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1.
粤东北山区几种森林土壤有机碳储量及其垂直分配特征   总被引:2,自引:0,他引:2  
研究了粤东北山区的天然常绿阔叶林、针阔混交林、马尾松针叶林和桉树人工林等4种主要森林类型土壤有机碳储量及其分配特征.结果表明:(1)4种林分土壤有机碳平均含量在8.14~12.24 g/kg之间,常绿阔叶林最高,其次为针阔混交林.桉树人工林最小.土壤有机碳含量随深度增加而递减.但植被类型不同其减少程度不同.其中阔叶林变化幅度最大达72.04%.土壤有机碳表聚性明显.(2)4种林分土壤碳密度存在显著差异,其各土层变化范围为1.57~5.18 kg/m~2.土壤碳密度亦随深度增加而减少,自然地带性植被类型各个土层土壤碳密度均高于次生植被类型对应的碳密度.对于整个土层而言,各林分土壤碳密度在12.28~15.90 kg/m~2之间,总平均值为14.14 kg/m~2.(3)4种林分土壤碳储量整体较低,平均值为141.43 t/hm~2,表层土壤碳储量贡献不大.人为干扰活动对研究区森林土壤碳储量影响明显,是制约土壤碳储量大小的重要因素.  相似文献   

2.
基于不同林分类型下土壤碳氮储量垂直分布   总被引:4,自引:1,他引:3       下载免费PDF全文
以辽东大伙房水库周边防护林典型林分针阔混交林(落叶松-油松-刺槐混交林)、油松林、落叶松林、刺槐林为研究对象,对其土壤养分含量进行测定,研究了不同林分土壤剖面上有机碳、全氮、有机碳储量的分布规律。结果表明:随着土层深度的增大,4种林分的土壤有机碳、全氮含量均逐渐降低;4种林分土壤剖面有机碳含量大小顺序为落叶松林(24.16g/kg)刺槐林(23.07g/kg)针阔混交林(16.06g/kg)油松林(15.76g/kg);全氮含量大小顺序为刺槐林(5.23g/kg)落叶松林(4.57g/kg)油松林(3.45g/kg)针阔混交林(2.42g/kg);C/N平均值大小顺序为落叶松林(7.36)针阔混交林(6.51)油松林(4.67)刺槐林(4.57);4个林分0-40cm土层的有机碳储量大小为落叶松林(112.94t/hm~2)刺槐林(107.40t/hm~2)针阔混交林(105.42t/hm~2)油松林(89.89t/hm~2);4种林分土壤pH无明显差别,各土层土壤pH随土层深度增加而增大;4种林分土壤容重由高到低顺序依次为针阔混交林(1.73g/cm~3)油松(1.65g/cm~3)落叶松(1.64g/cm~3)刺槐(1.56g/cm~3)。4个林分土壤有机碳含量与土壤全氮含量互相间均存在极显著正相关关系,土壤有机碳、全氮含量与C/N之间则没有明显相关关系;在针阔混交林中,土壤容重、土壤全氮含量和土壤pH与土壤有机碳之间存在线性数量关系,而其他纯林则没有这种关系。  相似文献   

3.
为阐明喀斯特小流域土壤有机碳密度分布特征及有机碳储量空间分布格局,采用野外布点采样、实验室测定和地统计学分析相结合的方法,利用2 755个详细调查的剖面样地和23 536个土壤样品,定量研究了喀斯特小流域土壤有机碳密度、碳储量的空间异质性及分布特征。结果表明:后寨河小流域表层(0—20cm)土壤有机碳含量和密度的平均值为分别为25.07g/kg和5.23kg/m~2,剖面土壤(0—100cm)土壤有机碳含量和有机碳密度分别为20.71g/kg和10.21kg/m~2,两层土壤有机碳含量和密度均属于中等变异强度。10cm土层深度有机碳储量为1.48×10~8 kg,20cm土层深度有机碳储量为2.65×10~8 kg,30cm土层深度土壤有机碳储量3.43×10~8 kg,100cm土层深度有机碳储量5.39×10~8 kg。各层土壤有机碳储量的块金值C_0随着土层深度的增加而增加,而0—100cm的块金值C_0最大。4种土层深度土壤有机碳储量呈现为中部低,四周高,南部最低的趋势。海拔、坡度、岩石裸露率和石砾含量是影响喀斯特小流域土壤有机碳储量空间异质性的主导因子。  相似文献   

