首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   34篇
  免费   3篇
  国内免费   13篇
环保管理   2篇
综合类   24篇
基础理论   17篇
污染及防治   6篇
评价与监测   1篇
  2023年   2篇
  2022年   2篇
  2021年   4篇
  2020年   4篇
  2019年   1篇
  2018年   1篇
  2017年   2篇
  2016年   1篇
  2015年   4篇
  2014年   2篇
  2013年   11篇
  2012年   4篇
  2011年   2篇
  2010年   2篇
  2008年   1篇
  2006年   1篇
  2003年   1篇
  1999年   1篇
  1997年   1篇
  1995年   2篇
  1987年   1篇
排序方式: 共有50条查询结果,搜索用时 16 毫秒
1.
四溴双酚A在污水脱氮除磷过程中迁移转化试验研究   总被引:1,自引:0,他引:1  
四溴双酚A(TBBPA)是一种使用广泛的阻燃剂,其扩散到环境介质中,会对生态和人体健康构成威胁,以往研究较少关注TBBPA在脱氮除磷工艺中的迁移转化.采用实验室SBR脱氮除磷反应器,研究了TBBPA在工艺长期运行过程中的去除、在典型周期过程中的变化、在硝化和反硝化过程中的去除.TBBPA在工艺长期运行过程中的去除率为48.4%,其中生物去除率为44.4%,吸附去除率为4.0%.在典型周期中TBBPA浓度受pH影响很大.TBBPA在硝化过程的去除主要是生物作用,而在反硝化过程的去除主要是吸附作用.  相似文献   
2.
T-2毒素的毒性效应及致毒机制研究进展   总被引:2,自引:0,他引:2  
T-2毒素是由多种镰刀菌产生的单端孢霉烯族化合物中毒性较强的一种毒素,广泛存在于谷物和谷类食品中.经食物连续摄入T-2毒素会对人类和动物的健康造成潜在危害.目前,T-2毒素对人和动物健康的影响受到了社会的广泛关注,已成为毒理学领域研究的热点课题之一.在综述了T-2毒素的生物转化、代谢途径及其毒理学效应与机制基础上,对现...  相似文献   
3.
The aim of this study was to characterize biomarker responses in three-spined sticklebacks exposed to prochloraz (Pcz). For this purpose, adult sticklebacks were exposed for 2 weeks to prochloraz at 0, 10, 50, 100 and 500 μg/L prior to one week of depuration in clean water. At days 7, 14 and 21, several hepatic biomarkers were measured including 7-ethoxyresorufin-O-deethylase (EROD), glutathione-S-transferase (GST), glutathione peroxidase (GPx), catalase (CAT), total glutathione (GSH) content and thiobarbituric acid reactive substances (TBARS). Pcz induced a transient increase of antioxidant enzymes and a depletion of glutathione content during the first 7 days of exposure. This study showed that EROD activity and antioxidants were disrupted in a transient manner. GST was rapidly induced in a dose-dependent manner and this induction was persistent and observed also after depuration. GST appeared as a valuable biomarker to assess the exposure to Pcz.  相似文献   
4.
Phlebia acanthocystis TMIC34875是一株具有七氯降解能力的木材腐朽菌。为利用微生物技术去除环境中的七氯残留提供理论依据,研究了该菌株及其粗酶液对七氯的降解性能及其动力学特性。结果表明,菌株在七氯的初始浓度为50μmol/L时具有最大降解速率,为0.3031μmol/(L·h);而菌体接种量为15%时,降解速率达到最高,为0.2045μmol/(L·h)。降解酶定位研究表明,七氯的降解主要是胞内酶在起作用。七氯胞内酶降解的酶促反应最适温度是35℃,在30-40℃之间有较高的催化活性;最适pH值为5.0,在pH 4.5-6.0之间有较高的催化活性,最适条件下反应1 h后七氯的降解率为65%。胞内粗酶液降解七氯的米氏常数K m为5.42μmol/L,最大反应速率V max为4.55μmol/min。胞内酶处理体系的GC/MS图谱显示,主要降解产物为1-羟基六氯、1-羟基-2,3-环氧六氯和环氧七氯,表明胞内酶对七氯的初始代谢机理同菌株相似,均是通过环氧化和置换反应来完成的。  相似文献   
5.
