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221.
以蒸馏法为基础, 研究了适合海水中铵盐稳定氮同位素分析的预处理方法。对蒸馏法预处理过程中的最佳蒸馏时间、沸石的选取、铵盐最适浓度范围等分别进行改进和优化, 获得稳定、高效的海水中铵盐氮稳定同位素分析预处理方法。结果表明: 最佳蒸馏时间为50 min, 铵盐的回收率为(97±5.8)%。测定了不同沸石对不同浓度氨氮的吸附率, 筛选出酸性条件下铵氮吸附效率较高且稳定的康华科技沸石; 确定铵盐的最佳适用浓度范围为2~10 μmol/L, 在该浓度范围内氮回收率94%~99%,氮分馏系数为0.1‰~0.8‰。将此方法应用于长江口海域水样分析, 结果表明, 这一方法可以应用于河口中铵盐的氮同位素分析, 能够为河口中溶解态氮的来源及循环机理等研究提供有效信息。  相似文献   
222.
Abstract

Uptake rates of ammonium (NH4 + ), nitrate (NO3 ? ), and urea by three subgroups of phytoplankton (< 200, < 20, < 2 μm) off Westland, were measured using 15 N tracer techniques in midwinter 1988, after a recent upwelling. For all size fractions at surface irradiance (I100), nitrogen (N) was taken up primarily as NO3 ?. This accounted for 67–85% of total N uptake (SρN), whereas at 40 and 7% of surface irradiance, the regenerated N (NH4 + ) and urea) made up 31–72% of SρN. Depth profile experiments for all three size components showed that uptake of NO3 ? was most light‐sensitive, followed by that of NH4 + and urea. The irradiance and nutrient availability plot indicated that light was substantially more important than the nutrient concentrations in controlling the assimilation of N by microplankton (20–200 μm). Nano‐ (2–20 μm) and picoplankton (< 2 μm) however, were not as sensitive to either light or nutrient concentrations. High winds and the resulting deep mixing, combined with offshore and alongshore advection in the midwinter, were suggested to be the major cause of the low biomass and N productivity.  相似文献   
223.
Abstract

The Whangamaire Stream (North Island, New Zealand) has high concentrations of nitrate nitrogen (NO? 3‐N), biochemical oxygen demand (BOD5), and Kjeldahl nitrogen (TKN) as a result of catchment land use practices. The lower reaches of the stream drain intensively farmed land and have dissolved oxygen (DO) levels of 10–50% saturation. The dominant riparian vegetation, Apium nodiflorum, provides a large organic loading by intercepting nutrients in run‐off and then decaying in the stream channel. Water quality and reaeration aspects of the stream were studied in order to explain the observed low DO levels. Measurements of the reaeration coefficient at 20°C, K2 20, using methyl chloride (CH3Cl) as a gas tracer, yielded values of 1.1–3.0 d?1 for the upper part of the study reach and 15.5–16.2 d?1 for the lower reach (overall average 12.5 ± 2.5 d?1). These were in agreement with values inferred from single‐station diurnal curve analysis, which also showed that respiration was dominant in the lower reach where photo‐synthetic activity was inhibited by shade. The relatively large reaeration coefficients ensure that parts of the stream do not become anoxic at night time. Better riparian management and reduced nutrient inputs are likely to improve stream water quality.  相似文献   
224.
以1997年8月中旬和2011年10月中旬对三门湾附近海域开展的海域水质现状调查为依据,分析了近15 a间该海域水体环境氮、磷营养盐的分布现状及变化特征。结果表明:近15 a来,三门湾海域的无机氮和活性磷酸盐含量均成倍增长,水体营养程度由轻度富营养化逐步上升为重度富营养化;从营养结构来看,活性磷酸盐仍为限制性富营养化因子;大量的海水养殖是导致该海域营养盐大幅提高的直接原因。因此,为控制三门湾的富营养化现象进一步加剧,建议适度控制海水养殖规模,调整海水养殖结构,加强对三门湾沿岸排污控制,以获得养殖经济效益和生态环境效益的协调、可持续发展。  相似文献   
225.