4.
以黄土丘陵区柠条人工林为研究对象,采用野外调查与室内分析相结合的方法,探讨柠条生长过程中土壤有机碳储量的变化规律。结果表明:1)土壤有机碳主要分布在0~20 cm土层,占0~50 cm土层总储量的49%~63%;2)相对于对照地,柠条林地土壤有机碳储量随柠条生长年限的增加先减小再升高最后趋于稳定,10、26、40、50 a柠条林地土壤总有机碳储量分别为1.555、3.236、2.775、2.444 kg/m2,26 a林地土壤有机碳储量最高,随林龄增大其变化趋于稳定;3)相关性分析结果表明,土壤有机碳质量分数与土壤密度之间呈显著负相关关系,各林地土壤密度随柠条生长年限的增加而减小,说明柠条可以通过改变土壤性质间接增加土壤总有机碳储量,土壤有机碳质量分数与根系生物量、土壤全氮质量分数之间呈极显著正相关关系,说明柠条的根系生长和固氮特性有助于有机碳的积累。  相似文献   

5.
植被恢复是既能保持磷矿开采同时又能有效扼制矿区生态环境的退化,并逐步恢复已退化的矿区生态系统最有效的生物措施。为揭示植被恢复对昆阳磷矿土壤有机碳和碳素积累的影响,研究探讨了昆阳磷矿不同恢复林地的土壤有机碳储量变化。结果表明:(1)不同恢复林地的土壤有机碳含量存在显著差异(p0.05),7种不同植被恢复人工林土壤平均有机碳含量分别是废弃地的14.29倍、11.83倍、11.40倍、5.89倍、15.48倍、15.59倍、18.53倍。(2)土壤有机碳在剖面的含量表现出明显的"表聚作用",均以表土层(0—20cm)最大,且随土层厚度的增加,呈下降趋势。(3)不同恢复林地的土壤有机碳密度差别较大,变化趋势和土壤有机碳含量的变化趋势一致,且在同一林分土壤中,单位深度土壤各土层平均有机碳密度均以表层最大,随土层的增加而降低。(4)土壤有机碳主要存储于0—20cm土层中,平均含量为53.60%,随着土层的加深,土壤有机碳所占比重急剧下降,经过植被恢复,7种人工林土壤有机碳储量较废弃地0—20cm土壤有机碳储量提高了26.53%,20.39%,34.48%,10.81%,28.62%,39.52%,36.71%,说明目前矿区通过植被恢复后的土壤状况显著优于未进行恢复措施的废弃地。  相似文献   

6.
长白山东部4种林分类型土壤有机碳及养分特征研究   总被引:4,自引:0,他引:4       下载免费PDF全文
以长白山东部长白落叶松天然林、长白落叶松人工林、天然阔叶混交林、天然针阔混交林4种林分类型为研究对象,对比分析了土壤有机碳(SOC)的垂直分布特征,以及与土壤理化性质的相关性.结果表明,4种林分下土壤有机碳含量及其差异程度随土壤深度增加均呈现逐渐减小的趋势.0-60 cm土层土壤有机碳含量大小依次为天然针阔混交林(33.64士17.48 g/kg)>长白落叶松天然林(25.30±15.09 g/kg)>天然阔叶混交林(22.13±13.74 g/kg)>长白落叶松人工林(19.23±12.35 g/kg);天然针阔混交林0-60 cm土壤有机碳密度为21.44±8.31 kg/m2,显著高于其他3种林分类型,长白落叶松人工林最小,为14.29±1.59 kg/m2.对不同土层土壤有机碳和土壤理化性质进行相关分析,结果表明,整个土壤剖面有机碳含量与自然含水率、全N、全P、全K、速效K均呈极显著或显著正相关,与土壤密度呈极显著负相关;不同林分类型土壤有机碳含量和碳密度与全N均呈显著或极显著正相关,与土壤理化性质相关性存在较大差异.  相似文献   

