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1.
安徽太平湖水库初级生产力时空分布及分析   总被引:1,自引:1,他引:0  
安徽太平湖是2014年国家列入的重点保护湖泊之一,鉴于其生物本底资料的缺乏,于2012年11月至2014年10月,从上游至下游选取H1、H2、H3、H4、H5共5个样点,采用黑白瓶法对太平湖的初级生产力进行为期2年的调查研究.结果显示,太平湖水柱毛初级生产力、水柱净初级生产力和水柱呼吸量的平均值分别为4.54±6.72、-1.82±7.77和6.50±7.62 g/(m2·d).时间分布上,水柱毛初级生产力出现3个峰值,分别在2012年11月、2013年5月和2014年7月,呼吸量在2013年7月份出现远高于其他月份的峰值,达到了16.04 g/(m2·d),水柱毛初级生产力季节变化表现为夏季秋季春季冬季.太平湖初级生产力存在显著的空间差异,水平分布上毛初级生产力与呼吸量的水平分布相似,湖心H3样点最小,下游的H4、H5样点较高;垂直分布显示,毛初级生产力主要贡献在表层和1SD层,并沿水深逐渐降低,呼吸量的垂直分布与毛初级生产力不同,最高值出现在1SD和2SD层,各层净初级生产力的值均较小,无明显峰值或谷值.研究表明,太平湖水库水柱的P/R系数小于1,但最高生产力层(表层)的P/R系数大于1.相关分析显示水柱毛初级生产力与温度和湖深呈显著正相关,与其它环境因子相关性不明显.  相似文献   

2.
香溪河是三峡库区最大的入库支流,目前关于香溪河沉积物微生物群落结构特征及其主要影响因素尚不明确。本研究监测香溪河上、中、下游上覆水及沉积物的主要理化指标,通过16S rDNA高通量测序研究香溪河表层沉积物中微生物群落结构特征,使用统计学软件分析细菌与理化指标间的关系。结果表明,上覆水中氨氮(NH3-N)、叶绿素a(Chl.a)浓度自下游向上游逐渐升高,其中NH3-N浓度从下游的2.04 mg/L升高到上游的3.14 mg/L。不同点位上覆水中磷酸盐(PO34-)浓度在0.14~0.18 mg/L之间波动;同一点位间隙水中NH3-N、PO43-浓度明显高于上覆水,10~15cm沉积物间隙水中NH3-N与PO43-浓度分别是0~5 cm沉积物间隙水的3.4倍和1.7倍。沉积物中Fe(Ⅱ)、Fe(Ⅲ)、酸可挥发性硫化物和铬还原性硫化物含量均表现为上游点位...  相似文献   

3.
三峡水库主要支流碱性磷酸酶活性的比较   总被引:1,自引:0,他引:1  
袁轶君  毕永红  胡征宇 《湖泊科学》2019,31(4):1012-1022
为进一步认识和理解三峡水库中磷的迁移、转化规律及其与富营养化之间的关系,于2014年7月至2015年7月对三峡水库12条典型支流的水体碱性磷酸酶活性进行跟踪观测与比较分析,同步监测各样点水体的理化指标.结果发现,各支流水体碱性磷酸酶活性的分布呈现显著的时空异质性,该异质性与各支流水体富营养化程度密切相关.从季节上看,春季碱性磷酸酶活性呈逐渐上升的趋势,到夏季达到高峰,秋季碱性磷酸酶活性逐渐下降,冬季降到全年最低点.从空间分布上看,水体碱性磷酸酶活性在各支流的总体分布趋势为:小江 > 香溪河 > 苎溪河 > 童庄河 > 青干河 > 袁水河 > 磨刀溪 > 梅溪河 > 汤溪河 > 草堂河 > 大宁河 > 神农溪.综合营养指数较高的小江、香溪河和苎溪河,其碱性磷酸酶活性较高;综合营养指数较低的大宁河和神农溪,碱性磷酸酶活性较低.相关分析显示,各支流碱性磷酸酶活性与水温、溶解氧、电导率、pH和浊度均存在显著正相关;与透明度呈显著负相关.在营养盐方面,碱性磷酸酶活性与可溶性活性磷呈显著负相关;与高锰酸盐指数、叶绿素a浓度和综合营养状态指数均呈显著正相关.不同时期不同生物的贡献和不同环境因素的影响是导致碱性磷酸酶时空异质性的主要原因.  相似文献   