根据2010年5月至2010年10月每月对青木关地下河河水的监测数据,利用15N同位素技术并结合水化学指标,分析地下河的水化学特征以及硝态氮来源的时空变化特征。结果表明,地下河出口丁家龙洞硝态氮浓度(5.077mg/L)比入口天池硝态氮浓度(0.842mg/L)高6倍多。入口天池处地下河河水硝态氮浓度比较低,δ15N浓度变化范围为-7.0475‰~+7.059‰,变化幅度不大,说明该点的氮污染较低,地下水受外界影响较小,污水和粪便不是主要的δ15N来源。出口丁家龙洞处的δ15N浓度变化范围在-21.453‰~+37.825‰,总体浓度高且变化幅度大,受上游养猪场粪便直接排入及降水影响较大。   相似文献   
226.
Based on survey data from April to May 2009, distribution and its influential factors of dissolved inorganic nitrogen (DIN) over the continental slopes of the Yellow Sea (YS) and East China Sea (ECS) are discussed. Influenced by the Changjiang (Yangtze) River water, alongshore currents, and the Kuroshio current off the coast, DIN concentrations were higher in the Changjiang River estuary, but lower (<1 μmol/L) in the northern and eastern YS and outer continental shelf area of the ECS. In the YS, the thermocline formed in spring, and a cold-water mass with higher DIN concentration (about 11 μmol/L) formed in benthonic water around 123.2°E. In Changjiang estuary (around 123°E, 32°N), DIN concentration was higher in the 10 m layer; however, the bottom DIN concentration was lower, possibly influenced by mixing of the Taiwan Warm Current and offshore currents.  相似文献   
227.
The bioavailability of nutrients is important in controlling ecological processes and nitrogen cycling in oligotrophic mangrove forests, yet the variation of diazotrophic community structure and activity with nutrient availability in sediments remains largely unexplored. To investigate for the first time how nutrients in sediments affect spatial and temporal patterns of diazotrophic community structure and activity, the sedimentary environment of Twin Cays, Belize, was examined with respect to the effects of long‐term fertilization [treatments: control (Ctrl), nitrogen (N), and phosphorus (P)] on N2 fixation rates and nifH gene community structure. We found that N2 fixation rates were significantly higher at the P‐treatment, intermediate at the Ctrl‐treatment and lower in the N‐treatment (P: 4.2 ± 0.5, Crtl: 0.8 ± 0.1, N: 0.4 ± 0.1 nmol·N·g?1·h?1; P < 0.001) with spatial (Ctrl‐ and P‐treatments) and temporal (only P‐treatment) variability positively correlated with live root abundance (r2 = 0.473, P < 0.001) and concentration (r2 = 0.458, P < 0.0001). The community structure of diazotrophs showed larger spatial and temporal variability in the fertilized treatments than in the Ctrl‐treatment, with the relative abundance of OTUs (nifH operational taxonomic units) at the fertilized treatments inversely related to live root abundance. Overall, long‐term fertilization (with either N or P) affects not only nutrient levels in mangrove sediments directly, but also spatial and temporal patterns of both community structure and activity and likely plant‐microbe interactions as well. Our findings suggest that the maintenance of natural nutrient conditions in mangrove sediments is important to ensure the stability of microbial functional groups like diazotrophs.  相似文献   
228.