7.
湘西南石漠化地区不同植被恢复模式的土壤有机碳研究   总被引:1,自引:0,他引:1  
以湘西南石漠化地区侧柏纯林、侧柏+枫香混交林、湿地松+枫香混交林、栾树纯林和封山育林5种植被恢复模式下的土壤为研究对象,通过野外土壤剖面调查和土壤样品化学分析,研究石漠化地区植被恢复过程中不同层次、不同坡位、不同林龄的土壤有机碳特征。结果表明:(1)5种林分土壤有机碳含量为栾树纯林>封山育林>侧柏纯林>侧柏+枫香混交林>湿地松+枫香混交林,并随土壤深度增加而递减,各林分变化幅度不同,且各土层之间差异显著。(2)随林龄的增加,土壤有机碳含量增加且主要集中在土壤表层。(3)同一林分下,不同坡位有机碳含量变化为下坡>中坡>上坡。(4)土壤有机碳密度在5种林分中差异显著,并随土壤深度增加而减少;在整个土壤剖面上,有机碳密度为54.22~96.52t/hm2,其中0-15cm有机碳密度的贡献率达55.95%。  相似文献   

8.
几种人工林土壤有机碳和养分研究   总被引:6,自引:0,他引:6  
对中亚热带柳杉林、银杏林和楠木林3种人工林地进行分层采样分析,研究了土壤有机碳状况和养分含量(有机质、全氮、全磷及全钾等)及其垂直分布规律。结果表明:3种林地SOC含量分别为12.26gkg-1,12.40gkg-1和9.33gkg-1,SOC密度分别为15.59kgm-2,15.20kgm-2和8.11kgm-2。3种林地有机碳贮存水平差异较大。SOC含量和密度的剖面垂直分布都表现为随土壤深度增加而减小。3种林地养分含量较高,肥力表现好,有利于人工林的可持续经营。土壤有机质和全N随土层深度增加而减小。  相似文献   

9.
半干旱区不同土层深度土壤有机碳变化   总被引:6,自引:1,他引:5       下载免费PDF全文
选择内蒙古自治区赤峰市敖汉旗黄花甸子流域为研究对象,运用地统计学与ArcGIS空间分析工具相结合的方法研究了不同土层深度土壤有机碳含量、密度以及储量的变化情况。结果表明,不同土层有机碳含量与密度由高到低均表现为:表层(0—20cm)中层(20—60cm)底层(60—100cm)。表层土壤碳密度随海拔高度的增加而下降,有机碳含量呈现先增加后降低的趋势;底层土壤有机碳含量随海拔高度的改变无明显变化。同时海拔高度对土壤有机碳的影响也随土壤深度的增加而减小。研究区有机碳总储量为2.04×105 t,不同土层有机碳储量由高到低表现为:中层(8.56×104 t)底层(6.41×104 t)表层(5.47×104 t)。土壤有机碳储量与其对应海拔高度下面积的大小具有显著相关性。  相似文献   

