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91.
The development pattern,development situation,and existing problems of land exploitation in Zigui County,Three Gorges Reservoir Areas of China were presented.The sustainable development mode and its strategy in the Three Gorges Reservoir Areas was also discussed.A sustainable development framework for low mountain regions,middle mountain regions and high mountain regions was developed,and management countermeasures for structural optimization of complex ecosystems were advanced. 相似文献
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根据胜利油田采油废水达标治理工程的进展概况,分析了从中取得的经验与教训,并对今后的工作开展提出了建议。 相似文献
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以四川省蓬安县为例,基于GIS空间分析技术,结合蓬安当地实际,选取水源涵养、土壤保持能力和生物多样性进行生态敏感性评价,获得蓬安县区域敏感性现状图,并以此为基础构建生态安全格局,该格局注重区域的内在机理与周围的相对联系,保证各生态环境功能区成为具有各自特点、功能和生命活力而又彼此联系的有机体,为其生态文明建设过程中重点领域和重点工程设计规划提供基础支撑,阐明了生态敏感性评价在生态文明建设中的运用,为县级生态文明建设规划做出了贡献. 相似文献
99.
Tong Li Xiange Du Jieqiong Deng Kai Qi Jiandong Zhang Lili Gao Xiuping Yue 《环境科学学报(英文版)》2021,33(10):188-200
Environment-friendly nano-catalysts capable of activating peroxymonosulfate (PMS) have received increasing attention recently. Nevertheless, traditional nano-catalysts are generally well dispersed and difficult to be separated from reaction system, so it is particularly important to develop nano-catalysts with both good catalytic activity and excellent recycling efficiency. In this work, magnetically recoverable Fe3O4-modified ternary CoFeCu-layered double hydroxides (Fe3O4/CoFeCu-LDHs) was prepared by a simple co-precipitation method and initially applied to activate PMS for the degradation of Rhodamine B (RhB). X-ray diffraction (XRD), fourier transform infrared spectrometer (FT-IR), scanning electron microscope (SEM), transmission electron microscopy (TEM), Brunauer-Emmett-Teller method (BET), and vibrating sample magnetometer (VSM) were applied to characterize morphology, structure, specific surface area and magnetism. In addition, the effects of several key parameters were evaluated. The Fe3O4/CoFeCu-LDHs exhibited high catalytic activity, and RhB degradation efficiency could reach 100% within 20 min by adding 0.2 g/L of catalyst and 1 mmol/L of PMS into 50 mg/L of RhB solution under a wide pH condition (3.0-7.0). Notably, the Fe3O4/CoFeCu-LDHs showed good super-paramagnetism and excellent stability, which could be effectively and quickly recovered under magnetic condition, and the degradation efficiency after ten cycles could still maintain 98.95%. Both radicals quenching tests and electron spin resonance (ESR) identified both HO? and SO4?? were involved and SO4?? played a dominant role on the RhB degradation. Finally, the chemical states of the sample's surface elements were measured by X-ray photoelectron spectroscopy (XPS), and the possible activation mechanism in Fe3O4/CoFeCu-LDHs/PMS system was proposed according to comprehensive analysis. 相似文献
100.
Shubo Deng Danmeng Shuai Qiang Yu Jun Huang Gang Yu 《Frontiers of Environmental Science & Engineering in China》2009,3(2):171-177
Perfluorooctane sulfonate (PFOS), as a potential persistent organic pollutant, has been widely detected in water environments,
and has become a great concern in recent years. PFOS is very stable and difficult to decompose using conventional techniques.
Sorption may be an attractive method to remove it from water. In this study, the molecularly imprinted polymer (MIP) adsorbents
were prepared through the polymerization of 4-vinylpyridine under different preparation conditions in order to remove perfluorooctane
sulfonate (PFOS) from water. The MIP adsorbents using perfluorooctanoic acid (PFOA) as the template had good imprinting effects
and could selectively remove PFOS from aqueous solution. The sorption behaviors including sorption kinetics, isotherms, and
effect of pH, salt, and competitive anions were investigated. Experimental results showed that the sorption of PFOS on the
MIP adsorbents was very fast, pH-dependent, and highly selective. The achieved fast sorption equilibrium within 1 h was attributed
to the surface sorption on the fine adsorbents. The sorption isotherms showed that the sorption selectivity of PFOS on the
MIP adsorbents decreased at high PFOS concentrations, which may be due to the double-layer sorption and the formation of PFOS
micelles on the sorbent surface. The sorption of PFOS on the MIP adsorbents was mainly dominated by the electrostatic interaction
between the protonated vinylpyridine on the adsorbent surface and the anionic PFOS. The prepared MIP adsorbents can potentially
be applied in water and wastewater treatment for selective removal of PFOS. 相似文献