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1.
黑龙江东部山地兴安落叶松人工林对水质的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
 为了解黑龙江省东部山地落叶松人工林生态系统对水质的影响,试验用多参数水质监测仪和原子吸收法对大气降水、穿透水、树干径流和地表径流中的pH值、溶解氧、浊度、电导率、氧化还原电位、K、Na、Ca、Mg、Cu、Zn、Mn和Fe等水质指标进行测定。结果表明:在落叶松人工林生态系统中,大气降水、穿透水、树干径流和地表径流pH值的变化都不甚明显,变异系数都较低。大气降水经过林冠层后溶解氧含量降低,浊度和电导率明显增加,氧化还原电位逐渐降低,Na、Ca和Mg离子总平均浓度逐渐升高。穿透水和树干径流中K、Ca元素的淋溶量明显高于其他元素,且树干径流各元素的净淋溶和淋溶系数均高于穿透水。地表径流对水质的酸化有缓冲作用。  相似文献   

2.
不同类型原始红松林对降雨水化学特征的影响   总被引:2,自引:0,他引:2  
针对小兴安岭林区不同类型原始红松林对降雨水化学特性影响进行研究。结果表明:穿透雨中K+、Mg2+含量在红松人工林中最高,年均含量分别为6.803,1.352mg/L;Ca2+、Na+、Cl-含量在枫桦红松林中最高,分别为12.200,2.513,3.436mg/L;Fe、Mn、SO24-、NH4+含量在椴树红松林中最高,分别为0.036,0.011,3.598,0.483mg/L。树干茎流中K+、Na+、Mn、SO24-、Cl-和NH4+平均含量在枫桦红松林最高,分别达9.138,6.180,0.338,9.861,7.209,2.181mg/L;Ca2+、Mg2+、Fe含量在椴树红松林中最高,年均含量分别为17.860,3.320,0.131mg/L。各红松林型穿透雨中K+、SO24-、Cl-含量在秋季达最高值,Na+、Ca2+、NH4+含量在春季达最高值,Mn、Mg2+、NH4+含量在夏季达最低值。树干茎流中K+、Na+、Mg2+、Mn、SO24-、Cl-含量均表现出明显的春季含量高、夏秋季含量低的趋势,其中Na+、Mg2+、Mn、SO24-夏季含量与秋季含量差异较小(P>0.05)。不同元素大气降雨、穿透雨、树干茎流三者间关系不同。Mg2+、Fe、Mn、SO24-含量呈现树干茎流>穿透雨>大气降雨的趋势。各林冠对Ca2+春季产生淋溶作用,夏季产生吸附作用,秋季枫桦红松林和椴树红松林表现为吸附作用,云冷杉红松林和人工红松林为淋溶作用。各林型穿透雨中NH4+含量均低于大气降雨,树干茎流中NH4+含量均高于大气降雨,其中3种原始红松林树干茎流中NH4+含量明显高于红松人工林。春季除椴树红松林外,其他林型对Na+产生吸附作用。  相似文献   

3.
重庆缙云山酸沉降背景下针阔混交林水化学特征初步研究   总被引:1,自引:0,他引:1  
选取三峡库区缙云山小流域针阔混交林作为研究对象,对其大气降水、穿透雨、树干茎流、地表径流等水文过程中的pH值及Na+、K+、Ca2+、Mg2+等离子含量进行研究,结果表明:(1)大气降水pH值为5.31,呈酸性,已属于酸雨范围(pH<5.65)。相对于大气降水,针阔混交林穿透雨和树干茎流离子含量均大幅增加。穿透雨和树干茎流中,Mg、Cu元素的变异系数均小于大气降水,而K、Zn和Mn均大于大气降水。地表径流中Ca元素含量最高,为16.416mg/L,Mn元素含量最低,几乎检测不到。各元素含量排序为:Ca>K>Na>Mg>Zn>Fe>Cu>Mn。地下径流中,Ca元素是含量增加最多的养分元素,各元素含量排序为:Ca>K>Na>Mg>Zn>Cu>Fe=Mn。(2)Cu元素在穿透雨和树干茎流中均出现了负淋溶,其余各元素浓度均有所增加。如果林木长期处于酸雨逆境下,将会导致部分营养元素大量流失,并最终造成林木营养亏损且影响其生长。  相似文献   