聚氨酯泡沫固定化产碱杆菌细胞生物转化氰化物   总被引:7,自引:1,他引:6  
利用1株产碱杆菌DN25作为降氰菌株,以聚氨酯泡沫为载体进行固定化,研究其转化特性.结果表明,采用吸附生长法能有效实现菌株DN25的固定,固定细胞量可达到每g泡沫载体生物量干重0.35g.固定化细胞的最适转化温度和pH为35℃、8.0.对于低浓度氰化物,固定化细胞和游离细胞的转化速率相当;对于高浓度氰化物,固定化细胞具有明显优势,不仅可耐受更高浓度的氰化物转化,其转化速率也高于游离细胞,最大转化速率为507mg/(L·h),是游离细胞的2.8倍.通过初步的摇瓶模拟序列批式反应,固定化细胞活性可保持20d.  相似文献   
6.
7.
The acute toxicity (96 h) of pyrene (PY) to European seabass (Dicentrachus labrax) juveniles assessed in a semi-static bioassay (SSB) with medium renewal at each 12 h, and in a static bioassay (SB) without medium renewal was compared in laboratorial conditions (water PY concentrations: 0.07-10 mg L−1). Main findings in the SSB that assessed mainly the toxicity of PY and its metabolites were: increased levels of bile PY metabolites in good agreement with the profile of lipid peroxidation levels (LPO) in exposed fish relating PY exposure and oxidative damage; increased levels of PY-type compounds in the brain indicating their ability to cross the blood-brain barrier; increased levels of these substances in liver and muscle which are edible tissues for humans thus raising concern on potential adverse effects on consumers of fish from PY contaminated areas; a significant inhibition of glutathione S-transferase activity suggesting its involvement in PY detoxication as toxicant scavenger; finally, an almost complete impairment of the swimming velocity at all the PY concentrations linking sub-individual to higher population level effects. In the SB, where the overall toxicity of PY, its metabolites and environmental degradation products was evaluated, 19% and 79% of PY decay in test media was found at 12 and 96 h, respectively. In general, the effects were similar to those of SSB but with significant effects being induced at higher PY concentrations indicating that the parental compound is more toxic than its environmental degradation products. The other main differences relatively to the SSB were: increased levels of PY-type substances in the liver suggesting more accumulation in this organ. Therefore, these findings highlight the need of carefully considering experimental design options when assessing the toxicity of readily degradable substances to marine fish, and stress the importance of taking into consideration the toxicity of environmental degradation products in addition to toxic effects of the parental substance and its metabolites for marine ecological risk assessment.  相似文献   
8.
运用Orbitrap高分辨质谱仪,评估了人体肝微粒体(HLM)代谢V6的转化规律.除5种已被报道过的O-脱烷基、氧化性去磷酸化和氧化脱氯产物外,首次发现了6种新型产物.基于其MS/MS质谱图,该6种代谢产物被鉴定为醛基和羧基产物.其中,5种代谢物生成量随孵育时间呈线性增加趋势,具有累积性.此外,推导的代谢途径表明,脱烷基化和羟基化代谢物进一步转化为次级代谢物,即醛和羧基代谢物.  相似文献   
9.
微生物转化生产L-苯基乙酰基甲醇(L-PAC)研究进展   总被引:3,自引:0,他引:3  
L-苯基乙酰基甲醇(L-Phenylacetylcarbinol,L-PAC)在制药业中被用作前体来合成L-麻黄素(L-ephedrine)、D-伪麻黄素(D-pseudoephedrine),在医学上,麻黄素可用来治疗低血压和哮喘,并有利尿之功效[1].近些年有报道指出,L-麻黄素可用于减肥[2].另外,L-PAC还可以用于合成安非他明(ampheta-mine),苯丙胺和苯胺等药物[3].  相似文献   
10.
Studies were carried out to investigate the metabolism of herbicide chlortoluron in the microsomal fractions and whole cells of Saccharomyces cerevisiae expressing human cytochrome P450 3A4. Both whole cells and microsomal fractions of yeast expressing human cytochrome P450 3A4 exhibited a typical dithionite-reduced, CO-difference absorbance spectrum with maximum absorbance at 448 nm. Chlortoluron produced a type I binding spectrum with cytochrome P450 3A4 with a Ks value of 200 μM. Chlortoluron was metabolised into four metabolites; hydroxylated-N-monodemethylated, hydroxylated ring methylated, N-didemethylated and N-monodemethylated products. Chlortoluron metabolism was absolutely dependent on NADPH and no metabolism was observed in control transformants.  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号