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361.
基于全隧道方案的渤海海峡跨海通道工程环境影响研究 总被引:1,自引:0,他引:1
渤海海峡跨海通道是疏通中国干线交通网战略布局中的咽喉工程,因工程规模浩大,其环境影响广泛而深远.简要回顾了工程建设方案的筛选进程及“深埋式全隧道”方案的环境优势;建议工程环境影响评价采用“协作型”环境影响评价模式,以合作和协调克服各方之间的分歧和矛盾;初步探讨了工程前期调研的主要内容;识别分析了通道工程对近岸海域、出入口城市的主要环境影响.结果表明:与其他方案相比,深埋式全隧道方案对自然人文景观、海洋生态环境、海洋资源开发利用等的影响是最小的,并提出了消除或减缓不良环境影响的对策措施,为通道工程的立项决策提供科学依据. 相似文献
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Thanh-Luu Pham Kazuya Shimizu Ayako Kanazaw Yu Gao Thanh-Son Dao Motoo Utsumi 《环境科学学报(英文版)》2016,28(6):120-130
We investigated the accumulation and effects of cyanobacterial crude extract(CCE)containing microcystins(MCs) on the edible clam Corbicula leana P. Toxic effects were evaluated through the activity of antioxidant and detoxification enzymes: catalase(CAT),superoxide dismutase(SOD), and glutathione-S-transferases(GSTs) from gills, foot, mantle and remaining soft tissues. Clams were exposed to CCE containing 400 μg MC-LReq/L for10 days and were then kept in toxin-free water for 5 days. Clam accumulated MCs(up to 3.41 ± 0.63 μg/g dry weight(DW) of unbound MC and 0.31 ± 0.013 μg/g DW of covalently bound MC). Detoxification and antioxidant enzymes in different organs responded differently to CCE during the experiment. The activity of SOD, CAT, and GST in the gills and mantle increased in MC-treated clams. In contrast, CAT and GST activity was significantly inhibited in the foot and mostly only slightly changed in the remaining tissues. The responses of biotransformation, antioxidant enzyme activity to CCE and the fast elimination of MCs during depuration help to explain how the clam can survive for long periods(over a week) during the decay of toxic cyanobacterial blooms in nature. 相似文献
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HAZOP 分析在海上生产平台的应用 总被引:1,自引:0,他引:1
对HAZOP分析方法及工作流程做了介绍,结合在海上生产平台的应用进行了分析和探讨。应用实例表明,HAZOP分析是一项提高海上生产平台设计、建造和运行安全性的行之有效的方法。 相似文献
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Yanhui Zhan Jianwei Lin Yanling Qiu Naiyun Gao Zhiliang Zhu 《Frontiers of Environmental Science & Engineering in China》2011,5(1):65-75
Surfactant-modified natural zeolites (SMNZ) with different coverage types were prepared by loading hexadecyltrimethyl ammonium
bromide (HTAB) onto the surface of a natural zeolite. The adsorption behavior of humic acid (HA) on SMNZ was investigated.
Results indicate that the adsorbent SMNZ exhibited a higher affinity toward HA than the natural zeolite. HA removal efficiency
by SMNZ increased with HTAB loading. Coexisting Ca2+ in solution favored HA adsorption onto SMNZ. Adsorption capacity decreased with an increasing solution pH. For typical SMNZ
with bilayer HTAB coverage, HA adsorption process is well described by a pseudo-second-order kinetic model. The experimental
isotherm data fitted well with the Langmuir model. Calculated maximum HA adsorption capacities for SMNZ with bilayer HTAB
coverage at pH 5.5 and 7.5 were 63 and 41 mg·g−1, respectively. E2/E3 (absorbance at 250 nm to that at 365 nm) and E4/E6 (absorbance at 465 nm to that at 665 nm) ratios of
the residual HA in solution were lower than that of the original HA solution. This indicates that the HA fractions with high
polar functional groups, low molecular weight (MW), and aromaticity had a stronger tendency for adsorption onto SMNZ with
bilayer HTAB coverage. Results show that HTAB-modified natural zeolite is a promising adsorbent for removal of HA from aqueous
solution. 相似文献