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951.
太湖西部河湖氮污染物来源及转化途径分析 总被引:6,自引:2,他引:4
通过2014年枯水、丰水两期监测,综合分析了太湖西部入湖河流与湖区水体及其沉积物的无机氮形态与同位素特征,并利用δ~(15)N识别了太湖西部上游区氮污染来源及转化途径的生物化学作用机制.结果表明:NO_3~--N与NH_4~+-N为研究区域入湖河流无机氮的主要形态,而NO_3~--N为西部湖区水体无机氮的主要形态;δ~(15)N-NO_3~-的数值范围揭示了西部入湖河流在枯水季NO_3~--N主要来源于农用化肥,有少量矿化土壤有机氮,而丰水季则以生活污水为主,有少量矿化土壤有机氮及农用化肥;δ~(15)N-NH_4~+的数值范围说明了生活污水是河流水体NH_4~+-N的主要来源;通过水体及沉积物样品NO_3~--N、NH_4~+-N、δ~(15)N-NO_3~-、δ~(15)N-NH_4~+的协同分析可知,湖区氮的赋存形态主要受湖区水体硝化作用及沉积物内反硝化作用的影响. 相似文献
952.
为了解"引江济太"过程中塑化剂类污染物对贡湖的输入特征,于2013年8月对14个采样点的7种邻苯二甲酸酯类化合物(PAEs)的浓度进行采样分析,并通过美国环保署(USEPA)推荐的方法,对其环境风险进行评价.结果表明:各采样点邻苯二甲酸二丁酯(DBP)和邻苯二甲酸二环己酯(DCHP)均有检出,除采样点10、11和12外,邻苯二甲酸二乙酯(DEP)也有检出,其余4种均未检出,长江引水经望虞河进入贡湖后,DEP、DBP和DCHP浓度均有不同程度的降低,且其最高浓度均出现在望虞河长江引水处(采样点1),说明在引水过程中长江水对望虞河有明显的PAEs输入,而贡湖锡东水厂DEP浓度高于贡湖其他采样点,南泉水厂DBP和DCHP浓度高于贡湖其他采样点,金墅湾水厂PAEs浓度总体处于较低水平.环境健康风险评价结果显示:DEP的最大非致癌风险值为3.91×10-8a~(-1),未超过国际组织规定范围,而DBP的最大非致癌风险值为1.17×10-5a~(-1),超过英国皇家协会RS规定的1×10-6a~(-1),但均对人体无明显非致癌危害. 相似文献
953.
太湖西部河网中沉积物氮的空间分布特征 总被引:4,自引:0,他引:4
选取太湖主要入湖水系(西苕溪水系和宜溧-洮滆水系)为研究对象,于2014年1月完成水体及表层沉积物各102个样品的采集,分析了沉积物中氮(N)不同形态的空间分布特征及其影响因素.结果表明,西苕溪水系表层沉积物总氮(TN)含量高于宜溧-洮滆水系,均值分别为2164.91 mg·kg~(-1)和983.52 mg·kg~(-1),两个水系间沉积物TN含量存在显著差异.西苕溪和宜溧-洮滆两个水系沉积物中无机氮(IN)以氨氮(NH+4-N)为主,平均含量分别为120.90 mg·kg~(-1)和49.85 mg·kg~(-1),而硝态氮(NO_3~--N)平均含量仅为9.60 mg·kg~(-1)和13.95 mg·kg~(-1).沉积物中有机氮(ON)含量及分布与TN相似,西苕溪和宜溧-洮滆水系ON均值分别为2034.41 mg·kg~(-1)和917.77 mg·kg~(-1),占各自TN的百分比分别为93.90%和92.99%.表层沉积物各形态N之间及与上覆水体之间均具有显著的相关性,表明沉积物与上覆水之间的浓度梯度可能会驱动IN向上覆水体进行释放. 相似文献
954.
