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81.
Yang K Xu Q Townsend TG Chadik P Bitton G Booth M 《Journal of the Air & Waste Management Association (1995)》2006,56(8):1130-1138
Hydrogen sulfide (H2S) generation in construction and demolition (C&D) debris landfills has been associated with the biodegradation of gypsum drywall. Laboratory research was conducted to observe H2S generation when drywall was codisposed with different C&D debris constituents. Two experiments were conducted using simulated landfill columns. Experiment 1 consisted of various combinations of drywall, wood, and concrete to determine the impact of different waste constituents and combinations on H2S generation. Experiment 2 was designed to examine the effect of concrete on H2S generation and migration. The results indicate that decaying drywall, even alone, leached enough sulfate ions and organic matter for sulfate-reducing bacteria (SRB) to generate large H2S concentrations as high as 63,000 ppmv. The codisposed wastes show some effect on H2S generation. At the end of experiment 1, the wood/drywall and drywall alone columns possessed H2S concentrations > 40,000 ppmv. Conversely, H2S concentrations were < 1 ppmv in those columns containing concrete. Concrete plays a role in decreasing H2S by increasing pH out of the range for SRB growth and by reacting with H2S. This study also showed that wood lowered H2S concentrations initially by decreasing leachate pH values. Based on the results, two possible control mechanisms to mitigate H2S generation in C&D debris landfills are suggested. 相似文献
82.
总结了我国地热资源的利用和管理状况,提出了"政策统一、市场运作、合理利用、可持续发展"的地热资源开发战略,并对战略内容进行了具体阐述. 相似文献
83.
Preventing groundwater contamination is vastly cheaper than remediation. Recognizing this, attention in water and land management
agencies in North America increasingly turn to groundwater protection. Local agencies, such as municipalities and watershed
management districts, are vital to successful groundwater protection, but they face daunting challenges. In the United States,
senior governments have recognized these challenges and provide considerable support for local agencies. In Ontario, Canada,
local agencies are, to a much greater extent, on their own. The aims in this paper are to analyze factors that shape local
capacity for groundwater protection, focusing on Ontario, and to recommend avenues for capacity building. Interrelationships
among five dimensions of capacity (technical, financial, institutional, social, and political) are explored through an analysis
of three smaller Ontario communities: City of Guelph (population 93,400), Town of Orangeville (population 22,188), and Town
of Erin (population 11,000). Size clearly influences capacity for groundwater protection. However, other considerations unrelated
to size appear to be as important. These other factors include the ability to form horizontal and vertical linkages with external
agencies, political leadership and commitment, and citizen involvement. Thus, smaller communities in Ontario (and other jurisdictions
with limited senior government support) would do well to focus on these areas at the same time as they develop their technical,
financial, and institutional capacity. 相似文献
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Lee S Xu Q Booth M Townsend TG Chadik P Bitton G 《Waste management (New York, N.Y.)》2006,26(5):526-533
The biological conversion of sulfate from disposed gypsum drywall to hydrogen sulfide (H(2)S) in the anaerobic environment of a landfill results in odor problems and possible health concerns at many disposal facilities. To examine the extent and magnitude of such emissions, landfill gas samples from wells, soil vapor samples from the interface of the waste and cover soil, and ambient air samples, were collected from 10 construction and demolition (C&D) debris landfills in Florida and analyzed for H(2)S and other reduced sulfur compounds (RSC). H(2)S was detected in the well gas and soil vapor at all 10 sites. The concentrations in the ambient air above the surface of the landfill were much lower than those observed in the soil vapor, and no direct correlation was observed between the two sampling locations. Methyl mercaptan and carbonyl sulfide were the most frequently observed other RSC, though they occurred at smaller concentrations than H(2)S. This research confirmed the presence of H(2)S at C&D debris landfills. High concentrations of H(2)S may be a concern for employees working on the landfill site. These results indicate that workers should use proper personal protection at C&D debris landfills when involved in excavation, landfill gas collection, or confined spaces. The results indicate that H(2)S is sufficiently diluted in the atmosphere to not commonly pose acute health impacts for these landfill workers in normal working conditions. H(2)S concentrations were extremely variable with measurements occurring over a very large range (from less than 3 ppbv to 12,000 ppmv in the soil vapor and from less than 3 ppbv to 50 ppmv in ambient air). Possible reasons for the large intra- and inter-site variability observed include waste and soil heterogeneities, impact of weather conditions, and different site management practices. 相似文献
86.
通过对新疆某煤矿辐射环境影响问题的调查与分析,阐明铀伴生煤矿对周围环境存在着不同程度的放射性影响,并在调查与分析的基础上,针对调查煤矿日前存在的问题提出了一些污染防治的对策和措施,以期为今后伴生放射性煤矿的环境管理决策提供有力依据。 相似文献
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89.
地震及其次生地质灾害(滑坡、崩塌、泥石流等)引发的松散物质(即震损物源)剧烈迁移会给震区环境与安全造成极为深远的影响。“8·8”九寨沟地震发生后,大量的震损物源加剧了九寨沟景区地质灾害易发性及湖泊淤积风险。获取震损物源的分布与数量,是减少灾害风险与保护湿地景观的基础。因此,利用DInSAR技术实施地表形变监测,基于形变数据,再结合光学遥感数据解译和实地观测,估算九寨沟景区震损物源,解析空间分布与数量特征。研究结果显示:地震在震中的西北侧造成了较大的沉降形变,在震中东南侧也产生了轻微隆起形变,雷达视线向形变量达-23~11 cm;景区震损物源呈带状分布,沿沟谷和道路较为发育,以五花海区域最为集中,估算数量达1.658×105m3。研究结果将为九寨沟景区地质灾害隐患的监测防治及河湖湿地的绿色防淤提供支撑。 相似文献
90.