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541.
采用藻类生长抑制实验测定了苯酚、2,4-二氯酚与6种苯胺衍生物对斜生栅列藻的单一毒性和二元混合物的联合毒性,得到化合物单独存在时的半抑制浓度EC50和共存时的半抑制浓度EC50mix。采用毒性单位法、相加指数法、混合毒性指数法和相似性参数法进行联合毒性评价,结果表明:苯酚+2,4-二氯胺、苯酚+二苯胺及苯酚+苯胺等毒性混合时主要表现为协同作用;而其它二元混合物采用不同方法评价联合毒性结果有差异。当苯酚与苯胺按照不同毒性配比混合时(1︰4,4︰1,1︰1,2︰1),表现为协同作用。以辛醇/水分配系数法为结构描述符,分别建立了单一毒性和联合毒性的定量构效关系(QSAR)模型。结果表明,苯酚、2,4-二氯酚与苯胺类化合物对斜生栅列藻的毒性主要与化合物在生物体内的分配作用有关。 相似文献
542.
以斑马鱼(Danio rerio)为受试动物,研究了四种环境雌激素-17β-雌二醇(E2)和三种增塑剂(DMP、DBP、DOP)对其内脏团的氧化损伤及应激效应。经急性毒性实验,得到E2、DMP、DBP、DOP对成体斑马鱼96 h的半数致死浓度(LC50)分别为2.51、12.33、9.67、9.89 mg·L-1。在此基础上分别设置5个浓度梯度,研究E2(暴露2 d,4 d)、DMP、DBP、DOP(暴露4 d)对斑马鱼内脏团的超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、谷胱甘肽硫转移酶(GST)活性以及丙二醛(MDA)含量的影响。结果表明,SOD、CAT、GST、MDA对这四种环境激素都非常敏感,其中SOD、CAT、GST活性的影响均呈现先诱导后抑制的趋势,而MDA含量则随着污染物浓度的升高而增加。高浓度暴露条件下,E2(0.4 mg·L-1)和DMP、DBP、DOP(0.8 mg·L-1)对SOD、CAT、GST活性均有显著抑制(p0.05),MDA的含量有显著升高(p0.05)。可见,E2、DMP、DBP、DOP会导致斑马鱼内脏团氧化损伤,并且在同等浓度下E2的毒性明显高于三种增塑剂。 相似文献
543.
用甲基橙作为胁迫因子,研究了甲基橙对稀脉萍叶片过氧化物酶活性、可溶性蛋白含量和叶绿素含量的影响,并采用稀脉萍去除甲基橙。结果表明:随着甲基橙浓度的增加,过氧化物酶活性呈先上升后下降的趋势,当甲基橙浓度为140mg/L时,过氧化物酶活性达到最高值。当甲基橙浓度>100mg/L,可溶性蛋白含量急速下降。叶绿素含量和叶绿素a/b比值均随甲基橙浓度的升高而降低。当甲基橙浓度为20 mg/L时,稀脉萍对甲基橙的去除需经10 d的延滞期,24 d后去除率达89.6%。 相似文献
544.
水中普萘洛尔的紫外光降解机制及其产物毒性 总被引:1,自引:1,他引:0
以高压汞灯为光源,研究了紫外光照条件下水中普萘洛尔(PRO)的光解行为、机制及安全性.PRO光解机制通过活性氧物种(ROS)猝灭实验来确定,光解产物安全性通过发光菌毒性实验来评价.结果表明,PRO的光解速率常数(k)随初始浓度的增加而下降,两者呈显著负相关关系(r2>0.95).随着溶液初始pH的升高,PRO的光解加快,pH 5~9的PRO溶液的k值为0.0953~0.267 min-1.ROS猝灭实验表明,PRO的紫外光解过程包括了激发三重态PRO(3PRO*)参与的直接光解,以及羟基自由基(·OH)和单线态氧(1O2)参与的自敏化光解,直接光解速率常数大于自敏化光解速率常数.采用FFA探针方法测定了不同实验条件下1O2的浓度,其总体变化规律与猝灭实验所得结论一致.发光菌毒性实验表明,PRO光解生成了比母体化合物毒性更强的中间产物. 相似文献
545.
异丙甲草胺与锌共存对斜生栅藻毒性手性差异影响 总被引:2,自引:2,他引:0
为评价重金属与手性农药共存的生物选择性毒性,采用毒性试验标准方法研究了Rac-、S-异丙甲草胺单独及与锌共存对斜生栅藻的手性毒性差异.结果表明,Zn2+存在条件下Rac-、S-异丙甲草胺对斜生栅藻的生长趋势影响与除草剂单独作用时的趋势基本相同,Zn2+的存在降低了高浓度除草剂对斜生栅藻的生长抑制作用,处理初期(24 h)0.30 mg·L-1Rac-和S-异丙甲草胺单独对斜生栅藻生长的抑制率分别为49.61%和59.73%,与Zn2+联合作用其抑制率分别为38.41%和42.52%.Zn2+的存在增加了Rac-和S-异丙甲草胺对斜生栅藻的立体选择性毒性差异,使S-异丙甲草胺急性毒性增大的程度大于Rac-异丙甲草胺毒性的增加;与Zn2+的联合毒性作用类型表现为除草剂在低浓度下为部分相加作用,高浓度下为拮抗作用;除草剂单独及与Zn2+联合作用处理96 h后的斜生栅藻叶绿素含量变化与其生长趋势基本一致. 相似文献
546.
