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81.
千岛湖水体氮的垂向分布特征及来源解析   总被引:1,自引:0,他引:1  
选取千岛湖水深0.2,5,10,20,30和40m处水样进行分析,利用氮氧同位素和稳定同位素模型(SIAR)研究千岛湖水体氮(N)的垂向分布特征,分析水体N的来源并计算各N源的贡献率.结果表明,硝酸盐(NO3-)和溶解性有机氮(DON)是千岛湖水体总溶解氮(TDN)的主要形式,分别占溶解态N的57.9%和39.7%.千岛湖水体δ15N-NO3-和δ18O-NO3-的平均值分别为4.5‰和4.3‰.上层水体(0~10m)中,硝化作用和浮游植物的同化作用共同控制水体N的形态组成和氮氧同位素值(δ15N-NO3-和δ18O-NO3-)的变化.中层水体(10~30m)中,硝化作用是主要的生物地球化学过程,使得水体NO3-含量增加而δ18O-NO3-值减小.底层水体(30~40m)受到硝化作用、底泥N释放和反硝化作用的共同影响.化肥是千岛湖水体NO3-的最主要来源,在S1和S2处的贡献率分别为51.9%和30.6%.新安江上游的农业面源污染使得S1处化肥贡献率远高于S2.土壤N是仅次于化肥的第二大水体NO3-来源,在S1和S2处的贡献率分别为17.8%和27.8%.此外,底泥对底层水体NO3-的贡献不可忽视.  相似文献   
82.
选用两种δ15N差异显著的铵态氮和硝态氮,分别设置不同浓度的铵态氮和硝态氮来处理莱茵衣藻和蛋白核小球藻,通过分析微藻的稳定氮同位素组成变化,来研究微藻利用不同浓度、不同形态无机氮过程中的稳定氮同位素分馏特征。结果显示,在未添加无机氮的条件下,微藻利用有机氮时,生长缓慢,稳定氮同位素基本上不存在分馏;在添加低浓度无机氮(≤20 mmol/L)时,微藻的生长和稳定氮同位素分馏都随着无机氮浓度的增加而增加;而添加高浓度无机氮(20 mmol/L)时,微藻的生长趋于稳定,铵态氮条件下的微藻稳定氮同位素分馏继续加大,而硝态氮条件下的微藻稳定氮同位素分馏反而减小,可能与此时微藻硝酸还原酶的活力减小有关。  相似文献   
83.
河流硝酸盐(NO-3)浓度及氮和氧同位素组成(δ15N-NO-3和δ18O-NO-3)可以辨识河水NO-3受自然过程和人为输入的影响,但流域不同土地利用方式对河水NO-3来源及转化过程的影响尚不明确,特别是山区人为输入对河水NO-3的影响仍不清楚.选择土地利用空间异质性显著的伊河和洛河作为研究对象,借助水体水化学组成,氢氧同位素(δD-H2O和δ18O-H2O)、δ15N-NO-3和δ18O-NO-3,辨识不同土地利用方式影响下河水NO-3来源及...  相似文献   
84.
ABSTRACT: Data from 54 well in central and eastern Kansas developed in unconsolidated deposits of Quaternary age indicate that nitrate concentrations are inversely related to the depth of the well screen opening below the water level in the well casing because this relationship was found to exist in an area of Nebraska and in a large area of Kansas, the relationship is generally valid over a wide geo- graphical area. In addition, the data indicate that the incidence of nitrate concentrations exceeding 45 milligrams per liter and nitrate concentrations, in general, are significantly lower in water from wells with screens deeper than 25 feet below the water table in unconfined aquifers or where screens are placed in deep confined aquifers. No concentrations of nitrate greater than 45 milligrams per liter were in obseved wells where screens were deeper than 60 feet below the casing water level. These findings suggest that general placement of well screens as far below the water table as possible in unconfined unconsolidated aquifers in Kansas. and possibly other areas of the Midwest, may be an effective measure in preventing undesirable nitrate concentrations in ground water supplies. particularly in areas where nitrate is a problem.  相似文献   
85.
The seasonal variation of 222Rn concentrations in the air of tunnels constructed during World War II at Nagano City has been investigated. The determination of 222Rn concentrations in tunnel air was performed using a solid-state nuclear track detector technique. The monthly radon concentrations changed smoothly, decreasing towards winter and increasing towards summer, and it was found that the concentrations strongly correlate with the temperature difference between the inside and the outside of the tunnel. In the innermost areas of the tunnel, the maximum concentration was observed in July, its value being about 6500 Bq m (-3). The concentrations of radon in the tunnel air decrease exponentially towards the openings of the tunnel, which indicates that the radon concentration in the tunnel is basically governed by diffusion and mixing of radon gas with air. These observations lead to the conclusion that the seasonal variation of the radon concentration in the tunnel air is mainly caused by a convection current due to a stack effect induced by the temperature difference between the tunnel air and the outside air.  相似文献   
86.
