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1.
为研究洱海底泥特性对沉水植物生长的影响,采用不同比例洱海底泥与湖岸土壤掺混形成五种基质,并分别移栽苦草、黑藻、微齿眼子菜、马来眼子菜、光叶眼子菜、穿叶眼子菜和狐尾藻,进行为期70d的室外生长实验,结果表明不同基质对几种植物的影响具种间差异。(1)在基质为50%深层底泥+50%湖岸土壤(碳、氮、磷含量分别为31.59、0.334和0.095 mg/g)时,苦草、马来眼子菜和光叶眼子菜的株高最大;基质为100%深层底泥(碳、氮、磷含量分别为37.88、0.803和0.149 mg/g)时,黑藻、微齿眼子菜、穿叶眼子菜和狐尾藻的株高最大;(2)基质为100%深层底泥时,苦草、黑藻、微齿眼子菜、马来眼子菜和光叶眼子菜生物量增加最多且相对生长速率最大;基质为100%浅层底泥(碳、氮、磷含量分别为77.37、5.691和0.136 mg/g)时,穿叶眼子菜生物量增加最多,相对生长速率最大;狐尾藻在基质为50%浅层底泥+50%深层底泥(碳、氮、磷含量分别为49.27、2.005和0.131 mg/g)时生物量增加最多,相对生长速率最大;(3)基质为100%湖岸土壤(碳、氮、磷含量分别为22.06、0.327和0.231 mg/g)时,7种沉水植物均生长缓慢,生物量增加较少。综上所述,中营养底泥(碳、氮、磷含量分别为31.59-49.27、0.334-2.005和0.095-0.131 mg/g)更适合沉水植物生长,底泥中过高或过低营养都不利于沉水植物生长。  相似文献   

2.
不同覆盖方式对底泥内源营养盐释放的控制效果   总被引:4,自引:0,他引:4  
通过底泥内源营养盐释放控制室内模拟试验,考察了塑料包被、斜发沸石、方解石、石英砂和硝酸钙5种覆盖材料对底泥氮磷释放效率的影响,系统分析了各自优劣程度,为实际环境中不同污染背景水体选择适宜的控制技术提供科学依据.结果表明: 不同覆盖材料对底泥总磷释放的控制效果依次为:塑料包被>硝酸钙>斜发沸石>方解石>石英砂;不同覆盖材料对底泥总氮释放的控制效果依次为:斜发沸石>塑料包被>方解石>石英砂>硝酸钙;不同覆盖材料对底泥硝态氮释放的控制效果依次为:塑料包被>斜发沸石>方解石>石英砂>硝酸钙;不同覆盖材料对底泥铵态氮释放的控制效果依次为:硝酸钙>石英砂>斜发沸石>方解石>塑料包被;温度和底泥内源营养盐释放有对应关系,水样中总磷、总氮和硝态氮浓度会随着温度上升而增加,而铵态氮浓度呈下降趋势.  相似文献   

3.
五种沉水植物对富营养化水体的净化效果   总被引:1,自引:0,他引:1  
为达到净化水质的目的,采用移栽沉水植物控制富营养化水体中营养盐含量和浮游藻类生物量。本研究在夏季藻类密度较高的富营养化水体中移栽5种长江中下游流域常见沉水植物,比较不同沉水植物去除营养盐和控制藻类总量的能力。研究结果:5种沉水植物对水体总氮含量去除率的大小顺序为:竹叶眼子菜>黑藻>苦草>微齿眼子菜>菹草,对总磷去除率大小顺序为:竹叶眼子菜>黑藻>微齿眼子菜>苦草>菹草;竹叶眼子菜控制水体中藻类总量的效果最佳,苦草、微齿眼子菜及菹草次之,黑藻对水体总磷和浮游植物的去除效果均极显著(p≤0.01),而对总氮含量的作用影响不明显(p=0.209)。综合营养盐吸收作用和藻类控制效果来看,竹叶眼子菜在整个实验过程中生长状态良好并达到较为稳定的净化作用,是夏季治理浅型富营养化静水水体的理想物种之一。  相似文献   