4.
以贡嘎山海拔2 900~3 100 m的暗针叶林生态系统为研究对象,分析了大气降水在穿透雨、树干径流、苔藓、土壤和地下水各个过程中干湿季和年际间离子含量变化特点.结果表明:(1)树干径流和穿透雨pH值小于降水,苔藓层可以有效的吸附酸性物质,土壤层酸性较强,森林区河流可以有效的缓解酸性物质;(2)森林区阴离子含量最高的是HCO_3~-,阳离子含量最高的是Ca~(2+),离子含量在干湿季的大小顺序不同.降水经过林冠后,除Na~+外,离子含量值均呈现出明显的增大趋势,苔藓层对于K~+、Ca~(2+)、Mg~(2+)有较强的吸附能力,土壤对于HCO_3~-的吸附能力较强;(3)苔藓、土壤和林区河流的N/P值均大于16,地表植被的限制因子是P;N、P在大气降水、穿透雨、树干径流、苔藓、土壤、地表水中的变化曲线相似,苔藓层N、P含量较高.  相似文献   

5.
以华西雨屏区几种典型森林类型为研究对象,定位监测了2011年4-12月40场降雨中大气降雨、林冠穿透雨、树干茎流、地表径流和地下渗滤。结果表明:各树种林冠截留率分别为香樟林31.63%,柳杉林42.73%,混交林49.88%。当单次降雨量24mm时,截留量表现为柳杉林混交林香樟林;当单次降雨量24mm时,截留量表现为混交林柳杉林香樟林。各种林分树干茎流量少,茎流率均低于2%;地表径流量表现为香樟林柳杉林混交林,地下渗滤量表现为混交林柳杉林香樟林,表明森林植被对降雨截留分配具有显著影响。相对于单一结构的人工林,混交林林冠截留率较高,地表径流量较少,具有较高的水土保持能力。  相似文献   

6.
为明确不同物种组成和群落结构的河岸林对降雨再分配及其养分特征的影响,于2014年5—10月对辽东山地典型河岸林群落(落叶松林、蒙古栎林和槭树林)大气降雨、穿透雨和树干茎流过程及其水质特征进行研究。结果表明:落叶松林、蒙古栎林和槭树林穿透雨量分别占大气降雨量的81.9%,77.9%,73.1%,树干茎流量分别占大气降雨量的1.2%,4.4%,4.3%。与大气降雨相比,穿透雨和树干茎流中铵态氮、氯离子、硝态氮和总磷的浓度较高,不同林型铵态氮、氯离子、硝态氮和总磷的浓度和输入量差异显著。不同物种组成和群落结构的河岸林通过树木的形态特征及群落的结构特征对降雨进行再分配,通过林冠表层的物理特征、化学特征和生理特性等改变降雨理化性质,加之雨量、雨强的影响共同作用使铵态氮、氯离子、硝态氮和总磷的浓度和输入量发生改变。  相似文献   

7.
黑龙江省东部山地红松人工林生态系统水化学特征   总被引:1,自引:0,他引:1  
对黑龙江省东部山地红松人工林生态系统的大气降水、穿透水、树干径流、枯透水和地表径流中的pH值、溶解氧、浊度、总溶解固体、K、Na、Ca、Mg、Cu、Zn、Mn和Fe等水质指标进行了检测。结果表明:大气降水经过林冠层后,其水化学特征发生了明显变化,pH和DO降低,TURB和TDS明显增加,化学元素含量均不同程度增加。树干径流除了Cu外其余各化学元素含量均明显增加。穿透水和树干径流中各元素的变异系数较大。枯透水各化学元素的变异系数低于其他水样,只有Mn元素变化较大。穿透水、树干径流和枯透水中的K、Ca淋溶量较大,Cu、Zn淋溶量较少,根据淋溶系数的大小排列穿透水的淋溶序列为Mn>K>Mg>Cu>Fe>Ca>Na>Zn,树干径流的淋溶序列为Mn>Mg>K>Fe>Ca>Cu>Na>Zn,而枯透水的淋溶序列为Mg>Mn>K>Fe>Ca>Cu>Na>Zn。  相似文献   

