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901.
克氏原螯虾亚成体和幼体对不同氨浓度水环境的选择   总被引:1,自引:0,他引:1  
以NH4Cl为主要成分配比成不同浓度的氨溶液,以Y型水迷宫为水环境的选择实验装置,从克氏原螯虾的行为学角度出发,探究其对不同浓度氨溶液的趋避选择性。实验共设置5个浓度梯度:4750、7125、9500、14250和19000 mg/L,其pH值为70,水温为20±05℃。以体长为501±043 cm的克氏原螯虾亚成体及体长为075±015 cm的幼体为实验对象,在Y型水迷宫中的两个选择区中分别放入污水和清水,供实验虾进行选择,记录选择清水和污水的次数及未作出选择的次数,对数据进行非参数检验的二项分布检验。结果表明亚成体在氨浓度4750、7125、9500及14250 mg/L时,没有明显选择性,在氨浓度19000 mg/L时,显著避开污水;幼虾在氨浓度4750 mg/L时,没有明显选择性,在氨浓度7125和9500 mg/L时,显著避开污水,当氨浓度达到14250 mg/L及以上时,出现中毒症状,丧失选择能力。该结果证明克氏原螯虾对高浓度的氨氮型污水不仅没有偏好,而且当浓度达到一定数值时会主动躲避,或躲避不及发生行为异常乃至死亡  相似文献   
902.
针对改性活性炭脱除硫化氢过程,研究了空速、温度、原料气浓度、颗粒分布孔径4个主要工艺参数对脱硫效率的影响。结果表明:空速在1 500~4 200h-1时穿透硫容随着空速的降低而增加,当空速继续降低为1 200h-1时穿透硫容基本不变;当0~40℃时,随着温度的升高,穿透时间增加,脱硫效率提高,当温度超过40℃时,随着温度继续升高脱硫效率降低;相同空速下原料气硫化氢浓度变化只改变穿透时间;改性活性炭脱硫剂发挥脱硫作用的微孔结构范围是1~5nm。  相似文献   
903.
印染企业丝光机排出的废碱液,Na0H质量浓度为3%~5%,废水温度在50℃~70℃,色度>1000倍,SS>400mg/L,含较多棉纱线等,为探讨废碱液回收技术的合理性及可行性,本中试系统采用"滤网过滤+板框压滤+陶瓷膜过滤+蒸发浓缩"的耦合技术,对丝光机排放的废碱液进行预处理及浓缩,中试结果表明,该技术可达到废碱液100%回用,处理后的碱液浓度可达15%~25%,SS<30mg/L,色度<100倍,达到印染行业丝光工序回用的要求。  相似文献   
904.
Gao QT  Tam NF 《Chemosphere》2011,82(3):346-354
The effect of nonylphenol (NP) on growth, photochemistry and biochemistry of two green microalgae, Chlorella vulgaris and Selenanstrum capricornutum, and their ability to degrade NP were compared. The 96 h EC50 of C. vulgaris and S. capricornutum were greater than 4.0 and 1.0 mg L−1 NP, respectively, suggesting that the former species was more tolerant to NP. Both microalgae acclimated to NP stress through down-regulating their photosynthetic activities, including antenna size (chlorophyll a content), maximal photochemistry (Fv/Fm) and the light absorbed by PSII (ABS/CS0), but the dissipation of energy from reaction centres (DI0/RC) increased with the increase of NP concentrations. In C. vulgaris, the changes of these parameters were more significant than in S. capricornutum and recovered completely after a 96 h exposure. The antioxidant responses, such as GSH content, CAT and POD activities in C. vulgaris increased with the increase of NP concentrations after a 24 h exposure, but these changes disappeared with exposure time and recovered to the control levels after 96 h. In S. capricornutum, although GSH content, CAT and POD activities also increased when exposed to low- to moderate-NP concentrations, these values were significantly reduced at a high concentration (4 mg L−1) even after a 96 h exposure, indicating its antioxidant responses were significantly delayed. It is clear that the more NP-tolerant species, C. vulgaris, acclimated better with a faster recovery of its photosynthetic activity from the NP-induced damage, and exhibited more efficient and rapid responses to NP-induced oxidative stress. C. vulgaris also had a higher NP degradation ability than S. capricornutum.  相似文献   
905.