4.
三峡水库典型支流上游区和回水区营养状态分析   总被引:10,自引:3,他引:7  
张晟  宋丹  张可  曾凡海  李斗果 《湖泊科学》2010,22(2):201-207
2006年3、5、8月,对三峡水库成库后5条支流的上游区和回水区水质参数及营养因子分布进行了初步研究.研究结果表明,支流高锰酸盐指数范围在1.00-2.50mg/L、COD范围为6.00-26.5mg/L,上游区与回水区有机物含量差异不大,支流目前未受到有机物污染影响.NH_4~+-N范围为0.039-0.367mg/L,各支流含量均为丰水期最大.TN范围在0.58-1.67mg/L,TP范围在0.005-0.133mg/L,支流回水区TN和TP含量均远高于水体发生富营养化的最低限制值,水体存在发生富营养化的风险.大多支流N/P比值处于适宜藻类生长范围.Chl.a浓度范围为0.94-28.9mg/m~3,各支流回水区Chl.a浓度均为5月最大河流回水区Chl.a浓度高于上游区,上游区、回水区Chl.a含量有显著差异.选用修正的Carlson营养状态指数(Trophic State Index)TSI_M法,评价了支流水体营养状态,TSI_M指数范围在36.0-64.2,上游区除龙河、澎溪河5月达到富营养水平外,其余支流均为贫-中营养水平.回水区各支流均达到中-富营养水平.支流回水区营养状态指数均高于上游区,但各支流增加幅度不同.支流回水区水体营养状态明显受三峡水库蓄水水体流速减缓的影响.Chl.a与COD(n=15,P0.01)呈极显著正相关,与其它营养因子无明显相关关系.三峡水库完工后,支流回水区水体流速减缓,富营养化趋势可能加重.  相似文献   

5.
流域场镇式发展是三峡地区城乡统筹发展的重要模式,通常形成河流两岸串珠状的场镇分布格局,这种人类活动的点状聚集特征对入库河流水环境的综合影响并不清楚.选择三峡库区流域场镇发展特征明显的黑水滩河及主要支流为研究对象,于2014年9月至2015年6月期间对流域内分布的主要场镇前后的水体进行碳、氮、磷浓度的监测分析,探讨场镇分布对流域水体生源要素时空格局的影响.研究结果表明,黑水滩河干、支流水体总有机碳(TOC)和溶解性有机碳浓度为4.5~39.2和3.2~31.4 mg/L,总氮(TN)、铵态氮和硝态氮浓度范围为1.12~6.96、0.87~5.00和0.073~0.881 mg/L,总磷(TP)、溶解性总磷和正磷酸盐浓度范围为0.078~0.454、0.049~0.310和0.025~0.222 mg/L,不同形态的碳、氮、磷含量变化幅度较大;黑水滩河干、支流流经不同场镇区前后,水体各形态碳、氮、磷浓度均不同程度增加(其中TOC、TN和TP的增幅范围分别为4.7%~61.3%、26.7%~144.7%和12.8%~50.7%),而在无场镇分布的干流河段,水体碳浓度变化不大,氮、磷浓度明显降低,表明水体生源要素的空间变异特征受到流域场镇分布格局与河流自净能力的双重影响,导致黑水滩河干流自上游向下游碳浓度呈“阶梯式”增长,氮、磷浓度呈“波动式”增长;相关分析显示,流域水体碳、氮、磷浓度均呈极显著的正相关关系,即场镇发展模式下河流水体污染物呈同步变化的趋势,表明山地河流流域内串珠状场镇发展模式导致从上游向下游水体污染物呈明显的累积效应,并进一步超出水体自净能力,造成下游水体恶化.河流碳、氮、磷浓度的季节变化主要受径流稀释作用影响,表现为夏秋季低、春季高的模式;富营养化综合指数表明,黑水滩河各监测断面全年属于富营养状态以上,表层水体氮污染严重,磷污染较轻;初步估算黑水滩河每年向三峡水库输入TOC、TN、TP通量达4057、1001和47 t,对三峡水库水环境安全具有严重威胁.三峡库区沿河串珠状场镇式发展形成了一种“点面”双重特征的污染模式,未来河流水环境污染防控中应予以关注.  相似文献   

