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随着电子废弃物数量的日益增加和对电子废弃物资源化利用要求的提高,电子废弃物经历了由堆存到资源化利用的发展过程.目前电子废弃物资源化技术主要包括物理处理法、化学处理法和热处理法等方法,实现电子废弃物的资源化. 相似文献
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废有机溶剂再生技术概述 总被引:3,自引:1,他引:2
本文介绍了废有机溶剂再生处理系统,该技术通过闪蒸、精馏对废有机溶剂进行再生处理,产生出高纯度的有机溶剂,变废为宝,实现了废物的资源化. 相似文献
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卢旭晓 《环境保护与循环经济》2015,(8):23-25
综述了废酸的资源化处理和应用技术进展概况,归纳了各种不同处理方法的特点和应用。对废酸进行资源化利用,不仅降低处理成本,减轻环保负担,还可增加社会经济效益。 相似文献
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回顾了油气田钻井固废处理的发展历程,从钻井固废无害化、资源化的技术现状中分析了钻井固废处理面临的主要问题,并展望了该领域未来发展的技术方向。建议在无害化处理技术方面,系统地开展钻井固废源解析,准确识别特征污染物;在资源化方面,为了拓宽产品的销路,鼓励开展钻井固废制透水砖的技术研究,探讨固化产品稳定性的长效机制;加快编制钻井固废资源化的相关规范,为油气田大力推广钻井固废资源化技术及应用提供技术支撑。 相似文献
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根据氧化铝行业生产用水及排污特点,结合某氧化铝生产企业生产废水的处理实践,推荐采用逆向洗涤赤泥和氢氧化铝,节约用水量;综合利用赤泥洗液和含碱废水;对生产用水设置循环水系统和二次利用水系统;设置生产废水处理站,氧化铝系统和热电厂的生产系统排水、循环水系统的排污水,以及化验等废水全部排入生产废水处理站处理,废水经处理后作为二次利用供水返回生产系统使用,通过综合利用生产废水,可以实现厂区废水的零排放,节约资源的同时,提高清洁生产水平,避免对环境造成污染。 相似文献
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在油田井下作业过程中,常对油井的高含水层或报废井实施封堵,这种传统的施工工艺存在一些不足之处。引入清洁生产理念,提出了用钢丝绳将水泥浆送入井筒中预定位置的施工工艺,即无管柱注水泥塞工艺。该工艺不需要水泥车等特种车辆的配合,不会发生井下开关操作失误造成的事故,比传统注灰工艺节约作业周期3/4以上。另外,该工艺从源头上实施了清洁生产措施,操作简单,经济效益较高,在油田修井作业系统有推广价值。 相似文献
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Nitrous oxide accumulation in soils from riparian buffers of a coastal plain watershed carbon/nitrogen ratio control 总被引:1,自引:0,他引:1
Riparian buffers are used throughout the world for the protection of water bodies from nonpoint-source nitrogen pollution. Few studies of riparian or treatment wetland denitrification consider the production of nitrous oxide (N2O). The objectives of this research were to ascertain the level of potential N2O production in riparian buffers and identify controlling factors for N2O accumulations within riparian soils of an agricultural watershed in the southeastern Coastal Plain of the USA. Soil samples were obtained from ten sites (site types) with different agronomic management and landscape position. Denitrification enzyme activity (DEA) was measured by the acetylene inhibition method. Nitrous oxide accumulations were measured after incubation with and without acetylene (baseline N2O production). The mean DEA (with acetylene) was 59 microg N2O-N kg(-1) soil h(-1) for all soil samples from the watershed. If no acetylene was added to block conversion of N2O to N2, only 15 microg N2O-N kg(-1) soil h(-1) were accumulated. Half of the samples accumulated no N2O. The highest level of denitrification was found in the soil surface layers and in buffers impacted by either livestock waste or nitrogen from legume production. Nitrous oxide accumulations (with acetylene inhibition) were correlated to soil nitrogen (r2=0.59). Without acetylene inhibition, correlations with soil and site characteristics were lower. Nitrous oxide accumulations were found to be essentially zero, if the soil C/N ratios>25. Soil C/N ratios may be an easily measured and widely applicable parameter for identification of potential hot spots of N2O productions from riparian buffers. 相似文献
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Clifford B. Fedler Runbin Duan 《Resources, Conservation and Recycling》2011,55(8):793-800
Bioenergy production from biomass is proposed as a method to solve part of the nation's energy problem. However, biomass and bioenergy production is questioned as an environment-friendly approach due to the potential increase of water pollution and the potential decrease of available water resource. A conceptual model of an integrated natural waste treatment system that produces biogas and biomass for bioenergy, treat waste and wastewater, conserve fresh water, and decrease the potential water pollution is presented. The potential biomass production from water hyacinth, duckweed, cattail, and knotgrass was investigated using recycling wastewater from an integrated natural waste treatment system from 2005 to 2008. Although the biomass production from recycling wastewater was not controlled for maximum production, this research identified the large potential impact that could be made if these systems were implemented. The overall average water hyacinth growth rate was high to 0.297 kg wet wt./m2/day during a research period of over 500 days, including both the active and non-active growing seasons. The average daily growth rates of duckweed, cattail, and knotgrass were 0.099-0.127, 0.015, and 0.018 kg wet wt./m2, respectively. This research illustrated that water hyacinth was a more promising aquatic plant biomass for bioenergy production when wastewater effluent was recycled as water and nutrient sources from an integrated natural waste treatment system. 相似文献
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Effects of cattle manure on erosion rates and runoff water pollution by faecal coliforms 总被引:1,自引:0,他引:1
