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381.
Jun Li Yongzhen Peng Guowei Gu Su Wei 《Frontiers of Environmental Science & Engineering》2007,1(2):246-250
An aerobic sequencing batch biofilm reactor (SBBR) packed with Bauer rings was used to treat real domestic wastewater for simultaneous nitrification and denitrification. The SBBR is advantageous for creating an anoxic condition, and the biofilm can absorb and store carbon for good nitrification and denitrification. An average concentration of oxygen ranging from 0.8 to 4.0 mg/L was proved very efficient for nitrification and denitrification. Volumetric loads of TN dropped dramatically and effluent TN concentration increased quickly when the concentration of average dissolved oxygen was more than 4.0 mg/L. The efficiency of simultaneous nitrification and denitrification (SND) increased with increasing thickness of the biofilm. The influent concentration hardly affected the TN removal efficiency, but the effluent TN increased with increasing influent concentration. It is suggested that a subsequence for denitrification be added or influent amount be decreased to meet effluent quality requirements. At optimum operating parameters, the TN removal efficiency of 74%–82% could be achieved. 相似文献
382.
在简要阐述了县域社会经济发展综合评价原则的基础上,建立了悬域社会经济发展综合评价的指标体系,利用层次分析法确定了各评价因子的权重。接着以乌江流域为例,对流域内40个县域的社会经济发展水平进行了定量评价,指出了流域内县域社会经济发展中存在的问题,并提出了相应的对策,旨在为促进乌江流域的县域社会经济协调发展提供某些科学依据。 相似文献
383.
唐山大地震对人的伤害是立体的,人员伤亡的主要原因是房屋建筑的倒塌.唐山市区被废墟埋压者中有约84%的人活了下来.唐山地震中人员伤亡情况的分析,对如何减少地震伤亡以及有效开展救灾活动,提供了有益经验。 相似文献
384.
抚仙湖北岸入湖径流中总氮变化趋势分析 总被引:3,自引:0,他引:3
抚仙湖现有污染主要来自北岸。通过抚仙湖3条入湖河流中总氮负荷量进行调查,对抚仙湖入湖河流中总氮负荷量进行了分析评价,结果表明:3条入湖河流总氮为劣V类水质,是影响抚仙湖水质的主要因素。为湖泊总量控制与治理提供科学依据。 相似文献
385.
再生铅冶炼对土壤环境影响及其评价和环境管理 总被引:5,自引:0,他引:5
再生铅冶炼是对废弃物的循环利用,防治铅污染的重要手段,但冶炼中处置不当,会引起土壤污染,再生铅冶炼对土壤环境的影响,首先进行环境影响识别,并根据冶炼中铅的排放强度和铅的生物地球化学循环规律来阐明其排放特点和进入土壤的途径,通过再生铅冶炼项目环境影响评价的实例,探讨了土壤环境质量的现状分析、评价和预测等研究方法,并提出严格执行环境影响评价制度和“三同时”制度,强化建设项目本身的环境管理和完善土壤环境质量标准等土壤环境管理措施。 相似文献
386.
黄土高原地区水资源合理利用 总被引:9,自引:0,他引:9
黄土高原地区自然资源丰富,但生态环境脆弱。区内既有巨大的开发任务,又有严重的环境整治问题,它们都需要大量的供水。该区地处干旱半干旱地区,水资源较贫乏,供需矛盾尖锐。针对地区水资源特征及需水特点,本文提出了水资源开发利用以节水与开发结合,开发利用与保护并重的措施,确保水资源能得到永续利用。 相似文献
387.
388.
Arsenic, a carcinogenic trace element, threatens not only the health of millions of humans and other living organisms, but also global sustainability. We present here, for the first time, the global industrial-age cumulative anthropogenic arsenic production and its potential accumulation and risks in the environment. In 2000, the world cumulative industrial-age anthropogenic arsenic production was 4.53 million tonnes. The world-wide coal and petroleum industries accounted for 46% of global annual gross arsenic production, and their overall contribution to industrial-age gross arsenic production was 27% in 2000. Global industrial-age anthropogenic As sources (as As cumulative production) follow the order: As mining production >As generated from coal >As generated from petroleum. The potential industrial-age anthropogenic arsenic input in world arable surface in 2000 was 2.18 mg arsenic kg–1, which is 1.2 times that in the lithosphere. The development of substitute materials for arsenic applications in the agricultural and forestry industries and controls of arsenic emissions from the coal industry may be possible strategies to significantly decrease arsenic pollution sources and dissipation rates into the environment. 相似文献
389.
390.
Black carbon (BC) in surface sediments from Henan section of Yellow River and Huaihe River, China, was determined. Average content of BC in Huaihe River was 0.33%, higher than that in Yellow River (n?=?23) with mean value of 0.15%. Distribution patterns of BC in Yellow River and Huaihe River were similar, namely that tributaries had higher BC content than main stream. In addition, BC content in the mainstream of Yellow River and Huaihe River decreased with altitude. The BC content presented a significant positive correlation with clay (r?=?0.672; p?<?0.01) content in Yellow River, while neither did in Huaihe River. The ratio of BC/TOC ranged from 1.8–57.4% (median 29.6%), evidencing pyrogenic fossil fuel source of BC in Yellow River. Relatively low values of BC/TOC in Huaihe River (5.3%–28.8%, median 7.5%,) reflected that the origin of BC is from burning of biomass. In addition, Pearson rank correlation analysis showed that BC was in strong correlation with lighter PAH in Yellow River, while BC was in significant correlation with heavier PAH in Huaihe River. The ratio of BC/TOC indicated that BC in Yellow River mainly came from fossil fuel combustion, while BC in Huaihe River was primarily from biomass burning. 相似文献