论文利用ERA-Interim(0.5°×0.5°,简称ERA)、NCEP/NCAR2(2.5°×2.5°,简称NCEP2)两种不同分辨率的再分析资料和探空观测资料,首先分析了夏季(7月)和冬季(1月)青藏高原(以下简称高原)上大气水汽含量大值区(简称"湿池")的区域分布特征,然后基于ERA资料分析了1979—2012年间高原"湿池"的一些变化特征,发现了一些新的事实。主要结果包括:在对流层中上层,高原上无论夏、冬季都有大气水汽含量的高值中心——高原"湿池"存在。夏季7月高原"湿池"强度最强,ERA资料除了在高原南部有自西到东的连续高湿中心带外,在高原西北部还有一个高湿中心;NCEP2资料仅在高原东南部和西南部有两个高湿中心。冬季1月,两种资料均只在高原东南部有高湿中心。总体上,ERA资料与探空观测资料的高湿中心区更为接近。7月,高原南部高湿中心在1990年代中期(1994—1996年)之后持续偏强,西北部中心强度有弱—强—弱—强交替变化特征;1月,高湿中心在1980年代末期开始持续偏强。高原南部高湿中心带在7月几乎是一个连续的区域,1996年以后这一特征更为明显,在1月则是分为东西两段的高湿中心带。 相似文献
955.
956.
Carbonyl compounds are important intermediates in atmospheric photochemistry, but their primary sources are still not understood well. In this work, carbonyls, hydrocarbons, and alkyl nitrates were continuously measured during November 2011 at a rural site in the Yangtze River Delta region of China. Mixing ratios of carbonyls and hydrocarbons showed large fluctuations during the entire measurement. The average level for total measured volatile organic compounds during the pollution episode from 25th to 27th November, 2011 was 91.6 ppb, about 7 times the value for the clean period of 7th-8th, November, 2011. To preliminarily identify toluene sources at this site, the emission ratio of toluene to benzene (T/B) during the pollution episode was determined based on photochemical ages derived from the relationship of alkyl nitrates to their parent alkanes. The calculated T/B was 5.8 ppb/ppb, significantly higher than the values of 0.2-1.7 ppb/ppb for vehicular exhaust and other combustion sources, indicating the dominant influence of industrial emissions on ambient toluene. The contributions of industrial sources to ambient carbonyls were then calculated using a multiple linear regression fit model that used toluene and alkyl nitrates as respective tracers for industrial emission and secondary production. During the pollution episode, 18.5%, 69.0%, and 52.9% of measured formaldehyde, acetaldehyde, and acetone were considered to be attributable to industrial emissions. The emission ratios relative to toluene for formaldehyde, acetaldehyde, and acetone were determined to be 0.10, 0.20 and 0.40 ppb/ppb, respectively. More research on industrial carbonyl emission characteristics is needed to understand carbonyl sources better. 相似文献
957.
Water quality in rivers is vital to humans and to maintenance of biotic and ecological integrity. During the Four Major Rivers restoration of South Korea, remarkable attempts have been made to decrease external nutrient loads and moveable weirs were designed to discharge silt that may deposit in pools. However, recently eutrophication of the Nakdong River, which was limited to the lower reaches, is seen to be spreading upstream. The reduction of external nutrient loads to rivers is a long-term goal that is unlikely to lead to reductions in algal blooms for many years because of the time required to implement effective land management strategies. It would therefore be desirable to implement complementary strategies. Regulating the amount of water released is effective at preventing algae blooms in weir pools; so, the relationship between discharge, stratification and bloom formation should be understood in this regard. However, pollutants are likely to accumulate in the riverbed upstream from release points. Thus, to control phosphorus levels, total phosphorus density should be lowered by applying in-river techniques as well. As many ecosystem properties are controlled by multiple processes, simultaneous river bottom improvement techniques, such as combined dissolved oxygen supply and nutrient inactivation, are likely to be effective. The purpose of this review is to present a series of technological approaches that can be used to improve the river bottom area and hence sediment nutrient release, and to illustrate the application of these techniques to the Nakdong River. 相似文献
958.