6.
太湖梅梁湾春季浮游植物初级生产力   总被引:3,自引:3,他引:0  
用黑白瓶测氧法对梅梁湾春季浮游植物初级生产力的变化特征进行研究,探讨了初级生产力的日变化、垂直变化、区域分布、浮游植物现存量与初级生产力的关系以及不同曝光时间对P-I曲线的影响.结果表明,梅梁湾浮游植物初级生产力存在明显的日变化,最大值出现在10:00-14:00;初级生产力在梅梁湾分布呈现为从湾内向湾口逐渐递减的趋势;除表层水受光抑制影响使其生产力相对较低外,初级生产力随水深的增加而降低;初级生产力与叶绿素a存在显著的正相关,用水柱层平均叶绿素a浓度来估算初级生产力比用表层叶绿素a浓度来估算要更为精确;短的曝光时间往往带来高的初级生产力和同化系数.  相似文献   

7.
气泡释放是天然水体释放CH4的主要途径之一,准确量化水体气泡释放量对于辨析其“汇、源”特性至关重要。自然水体释放气泡的不连续性、不确定性使得监测其过程较为困难。本研究针对水体气泡释放监测难题,通过改进倒置漏斗型气泡通量监测装置提出了一种气泡释放过程连续监测方法。本方法测量对象为定长时间监测水域释放气泡的体积,经室内外实验验证,其理论量程为3.6~132 mL/(m2·min),测量结果能够较好的表征10~40 m水深缓流水体气泡体积通量变化特征。运用该方法于2021年6—11月对三峡水库支流香溪河库湾开展CH4气泡通量连续监测,并分析不同环境因子对其产生的影响。结果表明:监测期间,研究水域CH4气泡通量变化范围为0.02~8.13 mg/(m2·d),且各采样点间CH4气泡通量呈现较高的时空变异性;CH4气泡通量与水温、水体pH呈显著正相关关系,与水深及水体电导率呈显著负相关关系。其中,水深可能是决定水体是否通过气泡形式释放CH4的重...  相似文献   

8.
三峡水库每年经历“水位下降(4—5月)-低水位(6—8月)-蓄水(9—10月)-高水位(11月—次年3月)”的季节波动,年水位落差达30 m。为探究香溪河库湾浮游植物功能群对三峡水库水位变化的响应,于2017年对浮游植物群落和主要环境因子开展逐月调查。共检出浮游植物7门65属79种,隶属于21个功能群,其中优势功能群10个,分别为C、D、F、G、J、Lo、M、P、X2、Y。适应营养丰富环境的C、P功能群在全年维持优势,指示香溪河库湾为中-富营养水体。消落期偏好水体扰动较弱、中-富营养水体的功能群(F、G、X2、Y)成为优势类群;汛期偏好稳定富营养、耐受高光强且对冲刷敏感的功能群(G J、M)成为优势类群;蓄水期和高水位运行期偏好混合的中-富营养水体,耐受低光强且对水体分层敏感的功能群(C、P、D)是优势类群;浮游植物功能类群组成结构随水位变化明显改变。综合营养状态指数表明香溪河库湾在消落期和高水位运行期处于中营养状态,另外两个时期处于富营养状态(39.84≤TSIM≤60.9);Q指数表明香溪河库湾整体水质为“好”(3.02≤Q指数≤4.17);且两者均随着水位下...  相似文献   

