbetween concentration levels of metals and lengths of tonguefish were found for Mn,Cu and Zn,butnot for As,Cd,Pb,and V. There were no significant relationships between the heavy metal concentrations and the length of mullet. In general,decreasesof the heavy metal concentrations corresponded to the increases of fish body lengths,particularly for As,Co,Cu,Mn and V and the exception for Cd. Terefore reduced risks were associated with consuming biggermullet fish,and increased risks of As and Cd were associated with consuming bigger tonguefish in Bach Dang river mouth.  相似文献   
859.
Oil gelling agents are widely used in emergency response of marine oil spills. However, the biological toxicity of oil gelling agents is not well understood. This research aimed to evaluate the environmental safety of oil gelling agents used for rapid removal and cleanup of marine oil spills. We used luminescent bacteria (Acinetobacter sp. Tox2 and Acinetobacter sp. RecA) combined with exposure experiment using marine medaka (Oryzias melastigma) juveniles to detect the acute toxicity and genotoxicity of 10 oil gelling agents. As a result, a certain level of acute toxicity was detected from the oil gelling agent FOA and GMN-01 (the toxicity equivalent to 0.067 mg/L and 0.084 mg/L of HgCl2, respectively), and a certain level of genotoxicity was detected from the oil gelling agent NORSOREX (the toxicity equivalent to 0.307 mg/L of MMC) by the luminescent bacteria test. However, no obvious acute toxicity or genotoxicity was detected from the above three oil gelling agents in fish-exposure experiments. Our results suggest that the 10 oil gelling agents have no obvious acute toxicity or genotoxicity to higher organisms (including marine medaka). The luminescent bacteria test is more sensitive in detecting biological toxicity of oil gelling agents. This study provides a reference for environmental safety evaluation of the oil gelling agents used in the cleaning up of the marine oil spills.  相似文献   
860.
NaCl胁迫下苋菜中镉的亚细胞分布及转运研究   总被引:2,自引:0,他引:2  
中国大面积的农田土壤面临盐渍化和重金属的双重污染。探索盐分胁迫下作物可食部分的重金属累积特征将为保障农产品安全提供科学依据。本文主要从镉的亚细胞分布和离子选择性角度探讨盐分胁迫对苋菜(Amaranthus mangostanus L.)镉转运过程的影响。本试验采用水培苋菜的方式,添加不同质量浓度(0、2.5、5.0、7.5和10.0 g·L-1)NaCl和3.0μg·L-1Cd处理,测定台湾白苋菜(耐盐型)和尖叶青苋菜(敏感型)根、茎、叶中Cd和Ca的亚细胞质量分数变化。Cd的亚细胞组分质量分数由大到小顺序均为:细胞壁(FI)>细胞器(FII)>>细胞液(FIII)。NaCl胁迫下,苋菜根、茎、叶中细胞壁(FI)和细胞器(FII)Cd质量分数总体显著下降,下降幅度为16%~71%,胞液(FIII)Cd质量分数基本不变,这主要和Na的竞争吸附和吸收有关。同时耐盐型台湾白苋菜根细胞器,茎、叶细胞壁和细胞器Ca质量分数总体下降,下降范围为20%~70%。敏感型尖叶青苋菜根、茎细胞壁和细胞器组分Ca质量分数均显著下降,叶细胞壁Ca质量分数下降幅度高达80%,说明细胞壁和质膜的生理结构和组成可能发生了变化;另一方面,苋菜的运输选择性比例TSK. Na(根-茎)、TSCa. Na(根-茎)和TSMg. Na(根-茎)显著下降,下降幅度达50%以上,TSK. Na(茎-叶)、TSCa. Na(茎-叶)和TSMg.Na(茎-叶)相较对照急剧上升,上升幅度均在44%以上,表明苋菜根部K、Ca、Mg向茎转移的选择性减弱;而茎向叶转移的选择性增强。苋菜细胞组成和离子选择性的变化使根、茎中细胞壁和细胞器对Cd的截留能力变差,Cd向地上部转移的比例增大,Cd在苋菜的转运系数TF(根-茎)、TF(茎-叶)较对照处理呈现不同程度的上升。台湾白苋菜的TF(根-茎)大于尖叶青苋菜,而TF(茎-叶)小于尖叶青苋菜,表明敏感型苋菜茎细胞对Cd截留能力较强,而耐盐型苋菜根细胞对Cd的截留能力较强。  相似文献   
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