4.
太湖马来眼子菜(Potamogeton malaianus)生物量变化及影响因素   总被引:3,自引:0,他引:3  
刘伟龙  胡维平  谷孝鸿 《生态学报》2007,27(8):3324-3333
2006年5月和10月在太湖马来眼子菜分布区进行了定点采样,分析了马来眼子菜的生物量在不同水域变化特征及影响其生物量主要因素。结果表明:不同水环境中,马来眼子菜的生物量变化较大,介于526~4843g/m2,个体植株生物量依次为叶>根>茎,其中叶的生物量占总生物量的55%~80%。水深增加能促进植株高度和生物量的增加,但单位面积生物量变化不明显。群落的自疏效应使马来眼子菜生物量与资源供应维持在一个动态平衡的水平上。马来眼子菜的生物量与水体中TN呈显著正相关,P是影响其生物量变化的间接限制因子,根、茎、叶的N/P介于16.92~59.88之间,叶片的N/P达到42.33。马来眼子菜对水环境的形态可塑性响应是其在水环境长期变化中逐步成为幸存者和优势种的重要原因之一。底泥的深度和营养含量对其分布和生物量具有显著影响。围网捕捞、养殖以及航运的发展是造成局部地区马来眼子菜生物量急剧下降的主要人为因素。不同水域的生物量的差异是水深、水体营养盐、底质特征、水体透明度、人类活动等因素综合作用的结果。同时,对水环境变化在形态上较强的可塑性响应,也是马来眼子菜生物量变化的重要原因之一。  相似文献   

5.
太湖马来眼子菜(Potamogeton malaianus)生物量变化及影响因素   总被引:1,自引:0,他引:1  
刘伟龙  胡维平  谷孝鸿 《生态学报》2007,27(8):3324-3333
2006年5月和10月在太湖马来眼子菜分布区进行了定点采样,分析了马来眼子菜的生物量在不同水域变化特征及影响其生物量主要因素。结果表明:不同水环境中,马来眼子菜的生物量变化较大,介于526~4843 g/m2,个体植株生物量依次为叶>根>茎,其中叶的生物量占总生物量的55%~80%。水深增加能促进植株高度和生物量的增加,但单位面积生物量变化不明显。群落的自疏效应使马来眼子菜生物量与资源供应维持在一个动态平衡的水平上。马来眼子菜的生物量与水体中TN呈显著正相关,P是影响其生物量变化的间接限制因子,根、茎、叶的N/P介于16.92~59.88之间,叶片的N/P达到42.33。马来眼子菜对水环境的形态可塑性响应是其在水环境长期变化中逐步成为幸存者和优势种的重要原因之一。底泥的深度和营养含量对其分布和生物量具有显著影响。围网捕捞、养殖以及航运的发展是造成局部地区马来眼子菜生物量急剧下降的主要人为因素。不同水域的生物量的差异是水深、水体营养盐、底质特征、水体透明度、人类活动等因素综合作用的结果。同时,对水环境变化在形态上较强的可塑性响应,也是马来眼子菜生物量变化的重要原因之一。  相似文献   

6.
二氧化碳浓度升高对太湖沉水植物马来眼子菜生长的影响   总被引:1,自引:0,他引:1  
通过室外培养试验,研究不同CO2浓度条件下沉水植物马来眼子菜的生长及生理变化.结果表明:CO2浓度升高(1000 μmol·mol-1)条件下,马来眼子菜单株的平均生物量增加了44.3%(P<0.01),茎生物量比重下降了5.5%(P<0.05);根和叶中氮含量分别下降了18.1%和6.4%(P<0.05),而茎中氮含量变化不明显(P>0.05);根、茎、叶中磷含量分别增加了22.2%(P<0.05)、26.6%(P>0.05)和38.8%(P<0.05);可溶性糖含量增加了27.3%、18.3%和37.5%(P<0.05);根、茎和叶中全碳含量增加了4.6%、5.3%和2.0%;CO2浓度升高使水体中氮、磷含量分别下降了7.9%和5.1%(P<0.05),但对底泥中氮、磷的含量影响不明显.CO2浓度升高将对沉水植物生长及其生境有一定影响.  相似文献   

