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PFU微型生物群落水质鉴别及群落参数变化模式的研究 总被引:11,自引:1,他引:11
基于PFU微型生物群落参数调查数据,对湖北省汉江两条污染带11个站 和湖南常德市水系15个站点所属水质组别进行了综合分析研究。所得典型鉴别函数能够对水质组别作出有效的鉴别,分类函数对站点的水质组别分类正确率达到96%;群落参数对化学综合污染指数的响应不呈简单的线性关系,群落的变化存在一定模式。 相似文献
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InterfacialefectsofsuspendedparticlesonbiodegradationofN(2,4dimethylphenyl)N’methylformamidinehydrochlorideanddibutylphth... 相似文献
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Ye Mingzhao 《环境科学学报(英文版)》1991,3(3):23-30
The concept of common interests of mankind in the environmental protec-tion spurred -by the internationalized and globalized environmental problems are discussed in this paper. While making challenges for many principles and rules of international law and the traditional conception of national security, the concept does play its role in strengthening the environmental protection. However, it cannot be neglected that diflerent national interests pose an obstacle to the realization of the common interests of mankind in the envirormental protection. The article concludes that whether the concept plays its greater role in the environmental protection will depend on many factors, such as the spread of environmental awareness, the revision of the traditional conception and the balanced development of the world economy. 相似文献
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Analysis of relationship between economic growth and environment in Benxi Shiqiaozi Development Zone
AnalysisofrelationshipbetweeneconomicgrowthandenvironmentinBenxiShiqiaoziDevelopmentZone¥LiBin;RuJiang;YeWenhu;XuYunlin(Cente... 相似文献
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In this study, we report a novel magnetic biomimetic nanozyme(Fe_3O_4@Cu/GMP(guanosine5′-monophosphate)) with high laccase-like activity, which could oxidize toxic ophenylenediamine(OPD) and remove phenolic compounds.The magnetic laccase-like nanozyme was readily obtained via complexed Cu~(2+)and GMP that grew on the surface of magnetic Fe_3O_4 nanoparticles.The prepared Fe_3O_4@Cu/GMP catalyst could be magnetically recycled for at least five cycles while still retaining above 70% activity.As a laccase mimic,Fe_3O_4@Cu/GMP had more activity and robust stability than natural laccase for the oxidization of OPD.Fe_3O_4@Cu/GMP retained about 90% residual activity at 90℃ and showed little change at pH 3–9, and the nanozyme kept its excellent activity after long-term storage.Meanwhile, Fe_3O_4@Cu/GMP had better activity for removing phenolic compounds, and the removal of naphthol was more than 95%.Consequently, the proposed Fe_3O_4@Cu/GMP nanozyme shows potential for use as a robust catalyst for applications in environmental remediation. 相似文献
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