10.
缙云山5种植被下土壤活性有机碳及碳库变化特征   总被引:1,自引:1,他引:0  
朱浩宇  王子芳  陆畅  陈仕奇  王富华  吕盛  高明 《土壤》2021,53(2):354-360
为揭示重庆市缙云山不同植被下土壤活性有机碳及碳库分配特征,以该地区5种植被类型:阔叶林、针叶林、混交林、竹林和荒草地为研究对象,分析不同植被类型下各土壤层次中有机碳(Soil organic carbon, SOC)、微生物量碳(Microbial biomass carbon,MBC)、可溶性有机碳(Dissolved organic carbon,DOC)、易氧化有机碳(Readily oxidized organic carbon,ROC)含量及其土壤碳库的变化特征。结果表明:土壤有机碳和各活性有机碳组分含量及分配比例受到植被类型和土层深度的明显影响。土壤有机碳的平均含量在0~100 cm土层表现为竹林(16.74 g/kg)>阔叶林(12.62 g/kg)>草地(11.14 g/kg)>混交林(8.16 g/kg)>针叶林(5.98 g/kg),并随土层深度的增加而减小。竹林和阔叶林的微生物量碳和易氧化有机碳含量均明显高于混交林和针叶林,各植被在剖面上均表现出垂直递减规律,表现出明显的表聚效应。除草地,4种植被的土壤碳库管理指数随土层深度的加深而减小,均表现为表层(0~20 cm土层)最高。不同植被类型间,竹林的可溶性有机碳分配比例在各土壤层次均最小,整个土壤剖面均值仅为0.1%。由相关性分析可知,微生物量碳、易氧化有机碳、土壤总有机碳含量和土壤有机碳储量有着极其显著的相关性。因此,土壤微生物量碳和易氧化有机碳可以作为衡量亚缙云山森林不同植被土壤有机碳库变化的敏感性指标。  相似文献   

11.
对天津周边半干旱地区不同种植年限的菜田土壤微生物状况调查研究表明 ,该地区土壤微生物以细菌为主 ,夏季微生物总量大大高于冬季 ;随着种菜年限的增加 ,耕层和亚耕层微生物总量都有增加趋势 ,其中细菌和放线菌增加明显 ,真菌有下降趋势 ;真菌类群分析表明 ,少数纤维素分解菌 ,如青霉 (Penicillium)、木霉 (Trichoderma)等为优势菌 ,而糖和木质素分解菌仅占少数。用尖孢镰刀霉 (Fusariumuoxysporum)、大肠杆菌 (Escherichia coli)接种不同种菜年限土壤 ,检测土壤拮抗菌状况发现 ,拮抗菌仅在种植年限长的老菜田的放线菌中发现。表明北方半干旱地区菜田土壤细菌为优势菌 ,主要存在于土壤微孔隙中 ;而适于生活在土壤疏松大孔隙中的真菌数量极少。应注意土壤结构的改良 ,为丰富土壤微生物提供良好的生态环境  相似文献   

12.
对天津周边半干旱地区不同种植年限的菜田土壤微生物状况调查研究表明 ,该地区土壤微生物以细菌为主 ,夏季微生物总量大大高于冬季 ;随着种菜年限的增加 ,耕层和亚耕层微生物总量都有增加趋势 ,其中细菌和放线菌增加明显 ,真菌有下降趋势 ;真菌类群分析表明 ,少数纤维素分解菌 ,如青霉 (Penicillium)、木霉 (Trichoderma)等为优势菌 ,而糖和木质素分解菌仅占少数。用尖孢镰刀霉 (Fusariumuoxysporum)、大肠杆菌 (Escherichia coli)接种不同种菜年限土壤 ,检测土壤拮抗菌状况发现 ,拮抗菌仅在种植年限长的老菜田的放线菌中发现。表明北方半干旱地区菜田土壤细菌为优势菌 ,主要存在于土壤微孔隙中 ;而适于生活在土壤疏松大孔隙中的真菌数量极少。应注意土壤结构的改良 ,为丰富土壤微生物提供良好的生态环境  相似文献   

13.
中国华北地区近40年物候春季变化   总被引:21,自引:4,他引:17  
根据华北地区7个观测站物候资料,分析了华北地区1963-1996年及北京1963-2005年物候春季的变化特征及其与气温的关系。结果表明:华北地区的物候春季有明显提早来临的趋势,而造成这一变化的主要因素是本地区近40 a来冬春季气温的明显上升。其中1963-1996年间华北地区1-3月及4月的平均气温分别上升了2.3℃与1.7℃,物候春季起止日期分别提前了9d和4d,因而使得春季长度也延长了5d;北京1963-2003年间1-3月及4月的平均气温分别上升了3.5℃与2.6℃,物候春季的起止日期分别提前了11d和10d,但春季长度没有明显变化。  相似文献   

14.

