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41.
2010年7月对藏南羊卓雍错流域进行了水样采集,通过测定与分析,揭示了流域最大湖泊羊卓雍错表层湖水化学水平分布特征和深水剖面变化规律,并探讨了该湖与流域其他水体化学性质的差异。结果表明:流域特殊的高寒气候、湖泊形状与补给来源、湖岸水系发育程度不同是造成羊卓雍错湖水化学空间分异特征明显的关键。在水平方向上,湖水HCO3-、Ca2+以及矿化度南高北低,而SO42-和Mg2+南低北高。这是由于湖水从南向北缓慢流动过程中蒸发浓缩所致;卡鲁雄曲径流量经空姆错补给羊卓雍错北部,使其矿化度较低。在垂直方向上,愈向湖泊深处,湖水SO42-、Cl-、CO32-和矿化度愈大,HCO3-则降低。与流域其他湖泊相比,羊卓雍错水化学性质与同属以降水补给为主的湖泊相近,与以冰雪融水补给为主的湖泊差异显著。与河水和地下水相比,羊卓雍错湖水SO42-和Mg2+当量浓度最大,河水和地下水则HCO3-和Ca2+含量较大。 相似文献
42.
CO_2地质封存技术是实现碳减排的有效措施,对鄂尔多斯盆地马家沟组马五_1亚段地层水特征进行研究,是下一步实施工程化CO_2封存的首要前提。本文依据对深部钻井取样的直观观察与实验测试,采用单项指标分类评价和多项指标综合评价的方法深入分析了马家沟组马五_1亚段地层水的物理性质、化学性质、地层水类型和水化学特征参数。结果表明:马家沟组马五_1亚段地层水密度较大、矿化度极高,属于卤水,含量最多的离子是Cl~-,其次是Ca~(2+),地层水是CaCl_2型。钠氯系数、氯镁系数、脱硫系数和镁钙系数的分析表明马五_1亚段地层水封闭性极好,处于较强的还原环境。综合分析认为马家沟组马五_1亚段地层水具备实施CO_2封存的良好条件,非常适宜进行CO_2封存。 相似文献
43.
ABSTRACT: A study was conducted to elucidate some of the chemical factors affecting the rate and pathways of N transformations in lake sediments. The main emphasis was placed on modifying a noncalcareous sediment with CaCO3 to approximate the composition of a calcareous sediment. Additionally, the effects of Ca2+, CO32-, Mg2+ and OH- were evaluated by using appropriate chemicals. Further, the effect of aluminum sulfate was evaluated with both sediment types. Sediment pH at 7 days was not affected by CaCO3, but was decreased by aluminum sulfate. The CaCO3 treatment increased the rate of ammonification, nitrification, reduction of acetylene to ethylene and methane formation, while with few exceptions the other treatments decreased the rate of the transformations studied. Aluminum sulfate, which has been proposed as a lake restoration treatment, increased ammonification but decreased most of the other transformations. 相似文献
44.
45.
M. A. C. Veer 《Journal of Coastal Conservation》1997,3(1):41-48
The encroachment of some tall grass species in open dune vegetation, as observed in a Dutch dry dune area, is considered unfavourable
from a conservation viewpoint. This paper investigates differences in vegetation and soil properties between grass-dominated
and still existing open dune grassland plots at four locations along the coast. Soil properties studied include nitrogen and
phosphorus pools and nitrogen availability by mineralization. Vegetation properties included are above and below-ground biomass
and nitrogen and phosphorus concentrations in above-ground biomass.
Systematic differences in N-pools between grass-dominated and open dune grassland plots were not observed. However, N-availability
by mineralization and its turnover rates are higher in grass-dominated plots than in open dune grassland plots, as well as
above and below-ground biomass. In open dune grassland plots, atmospheric N-input is an important source of N, whereas in
grass-dominated plots mineralization largely exceeds atmospheric N-input. However, these observations do not explain the mosaic-like
vegetation pattern. Grazing intensity is most likely the determinant factor in the dry dune system. It is concluded, that
grass encroachment is probably triggered by atmospheric deposition and is enhanced by positive feedbacks in the N-cycle. The
relevance of these results for restoration management is briefly discussed. 相似文献
46.
二氧化钛纳米颗粒(TiO2NPs)的广泛应用使其环境释放量不断增加,从而影响到土壤氮的转化过程.然而,目前关于TiO2NPs对湖滨沼泽土壤氮矿化的影响机制尚不明确.因此,本研究以典型沼泽土壤为研究对象,通过室内培养实验研究不同剂量TiO2NPs处理(0 mg·kg-1(CK)、10 mg·kg-1(A10)、100 mg·kg-1(A100)、250 mg·kg-1(A250)、1000 mg·kg-1(A1000))对土壤理化性质、酶活性和氮矿化过程的影响,探讨TiO2NPs输入对土壤氮矿化过程影响的内在机制.结果表明:①不同剂量TiO2NPs处理显著降低了土壤pH和总有机碳(TOC)含量(p<0.05),A100、A250和A1000处理显著降低了硝态氮(NO3--N)含量(p<0.05).②A250和A1000处理显著抑制了过氧化氢酶活性(p<0.05);培养7 d,不同剂量TiO2NPs处理均显著促进了脲酶活性(p<0.05),抑制了脱氢酶活性(p<0.05);随着培养时间延长,TiO2NPs处理对脲酶和脱氢酶活性的抑制作用逐渐减弱,表明TiO2NPs的负面作用会随时间减弱.③不同剂量TiO2NPs处理对氨化速率没有显著影响(p>0.05),A250、A1000处理对硝化和矿化速率有显著抑制作用(p<0.01).④土壤氮矿化速率与土壤pH、总磷(TP)、NO3--N含量呈显著正相关,与脲酶、过氧化氢酶活性呈显著负相关.TiO2NPs主要通过改变沼泽土壤NO3--N含量影响氮矿化过程.本研究可为湖滨湿地保护和TiO2NPs环境风险评估提供理论依据. 相似文献
47.