The large quantities of slurry and manure that are produced annually in many areas in which cattle are raised could be an important source of organic matter and nutrients for agriculture. However, the benefits of waste recycling may be partially offset by the risk of water pollution associated with runoff from the fields to which slurry or manure has been applied. In this paper, the effects of cattle manure application on soil erosion rates and runoff and on surface water pollution by faecal coliforms are analysed. Rainfall simulations at a rate of 70 mm h(-1) were conducted in a sandy loam soil packed into soil flumes (2.5m long x 1m wide) at a bulk density of 1400 kg m(-3), with and without cattle slurry manure applied on the surface. For each simulation, sediment and runoff rates were analysed and in those simulations with applied slurry, presumptive faecal coliform (PFC) concentrations in the runoff were evaluated. The application of slurry on the soil surface appeared to have a protective effect on the soils, reducing soil detachment by up to 70% but increasing runoff volume by up to 30%. This practice implies an important source of pollution for surface waters especially if rainfall takes place within a short period after application. The concentrations of micro-organisms (presumptive faecal coliforms (PFCs)) found in water runoff ranged from 1.9 x 10(4) to 1.1 x 10(6) PFC 100mL(-1), depending on the initial concentration in the slurry, and they were particularly high during the first phases of the rainfall event. The result indicates a strong relationship between the faecal coliforms transported by runoff and the organic matter in the sediment. 相似文献
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《Resources, Conservation and Recycling》2006,46(2):168-181
The finiteness of many resources made it necessary to think about how to save them by developing resource-saving technologies, e.g. to recycle materials. To execute the idea of recycling, it is necessary to think about a material recycling of the used products when designing them. This means that all additives of the process have to be designed in the way they do not disturb the later material recycling. Today, adhesives play a decisive role in the production of almost every good, especially for mass-produced articles and therefore it is important to choose adhesives that do not disturb the recycling of the primary materials. In recycling processes which take place at high temperatures (e.g. glass or metal recycling), the influence of the adhesives usually formed by organic polymers can be ignored. In the field of low temperature recycling technologies, the question whether an adhesive is recycling-friendly or not can only be answered by knowing its application and the recycling process. If the recycling processes are known, it is easy to chose suitable adhesives. For plastic and paper recycling, there are a lot of adhesives today that fulfill the requirements of recyclers. In order to simplify recycling for the future, adhesives with “switches enclosed” are being developed which will allow us to disbond system components into separate parts after use for reuse or material recycling. 相似文献
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Environmental evaluation of transfer and treatment of excess pig slurry by life cycle assessment 总被引:1,自引:0,他引:1
Lopez-Ridaura S Werf Hv Paillat JM Le Bris B 《Journal of environmental management》2009,90(2):1296-1304
Slurry management is a central topic in the agronomic and environmental analysis of intensive livestock production systems. The objective of this study is to compare the environmental performance of two scenarios of collective slurry management for the disposal of excess nitrogen from animal manure. The scenarios are the transfer of slurry and its injection to crop land, and the treatment of slurry in a collective biological treatment station. The study is based on a real case in the West of France, where a group of farmers is developing a collective plan for the disposal of almost 7000 m(3) of excess pig slurry. The evaluation is carried out by Life Cycle Assessment, where emissions and resource consumption are quantified and aggregated into four environmental impact categories: eutrophication, acidification, climate change, and non-renewable energy use. Ammonia emitted is the most important contributor to acidification and eutrophication, while methane contributes most to climate change. Both ammonia and methane are mostly emitted during the storage of slurry and, in the case of the treatment scenario, also during composting the solid fraction of the slurry. The two management strategies are similar with respect to climate change, whereas eutrophication and acidification are twice as large for treatment relative to transfer. Electricity needed for the treatment process is the main contributor to non-renewable energy use for the treatment scenario, while the transfer scenario represents a net energy saving, as energy saved by the reduction of mineral fertiliser use more than compensates for the energy needed for transport and injection of slurry. The overall environmental performance of transfer is better than that of treatment, as it involves less acidification, eutrophication and non-renewable energy use. The method employed and the results obtained in this study can provide elements for a transparent discussion of the advantages and disadvantages of contrasting excess slurry management scenarios as well as the identification of the main aspects determining their environmental performance. 相似文献