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981.
长沙地区近地面水汽中氢氧稳定同位素的变化特征   总被引:4,自引:0,他引:4  
基于在长沙地区2014年10月—2015年10月监测的近地面水汽中氢氧稳定同位素组成(δv)及相关气象要素,对水汽中氢氧稳定同位素的变化特征、影响因素及与降水中稳定同位素(δp)的相互关系进行了分析.结果表明:大气水汽中氢氧稳定同位素存在显著的季节变化和日变化,冬、春季值高于夏、秋季值,夜晚值高于白天值.δv~(18)O的季节变化与大尺度水汽输送的季节性变化有关,日变化则与地表蒸散发、大气湍流等局地气象条件有关.通过对δv~(18)O的平衡模拟发现,水汽中和降水中稳定同位素在暖季处于或接近平衡状态,在冷季处于非平衡状态.不同季节的大气水汽线和大气水线具有一定程度的相似性,两者的斜率均为暖季大于冷季;受下垫面新降水蒸发的影响,降水日大气水汽线的斜率和截距相对于无降水日均有增加,暖季分别增加0.11和3.52‰,冷季分别增加0.07和0.14‰.  相似文献   
982.
丁洋  黄焕芳  李绘  罗杰  郑煌  孙焰  杨丹  张原  祁士华 《环境科学》2017,38(4):1431-1441
红树林湿地对保护海岸生态环境起着重要作用,为研究有机氯农药(OCPs)在广州南沙红树林湿地水体和沉积物中的残留水平、来源和生态风险,于2015年3月采集该地区10个表层水体样品和7个表层沉积物样品,并采用GC-ECD测定其中OCPs的含量.结果表明,水体中OCPs含量为1.89~90.19 ng·L~(-1),平均值为30.16 ng·L~(-1);沉积物中OCPs含量为3.10~16.02 ng·g~(-1),平均值为8.58 ng·g~(-1).与其他河口、海湾地区相比,研究区有机氯农药污染处于中等水平.研究区水体和沉积物间HCHs和DDTs的分配系数平均值分别为857和368;在分配系数较高的区域,沉积物成为水体二次污染源的潜力较大.来源分析表明,研究区水体和沉积物中近期仍存在HCHs和DDTs输入,HCHs主要来源于林丹的使用,DDTs来源于三氯杀螨醇与工业DDT的混合输入;与水体相比,沉积物中的OCPs可能包含更多历史残留组分.风险评价结果显示,水体中OCPs的生态风险较小,但沉积物中OCPs存在较高的生态风险,可能危害红树林生态系统.  相似文献   
983.
废催化剂浸出规律的静态实验方法   总被引:8,自引:1,他引:8  
利用静态浸出实验方法对废催化剂中重金属在不同固水比和浸出次数条件下的浸出规律进行了系统研究。实验发现浸出次数大于3次后,重金属的浸出浓度和浸出速率趋于稳定,同时固水比的增加也没有明显改变废催化剂中重金属的浸出。认为在浸取次数大于3次以后,随着表面溶质的溶解,浸出过程主要为内扩散所控制。  相似文献   
984.
微生物燃料电池(MFC)可在阴极实现反硝化、短程反硝化和同步硝化反硝化并产生电能,但在MFC阴极实现同步短程硝化反硝化的研究尚未见到报道。为了探讨MFC阴极同步短程硝化反硝化工艺的性能,将双室曝气阴极MFC与A/O脱氮工艺结合处理人工模拟低碳氮比废水。通过静置运行15 d使得MFC阴极室亚硝态氮得以积累,氨氧化菌得以富集。随即改为连续运行后第21天成功启动同步短程硝化反硝化MFC;阴极出水氨氮浓度为0.3 mg/L,亚硝态氮浓度为15.9 mg/L,硝态氮浓度为0.6 mg/L,亚硝化率达到95%以上,阴极电极自养反硝化去除率达到50%以上,COD去除率达到85%以上。结果表明,将MFC与同步短程硝化反硝化工艺结合,通过阴极室中氧气得电子获得高pH,可以强化同步短程硝化反硝化工艺,完成生物脱氮的同时回收电能,并具有减少外加碱度的优势。  相似文献   
985.
采用RAINS ASIA模型研究了"十一五"期间长三角地区实施脱硫措施前后硫沉降超临界负荷的变化.结果表明,在90%保证率下,长三角地区硫沉降的临界负荷(以S计,下同)总值为78.38万t/a;2005年该地区硫沉降的超临界负荷总值为27.98万t/a,有45.6%区域面积的硫沉降超过临界负荷;如果不实施脱硫措施,到2010年长三角地区硫沉降超临界负荷的情景将急剧恶化,硫沉降超临界负荷总值将增长18.4%,超临界负荷的区域面积将增加到48.7%;"十一五"脱硫计划如期实施后,2010年长三角地区硫沉降超临界负荷总值将在2005年的基础上下降27.4%,但仍有39.1%的区域面积超过临界负荷,须采取更严格的措施控制硫沉降量.  相似文献   
986.