针对醇胺类吸收剂富液中CO_2的解吸及后续处置所存在的不足,提出一种新型解吸方案——钙法.通过CO_2负荷试验和Ca(OH)_2投加量试验确定了该法理想处理负荷为0.84 mol·L-1,理想投加比例为C∶Ca=1∶1(摩尔比),此条件下反应15 min和30 min的解吸率达到52.17%和55.02%,这表明钙法矿化解吸乙醇胺富液中CO_2是可行的.在此基础上,进一步研究了pH、温度和搅拌强度对CO_2解吸固定效果的影响.试验结果表明,CO_2解吸率随着pH和搅拌强度的增加而增大,但当pH和搅拌强度增大到一定程度后,解吸率增长放缓甚至出现下降.较高的解吸温度尽管解吸率更大,但高温条件下无法达到矿化固定CO_2的目的.CO_2二次吸收负荷试验表明经钙法解吸后的MEA再生液具有良好的可重复使用性. 相似文献
48.
采用好氧间歇淋洗培养法,对洱海流域内的农田、菜地土壤样品培养2周,研究土壤氮的矿化及其影响因素.结果表明,表层土壤2周氮矿化量平均为65.54mg/kg.不同农田利用方式下,表层土壤氮矿化量的平均值为露地菜田粮田大蒜田.土壤氮素矿化以硝态氮为主,且随着土壤深度的增加而降低.土壤氮矿化同全氮、有机质含量呈明显的正相关关系,与pH值呈负相关;氮矿化与无机氮含量、C/N之间无显著关系.全氮、有机质和pH值是影响该流域农田土壤矿化的主要因子. 相似文献
49.
Floodplain Trapping and Cycling Compared to Streambank Erosion of Sediment and Nutrients in an Agricultural Watershed
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Jaimie L. Gillespie Gregory B. Noe Cliff R. Hupp Allen C. Gellis Edward R. Schenk 《Journal of the American Water Resources Association》2018,54(2):565-582
Floodplains and streambanks can positively and negatively influence downstream water quality through interacting geomorphic and biogeochemical processes. Few studies have measured those processes in agricultural watersheds. We measured inputs (floodplain sedimentation and dissolved inorganic loading), cycling (floodplain soil nitrogen [N] and phosphorus [P] mineralization), and losses (bank erosion) of sediment, N, and P longitudinally in stream reaches of Smith Creek, an agricultural watershed in the Valley and Ridge physiographic province. All study reaches were net depositional (floodplain deposition > bank erosion), had high N and P sedimentation and loading rates to the floodplain, high soil concentrations of N and P, and high rates of floodplain soil N and P mineralization. High sediment, N, and P inputs to floodplains are attributed to agricultural activity in the region. Rates of P mineralization were much greater than those measured in other studies of nontidal floodplains that used the same method. Floodplain connectivity and sediment deposition decreased longitudinally, contrary to patterns in most watersheds. The net trapping function of Smith Creek floodplains indicates a benefit to water quality. Further research is needed to determine if future decreases in floodplain deposition, continued bank erosion, and the potential for nitrate leaching from nutrient‐enriched floodplain soils could pose a long‐term source of sediment and nutrients to downstream rivers. 相似文献
50.
沉积物中有机磷在pH和温度影响下的矿化机制 总被引:8,自引:4,他引:4
通过实验室模拟,采用Bowman-Cole有机磷分级修正体系研究了pH和温度对沉积物中有机磷矿化的影响机制.结果表明,pH为6.5、 7.5、 8.5时有机磷(TOP)占总磷(TP)比例分别介于31.71%~41.73%、30.85%~43.29%和27.25%~56.31%之间,碱性条件促进有机磷矿化,中性条件下矿化速率减缓.15℃、25℃和35℃的TOP/TP分别介于29.07%~46.62%、27.81%~46.62%和34.56%~46.62%,在30 d模拟期内,前10 d有机磷矿化随着温度上升而增加,后20 d呈相反趋势.在偏酸性和高温条件下,稳性有机磷(NOP)向中活性有机磷(MLOP)的转化,中活性有机磷(MLOP)向活性有机磷(LOP)的转化呈现同步性,LOP矿化分解很快,使其可能成为上覆水中藻类生长的磷源,潜在影响了富营养化进程. 相似文献