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1.
不同粒径团聚体中的不同活性有机碳对人工林土壤质量改善及碳库动态平衡有重要的作用.本研究在黄土高原地区,从南向北沿着降雨和温度降低梯度选择淳化、安塞、绥德和神木共4个地区,比较研究了人工刺槐林土壤团聚体不同的活性有机碳含量变化及其影响因素.通过湿筛法将土壤团聚体分级为粉黏粒(<0.053 mm)、微团聚体(0.25~0.053 mm)和大团聚体(>0.25 mm),用Leffory法测定3种粒径土壤团聚体低、中、高活性有机碳含量.结果表明:①4个样区大团聚体(>0.25 mm)含量由南至北呈先降低后增加趋势,微团聚体(0.25~0.053 mm)含量逐渐增加,粉黏粒(<0.053 mm)含量则先增后减.②4个样区中土壤团聚体3种活性有机碳含量大小顺序为低活性 > 中活性 > 高活性,其中,粉黏粒(<0.053 mm)低活性有机碳含量为1.02~1.52 g·kg-1,中活性有机碳含量为0.53~0.91 g·kg-1,高活性有机碳含量为0.28~0.43 g·kg-1;而微团聚体(0.25~0.053 mm)低活性有机碳含量为1.02~2.02 g·kg-1,中活性有机碳含量为0.46~1.20 g·kg-1,高活性有机碳含量为0.31~0.85 g·kg-1;大团聚体(>0.25 mm)低活性有机碳含量为1.08~3.07 g·kg-1,中活性有机碳含量为0.70~1.96 g·kg-1,高活性有机碳含量为0.48~1.24 g·kg-1.③黄土高原人工刺槐林3种粒径团聚体的低、中、高活性有机碳含量主要与年均气温(MAT)、年均降雨量(MAP)、土壤SOC、TN和含水率显著相关(p<0.05),且在同一活性下,活性有机碳含量与MAT、MAP、土壤TN、SOC、含水率的相关性随着土壤团聚体粒径的增大而越显著.研究结果对理解黄土高原土壤团聚体活性有机碳含量在空间尺度上的变化特征和影响因素具有重要意义.  相似文献   
2.
LawsofannualnutrientuptakeinaPaulowniaplantation¥WuGang(ResearchCenterforEco-EnvironmentalSciences,ChineseAcademyofSciences,B...  相似文献   
3.
影响杉木人工林可持续经营因素探讨   总被引:12,自引:0,他引:12  
杉木人工林土壤肥力和林分生产力逐代下降,直接影响杉木林地可持续经营。影响杉木人工林可持续经营的因素是多方面的,主要和杉木人工林所处亚热带红壤区生态系统的脆弱性和杉木人工林群落的单一性及杉木生物学特性等有关,而传统杉木人工林培育过程中采取一系列传统的营林措施则加剧了林地地力衰退。根据目前杉木人工林经营现状,建议在杉木人工林经营过程中应尽量降低营林措施干扰强度,特别是炼山措施的采取;同时开展有关林地可持续模式试验及评价指标体系的研究,以寻找适合不同地区的杉木人工林可持续经营模式。在此基础上,搞好杉木人工林规划和发展,这对南方杉木产区林地可持续经营实践具有较大的指导意义  相似文献   
4.
干热河谷林地燥红土固碳特征及"新固定"碳表观稳定性   总被引:4,自引:2,他引:2  
全球气候变化背景下,森林土壤固碳能力及所固定碳的稳定性受到极大关注.基于土壤密度分组和酸水解技术,对比研究了1991年营造的大叶相思(Acacia auriculiformis)林不同阶段(1991、1997、2003和2010年)土壤及其物理和生化组分中有机碳密度.结果表明,造林19 a后林地表层(0~15 cm)和亚表层(15~30 cm)土壤有机碳密度分别为1.40 kg.m-2和0.99kg.m-2.研究期内(1991~2010年)表层和亚表层土壤平均固碳速率分别为37.89 g.(m2.a)-1和16.84 g.(m2.a)-1,且土壤呈现加速固碳特征.2003年林地表层重组有机碳分配比例为71.44%,显著高于2010年(67.99%).2003年林地表层或亚表层轻组顽固性碳指数显著高于重组,但均随林龄的增加而降低,尤其是轻组顽固性碳指数.2003~2010年间燥红土"新固定"碳中57%~70%受物理保护,33%~49%为生化稳定性碳.研究揭示出干热河谷人工林燥红土具备较大的固碳能力.受物理保护碳的生化稳定性低于非保护碳,其稳定性均随林龄的增加而降低.  相似文献   
5.