Globally, thousands of kilometres of rivers are degraded due to the presence of elevated concentrations of potentially harmful elements (PHEs) sourced from historical metal mining activity. In many countries, the presence of contaminated water and river sediment creates a legal requirement to address such problems. Remediation of mining-associated point sources has often been focused upon improving river water quality; however, this study evaluates the contaminant legacy present within river sediments and attempts to assess the influence of the scale of mining activity and post-mining remediation upon the magnitude of PHE contamination found within contemporary river sediments. Data collected from four exemplar catchments indicates a strong relationship between the scale of historical mining, as measured by ore output, and maximum PHE enrichment factors, calculated versus environmental quality guidelines. The use of channel slope as a proxy measure for the degree of channel-floodplain coupling indicates that enrichment factors for PHEs in contemporary river sediments may also be the highest where channel-floodplain coupling is the greatest. Calculation of a metric score for mine remediation activity indicates no clear influence of the scale of remediation activity and PHE enrichment factors for river sediments. It is suggested that whilst exemplars of significant successes at improving post-remediation river water quality can be identified; river sediment quality is a much more long-lasting environmental problem. In addition, it is suggested that improvements to river sediment quality do not occur quickly or easily as a result of remediation actions focused a specific mining point sources. Data indicate that PHEs continue to be episodically dispersed through river catchments hundreds of years after the cessation of mining activity, especially during flood flows. The high PHE loads of flood sediments in mining-affected river catchments and the predicted changes to flood frequency, especially, in many river catchments, provides further evidence of the need to enact effective mine remediation strategies and to fully consider the role of river sediments in prolonging the environmental legacy of historical mine sites.  相似文献   
987.
Renewable energy is considered an indispensable basis of sustainable energy systems as electricity generation from renewable sources results in low emissions of greenhouse gases compared to fossil fuel based electricity and contributes to sustainable development. However, effective strategies and conducive institutional settings are needed for advancement of such clean electricity systems. Although Thailand, as a nation, has a huge potential for renewable energy utilization, its total amount of electricity generation from renewables is relatively small and could be enlarged substantially. Lack of policy mechanisms, institutional development and financing exist as major barriers for Thailand in this regard. Investigation of the nation’s current energy strategy implementation shows that relevant energy and development policies are at different stages of implementation and institutional settings are continuously evolving. This paper argues that further significant efforts could be made towards advancement of renewable electricity and thus achievement of energy sustainability in Thailand. Resource planning, effective policy and institutions, focussed planning for energy sustainability and implementation of the Clean Development Mechanism (CDM) under the Kyoto Protocol could facilitate further advancement of renewables for the nation.  相似文献   
988.
介质阻挡放电联合催化臭氧化降解甲苯   总被引:2,自引:2,他引:2  
采用介质阻挡放电区后结合MnOx/Al2O3/发泡镍去除甲苯,考察甲苯进气方式、臭氧产生方法及湿度对甲苯与O3同时去除的影响。结果表明,O3是等离子体区后催化降解甲苯的主要物种,介质阻挡放电联合催化臭氧化可实现甲苯及O3的同时高效去除。输入电压为9.0 kV时,甲苯的去除效率达92.8%,在80 min内O3的去除效率维持在99%以上。水蒸气对催化剂催化分解臭氧的活性没有直接的影响,O3浓度较高时湿度对甲苯降解效率的影响很小。GC-MS分析结果表明,甲苯降解的主要气相副产物有烷烃、酸、酮和含苯环有机物,提出了甲苯的降解途径。  相似文献   
989.
In order to assess the suitability of sludge compost application for tree peony (Paeonia suffruticosa)–soil ecosystems, we determined soil microbial biomass C (Cmic), basal respiration (Rmic), enzyme activities, and tree peony growth parameters at 0–75% sludge compost amendment dosage. Soil Cmic, Rmic, Cmic as a percent of soil organic C, enzyme (invertase, urease, proteinase, phosphatase, polyphenoloxidase) activities, and plant height, flower diameter, and flower numbers per plant of tree peony significantly increased after sludge compost amendment; however, with the increasing sludge compost amendment dosage, a decreasing trend above 45% sludge compost amendment became apparent although soil organic C, total Kjeldahl N, and total P always increased with the sludge compost amendment. Soil metabolic quotient first showed a decreasing trend with the increasing sludge compost application in the range of 15–45%, and then an increasing trend from compost application of 45–75%, with the minimum found at compost application of 45%. As for the diseased plants, 50% of tree peony under the treatment without sludge compost amendment suffered from yellow leaf disease of tree peony, while no any disease was observed under the treatments with sludge compost application of 30–75%, which showed sludge compost application had significant suppressive effect on the yellow leaf disease of tree peony. This result convincingly demonstrated that ?45% sludge compost application dosage can take advantage of beneficial effect on tree peony growth and tree peony–soil ecosystems.  相似文献   
990.
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