7.
胶州湾滨海湿地枯落物分解过程中枯落物-土壤养分动态   总被引:2,自引:0,他引:2  
通过为期52 d的室内实验模拟胶州湾滨海湿地米草、碱蓬、芦苇枯落物的分解过程,测定枯落物及土壤中有机碳(TOC)、氮(N)和磷(P)含量,研究枯落物分解过程中枯落物-土壤养分的动态变化。结果表明:52 d的分解过程中,米草、碱蓬和芦苇枯落物碳损失分别占初始总碳含量的24.44%、74.20%和49.75%;土壤中碳发生净积累;米草枯落物中氮发生净积累,碱蓬枯落物中氮发生净释放,芦苇枯落物中氮先积累后释放,后两者枯落物氮损失分别占初始总氮含量的37.93%和4.81%;土壤中氮发生净积累;枯落物和土壤中磷均表现为净释放,米草、碱蓬和芦苇枯落物磷损失分别占初始总磷含量的42.37%、59.27%和28.48%;枯落物-土壤系统中C、N、P的动态变化与枯落物和土壤性质密切相关,这主要是由微生物的活性和养分需求决定的。  相似文献   

8.
富营养化水体的水生植物净化试验研究   总被引:101,自引:3,他引:101  
利用水生植物净化和底泥遮蔽的方法对养鱼池的富营养化水体进行控制研究.结果表明,金鱼藻等6种水生植物对水中总氮、总磷和硝态氮有较好的去除效果,而以狐尾藻和微齿眼子菜两种效果最好,1个月后对总氮的去除率分别为83.84%和77.54%,对硝态氮的去除率分别为95.85%和90.65%,磷的去除率都达到了91.7%.但对氨氮的去除效果稍差,1个月时去除效果只有14%~70%.底泥进行塑料遮蔽处理后在前期(15~20d)能控制底泥中营养盐的释放,但不能保持长久;并在后期表现出“补偿效应”.试验结果还表明。水生植物能有效提高水体透明度和水体观感,但对改善COD和DO的效果不明显.  相似文献   

9.
泥沙埋深对苦草和微齿眼子菜及两物种混合分解的影响   总被引:1,自引:0,他引:1  
为探讨泥沙淤积对水生植物分解的影响,研究了沉水植物苦草(Vallisneria natans)、微齿眼子菜(Pota-mogeton maackianus)及两物种混合在底泥中不同埋深(0 和5 cm)的分解速率和养分动态,实验周期为117d。结果显示:(1)在0和5 cm埋深处理下,苦草、微齿眼子菜及两物种混合的分解速率均表现为苦草最快,微齿眼子菜最慢,物种混合介于两单种之间。与0 cm处理相比,在5 cm埋深处理下苦草、微齿眼子菜及两物种混合的分解速率显著降低(P0.05)。苦草在0和5 cm埋深处理下分解35天后干重剩余率分别为0和43.51%、在5 cm处理下分解82d后干重剩余率为0。微齿眼子菜和两物种混合在5 cm埋深处理下分解117d后的干重剩余率分别提高了31.09%和37.44%。(2)与0 cm处理相比,5 cm埋深处理显著抑制苦草、微齿眼子菜及两物种混合的N、P释放。苦草在0和 5 cm埋深处理下分解35天后N剩余率分别为0和31.28%、P剩余率分别为0和24.45%。在5 cm埋深处理下分解117天后微齿眼子菜N和P剩余率分别提高了19.45%和14.73%、两物种混合N、P剩余率分别提高了41.57%和22.82%。(3)两物种混合在0和5 cm埋深处理下,其分解速率均表现为加和效应,但N、P元素释放在0 cm处理下分别表现为协同效应和加和效应,在5 cm埋深处理下均表现为拮抗效应。(4)随着分解的进行,5 cm埋深处理下的苦草和微齿眼子菜的微生物呼吸速率均显著降低,物种混合的微生物生物量始终低于0 cm处理。这些结果表明泥沙埋深显著降低了苦草、微齿眼子菜及两物种混合的分解速率和N、P元素释放,物种混合的N、P元素释放在分解后期均因沉积作用而产生了拮抗效应。此外,泥沙埋深对分解的抑制作用与微生物呼吸及生物量降低有密切的关系。研究结果可为认识水生植物分解对沉积作用的响应机制提供资料,并为了解水生植物分解对底质营养动态的影响提供参考。  相似文献   