The development of rubber industry depends on the sustainable management of rubber plantation. To evaluate the environmental effects of planting Hevea brasiliensis on a subsystem of tropical forest ecosystem, the variation of soil fertility and carbon sequestration under rubber plantation within 30-year life period were investigated in Hainan Island. Results showed that (1) with the increase of stand age of rubber plantation, soil fertility decreased all along. From 1954 to 1995, soil organic matter, total N, available K and available P decreased by 48.2%, 54.1%, 56.7% and 64.1%, respectively. (2) If the complete return of litters was considered without additional fertilizer application to the soil of the rubber plantations, the consumption periods for P, N, K, Mg were only 825 years, 329 years, 94 years and 65 years, respectively~ To improve soil fertility is essential for rubber plantation development. (3) The C sequestration of rubber trees per hectare accounts for 272.08 t within 30-year life period and 57.91% of them was fixed in litters. In comparison with C sequestration by rain forest (234.305 t/hm^2) and by secondary rain forest (150.203 t/hm^2), rubber forest has more potentials for C fixation. On the base of above results, the following measures would benefit the maintenance of soil fertility and the development of rubber industry, including applying fertilizer to maintain the balance of soil nutrients, intercropping leguminous plant to improve soil fertility, reducing the collection of litters, optimizing soil properties to improve element P availability such as applying CaCO3. The information gathered from the study can be used as baseline data for the sustainable management of rubber plantation elsewhere.  相似文献   
6.
米槠天然林和人工林土壤呼吸的比较研究   总被引:1,自引:0,他引:1  
采用Li-8100开路式土壤碳通量系统,对福建省三明市格氏栲自然保护区米槠天然林和人工林土壤呼吸进行1 a的定位观测,分析了土壤水热因子及凋落物对土壤呼吸的影响.结果表明,米槠天然林和人工林土壤呼吸速率月变化均呈单峰型曲线,峰值分别出现在6月上旬[7.03μmol·(m2·s)-1]和7月下旬[5.12μmol·(m2·s)-1];天然林和人工林土壤呼吸速率的年均值分别为3.74μmol·(m2·s)-1和3.05μmol·(m2·s)-1,两者之间有显著差异(P<0.05);土壤温度是影响土壤呼吸的主要因素,分别可以解释天然林和人工林土壤呼吸速率月动态变化的80.1%和81.0%;天然林土壤含水量与土壤呼吸速率呈显著正相关,但人工林两者不具有相关关系;天然林和人工林土壤呼吸速率与当月凋落物量和前一个月凋落物量呈极显著的正相关关系(P<0.01);指数方程计算的天然林和人工林土壤呼吸的Q10值分别为1.86和2.01,天然林和人工林土壤呼吸年通量值分别为14.34 t·(hm2·a)-1和11.18 t·(hm2·a)-1,天然林转换为人工林后,土壤呼吸年通量下降了22.03%.  相似文献   
7.
景观病理学在开展病原扩散、病害发生及其严重程度方面以其全新的视角,为森林病害的区域控制提供了新的研究技术及理论支持。首次利用景观病理学原理和方法对河南省清丰县一个中型景观下杨树人工林干部病害发生特征开展了研究,目的是解析在大尺度下斑块类型和地理特征对杨树人工林病害发生的影响。在100 km2的调查区域,以种植方式和林分类型划分斑块类型,分析显示发病株率在不同斑块间差异显著:农田间作斑块的林木发病株率显著低于孤立斑块、纯林斑块、混交林等斑块的发病株率;但发病株率在孤立斑块、纯林斑块及混交林等斑块间无显著差异。抚育管理措施对预防和减轻杨树人工林干部病害的发生起到关键左右:精细管理林分(有修枝、施肥和锄草)的林木发病株率(p=0.001)和发病指数(p〈0.001)均显著低于粗放管理林分(无修枝、无施肥和锄草等)。人类活动,如无序修剪和放牧很可能是造成村落附近林分发病率显著高于其他地点林分的主要原因。采用logistic回归,以品种编号、树龄、树高、林分密度、林分郁闭度、林分类型、斑块类型、地理特征,等为自变量建立病害发生预测模型。方程拟合达到极显著水平(Wald=71.248,p〈0.001)。方程总的预测正确率为68.2%,发病的预测正确率为79.8%。  相似文献   
8.
