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11.
The mixture of five yeast strains obtained from soil could remove about 85% TOC of oil-rich wastewater in batch test.While the highest MLSS was obtained at an N:C of 1:5,the oil removal decreased with the increase of N:C during yeast sludge cultivation.Ammonium chloride was the best nitrogen source for yeast cultivation from the viewpoint of yeast growth and oil utilizxation.An ammonia concentration of over 1300 mg/L led to mass death of yeast at a pH of 5.The ammonia concentration should be controlled at a level of 1000 mg/L or lower. 相似文献
12.
影响土壤重金属生物毒性的若干因子 总被引:6,自引:0,他引:6
本文应用发光细菌法探讨了土壤类型、粘土矿物、无定形金属氧化物、吸附剂对重金属纯溶液以及重金属污染土壤的降毒效应.红壤、砖红壤对Cu、Cd、Pb呈现负的降毒效应,而对As具有明显的降毒作用.黑土、黄棕壤对供试阳离子金属具有明显的降毒效应,对As降毒却不明显.试验证明粘土矿物及其组成是影响土壤重金属毒性的最基本因素.无定形氧化锰对供试阳离子金属的降毒能力大于无定形氧化铁,对As的效应二者则相反.不同吸附剂对Cu、Cd、Pb呈现基本相同的降毒顺序,即炉烟灰>活性炭>泥炭>干活性污泥,不同配比吸附剂对红壤添加性阳离子和东乡铜矿污染土壤均具有明显的降毒作用.添加吸附剂的东乡铜矿污染土壤随着土壤溶液毒性的消除,随之也消除或减轻了其对水稻种芽的急性毒害. 相似文献
13.
乐果对金鱼的急性毒性影响 总被引:2,自引:0,他引:2
用改进的寇氏法(karber)测定了乐果对金鱼(Carassius auratus)的急性毒性。急性试验经150mg/L、188.4mg/L、234.4mg/L、291.7mg/L、360mg/L乐果暴露4d,在15%~20%下,24、48、72、96h的L11m值分别为297.17、289.13、259.12、238.67mg/L,其95%置信限分别为284.25~310.67、275.17~303.81、243.33~275.93、223.98~254.33mg/L。 相似文献
14.
通过对某市饮用水源中不同点位的三卤甲烷浓度测试,同时采用SOS/ Umu 试验对水体进行生物遗传毒性分析,结果表明:采用液氯消毒工艺的地表水厂在消毒后水样和用户端水样中检出的三卤甲烷含量较高,而采用二氧化氯消毒的地下水厂的出水中挥发性有机物仅略有上升;进行三卤甲烷浓度和生物遗传毒性之间的相关性分析得知,三卤甲烷和间接遗传毒性的相关性较好. 相似文献
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17.
荧光光谱法研究丙酮与牛血清白蛋白的相互作用特征 总被引:6,自引:0,他引:6
在模拟动物体生理条件和不同温度下,用荧光光谱、三维荧光光谱、同步荧光光谱、紫外可见吸收光谱法等研究了丙酮(ACET)与牛血清白蛋白(BSA)的相互作用,证实了丙酮有很强的猝灭BSA荧光强度的能力.分别用Sterr-Volmer方程、Lineweaver-Burk双倒数方程和热力学方程等分析和处理试验数据,得到了它们相互作用的生成常数KLV(平均值为7.073×106L·mol-1)、热力学参数(△Hθ、△Gθ和△Sθ的平均值分别为-3.982kJ·mol-1、-26.51 kJ·mol-1和73.31J·K-1)和结合位点数(平均值为1.266)等.这为研究ACET对BSA构象的影响、ACET的毒理效应和生物学效应提供了重要信息. 相似文献
18.
CHANG Guo-hua CHEN Hao CHEN Hai-liu LI Wei PAN Gang State Key Laboratory of Environmemal Aquatic Chemistry Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing China. 《环境科学学报(英文版)》2007,19(9):1028-1031
Toxic effect of Zn(Ⅱ)on a green alga(ChloreUa pyrenoidosa)in the presence of sepiolite and kaolinite was investigated.The Zn-free clays were found to have a negative impact on the growth of C.pyrenoidosa in comparison with control samples(without adding any clay or Zn(Ⅱ)).When Zn(Ⅱ)was added,the algae in the presence of clays could be better survived than the control samples,which was actually caused by a decrease in Zn(Ⅱ)concentration in the solution owing to the adsorption of Zn(Ⅱ)on the clays.When the solution system was diluted,the growth of algae could be further inhibited as compared to that in a system which had the same initial Zn(Ⅱ)concentration as in the diluted system.This in fact resulted from desorption of Zn(Ⅱ)from the zinc-contaminated clays,although the effect varied according to the different desorption capabilities of sepiolite and kaolinite.Therefore the adsorption and desorption processes of Zn(Ⅱ)played an important part in its toxicity,and adsorption and desorption of pollutants on soils/sediments should be well considered in natural eco-environmental systems before their risk of toxicity to aquatic organisms was assessed objectively. 相似文献
19.
环境中铬污染的生态效应及其防治 总被引:14,自引:0,他引:14
从生态效应的角度介绍了重金属铬在环境中的迁移、转化规律,重点论及了铬污染对人体健康厦水生生物等其他生物的影响、对水体自净作用的影响,指出Cr^6+的生态效应远比Cr^3+大的多。目前治理含铬工业废水和受铬污染土壤几种有效方法,旨在引起人们对环境中铬污染的生态效应产生足够的重视和防范。 相似文献
20.
Rai S. Kookana Raymond L. Correll Rosalind B. Miller 《Water, Air, & Soil Pollution: Focus》2005,5(1-2):45-65
Pesticide users, natural resource managers, regulators, government agencies and many others are concerned about the off-site
impact of pesticides on the environment. Systematic methods of the assessment of potential risk of pesticides to environmental
components can serve as valuable tools in decision making and policy formulation. Simple risk indicators have been developed
which cover a range of scenarios such as toxicity to organisms, health of farm workers, consumer health, and residues in harvested
produce. The authors have developed a software package named Pesticide Impact Rating Index (PIRI) that outputs an improved
pesticide risk indicator for water quality. PIRI is a standalone, user-friendly, platform-independent program. It can be used
to (i) rank pesticides in terms of their relative pollution potential to groundwater or surface water, and (ii) to compare
different land uses in a catchment or at a regional scale in terms of their relative impact on water quality. It is based
on pesticides use; the pathway through which the pesticides are released to the water resources (drift, runoff, erosion, leaching)
and the value of the water resources threatened. Each component is quantified using pesticide characteristics (including toxicity
to organisms at different trophic levels, i.e. fish, daphnia, algae, etc.), environmental and site conditions (e.g. organic
carbon content of soil, water input, slope of land, soil loss, recharge rate, depth of water table, etc.). This paper describes
two case studies of the application of PIRI in Australia. The comparison of the risk assessment by PIRI on these revealed
that PIRI correctly estimated the pollution potential of pesticides in greater than 80% of cases. A GIS version of PIRI is
described in a companion paper in this volume.
An erratum to this article is available at . 相似文献