9.
由于自然和人为因素的影响,三峡水库鱼类资源一直在发生变化,为掌握三峡水库蓄水后典型支流香溪河鱼类群落的现状及历史变化,于2020年7月—2021年4月使用多网目复合刺网和地笼对香溪河鱼类群落进行实地采样,并结合历史数据进行比较分析。研究期间共采集到鱼类55种,隶属于7目14科,鲤科鱼类种类数最多,以杂食性鱼类和湖泊定居性鱼类为主,优势种为贝氏?(Hemiculter bleekeri)、短颌鲚(Coilia bratchygnahus)、似鳊(Pseudobrama simoni)和翘嘴鲌(Culter alburnus),其相对重要性指数(IRI)分别为5502、3828、2567和1109。鱼类物种多样性指数在春季最高,夏季最低。刺网单位捕捞努力量渔获个体数和单位捕捞努力量渔获量在夏季最高,冬季最低。与三峡水库蓄水前相比,香溪河鱼类中长江上游特有鱼类减少4种,外来鱼类增加3种。湖泊定居性种类持续增加,喜流水性种类减少,鱼类优势种发生较大变动。2020—2021年香溪河鱼类组成与1987年的相似性指数为0.29,与2012—2013年的相似性指数为0.53,反映三峡水库蓄水前后香溪河...  相似文献   

10.
为研究水深梯度对苦草(Vallisneria natans)光合荧光特性的影响,实验设置0.6、1.3、2.0 m 3个水深条件,利用水下饱和脉冲荧光仪测定3种水深处理下苦草叶片的荧光参数和快速光响应曲线.结果表明:(1)随着水深增加,无性系分株数、叶片数、根系总长度、根系表面积等形态指标显著降低,而最大叶长、平均叶长、最大叶宽没有显著变化,2.0 m处苦草生长受到抑制;(2)不同水深对苦草叶片初始荧光F0和最大荧光Fm没有显著影响,而最大量子产率Fv/Fm和荧光参数Fv/F0随着水深增加显著增加,叶片光合系统Ⅱ光化学效率亦显著提高;(3)0.6 m处苦草的相对电子传递速率显著低于2.0 m处;(4)通过拟合光响应曲线所得的光响应曲线初始斜率、光抑制参数、最大电子传递速率以及半饱和光强在不同的水深处理间均差异显著;(5)2.0 m处苦草叶片的叶绿素a(Chl.a)、叶绿素b(Chl.b)、类胡萝卜素(Car)以及Chl.a+Chl.b含量均显著高于0.6 m处,而Chl.a/Chl.b和Car/Chl.a的差异则不显著.综上所述,0.6 m处苦草的光合能力较弱、保护机制强,而2.0 m则相反,从而说明苦草通过调节自身光合生理来适应不同水深环境.  相似文献   

11.
Quantitative assessment of water quality and its spatial variation identification, as well as the discernment of primary factors affecting water quality are in its urgent in water environment management. In this study, four key water quality indicators,namely, ammonia nitrogen(NH_4~+-N), permanganate index(COD_(Mn)), total phosphorus(TP) and total nitrogen(TN) at 71 sampling sites were selected to evaluate water quality and its spatial variation identification. More concerns were emphasized on the anthropogenic factors(land use pattern) and natural factors(river density, elevation and precipitation) to quantify the overall water quality variations at different spatial scales. Results showed that the Yi-Shu-Si River sub-basin had a better water quality status than the Huai River sub-basin. The moderate polluted area nearly distributed in the upper and middle reaches of the Shaying River and Guo River. The high cluster centers which were surrounded with COD_(Mn), NH_4~+-N, TN and TP mainly also distributed in the upper and middle reaches of the Shaying River and Guo River. Redundancy analysis showed that the 200 m buffer area acted as the most sensitive area, which was easily subjected to pollution. The precipitation was identified as the most important variables among all the studied hydrological units, followed by farmland, urban land or elevation. The point source pollution was still existed although the non-point source pollution was also identified. The urban surface runoff pollution was severer than farmland fertilizer loss at the sub-basin scale in flood season, while the farmland showed "small-scale" effects for explaining overall water quality variations. This research is helpful for identifying the overall water quality variations from the scale-process interactions and providing a scientific basis for pollution control and decision making for the Huai River Basin.  相似文献   

