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21.
Acute toxicity and presumable harmless concentration of two commercial insecticides, Furadan 3G and Malataf 50E were reported for tubificid worms, Tubifex tubifex and Limnodrilus hoffmeisteri. L. hoffmeisteri were found more susceptible to both the insecticides; the Furadan was found to be more toxic than Malataf to tubificid worms. Analysis of variants showed a significant difference between safe concentrations of the same insecticide to different species.  相似文献   
22.
张冰  孙晨翔  文湘华 《环境科学》2022,43(3):1529-1534
为深入理解有机负荷率(F/M)对活性污泥(AS)微生物群落的影响,以F/M(以BOD/MLVSS计,下同)设计建议范围0.2~0.5 kg·(kg·d)-1为依据,将采集的AS样品分为3组,运用基于随机矩阵理论(RMT)的网络分析方法,解析了不同F/M条件下的AS微生物生态网络拓扑性质及结构特征.结果表明,较低的F/M...  相似文献   
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24.
苯酚对两种微囊藻生长的作用效应   总被引:1,自引:0,他引:1  
用不同浓度的苯酚处理无毒铜绿微囊藻和有毒铜绿微囊藻。结果显示不加苯酚处理时,有毒藻生长量明显高于无毒藻;100μg/mL的苯酚促进无毒藻生长而抑制有毒藻的生长;苯酚浓度增至200μg/mL,无毒藻的生长才受到抑制。高浓度苯酚胁迫下的藻细胞:光合速率大幅度降低;可溶性蛋白含量减少;细胞膜透性增大;超氧阴离子(O2^-)产生速率和丙二醛(MDA)相对含量升高;超氧化物歧化酶(SOD)活性降低。这些变化有毒藻较无毒藻更显著。表明:有毒微囊藻是水华中的优势种群;两种藻中有毒藻对苯酚的敏感性更大。  相似文献   
25.
以油菜菌核病病株菌核为诱饵,从油菜地中分离筛选得到一株盾壳霉(Coniothyrium minitans CCTCC M203020).以生物防治能力好的CBS148.96为对照菌株,比较了两者在油菜叶上对油菜菌核病菌抑制作用和在土壤中对菌核的致腐能力及条件.结果表明:C.minitans CCTCC M203020对油菜菌核病菌的抑制作用及适用的pH范围(4.0~7.0)均优于CBS148.96,适片于油菜菌核病的生物防治.具体表现在:(1)C.minitans CCTCC M203020能够完全限制病原菌在叶面的进一步扩展(已萌发孢子率为800A时),而CBS148.96则不能;(2)C.minitaras CCTCC M203020与CBS148.96的生长特性及培养条件相近,但其菌体生长和孢子产量分别高出60%和12%,并发现该菌株在PDA上产生孢子的最短周期是3.5~4d,较优培养条件为:20℃、初始pH5.0~6.2、空气湿度90%~97%;敛腐菌核的较优条件为:10^1~10^4孢子/菌核,土壤湿度80%~100%,pH4.0~7.0,图7参19  相似文献   
26.
复合优势菌技术处理M废水   总被引:5,自引:0,他引:5  
以某厂橡胶促进剂M废水为研究对象,通过常规生物处理工艺与复合优势菌生物处理工艺对该废水处理效果的比较,认为复合优势菌生物处理工艺是目前处理M废水的最佳工艺。  相似文献   
27.
本研究结果表明,不同的藻类和不同的粘土颗粒均使藻类与粘土颗粒的凝聚沉降发生变化。结果还表明,溶液中[Cu~(2+)]浓度超过10~(-5)mol后,加快了小球藻与高龄土的凝聚沉降。使80%以上的小球藻和高岭土在不到10min内即凝聚沉降。在最后结合实验结果讨论了利用藻类与粘土的凝聚沉降治理水体污染。  相似文献   
28.
