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991.
基于上海市建设生态型城市的长期目标,将港口作为城市生态系统中重要的子系统,对如何建设生态型港口提出了综合评价指标体系.通过筛选得到45项单因素指标,针对不同类型的港区有所分异,整个评价体系分为5个准则层(生态环境、经济效率、污染控制、环境管理、社会评价)和10个因素层(大气/声环境、生物资源、基底质量、经济发展、生产效率、循环经济、污染排放、清洁生产、环保投入、社会参与),并采用AHP(层次分析)法确定了各层次的权重分配.进而根据2005年上海港年均生产状况和2006年上半年的港区环境-资源调查,尝试对上海港7种主要类型(集装箱、件杂货/成品、多用途、干散、粮食港区、液散、客运)的15个港区进行了现状评估.然而,生态港评价系统的指标选取、权重制定、评估级别等实践与完善仍需要多学科和政府职能部门的参与.最后,项目还提出了水生态健康、航道淤积、生态风险、水陆景观等非定量生态港评价因子. 相似文献
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Yang Su Ye Qi Zhouyan Xiao Yu Wei 《Frontiers of Environmental Science & Engineering in China》2009,3(1):75-90
With the development of rural pollution, its characteristic and institutional factor should be studied for pollution control
through economics and sociology. Based on the data gathered from investigations by several government sectors, rural environmental
pollution can be divided into two types by its sources: internal source type and external source type. The internal source
type is the main component of rural pollution at present, which can be further divided into three types. Research shows that
the contributing institutional factors of rural pollution issues and the effectiveness of environmental management system
over rural pollution can be summarized as distinctiveness. In essence, the rural pollution issue results from the dualism
of rural and urban areas’ inadaptability to rural modernization. In detail, the contributing factors can be summed up on three
institutional levels. There are obvious loopholes in rural environmental management system which, in the meantime, is incapable
and inadaptable to rural pollution control. There exist similar questions in the related public service system, which are
intensified by inappropriate reform which brought about incompatible incentive in the recent years. However, in the eleventh
five-year plan period, there are advantageous trends in the three institutional levels.
Main data sources in this paper: ➀ the surveys on TVEs (township and village enterprises) conducted by Township Enterprise
Bureau of Ministry of Agriculture of China in 1997 and 2002; ➁ the partial survey on rural environmental conditions by EPA
(environmental protection administration) of Zhejiang Province in 2002; ➂ the survey on the pollution of IPLFs (livestock
and poultry farms) in 23 provinces, municipalities, and directly administered cities by the State Environmental Protection
Administration of China in 2002; ➃ the research report on Mechanism of Investment and Financing for Environmental Protection
by China Council for International Environment and Development Cooperation in 2003; ➄ the third investigation on national
hygiene service in 2003; ➅ the regular monitoring of safe quality of agricultural products by the Ministry of Agriculture
of China in 2005; ➆ the investigation arranged by the Ministry of Health which finished in 2007 and showed the total situation
of rural environmental health and drinking water security of the whole country. 相似文献
995.
利用1954~2008年街阳8个地面气象观测站数据,对其年代际间曲线和气侯趋势系数进行综合分析,结果表明:衡阳冰冻的年代际间变化经历了上世纪70年代的活跃期,50、90年代的低谷期,目前向正常方向发展.年平均出现冰冻24.5站次,冰冻多发年的出现机率有所加大,但仍处于较低水平.1月中旬~2月上旬是冰冻相对集中时段,其中1月下旬是全年出现冰冻最多旬,而该旬并非气温最低时段.形成冰冻的有利条件是日平均气温0~-1℃,小~中等降雨(雪)过程,日平均风速5.0 m/s以下.衡阳的冰冻发生存在地域性特点,自北向南逐渐减少.轻度冰冻、中等冰冻和重度冰冻各占69.3%、25.4%和5.3%. 相似文献
996.
利用1954-2008年衡阳8个地面气象观测站数据,对其年代际问曲线和气候趋势系数进行综合分析,结果表明-衡阳冰冻的年代际间变化经历了上世纪70年代的活跃期,50、90年代的低谷期,目前向正常方向发展。年平均出现冰冻24.5站次,冰冻多发年的出现机率有所加大,但仍处于较低水平。1月中旬-2月上旬是冰冻相对集中时段,其中1月下旬是全年出现冰冻最多旬,而该旬并非气温最低时段。形成冰冻的有利条件是日平均气温0— -1℃,小-中等降雨(雪)过程,日平均风速5.0m/s以下。衡阳的冰冻发生存在地域性特点,自北向南逐渐减少。轻度冰冻、中等冰冻和重度冰冻各占69.3%、25.4%和5.3%。 相似文献
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TAN Xiao KONG Fanxiang ZENG Qingfei CAO Huansheng QIAN Shanqin ZHANG Min 《环境科学学报(英文版)》2009,21(7):892-899
In order to monitor the changes of Microcystis along with temporal and spatial variations, seasonal variation of Microcystis in Lake Taihu was investigated by 16S-23S rRNA internal transcribed spacer denaturing gradient gel electrophoresis (16S-23S rRNA-ITS DGGE) and microscopic evaluation. Samples were collected quarterly at four sites (River Mouth, Meiliang Bay, Cross Area, and Lake Center) from August 2006 to April 2007. Results showed that Microcystis dominated total phytoplankton abundance at the four sites in all seasons except winter. The average annual abundance of Microcystis was relatively high at River Mouth and Meiliang Bay, reaching 81.22×106 and 61.32×106 cells/L, respectively. For temporal variations, Shannon-Wiener diversity index (H') according to DGGE profile revealed the richness of Microcystis in summer (H'=1.375±0.034) and winter (H'=1.650±0.032) was lower than that in spring (H'=2.078±0.031) and autumn (H'=2.365±0.032) (P<0.05). While for spatial variations, the richness of Microcystis at River Mouth (H'=2.015±0.074) was higher than at other sites during four seasons (P<0.01). Very few differences of Microcystis diversity in the same season were observed among the other three sites (P>0.05). Canonical correspondence analysis (CCA) was performed to elucidate the relationships between Microcystis operational taxonomic units (OTUs) composition and the environmental factors. Results of CCA revealed that temperature was strongly positively correlated with the first axis (r=0.963), while TSS was negative correlated with the second axis (r=-0.716). Phylogenetic tree based on the sequencing results of target bands on DGGE gel indicated that samples collected in summer and winter constituted two separated clusters. 相似文献