8.
黑龙江省东部山地樟子松人工林生态系统水化学特征   总被引:1,自引:0,他引:1  
对黑龙江省东部山地樟子松人工林(P inus sy lvestr is var.m ongolica)生态系统的大气降水、穿透水、树干径流和枯透水中的pH值、溶解氧、浊度、电导率、氧化还原电位、钾、钠、钙、镁、铜、锌、锰、铁等水质指标进行了观测,结果表明:大气降水经过林冠层后,水化学特征发生了明显变化,pH逐层降低,经过枯枝落叶层后,水质的酸化得到了缓解,说明樟子松人工林的枯枝落叶层对水质酸化有很好的缓冲作用。穿透水、树干径流和枯透水的COND变化趋势相同,且各月树干径流和枯透水的COND平均值均高于穿透水和大气降水。枯透水各月ORP的平均值明显低于大气降水和树干径流,可见樟子松人工林的枯枝落叶层对ORP值的降低有很好的作用。樟子松人工林对于增强水中微量元素F e和M n含量也有很好的作用。  相似文献   

9.
采用对比和分析的方法,研究了黑龙江省带岭凉水国家级自然保护区温带森林生态系统磷沉降、溪流、河流和渗透水输出磷含量动态特征,以及磷沉降和水系统磷输出对红松人工林、落叶松人工林、椴树红松混交林、枫桦红松混交林和白桦次生林5种林型土壤全磷和有效磷的影响。结果表明,研究区域通过降雨产生的年磷沉降量约为0.888 kg hm-2,7月除红松人工林外,其他4个林型穿透雨磷浓度均高于大气降雨的磷浓度。7月枫桦红松林、8月白桦次生林和红松人工林A层土壤渗透水磷浓度低于林内雨磷浓度,表层土壤对穿透雨中磷有固定作用。在凉水自然保护区森林生态系统内,森林系统内小溪流、凉水河和凉水森林系统外永翠河水磷浓度均较林外降雨及穿透降雨磷浓度高,表现为永翠河水>土壤A层渗透水>凉水河>小溪>穿透雨>大气降雨。表明土壤中部分磷素通过地表径流和壤中流流出森林生态系统,并汇集于林中小溪,最后进入河流,造成磷在小溪和河流中的富集。大气磷沉降、森林水系统磷输出均与椴树红松林A0层土壤全磷含量呈显著负相关,与红松人工林B层土壤全磷含量呈极显著正相关,与落叶松人工林A0层土壤有效磷含量呈极显著正相关。  相似文献   

10.
为了解不同降雨条件下碳在常绿阔叶林和针叶林内部的迁移特征,对亚热带米槠次生林和杉木人工林在不同降雨量下林冠层可溶性有机碳(DOC)浓度的变化特征进行分析。结果发现:降雨量大于10mm时,米槠和杉木树干径流量与胸径呈幂函数正相关(R20.81和R20.88),米槠树干径流中DOC浓度与胸径呈幂函数负相关(R20.37);相反,杉木树干径流中DOC浓度与胸径呈幂函数显著正相关关系(R20.69,P0.05)。米槠次生林穿透雨中DOC浓度相对大气降雨中DOC浓度平均增量大于杉木人工林,且前者增量的变化幅度也远大于后者,表明降雨量对米槠次生林穿透雨DOC浓度的影响较杉木人工林大;总体而言,米槠次生林树干径流DOC浓度(48.8mg/L)显著低于杉木人工林(23.4mg/L)(P0.05)。随着降雨量增大,米槠次生林树干径流DOC浓度呈现下降趋势,而杉木人工林则呈现一定的递增趋势,说明树种的差异可引起树干径流DOC浓度对降雨变化的响应不同,降雨历时同样对穿透雨和树干径流DOC浓度具有显著性影响。  相似文献   