Jin X  Zha J  Xu Y  Wang Z  Kumaran SS 《Chemosphere》2011,84(10):1506-1511
2,4-Dichlorophenol (2,4-DCP) is known as an important chemical intermediate and an environmental endocrine disruptor. There is no paper dealing with the predicted no-effect concentration (PNEC) of 2,4-DCP, mainly due to shortage of chronic and site-specific toxicity data. In the present study, toxicity data was obtained from the tests using six Chinese native aquatic species. The HC5 (hazardous concentration for 5% of species) was derived based on the constructed species sensitivity distribution (SSD), which was compared with that derived from literature toxicity data of non-native species. For invertebrates, the survival no-observed effect concentrations (NOECs) were 0.05 and 1.00 mg L−1 for Macrobrachium superbum and Corbicula fluminea, respectively. NOECs based on fishes’ growth were 0.10, 0.20 and 0.40 mg L−1 for Mylopharyngodon piceus, Plagiognathops microlepis and Erythroculter ilishaeformis, respectively. For aquatic plant Soirodela polyrhiza, NOEC based on concentration of chlorophyll was 1.00 mg L−1. A final PNEC calculated using the SSD approach with a 50% certainty based on different taxa ranged between 0.008 and 0.045 mg L−1. There is no significant difference between HC5 derived from native and that from non-native taxa.  相似文献   
906.
1,2-Dichloroethane (1,2-DCA) is one of the most hazardous pollutant of soil and groundwater, and is produced in excess of 5.44 × 109 kg annually. Owing to their toxicity, persistence and potential for bioaccumulation, there is a growing interest in technologies for their removal. Heavy metals are known to be toxic to soil microorganisms at high concentrations and can hinder the biodegradation of organic contaminants. In this study, the inhibitory effect of heavy metals, namely; arsenic, cadmium, mercury and lead, on the aerobic biodegradation of 1,2-DCA by autochthonous microorganisms was evaluated in soil microcosm setting. The presence of heavy metals was observed to have a negative impact on the biodegradation of 1,2-DCA in both soil samples tested, with the toxic effect being more pronounced in loam soil, than in clay soil. Generally, 75 ppm As3+, 840 ppm Hg2+, and 420 ppm Pb2+ resulted in 34.24%, 40.64%, and 45.94% increase in the half live (t½) of 1,2-DCA, respectively, in loam soil, while concentrations above 127.5 ppm Cd2+, 840 ppm Hg2+ and 420 ppm of Pb2+ and less than 75 ppm As3+ was required to cause a >10% increase in the t½ of 1,2-DCA in clay soil. A dose-dependent relationship between degradation rate constant (k1) of 1,2-DCA and metal ion concentrations was observed for all the heavy metals tested, except for Hg2+. This study demonstrated that different heavy metals have different impacts on the degree of 1,2-DCA degradation. Results also suggest that the degree of inhibition is metal specific and is also dependent on several factors including; soil type, pH, moisture content and available nutrients.  相似文献   
907.
Understanding the transformation of nanoparticles emitted from vehicles is essential for developing appropriate methods for treating fine scale particle dynamics in dispersion models. This article provides an overview of significant research work relevant to modelling the dispersion of pollutants, especially nanoparticles, in the wake of vehicles. Literature on vehicle wakes and nanoparticle dispersion is reviewed, taking into account field measurements, wind tunnel experiments and mathematical approaches.Field measurements and modelling studies highlighted the very short time scales associated with nanoparticle transformations in the first stages after the emission. These transformations strongly interact with the flow and turbulence fields immediately behind the vehicle, hence the need of characterising in detail the mixing processes in the vehicle wake. Very few studies have analysed this interaction and more research is needed to build a basis for model development. A possible approach is proposed and areas of further investigation identified.  相似文献   
908.
Muscle tissue was collected from ewes and lambs derived from farms throughout Scotland and sample concentrations of five endocrine disrupting compound groups were determined. Farms of origin were categorised according to geographic region. There were few statistically-significant differences with region or distance from cities. However, the magnitude of the difference between the highest and lowest mean values in ewe muscle from different regions exceeded 30% for 13 of the 15 compounds that were consistently detected in muscle, with animals derived from the industrialised region having the highest mean values for 11 of the 13 compounds. A less marked trend was apparent in the lamb muscle (8 of 13 highest were in the industrialised region). The physiological effects of such small differences in exposure to mixtures of pollutants remain to be determined.  相似文献   
909.
同步硝化反硝化工艺中DO浓度对N2O产生量的影响   总被引:1,自引:0,他引:1  
采用序批式生物膜反应器(SBBR),在连续曝气全程好氧的运行条件下,考察不同溶解氧浓度对同步硝化反硝化脱氮性能及N2O产量的影响.控制溶解氧浓度恒定在1、2、2.5和3 mg/L.结果表明,DO为2 mg/L和2.5 mg/L时,氨氮去除率分别为97.9%和98.5%,同步硝化反硝化率均为99%.DO为2 mg/L时,...  相似文献   
910.
作为一种设计和分析的工具,计算流体力学(CFD)技术已成功应用于火电厂选择性催化还原(SCR)系统设计中,提供了大量物理模型或现场试验不能得到的数据。介绍了近年来国内外CFD技术在选择性催化还原(SCR)中的研究及应用进展,指出该研究目前存在的问题及发展方向。  相似文献   
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