Mengmeng Zheng Hua Zheng Yingxia Wu Yi Xiao Yihua Du Weihua Xu Fei Lu Xiaoke Wang Zhiyun Ouyang 《环境科学学报(英文版)》2015
The nitrogen balance can serve as an indicator of the risk to the environment of nitrogen loss from agricultural land. To investigate the temporal and spatial changes in agricultural nitrogen application and its potential threat to the environment of the Haihe Basin in China, we used a database of county-level agricultural statistics to calculate agricultural nitrogen input, output, surplus intensity, and use efficiency. Chemical fertilizer nitrogen input increased by 51.7% from 1990 to 2000 and by 37.2% from 2000 to 2010, concomitant with increasing crop yields. Simultaneously, the nitrogen surplus intensity increased by 53.5% from 1990 to 2000 and by 16.5% from 2000 to 2010, presenting a continuously increased environmental risk. Nitrogen use efficiency decreased from 0.46 in 1990 to 0.42 in 2000 and remained constant at 0.42 in 2010, partly due to fertilizer composition and type improvement. This level indicates that more than half of nitrogen inputs are lost in agroecosystems. Our results suggest that although the improvement in fertilizer composition and types has partially offset the decrease in nitrogen use efficiency, the environmental risk has still increased gradually over the past 20 years, along with the increase in crop yields and nitrogen application. It is important to achieve a better nitrogen balance through more effective management to significantly reduce the environmental risk, decrease nitrogen surplus intensity, and increase nitrogen use efficiency without sacrificing crop yields. 相似文献
959.
Excretion of manure-borne estrogens and androgens and their potential risk estimation in the Yangtze River Basin 总被引:1,自引:0,他引:1
Yanxia Li Shiying Gao Shufang Liu Bei Liu Xuelian Zhang Min Gao Linjie Cheng Boyang Hu 《环境科学学报(英文版)》2015,37(11):110-117
The Yangtze River is the longest river in China, and the river basin spans one fifth of the area of the whole country. Based on statistical data, the excretion of manure-borne steroid hormones, including steroid estrogens(SEs) and steroid androgens(SAs), in 10 provinces of China within the region has been estimated. The potential environmental and ecological risk of manure-borne steroid estrogens to the surface water in this region was also assessed. The manure-borne SE and SA excretions in the 10 provinces and municipalities vary in the order: Sichuan Hunan Hubei Yunnan Jiangsu Anhui Jiangxi Chongqing Qinghai Shanghai. The highest increase of manure-borne SEs(1434.3 kg)and SAs(408.5 kg) was found in Hunan and Hubei provinces, respectively, and the total excretion in 2013 was 65% more than 15 years earlier in these two provinces. However, the emissions in Anhui and Shanghai decreased in this 15 year period of time. Swine urine,chicken feces, cattle urine, and laying hen feces were considered the dominant sources of manure-borne E1, βE2, αE2, and SAs, respectively. Although Jiangsu province did not have the largest excretion of manure-borne SEs, it had the highest level of predicted17β-estradiol equivalency(EEQs) value of 16.65 ng/L in surface water because of the limited surface water resources. According to the lowest observable effect level of 10 ng/L for17β-estradiol, the manure-borne SEs in Jiangsu province might potentially pose ecological risk to its wild aquatic organisms. 相似文献
960.
为研究河流线型对河流自净能力的影响,选取5条具有不同河流线型的河涌进行研究,以弯曲度和分形维数表征河流线型,以TP、NH 3-N、NO 2-N、NO 3-N、COD Cr、TOC、DOC、叶绿素(Chlorophyll)和蓝绿藻藻蓝蛋白(BGA-PC)等9项水质指标沿程削减率表征河流自净能力,并分析各研究河段的悬浮微生物生物量和生物活性,探讨河流线型影响河流自净能力的作用机制。结果表明:多项水质指标沿程削减率随河流线型蜿蜒程度的增加而提升。在直立式浆砌石挡墙河段,河流线型通过提高悬浮微生物生物活性,进而增强河流自净能力,使TP、NH 3-N、NO 3-N、DOC、Chlorophyll和BGA-PC的沿程削减率显著提升;而在格宾石笼挡墙河段,河流线型通过增加悬浮生物生物量和提高生物活性,进而增强河流自净能力,使NO 2-N、COD Cr、TOC和DOC的沿程削减率显著提高。 相似文献