11.
为了评估天然针阔混交林的生态水文功能,利用传统统计学和地统计学方法,对小陇山天然次生针阔混交林下穿透降雨特征及其空间分布格局与降雨量的关系进行分析研究。共收集了总降雨量947.3mm的29次降雨事件数据,总穿透雨量和穿透率分别为742.6mm和0.783 9。结果表明,穿透雨量随大气降雨量的增加而增加,直线、对数函数和Mitscherlich模型均能很好地描述二者的相关关系。穿透率随降雨量的增加而增大,最终趋于稳定值,可应用对数模型和Mitscherlich模型模拟穿透率与降雨量的关系。穿透降雨变异系数与降雨量呈负相关关系,可以用Mitscherlich模型较好地描述。穿透降雨空间分布的不均匀度随降雨量的增加有下降的趋势,并逐渐趋于稳定。穿透率的空间分布形态在不同雨量级存在明显差别。  相似文献   

12.
通过野外采样与室内实验相结合的方法,对川西典型亚高山不同海拔处暗针叶林、针阔混交林和常绿-落叶阔叶林3种森林类型表层土壤总有机碳(SOC)和活性有机碳的含量特征进行分析,旨在为亚高山生态系统土壤碳循环研究提供理论和数据支撑。结果表明:3种森林类型土壤中总有机碳含量(SOC)在44.21~179.98g·kg-1,表层(0-15cm)SOC含量大小顺序为针阔混交林>常绿-落叶阔叶林>暗针叶林,0-5cm土层SOC含量与活性有机碳含量均高于5-15cm土层,说明土壤有机碳具有土壤表聚现象。3种森林类型间SOC密度差异不显著,但不同森林类型土壤SOC密度沿土层的分布具有差别:与常绿-落叶阔叶林和暗针叶林相比,针阔混交林5-15cm土层SOC密度较高。土壤溶解性有机碳(DOC)、轻组分有机碳(LFOC)和微生物(MBC)含量均以针阔混交林最高,但其相对于SOC的比例则以暗针叶林最高,说明高海拔生态系统土壤活性有机碳有更大的累积,同时也暗示在气候变化背景下,高海拔生态系统可能具有更大的CO2排放风险。  相似文献   

13.
长江三峡库区不同森林类型涵养水源能力比较研究   总被引:3,自引:0,他引:3  
从林冠层、枯落物层及土壤层3个生态作用层次对缙云山自然保护区4种主要森林类型的涵养水源功能进行了定量研究。结果表明:林内透雨量、树干径流量与降雨量、降雨强度呈二元线性关系。林冠截留率为16.91%~67.84%,平均为38.19%,依次为针阔混交林〉阔叶林〉楠竹林;枯落物储量为16.21-32.42t/hm^2,平均为20.69t/hm^2,依次为灌木林〉阔叶林〉针阔混交林〉楠竹林;各种森林生态系统能够截留的降雨量总量为450.3-686.3t/hm^2,针阔混交林的涵养水源功能最好,阔叶林、楠竹林次之,灌木林最小。  相似文献   

14.
The effects of acidic deposition on soil ecosystems under temperate coniferous forest in the Chongqing region of China were investigated from 1993 to 1994. Precipitation, throughfall, stemflow, soil solutions, and soil samples were collected to estimate the acidification of soil ecosystems through the changes of their chemical components. The concentrations of ion species in the throughfall and stemflow under masson pine forest in Mt. Zhenwu were higher than those under mixed coniferous forest in Mt. Jinyun and under camphor tree forest in Laojundong, suggesting that Mt. Zhenwu is located in the vicinity of the Chongqing center and that it allowed the canopy of masson pine to intercept air pollutants. However, the level of aluminum dissolution into soil solutions was relatively low under masson pine forest in Mt. Zhenwu in spite of the low pH in the stemflow.  相似文献   