Jin Y. Fan Jin J. Geng Hong Q. Ren Xiao R. Wang Chao Han 《Journal of environmental science and health. Part. B》2013,48(10):844-850
Roundup® is a glyphosate-based herbicide containing a mixture of surfactants. This paper evaluates the toxic effects of Roundup® and its main constituents on the goldfish, Carassius auratus, after 7 days exposure. Fish were exposed to 0.16, 0.032 and 0.0064 mg/L of Roundup® [containing 41% isopropylamine salt of glyphosate (G.I.S) and 18% polyoxyethylene amine (POEA)], G.I.S, and POEA. Their livers were taken for determining reactive oxygen species (ROS), superoxide dismutase (SOD) activity, malondialdehye (MDA) content and acetylcholinesterase (AChE) activity. Hydroxyl radical (·OH) could be induced by exposing Roundup® at a rate of 43%–111%, G.I.S at 90%–124% and POEA at142%–157%. A decreased SOD activity was observed in fish exposed to G.I.S and POEA. The contents of MDA significantly increased when exposed to Roundup® at all concentrations, 0.16 mg/L G.I.S and 0.032 mg/L POEA. The exposure led to an inhibition of AChE in livers overall during the experimental periods. POEA was more toxic than Roundup® or G.I.S during this experiment. AChE and ·OH are supposed to be sensitive biomarkers of the exposure of Roundup® and its main constituents to C. auratus. 相似文献
547.
Kenneth E. Johnson Anthony L. Pometto III L. Somasundaram Joel Coats 《Journal of Polymers and the Environment》1993,1(2):111-116
Six types of starch-polyethylene degradable plastics were evaluated for the release of water-soluble toxic compounds under accelerated degradation conditions. A plastic strip (2.5×15.2 cm) was placed in a 250-ml Erlenmeyer flask with 100 ml of ASTM type I water with or without trace element solutions and shaken at 65°C and 110 rpm for 20 weeks in replicates of two. High temperature was used to accelerate the oxidative degradation of polyethylene. Plastic degradation was measured by loss of tensile strength, percentage elongation, strain energy, and weight-average molecular weight. The most rapid period of polyethylene thermal degradation was complete for most materials by day 28. Ten-milliliter aqueous samples were removed from each flask at days 1, 7, 28, 56, 84, and 140 (water volumes were maintained at 100 ml with fresh type I water), filtered through glass filters, then evaluated by using the Microtox Toxicity Analyzer (Microbics Corporation, Carlsbad, CA). No water-soluble toxic compounds were detected during the period of rapid film degradation. Toxicity was observed at day 28 for one film and at day 84 for all films, which could possibly correlate with the release of small oxidative compounds such as formaldehyde and acetaldehyde. Because of the sensitivity of this assay, positive results must be confirmed by otherin vitro studies.Journal Paper No. J-14851 of the Iowa Agriculture and Home Economics Experiment Station, Ames, Iowa. Projects No. 2889 and 0178. 相似文献
548.
549.
John Cairns 《Journal of the American Water Resources Association》1986,22(5):841-842
ABSTRACT: Direct measurement of response thresholds of complex biological systems to toxic chemicals is now possible using microcosms and other simulation techniques. Extrapolation to no-observable response using application factors and data from single species toxicity tests is less precise than direct measurements. 相似文献
550.
Marine sediment toxicity tests are widely applied in monitoring programs, yet relatively little is known about the comparability of data from different laboratories. The need for comparability information is increased in cooperative monitoring programs, where multiple laboratories (often with variable skill levels) perform toxicity tests. An interlaboratory comparison exercise was conducted among seven laboratories in order to document the comparability of sediment toxicity measurements during the Bight'98 regional sediment survey in southern California. Sediments from four stations in Los Angeles and Long Beach Harbors were tested using a 10-day survival test of the amphipod Eohaustorius estuarius. All laboratories successfully performed the sediment test and associated reference toxicant test. Statistically significant differences were found in mean amphipod survival rates among some laboratories for the field-collected sediments, but there was little evidence of a consistent bias among laboratories. Although the reference toxicant test indicated a five-fold variation in test sensitivity among laboratories, these results were not accurate predictors of interlaboratory performance for the sediment tests. The laboratories demonstrated excellent concordance (Kendall's W = 0.91) in ranking the field-collected sediments by toxicity. Agreement on classifying the sediments into categories (nontoxic, moderately toxic, and highly toxic) based upon the percent of survival was best for highly toxic sediments. An analysis of test precision based upon the variance among replicates within a test indicated that the measured survival rate for a sample may vary by up to 12 percentage points from the actual response. 相似文献