10.
光照、温度和氮对竹叶眼子菜生长的影响   总被引:1,自引:1,他引:0  
实验选择长江中下游常见沉水植物竹叶眼子菜(Potamogeton malaianus Mig.),利用正交试验设计,通过室内静态模拟实验研究3种主要环境因子光照强度、温度、总氮浓度及其互作对竹叶眼子菜分苗生长的影响。结果表明:光照强度和温度为影响竹叶眼子菜生长的主效环境因子,且它们的交互作用对竹叶眼子菜生长有较为显著的影响;在2~8mg·L-1的总氮浓度下,竹叶眼子菜均可以正常生长。观察结果可知,竹叶眼子菜在5320~12000lx光照强度、30℃、4~8mg·L-1水体总氮浓度的条件下生长良好,竹叶眼子菜生长虽然对光照强度的要求较高,但其叶往往集中在水体表面形成冠层,能在透明度较低的水体中生长,加上对高温及高营养盐的耐受性较好,故推测竹叶眼子菜可作为夏季富营养化水体中恢复和重建沉水植被的先锋工具种。  相似文献   

11.
以内蒙古温带典型草原为研究对象,通过 9 个氮沉降梯度以及一年 12 次和一年 2 次的施氮频率比对,经过4年的氮沉降模拟,研究不同氮沉降强度和频率对不同土层土壤 pH 及碳、氮、磷含量的影响.结果表明: 随着施氮强度的增加,土壤 pH 及全磷含量逐渐降低,但土壤有效氮和有效磷的含量呈增加趋势,可溶性有机碳(DOC)含量无明显变化规律,而土壤全碳、全氮含量基本保持不变.与更接近于自然氮沉降状况的一年 12 次施氮相比,一年 2 次施氮明显高估了氮沉降在降低土壤 pH和增加有效磷含量上的作用,低估了氮沉降在增加土壤有效氮含量上的作用,其中0~5 cm土层差异显著.  相似文献   

12.
研究硅肥对双季稻产量及土壤氮磷流失的影响,旨在为典型双季稻区施肥结构优化以及农田面源污染综合防控技术提供技术支撑.采用田间试验研究在相同氮磷肥基础上施0、750、1500、2250和3000 kg·hm-2 (T0、T1、T2、T3、T4)硅肥对双季稻产量和氮磷吸收、田面水氮磷含量及土壤有效硅、有机质、碱解氮和有效磷含量的影响.结果表明:与不施硅肥处理(T0)比较,早、晚稻季水稻稻谷分别增产2.2%~30.4%和3.9%~9.2%;早、晚稻籽粒氮素积累量增加2.4%~47.3%、磷素积累量增加2.2%~41.3%,秸秆氮素积累量增加0.4%~28.3%、磷素积累量增加5.1%~31.0%;施硅肥后第1天,施硅处理田面水总氮(TN)浓度较不施硅肥处理平均降低3.4%~28.8%、铵态氮(NH4+-N)降低10.4%~25.6%、总磷(TP)降低25.5%~29.2%、可溶性总磷(TDP)降低30.8%~38.0%;第45天后施硅各处理田面水总磷和可溶性总磷含量呈现上升趋势,并显著高于T0处理.施硅肥有利于提高土壤有效硅水平以及有机质和碱解氮含量,以T1处理效果最好,土壤速效磷含量随硅肥用量增加呈降低趋势.  相似文献   