12.
We investigated the importance of meteorological and lake physical conditions for temporal, horizontal and vertical differences in the concentration of dissolved oxygen (DO) and water temperature, and the derived daily estimates of gross primary production (GPP), ecosystem respiration (R) and net ecosystem production (NEP). Our study was conducted in a subtropical and polymictic lake in Southern Brazil, during a spring–summer transition. Metabolic rates were determined from two sites using the open water oxygen technique. At the central deep site, oxygen sondes were deployed at three depths to assess patterns in vertical variability. During 10 days, an additional DO and temperature sonde was placed near the shoreline allowing us to compare metabolic differences in the surface layers between the central pelagic and littoral site. While GPP was similar, R was significantly higher at the shallower littoral site, causing NEP to be lower, although NEP was still positive. The littoral site had less diel changes in DO and higher daily variability in all metabolic rates. Variability in GPP and R at the littoral site was related to temperature, wind speed and rainfall suggesting that short-term variability in metabolic rates in shallow areas are sensitive to resuspension of sediments caused by a less stable water column. A clear vertical gradient was furthermore found for the metabolic rates at the central deep part of the lake, related to the light extinction, with highest GPP around 0.3 m and decreasing with depth, while respiration showed the inverse pattern. Below subsurface, respiration prevailed at 5.0 m depth and was uncoupled to primary production. Under conditions with high light and temperature, and low wind speeds, the mixing depth became shallower, in turn increasing the water column stability at the deep pelagic site, which resulted in higher mean light available and higher GPP in the water column. Our results confirm that deployment of sensors in different sites and depths allows for spatially, as well as temporally more representative estimates of lake metabolism.  相似文献   

13.
为探究在三峡水库特殊分层异重流背景下降雨对水华消退的影响,以香溪河为例,对库湾降雨前后水动力、生态环境因子开展连续三维立体跟踪监测。结果表明:降雨对水华的消退作用显著,降雨后香溪河库湾叶绿素a(Chl.a)浓度明显下降。热分层稳定指数(RWCS/H)变化不大,库湾近河口处分层较弱、中上游分层较强的特性并未随此次降雨发生较大变动。受降雨影响,藻类在表层水体聚集程度降低,藻类聚集度指数(MI)、微藻群体平均深度(MRD)下降。库湾流态随降雨发生而变得复杂,库湾水体浊度明显增加,异重流倒灌形式由近表层倒灌向中下层倒灌转变,雨后又逐渐转变为中层倒灌,长江干流水体倒灌进入库湾的影响范围、潜入深度增加。水体水平输移增强,分散下沉的藻类易随水体环流流出库湾,水华消退。雨后库湾入库流量增加,大部分上游来流依旧由上层流向河口,与中层倒灌异重流形成逆时针环流,藻类无法在表层水体稳定生长,库湾Chl.a浓度能在较长时间内保持较低水平,不会再次迅速暴发水华。  相似文献   

14.
吴兴华  李翀  陈磊  赵荧  王浩 《湖泊科学》2017,29(5):1054-1060
于2015年春季拟多甲藻水华暴发期在香溪河支流高岚河、南阳河与干流设置9个采样点,探讨浮游植物种群与水体总磷浓度等环境因子的相关性;同时,分离纯化拟多甲藻后,设置5个不同磷浓度(0、0.005、0.020、0.100、0.600 mg/L)对其进行实验室培养,分别测定其比生长速率;在对数生长期,检测不同磷浓度培养下的藻细胞的快速光曲线及其参数;检测不同磷浓度培养下的藻细胞对外源无机碳的吸收效率及其参数.结果表明,水体中总磷浓度越高的河段,拟多甲藻细胞密度越高;培养基中磷浓度越高,拟多甲藻的比生长速率越大,光合效率越高,其对外源无机碳的吸收能力越强.这些结果表明高磷的水环境可能是促使拟多甲藻形成水华的关键因素之一.  相似文献   