15.
Atmospheric deposition and above-ground cycling of sulfur (S) were evaluated in adjacent deciduous and coniferous forests at the Panola Mountain Research Watershed (PMRW), Georgia, U.S.A. Total atmospheric S deposition (wet plus dry) was 12.9 and 12.7 kg ha-1 yr-1 for the deciduous and coniferous forests, respectively, from October 1987 through November 1989. Dry deposition contributes more than 40% to the total atmospheric S deposition, and SO2 is the major source (~55%) of total dry S deposition. Dry deposition to these canopies is similar to regional estimates suggesting that 60-km proximity to emission sources does not noticeably impact dry deposition at PMRW. Below-canopy S fluxes (throughfall plus stemflow) in each forest are 37% higher annually in the deciduous forest than in the coniferous forest. An excess in below-canopy S flux in the deciduous forest is attributed to leaching and higher dry deposition than in the coniferous forest. Total S deposition to the forest floor by throughfall, stemflow and litterfall was 2.4 and 2.8 times higher in the deciduous and coniferous forests, respectively, than annual S growth requirement for foliage and wood. Although S deposition exceeds growth requirement, more than 95% of the total atmospheric S deposition was retained by the watershed in 1988 and 1989. The S retention at PMRW is primarily due to SO4 2- adsorption by iron oxides and hydroxides in watershed soils. The S content in white oak and loblolly pine boles have increased more than 200% in the last 20 yr, possibly reflecting increases in emissions.  相似文献   

16.
小五台山地区主要林分枯落物分布特征及水源涵养能力   总被引:1,自引:0,他引:1  
为评估小五台山地区主要林分的水源涵养能力,同时为筛选水源涵养树种提供新思路,通过浸泡法和模拟降雨法,对小五台山地区7种典型林分枯落物分布特征及水源涵养能力进行研究。结果表明:(1)林分枯落物覆盖面积和厚度均表现为阔叶林大于针阔叶混交林、针叶林,其最大分别为青杨纯林和蒙古栎纯林,且厚度表现出坡下大于坡上的特征;(2)枯落物蓄积量为油松纯林>青杨纯林>油松×蒙古栎混交林>白桦纯林>粉桦×云杉混交林>蒙古栎纯林>椴树纯林,其中半分解层大于未分解层;(3)枯落物吸持能力表现为半分解层大于未分解层,且针阔叶混交林和大部分阔叶林大于针叶林,其中青杨纯林的最大,最大持水量、有效拦蓄量和最终吸持量分别为1.69,1.37,0.41 mm;(4)所有林分枯落物持水率均表现为浸泡法大于模拟降雨法,只采用传统的浸泡法会导致研究结果偏大。各林分枯落物水源涵养能力表现为阔叶林和针阔混交林优于针叶林,其中青杨纯林和白桦纯林水源涵养能力最强,在今后水源涵养林的树种筛选中可考虑多选择青杨和白桦等阔叶树。  相似文献   

17.
滦河上游3种林分类型固碳释氧效益估算   总被引:1,自引:0,他引:1  
郑淼 《水土保持研究》2019,26(4):363-366,374
为探究滦河上游3种林分类型固碳释氧效益,以针叶林、阔叶林与针阔混交林作为研究对象,以3种林分类型的蓄积量、生物量、碳密度、氧气释放量4个指标为基础对3种林分类型固碳释氧的效益进行了评价分析。结果表明:(1)3种林分类型各龄期蓄积量与阔叶林在林分中占的比例成正比,阔叶林最大,针叶林最小,而针阔混交林居中;在中幼龄时期,针叶林的平均生物量都是最小的,而近熟与成熟时期阔叶林的平均生物量为最小,这与林分内林木本身的生长规律有关。(2)中幼龄时期碳密度、氧气释放量最小的为针叶林,而近熟龄与成熟龄时期最小的为阔叶林,两者都与林木的生长速度呈正相关,生长越快,固碳释氧量越大,而林分的价值量与两者的变化规律一致。(3)整个生命周期平均固碳释氧总价值排序为:针阔混交林 > 针叶林 > 阔叶林,说明针阔混交林固碳释氧的总价值是最高的,而阔叶林固碳释氧总价值最低。  相似文献   

