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791.
浅析洪湖水生资源的开发与生态保护 总被引:2,自引:0,他引:2
洪湖的环境保护不仅对洪湖生物资源的开发利用,而且对洪湖地区的生态农业建设都起着重要作用。通过对洪湖的污染现状分析与防治对策研究,探索建设内陆淡水湖泊生态农业的途径。 相似文献
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796.
186菌生物流化床处理甲醇废水 总被引:7,自引:0,他引:7
用三相生物流化床工艺处理甲醇废水COD_(cr)容积负荷达4.24~12.32kg/m~3·d,去除率达82.7%~93.1%;甲醇容积负荷达1.8~3.9kg/m~3·d,去除率达81.4%~98.1%。加186菌种后,甲醇的容积负荷可提高到3.02~3.36kg/m~3·d,COD_(cr)去除率可达到89.3~96.7%。 相似文献
797.
This paper deals with effects of airborne fluorine on the army worm, Mythimna separata (Walker), by rearing the larvae on the wheat foliage exposed to HF or fumigating the larvae on the artificial diet with the pollutant. Larval relative growth rate (GR) and index of population trend of the insect reduced by 5% and 11%, respectively, when the larvae were reared on the foliage taken from the wheat plants exposed to 0.87 g·dm-2·day-1 of fluorine compared with those of the control. An extra instar appeared in a majority of the larvae treated. Survival rate and GR of the larvae on the wheat plant being exposure to the same concentration of fluorine in field open-top fumigation device were 40% and 15% lower than that of the control, respectively. Similar experiment with the insect on the artificial diet also showed that direct impact of the pollutant on the army worm was greater than its indirect effect via their host plant. 相似文献
798.
自动固相微萃取-毛细管气相色谱法检测环境水中苯系物的研究 总被引:6,自引:0,他引:6
对自动固相微萃取(SPME)-毛细管气相色谱法测定环境水中苯系物的方法进行了研究。通过对环境水中苯系物在不同SPME条件的优化、筛选实验,建立了苯系物的自动固相微萃取-气相色谱的检测方法,该方法简便、灵敏、快捷、可靠,分离度高,准确性好。在0.001mg/L~1.00mg/L范围内有良好的线性关系,最低检测浓度为0.1lμg/L~0.41μg/L。样品测定的相对标准偏差为1.8%~3.5%,回收率为88%~108%,精密度和准确度均较好。 相似文献
799.
Min H Ye YF Chen ZY Wu WX Yufeng D 《Journal of environmental science and health. Part. B》2001,36(5):581-595
This paper reports the influences of the herbicide butachlor (n-butoxymethlchloro -2', 6'-diethylacetnilide) on microbial populations, respiration, nitrogen fixation and nitrification, and on the activities of dehydrogenase and hydrogen peroxidase in paddy soil. The results showed that the number of actinomycetes declined significantly after the application of butachlor at different concentrations ranging from 5.5 microg g(-1) to 22.0 microg g(-1) dried soil, while that of bacteria and fungi increased. Fungi were easily affected by butachlor compared to the bacteria. The growth of fungi was retarded by butachlor at higher concentrations. Butachlor however, stimulated the growth of anaerobic hydrolytic fermentative bacteria, sulfate-reducing bacteria (SRB) and denitrifying bacteria. The increased concentration of butachlor applied resulted in the higher number of SRB. Butachlor inhibited the growth of hydrogen-producing acetogenic bacteria. The effect of butachlor varied on methane-producing bacteria (MPB) at different concentrations. Butachlor at the concentration of 1.0 microg g(-1) dried soil or less than this concentration accelerated the growth of MPB, while at 22.0 microg g(-1) dried soil showed an inhibition. Butachlor enhanced the activity of dehydrogenase at increasing concentrations. The soil dehydrogenase showed the highest activity on the 16th day after application of 22.0 microg g(-1) dried soil of butachlor. The hydrogen peroxidase could be stimulated by butachlor. The soil respiration was depressed during the period from several days to more than 20 days, depending on concentrations of butachlor applied. Both the nitrogen fixation and nitrification were stimulated in the beginning but reduced greatly afterwards in paddy soil. 相似文献
800.