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91.
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青岛城区室外空气微生物数量的测定 总被引:16,自引:0,他引:16
采用平皿沉降法初步测定了青岛城区空气微生物数量分布状况,结果表明,空气微生物平均数量为12388CFU/m^3,变幅在1284-44053CFU/m^3之间。白天,低海拔高程处的空气微生物数量分别比夜间,高海拔高程处高,并随商业,交通的发达程度及居民的密集度而异,新鲜的海洋,海滨空气微生物数量明显比中心城区少。 相似文献
93.
Controlled-release fertilizer(CRF):A green fertilizer for controlling non-point contamination in agriculture 总被引:9,自引:0,他引:9
Fertilizers contribute greatly to high yields but also result in environmental non-point contamination, including the emission of greenhouse gas(N2O) and eutrophication of water bodies. How to solve this problem has become a serious challenge, especially for China as its high ecological pressure. Controlled-release fertilizer(CRF) has been developed to minimize the contamination while keeping high yield and has become a green fertilizer for agriculture. Several CRFs made with special coating technology were used for testing the fertilizer effects in yield and environment through pot experiment and field trial. The result indicated that the CRFs had higher N use efficiency, thus reducing N loss through leaching and volatilization while keeping higher yields. Comparing with imported standard CRFs,the test on CRFs showed similar fertilizer effect but with much lower cost. CRFs application is becoming a new approach for minimizing non-point contamination in agriculture. 相似文献
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探讨无回流间歇曝气系统 (简称 NBIAS) ,处理城市污水的污泥龄 ( SRT)对脱氮除磷及有机物去除效果的影响。通过原污水流程试验和人工合成污水静态模拟实验 ,试验结果表明 :在水温为 2 0℃~ 30℃ ,污泥负荷为 0 .2 5~0 .45kg CODcr/ kg MLSS· d,SRT为 1 8~ 2 2 d,HRT为 8~ 1 0 h时 ,利用原污水作为碳源 ,NBIAS在保持较高的 CODcr去除率的同时 ,总氮和总磷的去除率均在 80 %以上。 相似文献
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The landfill of municipal solid waste(MSW) could be regarded as denitrification reactor and involved in ammonia nitrogen biological removal process. In this research, the process was applied to municipal solid waste collected in Shanghai, China, which was characterized by high food waste content. The NH4^ removal efficiency in the system of SBR nitrifying reactor followed by fresh and matured landfilled waste layer in series was studied. In the nitrifying reactor, above 90% of NH4^ in leachate was oxidized to NO2^- and NO3^- . Then high concentrated NO2^- and NO3^- were removed in the way of denitrification process in fresh landfilled waste layer. At the same time, degradation of fresh landfilled waste was accelerated. Up to the day 120, 136.5 gC/(kg dry waste) and 17.9 gN/(kg dry waste) were converted from waste layer. It accounted for 50.15 % and 86.89 % of the total carbon and nitrogen content of preliminary fresh waste, which was 4.42 times and 5.17 times higher than that of reference column respectively. After filtering through matured landfilled waste, BOD5 concentration in leachate dropped to below 100 mg/L, which would not affect following nitrification adversely. Because the matured landfilled waste acted as a well methanogenic reactor, 23% of carbon produced accumulatively from fresh landfilled waste degradation was converted into CH4. 相似文献
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微生物絮凝剂的研究方法和进展 总被引:2,自引:0,他引:2
通过分析目前国内外微生物絮凝的研究现状,归纳了微生物絮凝剂的一般研究方法,综述了微生物絮凝剂的研究成果,提出了微生物絮凝剂研究中亟待解决的问题和建议。 相似文献
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