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531.
532.
Y. P. Kim K. -C. Moon S. -G. Shim J. H. Lee J. Y. Kim K. Fung G. R. Carmichael C. H. Song C. H. Kang H. -K. Kim C. B. Lee 《Atmospheric environment (Oxford, England : 1994)》2000,34(29-30)
Organic carbon (OC) and elemental carbon (EC) in fine particles (PM2.5) at two background sites, Kosan and Kangwha in Korea were measured during intensive field studies between 1994 and 1999. Fine particles were collected on pre-fired quartz filters in a low-volume sampler and analyzed using the selective thermal oxidation method with MnO2 catalyst. The OC and EC concentrations at Kosan located at western tip of Cheju Island in southern Korea are lower than those at Kangwha located at western coastal area in mid-Korean peninsula. Still, the OC concentrations at Kosan are generally higher than those at other background areas in Japan and USA. The EC concentrations at Kosan are lower than or comparable to those at other background areas. The total carbon (TC, sum of OC and EC) to EC ratio values at both sites were higher than those at other background areas in Japan and USA. At Kosan, the OC and EC concentrations when air parcels were from southern China were higher than those when air parcels were coming from northern China. However, at Kangwha, the differences were statistically not clear since most air parcels were from northern China. Except when air parcels were from the North Pacific during summer, the OC and EC concentrations are well correlated indicating that both OC and EC share the same emission/transport characteristics. From the gaseous hydrocarbon data and the OC and EC relationship, it was found that during summer local biogenic emissions of OC might be significant at Kosan. 相似文献
533.
The science of agroforestry has progressed significantly during the past three decades. This article describes and documents various prominent traditional agroforestry systems. In-depth research on interactive processes of some agrisilvicultural systems have been undertaken and quantified. It has been found that the presence of woody species can enhance nutrient cycling, and can improve soil productivity, soil conservation and soil biotic andfaunal activities. In simultaneous systems however, their presence can also cause competition with the associated food crops. Most agroforestry systems constitute ecologically and bio-physically sustainable land use systems. Some are highly sustainable and economically viable, in particular the highly complex and specialized types, such as the damar and rubber agroforests in Indonesia. Agroforestry systems have potential uses in stabilization of sloping lands and buffer zones around forest reserves, for recovering degraded lands, and for improving the productivity of the bush fallow system. Despite rapid progress in biophysical research, field application of the science of agroforestry is still minimal. This article examines the possibilities of exploring the multiple contributions of trees to food security, rural income generation, diversity of products and ecosystem conservation within sustainable agroforestry contexts. Research efforts in the new millennium need to focus more on practical research and also on socio-economic and policy factors that can enhance beneficial application of the science in the near future to smallholder farmers in the tropics. 相似文献
534.
535.
Zhao Rongfang Ye Shufeng Xie Yusheng Chen Yunfa 《Journal of Material Cycles and Waste Management》2007,9(1):7-14
A new way to implement the simultaneous reutilization of solid waste, the desulfurization of coke oven gas (COG), and even
the desulfurization of coke by the co-coking of coking coal (CC) and waste plastic (WP) blended with a sorbent is proposed;
the evolution of H2S and the removal efficiency of H2S from COG during the co-coking process were investigated in a lab-scale cylindrical reactor. The experimental results indicated
that for the coking of CC blended with ZnO, Fe2O3, or blast furnace dust (BFD) as a sorbent, the instantaneous concentration of H2S in COG was lower than 500 mg/m3 (which meets the technical specification requirement of the Chinese Cleaner Production Standard–Coking Industry, HJ/T 126-2003)
when the molar ratio between the key component of the sorbent and the volatile S in CC or the CC/WP blend, n
Zn+Fe/n
S, was about 1.2 for ZnO and Fe2O3, but not for BFD under the same conditions, suggesting that ZnO and Fe2O3 are promising sorbents, but that BFD must be treated chemical or thermally before being used as a sorbent because of the
size and complicated nature of the influence of its phase/chemical composition on its desulfurization ability. However, for
the co-coking of CC and WP blended with ZnO as a sorbent, n
Zn+Fe/n
S must increase to 1.4 and 1.7 for 100/2 and 100/5 blends of CC/WP, respectively, to ensure a satisfactory efficiency for H2S removal from COG.
Part of this paper was presented at the International Symposium on EcoTopia Science 2005 (ISET05), Aug 8–9, 2005, Chikusa-ku,
Nagoya, Japan 相似文献
536.
