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The invasion of water hyacinth (Eichhornia crassipes) has resulted in enormous ecological and economic consequences worldwide. Although the spread of this weed in Africa, Australia,
and North America has been well documented, its invasion in China is yet to be fully documented. Here we report that since
its introduction about seven decades ago, water hyacinth has infested many water bodies across almost half of China’s territory,
causing a decline of native biodiversity, alteration of ecosystem services, deterioration of aquatic environments, and spread
of diseases affecting human health. Water hyacinth infestations have also led to enormous economic losses in China by impeding
water flows, paralyzing navigation, and damaging irrigation and hydroelectricity facilities. To effectively control the rampage
of water hyacinth in China, we propose a sustainability science-based management framework that explicitly incorporates principles
from landscape ecology and Integrated Pest Management. This framework emphasizes multiple-scale long-term monitoring and research,
integration among different control techniques, combination of control with utilization, and landscape-level adaptive management.
Sustainability science represents a new, transdisciplinary paradigm that integrates scientific research, technological innovation,
and socioeconomic development of particular regions. Our proposed management framework is aimed to broaden the currently dominant
biological control-centered view in China and to illustrate how sustainability science can be used to guide the research and
management of water hyacinth. 相似文献
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Zhu J Cao XL Pigeon R Mitchell K 《Journal of the Air & Waste Management Association (1995)》2003,53(1):67-76
Three diesel fuels, one oil sand-derived (OSD) diesel serving as base fuel, one cetane-enhanced base fuel, and one oxygenate [diethylene glycol dimethyl ether (DEDM)]-blended base fuel, were tested for their emission characterizations in vehicle exhaust on a light-duty diesel truck that reflects the engine technology of the 1994 North American standard. Both the cetane-enhanced and the oxygenate-blended fuels were able to reduce regulated [CO, particulate matter (PM), total hydrocarbon (THC)] and nonregulated [polyaromatic hydrocarbons (PAHs), carbonyls, and other volatile organic chemicals] emissions, except for nitrogen oxides (NO(x)), compared with the base fuel. Although burning a fuel that contains oxygen could conceivably yield more oxygenated compounds in emissions, the oxygenate-blended diesel fuel resulted in reduced emissions of formaldehyde along with hydrocarbons such as benzene, 1,3-butadiene, and PAHs. Reductions in nitro-PAH emissions have been observed in both the cetane-enhanced and oxygenated fuels. This further demonstrates the benefits of using a cetane enhancer and the oxygenated fuel component. 相似文献
856.
Polychlorinated dibenzo-p-dioxins and dibenzofurans (PCDD/Fs) and dioxin-like polychlorinated biphenyls (DL-PCBs) were measured in ambient air samples collected from different parts of South Korea in 2008, and the measured levels were used for assessing the spatial and temporal distribution of atmospheric PCDDFs and DL-PCBs in South Korea. The average concentrations of atmospheric PCDD/Fs and DL-PCBs among the 37 sites were 28 fg I-TEQ m−3 (ND ∼ 617) and 1 fg WHO-TEQ m−3 (ND ∼ 0.016). Elevated atmospheric levels of PCDD/Fs and DL-PCBs observed at residential/industrial sites and in the north-west of Korea, indicated a potential contribution and impacts of anthropogenic sources of PCDD/Fs and DL-PCBs. These levels were similar or lower than those previously reported in other ambient air surveys. Average concentrations of PCDD/Fs showed small seasonal variations (ANOVA analysis, p = 0.144). The highest concentrations of PCDD/Fs were observed during winter, followed by spring, autumn and summer. Atmospheric PCDD/Fs and DL-PCBs in South Korea rapidly decreased during the last 10 years (1998-2008), demonstrating the efficiency of stricter regulations and the application of best available technologies/best environmental practices at emission sources. Comparison of the congener profiles and principal component analysis showed that current atmospheric PCDD/Fs are mostly influenced by industrial sources and PCBs from old commercial PCB uses. Nationwide POPs monitoring will continue and allows an effective evaluation of the implementation of the Stockholm Convention on POPs. 相似文献
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Inrecentyears,attentionhasbeenpaidtoglobalclimaticchange,andcertainresearchresultshavebeenmadeinvariousrelatedfields.Thechangein globalclimateismainlyrepresentedbythewarmingupofglobalairtemperature ,frequentoccurrenceofENSOandabnormalityinatmosphericcir… 相似文献
860.
SPM对铅溶液的处理效果研究 总被引:1,自引:0,他引:1
含铅废水仅经过化学沉淀法处理后的出水不够稳定,因此需要后期处理来保证出水稳定并符合国家综合污水排放标准。新型特种粉体材料Special Powder Materia(lSPM)为我国自主研发的新型粉体材料,对微污染的水源有良好的处理效果,去除重金属的主要机理为电化学反应、吸附等。文章目的在于研究SPM去除铅效果的影响因素;研究SPM处理含铅溶液的浓度范围,考察将SPM的应用范围扩展至含铅废水后期处理的可行性。影响SPM处理效果的因素有进水流向、流量、填料高度、停留时间、含铅溶液浓度等,为了定量研究各个因素对SPM处理效果的贡献大小,文章采用配水试验,考察不同条件下SPM对铅的去除效率并进行正交分析。结果表明,进水方向采用逆流方向优于顺流方向,影响SPM处理铅溶液效率的主要因素为进水流量和进水浓度,SPM对较高浓度含铅溶液有明显的除铅效果,有望用于废水后期处理。进水方向为逆流,流量为12L/h,进水浓度为2mg/L时,出水浓度能长时间保证在1mg/L以下,符合国家综合污水排放标准。 相似文献