Purpose

Rice-paddy-dominated watersheds in eastern China are intensively cultivated, and lands with two crops receive as much as 550–600 kg?ha–1?year–1 of nitrogen (N), mainly through the addition of N-based fertilizers. However, stream N concentrations have been found to be relatively low. Waterways in the watersheds are assumed to be effective “sinks” for N, minimizing its downstream movement. We directly measured net sediment denitrification rates in three types of waterways (ponds, streams/rivers, and a reservoir) and determined the key factors that control net sediment denitrification. Such information is essential for evaluating the impact of the agricultural N cycle on the quality of surface water.

Materials and methods

The pond–stream–reservoir continuum was sampled every 2 months at nine sites in an agricultural watershed between November 2010 and December 2011. Net sediment N2 fluxes/net sediment denitrification rates were determined by membrane inlet mass spectrometry and the N2/Ar technique. A suite of parameters known to influence denitrification were also measured.

Results and discussion

Net denitrification rates ranged between 28.2?±?18.2 and 674.3?±?314.5 μmol N2–N?m–2?h–1 for the streams, 23.7?±?23.9 and 121.2?±?38.7 μmol N2–N?m–2?h–1 for the ponds, and 41.8?±?17.7 and 239.3?±?49.8 μmol N2–N?m–2?h–1 for the reservoir. The mean net denitrification rate of the stream sites (173.2?±?248.4 μmol N2–N?m–2?h–1) was significantly higher (p?<?0.001) than that of the pond sites (48.3?±?44.5 μmol N2–N?m–2?h–1), and the three types of waterways all had significantly higher (p?<?0.01) mean net denitrification rates in summer than in other seasons. Linear regression and linear mixed effect model analysis showed that nitrate (NO3 ?–N) concentration in surface water was the primary controlling factor for net sediment denitrification, followed by water temperature. Using monitoring data on NO3 ?–N concentrations and temperature of the surface water of waterways and an established linear mixed effect model, total N removed through net sediment denitrification in the pond–stream–reservoir continuum was estimated at 46.8?±?24.0 t?year–1 from July 2007 to June 2009, which was comparable with earlier estimates based on the mass balance method (34.3?±?12.7 t?year–1), and accounted for 83.4 % of the total aquatic N. However, the total aquatic N was only 4.4 % of the total N input to the watershed, and thus most of the surplus N in the watershed was likely to be either denitrified or stored in soil.

Conclusions

High doses of N in a rice-paddy-dominated watershed did not lead to high stream N concentrations due to limited input of N into waterways and the high efficiency of waterways in removing N through denitrification.  相似文献   

15.
沈阳市城市表土中微生物区系变化的初步研究   总被引:2,自引:0,他引:2  
在沈阳市远郊-近郊-市区等不同城市化水平区内选取林地、草地和路边土几种不同利用方式下的表层土壤,对土壤中的微生物状况进行了初步分析。结果表明,随着城市化水平的提高,土壤中微生物的数量表现为明显的减少趋势。其中变化较大的是细菌,而真菌和放线菌的变化不明显。  相似文献   

16.
Trace metals (Cd, Cu, Fe, Mn, Pb, and Zn) concentrations in atmospheric precipitation have been routinely monitored in Sweden since the autumn of 1983. Concentrations are highest in southern Sweden and decrease northward. It is postulated that the long range transport of anthropogenic pollutants from the rest of Europe is the major source of Cd, Pb, and Zn in precipitation. Evidence for this hypothesis is that enrichment factors indicate anthropogenic origin, and Swedish atmospheric emissions of Zn and Cd are 2 to 3 times smaller than deposition fluxes. Also, Cd, Pb, and Zn concentrations are correlated in both space and time and are also well correlated with exSO4 +, a substance known to be of anthropogenic origin transported long distances.  相似文献   