在210Pb计年的基础上,运用水生生物遗存、色素、有机碳同位素和磁化率分析了东湖钻孔沉积物中的生物与环境信息,重建了东湖100多年来湖泊营养与环境演化历史.研究发现东湖100多年来在人类活动不断增强的背景下,指示重金属污染的磁化率和指示湖泊富营养化的色素指标如蓝藻叶黄素(Myx)、颤藻黄素(Osc)快速上升,相应的水生生物如介形虫、腹足类、水生高等植物等表现明显的组合和变化阶段,同时有机碳同位素偏正与湖泊生产力升高和藻类繁盛有关.沉积记录表明东湖生态系统近代发生了深刻变化,湖泊营养演化自早至晚呈现四阶段性:贫营养阶段(1900-1966AD)色素水平低、拥有较丰富的水生高等植物和腹足类;中营养阶段(1966-1983AD)色素含量增高、水生高等植物和腹足类减少;富营养化阶段(1983-1989AD)色素含量快速增高、水生高等植物消失;超富营养化阶段(1989AD-至今)色素含量稳定居高、某些耐污染的介形类较繁盛.结果对于认识湖泊生态环境演化与人类活动的关系、以及如何治理湖泊环境具有现实的意义. 相似文献
537.
不同施氮量对饲料稻糙米蛋白质含量的影响及其机理 总被引:3,自引:1,他引:2
采用田间小区试验探讨了"氮中量施肥法"(N,P2O5,K2O施用量为190,90,100 kg·hm-2)、"氮高量施肥法"(N,P2O5,K2O施用量为210,90,100 kg-hm-2)、"氮低量施肥法"(N,P2O5,K2O施用量为170,90,100kg·hm-2)对饲料稻威优198糙米蛋白质质量分数的影响及其机理.结果表明,与氮高量施肥法和氮低量施肥法相比,氮中量施肥法能明显促进孕穗期、乳熟期水稻旗叶中硝酸还原酶,乳熟期旗叶中蛋白水解酶活性,齐穗期旗叶谷氨酰胺合成酶以及齐穗期和乳熟期籽粒中谷氮酰胺合成酶活性,明显促进水稻对氮素营养的吸收与转运,显著提高糙米中蛋白质质量分数和蛋白质质量分数.氮中量施肥法处理糙米蛋白质质量分数分别比氮高量施肥法处理和氮低量施肥法处理提高了 1.39%和17.93%,籽粒产量分别提高了 12.02%和8.47%,糙米蛋白质产量分别提高了12.54%和18.32%.研究表明,氮中量施肥法能满足饲料稻高蛋白高产栽培的需要. 相似文献
538.
539.
农田土壤呼吸对大气CO2浓度升高的响应 总被引:3,自引:1,他引:2
大气CO2浓度急剧升高引起的全球气候变暖是人们关注的环境问题之一.随着气候变化对全球生态环境的影响日益增大,全球碳循环研究已经成为各国科学家研究的热点之一.模拟大气CO2浓度升高试验技术先后经历了人工气候室、开顶式气室、FACE技术(Free Air carbon dioxjde eariclament)阶段,FACE技术因其无限接近自然条件而成为研究大气CO2浓度增加对整个生态系统影响的最理想试验平台.土壤呼吸是陆地生态系统碳循环的重要环节,农田生态系统是陆地生态系统的重要组成.研究农田生态系统的土壤呼吸对大气CO2浓度增加的响应是预测和评价农田系统乃至整个陆地生态系统土壤碳周转和碳收支的重要前提与基础.文章根据现有研究成果.阐述了模拟大气CO2浓度升高的试验技术,比较了农田土壤呼吸的测定方法,总结了以FACE研究成果为主的高CO2浓度条件下农田土壤呼吸、不同地下来源贡献及环境因子影响,提出了进一步研究的方向,以期为全球气候变化背景下的农田土壤呼吸和碳固定及全球碳循环研究提供帮助. 相似文献
540.
Radon ((222)Rn) is a carcinogenic gas produced by the radioactive decay of radium ((226)Ra). It has been reported that soil and soil-gas are primary factors that could cause indoor radon problems. Six sites were selected for this study--Sanbook, Gangcheon, Jikyeong, Choojung, Geumsung and Homyoung--each was classified according to bedrock type. In order to investigate soil-gas radon activities and radon emanating power, innovated active and passive detecting methods were developed and applied under both field and laboratory conditions. Statistical analysis of results confirmed that the radon activity values measured using either active or passive methods under field or laboratory conditions could be interchangeable with each other. 相似文献