氨氮胁迫对刺参几种免疫酶活性的影响   总被引:3,自引:0,他引:3  
以养殖刺参(Apostichopus japonicus)为研究对象,对不同浓度的氨氮处理及病菌感染条件下刺参体腔液免疫酶的变化进行了测定.结果表明:随着氨氮处理强度的增加,刺参体腔液中超氧化物歧化酶(SOD)、碱性磷酸酶(ALP)、谷胱甘肽过氧化物酶(GPx)及溶菌酶(LSZ)活性呈现先升高后降低的趋势,而同时感染病菌的情况下,较低质量浓度的氨氮胁迫可使SOD、GPx、ALP及LSZ活性上升,但在较高浓度氨氮处理时,酶活性的诱导则受到抑制.说明适宜浓度的氨氮处理可增强刺参的免疫力,从而减轻病菌感染对刺参造成的免疫功能损伤和提高刺参抗病力.刺参在感染病原菌假交替单胞菌(Pseudoalte-romonas sp)的条件下,3 mg/L、4 mg/L和6 mg/L浓度的氨氮处理第6天,刺参的累积发病死亡率分别为44.4%、55.6%和72.2%,高于对照组,表明较高浓度的氨氮胁迫能够显著降低刺参的免疫力,增加对病原菌的易感性.因此,在刺参养殖过程中,氨氮浓度的调控具有重要的意义.  相似文献   
229.
The physical stresses associated with emersion have long been considered major factors determining the vertical zonation of intertidal seaweeds.We examined Porphyra umbilicalis(Linnaeus) Kützing thalli from the vertical extremes in elevation of an intertidal population(i.e.upper and lower intertidal zones) to determine whether Porphyra thalli acclimate to different vertical elevations on the shore with different patterns of nitrate uptake and nitrate reductase(NR) and glutamine synthetase(GS) activities in response to different degrees of emersion stress.We found that the nitrate uptake and NR recovery in the emersed tissues took longer in lower intertidal sub-population than in upper intertidal sub-population;and GS activity was also significantly affected by emersion and,interestingly,such an activity was enhanced by emersion of thalli from both upper and lower intertidal zones.These results suggested that intra-population variability in post-emersion recovery of physiological functions such as nutrient uptake and NR activity enables local adaptation and contributes to the wide vertical distribution of P.umbilicalis.The high GS activity during periodic emersion stress may be a protective mechanism enabling P.umbilicalis to assimilate nitrogen quickly when it again becomes available,and may also be an evidence of photorespiration during emersion.  相似文献   
230.
科尔沁沙质草地优势多年生植物氮素回收效率的分异特征   总被引:1,自引:0,他引:1  
李玉霖  崔夺  陈静  毛伟  赵学勇 《中国沙漠》2013,33(3):688-695
养分回收是多年生植物重要的适应策略,通过这种方式可以使植物重新利用体内养分。尤其在养分贫瘠的环境中,养分条件的微小变化都会影响植物的生长、竞争和适合度。但是,不同物种和不同生活型植物的氮素回收效率具有较高的变异,这对理解不同物种或生活型植物在生态系统功能中的作用具有重要意义。本研究分析了科尔沁沙质草地生态系统中39种多年生植物成熟绿叶和枯叶的氮素含量和氮素回收效率,以揭示不同物种或生活型植物氮素回收效率的分异特征。结果表明:科尔沁沙质草地优势多年生植物成熟绿叶氮素含量的变化范围在12.2~33.4 mg·g-1,平均值为23.3 mg·g-1;与全国及全球尺度上的研究结果相比,科尔沁沙质草地成熟绿叶氮含量平均值偏高,说明干旱荒漠环境植物叶片平均氮含量相对较高;多年生植物枯叶的氮素含量明显小于成熟绿叶氮素含量,变化范围在6.2~18.8 mg·g-1,平均值为11.3 mg·g-1;多年生植物氮素回收效率的范围在29%至74%之间变化,平均值为50.3%。这说明氮素回收是科尔沁沙质草地生态系统多年生植物重要的养分保留策略之一。另外,沙质草地不同生活型植物的氮素回收效率存在显著的差异。固氮植物和禾本科植物的氮素回收效率显著低于灌木和杂类草植物。这一结果间接说明植物氮素保持能力的分异是半干旱沙质草地植物共存的机理之一。  相似文献   
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