13.
The mineralization of phosphorus and nitrogen from seston was studied in consolidated sediment from the shallow Lake Arreskov (July and November) and in suspensions without sediment (July). In the suspension experiment, phosphorus and nitrogen were mineralized in the same proportions as they occurred in the seston. During the 30 days suspension experiment, 47 and 43% of the particulate phosphorus and nitrogen, respectively, was mineralized with constant rates.Addition of seston to the sediment had an immediate enhancing effect on oxygen uptake, phosphate and ammonia release, whereas nitrate release decreased due to denitrification. The enhanced rates lasted for 2–5 weeks, while the decrease in nitrate release persisted throughout the experiment. The increase in oxygen uptake (equivalent to 21% of the seston carbon) was, however, only observed in the July experiment. The release of phosphorus and nitrogen from seston decomposing on the sediment surface differed from the suspension experiments. Thus, between 91 and 111% of the phosphorus in the seston was released during the experiments. Due to opposite directed effects on ammonium and nitrate release, the resulting net release of nitrogen was relatively low.A comparison of C/N/P ratios in seston, sediment and flux rates indicated that nitrogen was mineralized faster than phosphorus and carbon. Some of this nitrogen was lost through denitrification and therefore not measurable in the flux of inorganic nitrogen ions. This investigation also suggests that decomposition of newly settled organic matter in sediments have indirect effects on sediment-water exchanges (e.g. by changing of redox potentials and stimulation of denitrification) that modifies the release of mineralized phosphate and nitrogen from the sediment.  相似文献   

14.
Best  Elly P. H.  Dassen  J. H. A.  Boon  J. J.  Wiegers  G. 《Hydrobiologia》1990,194(2):91-114
A study was made of decomposition ofCeratophyllum demersum litter over a 17-day period under controlled conditions of temperature and oxygen (5, 10 and 18 °C; aerobic and anaerobic) and over a 169-day period in the field (Lake Vechten, The Netherlands). Litter, water and sediment were sampled on the 0, 2, 4, 7 and 17th day under controlled conditions and on the 0, 17, 49, 127 and 169th day in the field. The litter was analyzed quantitatively for dry mass, ash, carbon, nitrogen, phosphorus and qualitatively of organic composition by pyrolysis mass spectrometry. The water was analyzed for the elemental concentrations of organic carbon (total and dissolved), nitrogen (total, ammonia and particulate) and phosphorus (total and orthophosphate) and for the concentrations of photosynthetic pigments and bacteria. The sediment was analyzed for the elemental concentrations of nitrogen, carbon and phosphorus, and for bacterial numbers.The pattern of litter mass loss fitted an exponential model fairly well. Mass decreased faster under controlled aerobic than under anaerobic conditions and the decrease was stimulated by increasing temperature, relatively more in the range of 5 to 10 °C (by 20%) than in the range of 10 of 18 °C (by 2%). The residual mass ranged from 73 to 43% of initial under controlled aerobic conditions and from 84 to 65% under anaerobic conditions after 17 days. It decreased far less in the field, to 38% of initial mass in the field after 169 days.The litter initially lost a carbohydrate fraction by leaching in all treatments. The protein content decreased initially as well but increased subsequently at increasing temperature stimulated under anaerobic conditions. The changes in organic composition were correlated with those in nitrogen but not with those in carbon and phosphorus contents. The organic composition of litter incubated in the field differed from that of litter incubated in the laboratory. The field residues contained less proteinaceous material than the laboratory residues.The changes in carbon, nitrogen and phosphorus concentrations in the litter showed different patterns. The carbon concentration generally increased, the nitrogen concentration initially dropped and increased subsequently, and the phosphorus concentration initially dropped and remained relatively constant subsequently. Chemical immobilization of the decomposition process may have occurred in the laboratory, but was unlikely in the field.Carbon, nitrogen and phosphorus left the litter initially largely in particulate form and were recovered in the water. The ratio dissolved: total nutrient concentration was lower under controlled aerobic than under anaerobic conditions. Increasing temperature stimulated bacterial use of dissolved organic carbon and nitrogen. A rapid nutrient flow occurred from macrophyte litter, via water to sediment.The phytoplankton biomass in the water was greatly stimulated by substances freed from the decomposing litter. Diatoms increased generally relatively more than green algae, predominating alternatively with green algae under aerobic conditions and continuously under anaerobic conditions. Bacterial numbers in the water initially increased, partly due to transgression of bacteria from the sediment-water interface to the water and partly due to an actual increase in community biomass. The bacteria returned largely to the sediment-water interface, stimulated by increasing temperature, as most of the substrate readily usable by them had left the litter in the litter-bag and was associated with the upper sediment layers.It is feasible that the annual die-off of theC. demersum population of Lake Vechten barely affects nutrient cycling in the lake, because the contribution to the nutrient pools of the lake when fully mixed is only small. However, small particles originating from decomposingC. demersum litter may influence the lake considerably by decreasing water transparency and serving as a food source for filter-feeders and detritivorous macrofauna.  相似文献   