BACKGROUND, AIMS AND SCOPE: Composting facilities are known to release odorous volatiles due to biodegradation of municipal waste and plant residues. Although odour perception and its grading is influenced by experience, attitude and adaptation, these emissions have created a lack of acceptance for residents in the vicinity of composting facilities. Enclosure of compost pile halls, ventilation systems and biofilters are often insufficient to minimise the burden of compost-derived compounds in the air. Moreover, economic considerations forced smaller communities to establish less sophisticated facilities with open storage areas and other relevant sources for wind-borne dispersal of bioaerosols. Aim of the present study was to characterise the immission and dispersal of microbial volatiles (MVOC) and, besides, to find coincidences between MVOC and compost odour. METHODS: In the course of this study, the surroundings of two composting facilities, differing in their type of process engineering, were investigated for emission of volatiles in the environment. Both microbially and plant-derived substances were assessed, several of which have low odour thresholds. Air samples were taken in distances ranging from 50 to 800 m in a downwind direction from each facility. RESULTS AND DISCUSSION: Compost-derived and microbial volatile organic compounds (MVOC) were found at distances of up to 800 m from the composting facilities. Terpenes like alpha-pinene, camphene and camphor were the dominant compounds and coincided with typical compost odour, whereas several typical MVOC were not found at greater distances. The terpenes in combination with certain MVOC may play an important role in the perception of compost odour. Exposure concentrations were not of toxicological relevance, but sensory irritation and psychohygienic effects due to an annoyance potential of such compounds should not be dismissed. RECOMMENDATIONS AND OUTLOOK: Although terpenes are generally associated with pleasant odour characteristics, they seemed to contribute to malodours in a mixture with other VOC, in this context of volatile waste from compost facilities. Malodorous emissions from biowaste have to be considered as sources of health complaints and the investigation of mixtures of compost-derived volatiles is still inevitable. Exposure levels have to be discussed taking VOC mixtures into account. Within composting facilities, technical devices have to be improved to minimise dispersal of volatiles to prevent residents from immissions eventually causing health complaints.  相似文献   
29.
The toxicity of seawater dispersions of a chemical dispersant to two marine crustaceans was investigated in the presence and absence of various quantities of a non-toxic mineral oil. From the results and a physical-chemical partitioning analysis, a limiting value of the oil-water partition coefficient of the toxic compounds is deduced suggesting that essentially all of the toxic compounds in the dispersant will partition into solution in water following dispersant application to an oil spill. This conclusion simplifies interpretation and prediction of the toxic effects of a dispersed oil spill.The combined bioassay-partitioning procedure may have applications to the study of the toxicity of other complex mixtures such as industrial effluents.  相似文献   
30.
黄岁樑  孔文文 《环境科学研究》2018,31(10):1761-1770
在养殖水域中地表径流等可引起水域中除草剂浓度升高,威胁养殖水环境的生态平衡.为评价阿特拉津和鱼食在水环境中的生态风险,以ρ(阿特拉津)(0、5、10、20和40 μg/L)及鱼食(鱼食为MⅡ培养基中的氮、磷营养源)投加量(0.05、0.20 g;d < 0.85 mm)为变量,基于Logistic方程探讨阿特拉津和鱼食共同作用下铜绿微囊藻(Microcystis aeruginosa)的生长,并研究藻类生长对鱼食营养盐的利用.结果表明:在ρ(阿特拉津)为0~40 μg/L范围内,铜绿微囊藻生长曲线均可用Logistic方程描述(R2=0.975~0.996);一般情况下,基于Logistic方程得到的比生长速率、增殖速率和抑制率拟合公式均可描述相应实测值的变化,相关性分析得到的拟合值与实测值相关系数(R2)分别为0.861~0.992、0.381~0.839和0.621~0.839.相同ρ(阿特拉津)下,鱼食投加量对藻细胞密度有显著影响(P < 0.05),Logistic方程拟合得到的理论最大藻细胞密度(K)随鱼食投加量的增加而增大.相同鱼食投加量下,ρ(阿特拉津)为5~40 μg/L时对藻类生长有抑制作用,随ρ(阿特拉津)增加,抑制强度逐渐升高,藻细胞密度越低,最大藻细胞密度随ρ(阿特拉津)的增加而减小.藻细胞密度与PO43--P利用量之间关系可用方程N=a×△cb描述,R2为0.23~0.99;藻细胞密度与NH4+-N利用量之间关系可用方程N=a+b×△c描述,R2为0.04~0.99;藻细胞密度与TN/TP、NH4+-N/TN和PO43--P/TP的关系均可用幂函数方程N=a"xb'描述,R2分别为0.72~0.78、0.66~0.83和0.55~0.56.研究显示,Logistic方程可用于分析阿特拉津和鱼食对铜绿微囊藻生长的影响,且藻类生长与营养盐质量浓度之间存在一定的定量关系.   相似文献   
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