17.
Water, Air, & Soil Pollution - Epiphytic lichens were sampled in a Dutch national monitoring survey, which was carried out twice within 5 yr. The samples were analyzed by neutron activation...  相似文献   

18.
Phytoremediation is an emerging technology based on the use of green plants to remove, contain, inactivate or destroy harmful environmental pollutants. Recent developments in Europe and the USA show that the approach is somewhat different on both sides of the Atlantic. In Europe, phytoremediation has more basically been research driven and, based on the outcomes, applications have been envisaged. By contrast, the approach in the USA is more application and experience driven. In spite of a growing track record of commercial success, more demonstration projects are needed to prove that phytoremediation is effective in order to rigorously measure its underlying economics, and to expand its applications. More fundamental research is also required to better understand the complex interactions between pollutants, soil, plant roots and micro-organisms at the rhizosphere level, to increase the bioavailability of pollutants, to fully exploit the metabolic diversity of plants and, thus, to successfully implement this new green technology.  相似文献   

19.
磷是构成许多关键性大分子的重要底物,在植物体内许多生理生化反应中都发挥着重要作用,磷供应不足会极大地限制作物的产量和品质。在漫长的进化过程中,植物形成了一系列适应低磷胁迫的机制,其中,蛋白质水平的泛素化修饰对植物响应低磷胁迫起重要作用。泛素化修饰可以改变靶蛋白的活性、稳定性及其在亚细胞的定位等。对关键蛋白的泛素化修饰在植物低磷胁迫响应中的调控功能和机制进行归类总结,综述植物蛋白质泛素化途径调控低磷胁迫的研究进展。蛋白质泛素化修饰研究主要从泛素、酶和靶蛋白3个组分方面进行。泛素由76个氨基酸组成,并以逐步共轭级联的方式与靶蛋白相连,形成泛素–蛋白质复合体,该复合体被运输至26S蛋白酶体内消化与降解,从而调控众多生理过程。蛋白质泛素化修饰通过改变根系形态构型,影响磷转运子和转录因子的活性和定位,从而促进或抑制植物对土壤磷的吸收以及向地上部的运输,进而调节磷稳态。最后,提出了对植物响应低磷胁迫的蛋白质泛素化需要进行的研究。  相似文献   

20.
Abstract

Sorghum [Sorghum bicolor (L.) Moench] is a potential crop for use in lowland paddy soils following rice in the Philippines. Little is known about the variability in sorghum germplasm with respect to yield potential in these soils, or the alterations in mineral uptake which might occur if late season rains resulted in waterlogging. Eight sorghum cultivars including the most widely used Philippine cultivar were grown after rice under flooded or non‐flooded conditions. Flooding was initiated 30 days after seeding and terminated when most cultivars were at or near the boot growth stage. Flooding markedly reduced dry matter production, and delayed bloom date on the average of 5.5 days. Grain yield was reduced about 57% over all cultivars. Early maturing cultivars were not reduced in days to bloom as much as the late maturing types, and there was a significant cultivar x treatment interaction for both bloom date and grain yield. Later maturing cultivars outyielded the other cultivars at physiological maturity in both flooded and non‐flooded conditions. Concentrations of the major nutrients N, P, K, Ca, Mg, and S were decreased in foliage at the boot stage due to flooding. The only nutrient to fall below published “critical” levels in leaf tissue, however, was N, and plants growing in these conditions showed classical N deficiency symptoms. Iron and Mn concentrations were significantly higher in foliage at the boot stage with flooding, but not high enough to be considered toxic. Most differences observed at boot still existed at maturity, but of less magnitude. Marked variability existed in the response among cultivars to waterlogging. It would appear that flooding tolerant genotypes could be selected which would improve existing cultivar choices for use in these difficult soils.  相似文献   

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