15.
以现有42年生的马尾松(Pinus massoniana)人工纯林,经过采伐形成4种不同大小有效面积的林窗(100、400、900和1 600 m2)为研究对象,以未经采伐的42年生马尾松人工纯林为对照样地,采用凋落叶分解袋法,研究不同大小有效面积林窗对马尾松凋落叶、土壤C、N、P及化学计量比和养分损失率的影响。研究结果表明:(1)不同大小有效面积林窗下的马尾松凋落叶、土壤C、N、P含量及养分损失率除土壤P含量和马尾松凋落叶P养分损失率外,均存在显著差异。随着林窗有效面积G1~G4的增大,马尾松凋落叶C、N、P含量均呈降低趋势,三者均在G3林窗体现出较小值。马尾松凋落叶C、N、P养分损失率、土壤C、N、P养分含量多呈抛物线趋势,且均在G2或G3林窗体现出最大值。(2)不同大小有效面积林窗下的马尾松凋落叶、土壤C/N/P均存在显著差异。随着林窗有效面积G1~G4的增大,马尾松人工林土壤C/N/P基本呈抛物线变化趋势,土壤C/N在G3林窗出现最大值,土壤C/P、N/P均在G2林窗体现出最大值;土壤C/N、C/P、N/P变异系数分别为13.31%、16.51%、17.21%。马尾松凋落叶C/N、C/P均在G3体现出最小值。(3)马尾松凋落叶C、N含量与土壤C、C/N/P及环境因子的相关性较强,P含量与它们的相关性较弱;C/N与土壤P、C/N/P及环境因子的相关性较强,C/P、N/P与土壤C/P及环境因子的相关性较强;C、N养分损失率与土壤C、C/N、C/P及环境因子的相关性较强,P养分损失率与土壤C、N、P含量及其化学计量比和环境因子的相关性较弱。土壤C、N、P含量及其化学计量比与环境因子的相关性较强。  相似文献   

16.
To investigate the role of primary amino nitrogen (PAN) in nitrogen regeneration by marine sediments, the distribution and fluxes of PAN in organic-rich coastal sediments off Massachusetts (USA) were investigated. Decreases with depth in the sediment of total organic carbon, organic nitrogen, and PAN contents indicate that organics with C to N ratios of about 6, such as primary amines, are selectively consumed. Near the sediment surface, dissolved PAN (DPAN) accumulates and supports a large DPAN flux into the water column and this flux greatly exceeds the inorganic nitrogen flux. Consumption of C, N, and PAN was investigated using diagenetic equations describing their exponentially decreasing distributions with depth and which included the effects of sediment mixing, sediment accumulation, and consumption, considered to be a first-order reaction rate. Calculations showed that the reaction rate constant for PAN was between 5.1 and 26.1 times faster than that for the utilizable organic N and the depth-integrated consumption of PAN accounted for between 8.6 and 43.9% of the N disappearance rate. These ranges are estimated when sediment accumulation dominates over sediment mixing (the lower values) and when mixing dominates over accumulation (the upper values). Although the magnitude of D is unknown, these calculations indicate that PAN, which comprises less than 2% of the organic N, has an important role in sedimentary nutrient dynamics because of its enhanced reactivity.  相似文献   

