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71.
管东生 《生态与农村环境学报》1996,(1)
研究了刈割频率对香港草地于物质生产的影响。结果表明,刈割使干物质生产量下降,刈割频率越高生产量下降越大。禾本科植物受刈割影响比木本和非禾本科草本植物大,且停止刚割一年后生物量仍低于对照点。认为常年刈割是华南草地生产力下降的重要原因之一。 相似文献
72.
关南 《中国人口.资源与环境》1994,4(1):48-53
本文应用灰色关联分析方法研究了青岛地区主导工业对资源的依赖状态及不同工业行业之产出对各类资源投入的反应程度,以灰关联树反映工业经济与资源复合系统之整体及不同层次子系统的耦合关系,定量揭示工业经济效益主导变量与各类资源变量的动态联系,从资源高效利用的角度探讨了青岛工业产业结构调整和优化的方向及区域经济与环境效益相协调的可能途径。 相似文献
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Zhong Runsheng Zhu Chunwei Zhang Xihui Guan Yuntao 《Frontiers of Environmental Science & Engineering in China》2007,1(3):276-279
The turbidity variation in artificial water and samples from a water plant was investigated in the presence of organics with
different relative molecular mass. The results show that recessive turbidity existed when water chemical conditions were changing.
The formation of turbidity depended on organic relative molecular mass and their conformations on particles. At higher pH
and lower ionic strength, the organic chains with a more extended conformation resulted in rising turbidity of the suspension.
At lower pH, the reconformation of organics took place due to charge neutralization by the proton, resulting in a decline
in turbidity. The addition of NaCl and MgCl2 at pH 7.00 also resulted in a decrease of turbidity in the suspension. It is believed that the occurrence of recessive turbidity
has a significant influence on the stability of water supply quality. 相似文献
76.
环境监测的质量保证是监测数据准确性、可比性的重要保障.在区域大气联合观测项目中,完善的质量保证体系应包括管理机制和技术措施两部分,但目前我国对这类项目质量保证尚无统一标准.针对大气重污染成因与治理攻关项目(简称"大气攻关项目")外场观测任务量大、承担单位多、监测项目复杂的特点,为保证观测数据的质量,避免出现由于监测和质控方法不统一造成的数据可比性差、结果矛盾的问题,提出了大气攻关项目质量保证体系和管理机制.其中,质量保证体系包括制定总体要求(技术文件、监测项目及质控要求)、外场观测质量保证(内部质量管理体系、项目外场观测质量保证体系)、实验室分析质量保证(实验室遴选、项目实验室分析多级质量保证体系、实验室比对和飞行检查)和数据质量控制(数据线上审核、项目实验室分析质控报告、项目数据质量评价)4个方面.管理机制为项目管理办公室、质控实验室和承担单位三级主体,两级监督的分级管理模式.通过项目实践,项目质量保证体系达到了保证观测数据准确性、可比性的预期效果,为揭示区域雾霾形成机理、突破污染控制关键技术提供了有力的技术支持,同时为区域大气联合观测项目的数据质量保证提供了借鉴. 相似文献
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Bacterial decolorization of anthraquinone dye intermediates is a slow process under aerobic conditions. To speed up the process, in the present study, effects of various nutrients on 1-amino-4-bromoanthraquinone-2-sulfonic acid (ABAS) decolorization by Sphingomonas xenophaga QYY were investigated. The results showed that peptone, yeast extract and casamino acid amendments promoted ABAS bio-decolorization. In particular, the addition of peptone and casamino acids could improve the decolorization activity of strain QYY. Further experiments showed that L-proline had a more significant accelerating effect on ABAS decolorization compared with other amino acids. L-Proline not only supported cell growth, but also significantly increased the decolorization activity of strain QYY. Membrane proteins of strain QYY exhibited ABAS decolorization activities in the presence of L-proline or reduced nicotinamide adenine dinucleotide, while this behavior was not observed in the presence of other amino acids. Moreover, the positive correlation between L-proline concentration and the decolorization activity of membrane proteins was observed, indicating that L-proline plays an important role in ABAS decolorization. The above findings provide us not only a novel insight into bacterial ABAS decolorization, but also an L-proline-supplemented bioaugmentation strategy for enhancing ABAS bio-decolorization. 相似文献
80.
Tong-ming Su Zu-zeng Qin Hong-bing Ji Yue-xiu Jiang Guan Huang 《Environmental Chemistry Letters》2016,14(1):99-112
Fossil fuels are currently the major energy source and are rapidly consumed to supply the increasing energy demands of mankind. CO2, a product of fossil fuel combustion, leads to climate change and will have a serious impact on our environment. There is an increasing need to mitigate CO2 emissions using carbon–neutral energy sources. Therefore, research activities are devoted to CO2 capture, storage and utilization. For instance, photocatalytic reduction of CO2 into hydrocarbon fuels is a promising avenue to recycle carbon dioxide. Here we review the present status of the emission and utilization of CO2. Then we review the photocatalytic conversion of CO2 by TiO2, modified TiO2 and non-titanium metal oxides. Finally, the challenges and prospects for further development of CO2 photocatalytic reduction are presented. 相似文献