18.
Deposition fluxes of sulphur and nitrogen in bulk and throughfall precipitation were monitored for the 1994–2000 period for seven small forest catchments in the GEOMON network, Czech Republic (CR). Four catchments are situated at similar elevations (roughly between 800 and 1000 m) and represent three areas: the Black Triangle near the Kru?né hory Mts. coalfield (catchments JEZ and LYS), the Orlické hory Mts., close to the Polish industrial regions (UDL), and the ?umava Mts., a relatively unpolluted area (LIZ). Three catments (GEM, POM, LES) lie at lower elevations (400–600 m) in Central Bohemia. A substantial decrease in the bulk and throughfall deposition of pollutants occurred as a result of the desulphurisation programme implemented in the Czech Republic between 1996 and 1998. A reduction has been described mainly in the Kru?né hory Mts. (JEZ), in Slavkovský les (LYS) and also in Central Bohemia (GEM). The decrease in the throughfall to less than one half within a single year in POM (Central Bohemia) was an example of a direct response to the local emission reduction in the nearby Chvaletice power plant. However, in some areas, the throughfall deposition of sulphur, which includes wet and dry deposition, is still significant, especially at higher elevations. Recent forest degradation was observed in the Orlické hory Mts., where, particularly in 1998, as much as 91.1 kg S was found in coniferous throughfall. The fraction of dry deposition in the coniferous forests of CR represents 30–70% of the total deposition. The difference between coniferous (higher) and deciduous (lower) throughfall fluxes is significant because of the larger surface area of conifers and year-round exposure to air-borne sulphur. At several of the GEOMON sites, the flux of nitrogen via throughfall increased during the observation period and, at the end of the studied period (2000), nitrogen became the main source of acidification, replacing sulphur compounds. The highest fluxes (81.7 kg N ha-1 yr-1)were measured in 2000 in the Orlické hory Mts., which provide an example of multiple causes of forest decline – the direct impact of air pollution, abundance of nitrogen, acidification and secondary stressors (weather changes, insect pests, fungal infections). A comparison is given with data from other countries.  相似文献   

19.
原始红松林和次生白桦林降雨截留分配效应研究   总被引:1,自引:0,他引:1       下载免费PDF全文
 以小兴安岭原始红松林为研究对象,通过97场的降雨测定,对原始红松林的降雨截留分配效应进行系统研究。结果表明:原始红松林在生长季内的林冠截留量为98.68 mm,占同期降雨量的19.61%,是次生白桦林的1.3倍。与全国其他森林类型的平均林冠截留率(11.4%~36.5%)相比,原始红松林的林冠截留率处于中等水平。原始红松林在生长季内的穿透雨量和树干径流量分别为395.77和8.78mm,分别占同期降雨量的78.65%和1.74%。与次生白桦林相比,其穿透雨量减少,而树干径流量增加。统计分析表明,原始红松林的林冠截留量、林内穿透雨量和树干径流量与林外降雨量之间均呈现紧密的三次多项式函数关系(p<0.01),而次生白桦林的林内穿透雨量与林外降雨量之间却呈现良好的直线关系(p<0.01)。最后,对影响林内穿透雨和树干径流的因子进行筛选和分析,为研究针阔混交林的降雨分配效应提供重要参考。  相似文献   

20.
To clarify the mechanisms of pH buffering in forest ecosystems, field observations of pH and ionic concentrations in precipitation (R), throughfall (Tf), stemflow (Sf), and leachates from organ c horizons (Lo) were conducted for three years at three stands in Tomakomai (TK) and Teshio (TS) in Hokkaido, northern Japan. Weighted mean rates of H+ input as wet deposition at TK and TS were estimated in the range from 0.3 to 1.0 and 0.4–0.6 kmolc ha?1 y?, respectively. While the net H+ flux was reduced significantly by the forest canopy, net fluxes of other ions by throughfall, especially for Na+, Cl?, and SO4 2?, were apparently greater than those by precipitation. The canopy modification of the H+ flux was more remarkable under deciduous stands than under coniferous stands, suggesting that the efficiency of conifers as the collectors of dry deposition is greater than that of deciduous ones. More than 50% of H+ flux due to throughfall was absorbed by the organic horizons and the weighted mean pH of Lo at TK and TS was in the range from 4.9 to 5.5 and 5.0–5.5, respectively. Results from field observation and field leaching experiments, showed that the major H+ sinks of the organic horizons are exchange reaction of Ca2+, Mg2+ and K+. Organic acids or organo-metallic complexes of lower pK(=5.0–5.5) played a significant role as counter anions in O horizons leachate in coniferous forests. Our results indicate the importance of biogeochemical modifications in the canopy and organic horizon in acid buffering mechanisms of forest ecosystems.  相似文献   

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