15.
水温、光能对春季太湖藻类生长的耦合影响   总被引:5,自引:2,他引:3  
环境因素对藻类生长的影响机制是探讨蓝藻水华暴发的基础,其中水温和光能均是影响藻类生长的关键物理因子.基于2015年春季于太湖观测的11次藻类总初级生产力、水温廓线和营养盐浓度等,探讨水温、光能及营养盐对藻类生长过程的影响.结果表明:春季,水温、光能是影响藻类生长的关键因素,而营养盐的影响贡献相对较弱.深层水体中光能是藻类生长的关键性限制因子,浅层表现为水温、光能的共同影响,而表层主要表现为光能的抑制.水温的升高促进藻类对光能的获取和利用,提高光抑制的光能阈值,造成深层水体中光能限制程度的加强,藻类生长呈现光限制的深度变浅.本研究有利于确定气候变化下水生生态系统演变的方向,为水生生态系统的恢复提供理论依据.  相似文献   

16.
水库或湖泊的热分层结构是其动力与环境过程的重要研究方面,虽然很多学者针对水体分层结构和演变机理开展了大量研究,但水体通过水-气界面与大气进行热交换的过程,各气象因子的贡献机理等研究成果还很缺乏。本文基于三峡水库香溪河库湾2019年3月-2020年2月期间的水温、水位及气象等监测数据,针对水-气界面热交换过程如何影响水温垂向结构及表层水体湍流混合作用开展研究。结果表明,(1)香溪河水体年内呈高温期分层、低温期混合的基本特征,高温期混合层深度小于8 m,低温期混合层深度超过30 m。(2)太阳短波辐射是香溪河水体的主要热源,潜热通量和长波辐射是香溪河水体的主要冷源,感热通量贡献极小。(3)香溪河平均风速较弱,约为1.6 m/s,主要通过增强潜热和感热通量的方式影响水体垂向稳定性结构特征,其机械扰动作用较弱。(4)表层水体湍能通量在高温期较低(10-7m3/s3量级),此时水体处于分层状态,风应力大概率主导表层水体湍流发育;低温期表层水体湍能通量较高(10-6 m3/s3<...  相似文献   

17.
Atoll lagoons display a high diversity of trophic states due mainly to their specific geomorphology, and probably to their level and mode of human exploitation. We investigated the functioning of the Ahe atoll lagoon, utilized for pearl oyster farming, through estimations of photosynthetic parameters (pulse amplitude modulation fluorometry) and primary production ((13)C incorporation) measurements of the size structured phytoplankton biomass (<2μm and >2μm). Spatial and temporal scales of variability were surveyed during four seasons, over 16months, at four sites within the lagoon. While primary production (P) was dominated by the picophytoplankton, its biomass specific primary productivity (P(B)) was lower than in other atoll lagoons. The variables size fraction of the phytoplankton, water temperature, season, the interaction term station*fraction and site, explained significantly the variance of the data set using redundancy analysis. No significant trends over depth were observed in the range of 0-20m. A clear spatial pattern was found which was persistent over the seasons: south and north sites were different from the two central stations for most of the measured variables. This pattern could possibly be explained by the existence of water cells showing different water residence time within the lagoon. Photoacclimation strategies of the two size fractions differed through their light saturation coefficient (higher for picophytoplankton), but not through their maximum photosynthetic capacity (ETR(max)). Positive linear relationships between photosynthetic parameters indicated that their dynamic was independent of light availability in this ecosystem, but most probably dependent on nutrient availability and/or rapid changes in the community structure. Spatial and temporal patterns of the measured processes are then further discussed in the context of nutrient availability and the possible role of cultured oysters in nutrient recycling.  相似文献   

