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101.
Cliff I. Davidson Chris T. Hendrickson H. Scott Matthews Michael W. Bridges David T. Allen Cynthia F. Murphy Braden R. Allenby John C. Crittenden Sharon Austin 《Journal of Cleaner Production》2010,18(7):698-701
The field of engineering is changing rapidly as the growing global population puts added demands on the earth's resources: engineering decisions must now account for limitations in materials and energy as well as the need to reduce discharges of wastes. This means educators must revise courses and curricula so engineering graduates are prepared for the new challenges as practicing engineers. The Center for Sustainable Engineering has been established to help faculty members accommodate such changes through workshops and new educational materials, including a free access website with peer-reviewed materials. 相似文献
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Chris Fitzgerald 《环境质量管理》1993,3(1):97-107
This article is excerpted from Chapter 1 of Environmental Management Information Systems, which will be published by McGraw-Hill in 1994. A central theme of the book is that all successful implementations of environmental management information systems (EMIS) are based on the appropriate alignment of goals and procedures from three enterprise domains: business processes, environmental management, and information systems. Environmental managers (EM) and information systems (IS) professionals have each been guilty of seeing their functions as primary, domains of specialized scientific expertise inaccessible to outsiders. In fact, however, the enterprise is the customer for both domains; without successful business strategies and systems the enterprise does not require either EM or IS wizards. This article shows why and how essential it is that each of the three domains understands enough of the other two domains to structure good decisions. 相似文献
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Moreno FN Anderson CW Stewart RB Robinson BH 《Environmental pollution (Barking, Essex : 1987)》2005,136(2):341-352
Experiments were carried out in plant growth chambers and in the field to investigate plant-mercury accumulation and volatilisation in the presence of thiosulphate (S2O3)-containing solutions. Brassica juncea (Indian mustard) plants grown in Hg-contaminated Tui mine tailings (New Zealand) were enclosed in gastight volatilisation chambers to investigate the effect of ammonium thiosulphate ([NH4]2 S2O3) on the plant-Hg volatilisation process. Application of (NH4)2 S2O3 to substrates increased up to 6 times the Hg concentration in shoots and roots of B. juncea relative to controls. Volatilisation rates were significantly higher in plants irrigated only with water (control) when compared to plants treated with (NH4)2 S2O3. Volatilisation from barren pots (without plants) indicated that Hg in tailings is subject to biological and photochemical reactions. Addition of sodium thiosulphate (Na2S2O3) at 5 g/kg of substrate to B. juncea plants grown at the Tui mine site confirmed the plant growth chambers studies showing the effectiveness of thio-solutions at enhancing shoot Hg concentrations. Mercury extraction from the field plots yielded a maximum value of 25 g/ha. Mass balance studies revealed that volatilisation is a dominant pathway for Hg removal from the Tui mine site. A preliminary assessment of the risks of volatilisation indicated that enhanced Hg emissions by plants would not harm the local population and the regional environment. 相似文献
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Franz Wolf 《Die Naturwissenschaften》1956,43(18):415-417
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