17.
Total oxygen deficit occurred regularly during stagnation periods in the deepest part of Lake Kallavesi in the period 1973–1986. The sediment was black and anaerobic during the first sampling in 1987. After beginning of artificial lake oxygenation and efficient purification of waste waters of a paper board mill in 1986 the oxygen deficit decreased gradually and a light brown oxidized uppermost sediment layer appeared and began to thicken. The following changes in the sediment composition were observed during 1987–1996: loss on ignition, total nitrogen and BOD7 concentrations decreased in the uppermost sediment layer (0–2 cm) and BOD7 concentration increased in the next sediment layer beneath (2–10 cm). There were no significant change in phosphorus and iron concentrations.Lake oxygen, total phosphorus and suspended solids concentrations fluctuated in a noticeable degree in Lake Huruslahti depending on waste water input and artificial oxygenation during the years 1980–1993. Oxygen condition was good at times of successful waste water elimination and lake oxygenation while deterioration of either resulted oxygen deficiency as well as increase of total phosphorus and suspended solids concentration. Most of the internal load entered with suspended solids during periods of total oxygen deficiency.An explanation for the findings in Lake Huruslahti could be microbiological. Gas formation inside sediment lift organic material towards top of the sediment and into the water, but after the lake recovery the material retain in the sediment. Also in Lake Kallavesi microbiological gas formation resuspended sediment particles with phosphorus into the overlaying water prior to oxygenation. During oxygenation microbiological processes in uppermost sediment utilize the anaerobic metabolic products, organic acids and methane, and block gas formation. Organic substances remain in the top sediment decomposing gradually in the uppermost layer.  相似文献   

18.
Summary The nitrogen and phosphorus contents of organic materials as a factor in determining the trend of mineralization of these elements when plant materials are added to the soil, were studied in an incubation experiment over a period of 12 weeks.Nitrogen mineralization increased with decreasing C:N ratio. No nitrogen mineralization was recorded above C:N ratio of 16.1 and the critical ratio lay between this and 23.0, with the plant materials used.Initial phosphorus immobilization occurred when plant materials ranging in C:P ratio from 501 to 112 were decomposed in the soil. The release of the immobilized phosphorus as incubation progressed suggests that green manuring should be considered of long-term benefit as far as phosphorus is concerned.  相似文献   

19.
盐城海滨湿地盐沼植被对土壤碳氮分布特征的影响   总被引:15,自引:0,他引:15  
在盐城海滨湿地不同植被带下采集土壤样品,研究了土壤有机碳和全氮的空间分布特征,分析了盐沼植物对湿地土壤碳、氮分布的影响.结果表明:在盐城海滨湿地,表层土壤中有机碳和全氮含量分别介于1.71~7.92 g·kg-1和0.17~0.36 g·kg-1之间,变幅较大,不同植被带之间存在显著差异,且各植被带表层土壤中有机碳、全氮含量均高于光滩.垂直方向上,各植被带土壤中有机碳、全氮的分布均呈自表向下逐渐降低的趋势,15 cm以下其含量基本保持稳定.土壤有机碳与全氮、碳氮比呈显著正相关,但全氮与碳氮比无显著相关性.  相似文献   

20.
盐城海滨湿地盐沼植被对土壤碳氮分布特征的影响   总被引:2,自引:0,他引:2  
在盐城海滨湿地不同植被带下采集土壤样品,研究了土壤有机碳和全氮的空间分布特征,分析了盐沼植物对湿地土壤碳、氮分布的影响.结果表明:在盐城海滨湿地,表层土壤中有机碳和全氮含量分别介于1.71~7.92 g·kg-1和0.17~0.36 g·kg-1之间,变幅较大,不同植被带之间存在显著差异,且各植被带表层土壤中有机碳、全氮含量均高于光滩.垂直方向上,各植被带土壤中有机碳、全氮的分布均呈自表向下逐渐降低的趋势,15 cm以下其含量基本保持稳定.土壤有机碳与全氮、碳氮比呈显著正相关,但全氮与碳氮比无显著相关性.  相似文献   

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