18.
随着人类活动对自然生态系统的负面影响不断加剧,无创性生物多样性评估变得越来越重要。本研究旨在利用环境DNA宏条形码技术研究赣江下游南昌段鱼类多样性,并从不同季节(春、夏、秋、冬)、不同水层(上层、中层和下层)和不同取样位置(近岸和离岸)比较鱼类环境DNA信息的物种组成和多样性。结果表明:利用环境DNA宏条形码技术在赣江下游南昌段检测到鱼类114种,其中83种为历史记录种。不同季节的鱼类环境DNA信息的多样性和组成显示出极显著差异。上层水检测到的鱼类物种数分别显著多于中层水和下层水,且中层水和下层水检测到的鱼类在上层水中绝大多数都被检测到。上层水、中层水和下层水的鱼类环境DNA信息的多样性和组成不具有显著性差异。近岸检测到鱼类物种数多于离岸的,鱼类多样性指数无显著性差异,但群落结构具有显著性差异。RDA分析表明,赣江下游鱼类环境DNA受温度和pH的影响较大。本研究能够为基于环境DNA宏条形码的赣江鱼类资源的调查提供基线数据,并对后续赣江鱼类资源环境DNA宏条形码监测实施不同目的的采样策略提供依据;可为使用环境DNA宏条形码技术研究流水系统鱼类多样性提供技术参考,为环境DNA宏条形码技术应...  相似文献   

19.
Abstract

A one-dimensional water quantity and quality mathematical model was developed to evaluate the effects of joint gate–pump operation in terms of water withdrawal for pollutant flushing. The study was carried out in dry seasons in the Foshan River channel, China. The results indicate that the input of freshwater into the upper and middle reaches of the Foshan River can improve the water quality of the lower reaches. However, the backwater effect due to water diversion in the middle reaches of the river can greatly offset the cleaning processes in the upper reaches of the Foshan River. The results indicate that water quality in the upper Foshan River (Jiebian) may degrade with an increase in the rate of water withdrawal from the middle river when the discharge pumped from the upper Foshan River is less than 10m3/s; optimal water quality improvement is obtained with discharge values of 30 and 20 m3/s, respectively, at the upper and middle reaches of the Foshan River.

Editor D. Koutsoyiannis

Citation Liu, C.-L., Jiang, T., Zhang, Q., Zhu, S. and Li, K., 2012. Modelling of water withdrawal for pollutant flushing in the tidal river network, Pearl River Delta, China. Hydrological Sciences Journal, 57 (3), 576–590.  相似文献   

20.
Ziyong Sun  Xiang Long  Rui Ma 《水文研究》2016,30(9):1388-1402
There is considerable interest in naturalizing flow regime on managed rivers to slow the spread of saltcedar (Tamarix ramosissima) invasion in southwestern USA or to preserve riparian forests dominated by saltcedar and other species in northwestern China. However, little is known about the responses of established saltcedar in water sources to frequent intra‐annual fluctuation of water table resulting from this new, more dynamic flow regime. This study investigates how saltcedar at a riparian site in the middle reaches of the Heihe River, northwest China, responds in water sources use to intra‐annual water table fluctuations. Stable oxygen isotope was employed to determine accurate depth at which saltcedar obtains its water supply, and soil moisture monitoring was used to determine sources of plant‐available soil water. We found that the primary zone of water uptake by saltcedar were stable at 25–60 cm depth, but the water sources used by saltcedar switched between groundwater and soil moisture with the water table fluctuations. Saltcedar derived its water from groundwater when water table was at depth less than 60 cm but switched to soil moisture at 25–60 cm depth when water table declined. It is supposed that the well‐developed clay layer at 60–80 cm depth constrained lateral roots of saltcedar to the soil layers above 60 cm, while the fine‐textured soils at this site, which were periodically resaturated by rising groundwater before the stored soil moisture had become depleted, provided an important water reservoir for saltcedar when groundwater dropped below the primary zone of fine roots. The root distribution of saltcedar may also be related to local groundwater history. The quick decline in water table in the early 1980s when the riparian saltcedar had established may strand its roots in the shallow unsaturated zone. We suggested that raising the water table periodically instead of maintaining it invariably above the rooting depth could sustain desired facultative phreatophytes while maximizing water deliveries. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   

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