反硝化生物膜对PBS表面形态及化学组分的影响   总被引:2,自引:0,他引:2  
周海红  王建龙  赵璇 《环境科学》2006,27(12):2507-2510
PBS是一种新型的可生物降解聚合物(BDPs),可以用做反硝化碳源和生物膜载体,去除饮用水源水中的硝酸盐.利用红外光谱和扫描电子显微镜对反硝化生物膜生长前后PBS颗粒表面形态、化学组成的变化进行了分析.结果表明,PBS仅在微生物作用下降解并为反硝化菌提供碳源.PBS颗粒可以在12 h内使进水中53 mg·L-1的硝态氮降低到10 mg·L-1以下(我国饮用水水质标准为:NO3--N<15 mg·L-1).红外光谱表明,反硝化微生物附着生长后其PBS在2 925 cm-1和2 850 cm-1附近的吸收带以及3 200 cm-1~3 410 cm-1处峰值减弱,说明PBS材料中甲基、羟基官能团比例下降,而其它官能团没有发生明显的变化,PBS的主要单体组分淀粉和乙烯都可以被反硝化微生物用作碳源.扫描电子显微镜观察结果表明,反硝化生物膜附着生长后,PBS颗粒表面会出现空洞,扩大了生物膜生物附着生长的表面积,有利于形成致密的反硝化生物膜,对反硝化菌形成保护作用.  相似文献   
87.
ABSTRACT: In 1983, the City of Indianapolis, Indiana, completed construction of advanced wastewater treatment (AWT) systems to enlarge and upgrade its existing Belmont Road and South port Road secondary treatment plants. A nonparametric statistical procedure, a modified form of the Wilcoxon-Mann-Whitney rank-sum test, was used to test for trends in water quality at two upstream and two downstream sites on White River and at the two treatment plants. Results comparing the pre- (1978–1980) and post- (1983–1986) AWT periods show statistically significant improvements in the quality of the treated effluent and of the White River downstream from the plants. Water quality at sites upstream from the city was relatively constant during the period of study. Total ammonia (as N) decreased 14.6 mg/L and BOD5 (five-day biochemical oxygen demand) decreased 10 to 19 mg/L in the two effluents. Total ammonia in the river downstream from the plants decreased 0.8 to 1.9 mg/L and BOD5 decreased 2.3 to 2.5 mg/L. Nitrate (as N) increased 14.5 mg/L in the plant effluents and 2.0 to 2.4 mg/L in the river because of in-plant nitrification. Dissolved oxygen concentration in the river increased about 3 mg/L because of reduced oxygen demand for nitrification and biochemical oxidation processes.  相似文献   
88.
碳源对微生物硝酸盐异化还原成铵过程的影响   总被引:1,自引:0,他引:1  
微生物通过异化性硝酸盐还原成铵(DNRA)途径,硝态氮转化为仍可生物再利用的铵盐。以琥珀酸钠、柠檬酸钠、酒石酸钾钠为碳源,研究碳源的差异对有氧条件下微生物通过DNRA途径产铵的影响。结果显示,以琥珀酸钠和柠檬酸钠为碳源,初始浓度为20 mmol/L是较佳的实验条件,此时C/N约为1.5~2.0,NH4+-N质量浓度30.0~45.0 mg/L,最高产铵率分别为29.9%和27.0%;以酒石酸钾钠为碳源则在初始浓度为30 mmol/L,C/N约为2.0,NH4+-N质量浓度为40.0~45.0 mg/L时,最高产铵率为30.7%。反硝化和DNRA过程是同时存在的,培养液中NO3--N浓度的下降伴随着中间产物NO2--N的积累和NH4+-N浓度的升高。  相似文献   
89.
为评价物料混合对危险化学品热化学行为的影响,采用热分析-红外/质谱联用技术(TA-FTIR/MS)研究硝酸铵、柠檬酸和蔗糖的混合物的热化学行为。通过对硝酸铵及其混合物的分解温度和分解过程中逸出气体的分析,发现硝酸铵、柠檬酸和蔗糖的混合物热分解温度分别降低至135℃和153℃,而硝酸铵与甲基纤维素的混合物分解温度与硝酸铵基本相同为201℃,且各混合体系的气相分解产物均有氮氧化物(NOX),H2O和CO2。结果表明,混合物受热后其中的硝酸铵首先分解为硝酸和氨气;酸性物质和还原性物质由于对硝酸的分解反应有催化作用,使得混合物的热稳定性下降。  相似文献   
90.
Runaway reactions present a potentially serious threat to the chemical process industry and the community; such reactions occur time and time again often with devastating consequences. The main objective of this research is to study the root causes associated with ammonium nitrate (AN) explosions during storage. The research focuses on AN fertilizers and studies the effects of different types of fertilizer compatible additives on AN thermal decomposition. Reactive Systems Screening Tool (RSST) has been used for reactivity evaluation and to better understand the mechanisms that result in explosion hazards. The results obtained from this tool have been reported in terms of parameters such as “onset” temperature, rate of temperature and pressure rise and maximum temperature. The runaway behavior of AN has been studied as a solid and solution in water. The effect of additives such as sodium sulfate (Na2SO4) and potassium chloride (KCl) has also been studied. Multiple tests have been conducted to determine the characteristics of AN decomposition accurately. The results show that the presence of sodium sulfate can increase the “onset” temperature of AN decomposition thus acting as AN thermal decomposition inhibitor, while potassium chloride tends to decrease the “onset” temperature thus acting as AN thermal decomposition promoter.  相似文献   
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