Samples of young shoot, mature leaf, twig, root, and litter were taken from four recently bred varieties Zhe-nong 113, Zhe-nong 121, Zi-sun, and Bi-feng grown at two tea plantations located at Zhejiang and Jiangsu Provinces. The results showed that the concentrations of F and Al in tea plants were significantly different among the four varieties. It is therefore possible that F and Al concentrations in tea products can be reduced through variety selection. The results also revealed that old leaves would be the major contribution to the high levels of F and Al in brick tea since it is produced mainly for old leaves. Therefore, in order to eliminate the hazard of over-exposure to F and Al derived from tea, younger shoot should be used for making tea products while mature leaves should be avoided.  相似文献   
9.
A pot experiment was conducted to study the allelopathic effects of initial decomposing leaf litter of Cinnamomum camphora on growth and physiology of Impatiens balsamina. Three leaf litter treatments included 20, 40 and 80 g of C. camphora leaf litter mixed with 8 kg of soil, namely T1, T2, and T3, respectively. In order to test the effect of leaf litter addition on the permeability and ventilation of soil simultaneously, a parallel trial with steamed leaf litter was conducted with the three treatments of the leaf litter. The leaf litter was steamed for 2 d to remove the secondary metabolites as much as possible, dried, and then mixed with 8 kg of soil, namely Z1, Z2, and Z3, respectively. No leaf litter was added in control (CK). The growth parameters of I. balsamina were determined at the 20 d, 60 d, 100 d and 120 d after sowing and the main physiology indicators were determined at the 60 d. The results indicated that: (1) The ground surface diameter and height of I. balsamina were inhibited significantly at 60 d (P < 0.05). Photosynthetic pigments and gas exchange parameters of I. balsamina were inhibited significantly at 60 d, and the inhibition effect was stronger with increased amount of leaf litter addition. The chlorophyll content, Pn and Ls decreased significantly with increased amount of leaf litter (P < 0.05). The activity of superoxide dismutase (SOD) and peroxidase (POD) in leaves of I. balsamina decreased with the increase of leaf litter addition. The content of MDA in treatments T1, T2 and T3 were all higher than that in CK, which indicated that I. balsamina suffered oxidative damage in a certain degree. The content of free proline (Pro) and soluble sugar (SS) in leaves of I. balsamina decreased significantly with the increase of the leaf litter (P < 0.05), while the content of soluble protein (SP) increased. (2) In the parallel trial, 60 d after sowing, no obvious difference was observed between CK and any steamed leaf litter treatment in terms of the morphological and physiological features stated above (P > 0.05). It indicated that the soil physical properties were not greatly influenced by leaf litter addition in the dose interval designed, or that the release of secondary metabolites from decomposing leaf litter was probably a better reason to explain the inhibition of leaf litter treatment to I. balsamina growth. (3)The compound effect (CE) of leaf litter decomposition on I. balsamina was enhanced with increase of the leaf litter, to 0.169, 0.354, and 0.497, respectively, in treatments of T1, T2 and T3. The study indicated that initial decomposition of C. camphora leaf litter in soil reduces the content of photosynthetic pigments, inhibits photosynthetic capacity and resistance physiology of I. balsamina, weakens its adaptability to the environment, and restrains growth of the plant. © 2015, Science Press. All rights reserved.  相似文献   
10.
为研究长沙地区林地土壤水分运动规律,基于2017年3月-2018年2月长沙地区樟树林土壤水分及0~130 cm土壤水、地下水和降水中稳定同位素监测数据,分析了土壤水中稳定同位素特征及其与降水中稳定同位素的关系.结果表明:①土壤水分季节变化表现为丰水期(3-6月,土壤蓄水量大而稳定)、耗水期(7-10月,土壤水分以消耗为主)、补水期(11月-翌年2月,土壤水分以补给为主)3个阶段,土壤含水量由表层至深层呈增加趋势,稳定性增强,土壤含水量的垂向差异依次为耗水期 > 补水期 > 丰水期.②受到冠层截留和地表枯枝落叶吸持的影响,林地的有效降水为降水量(P)>3.3 mm,并且LMWLP > 3.3 mm(降水量>3.3 mm时的当地大气水线)较LMWL的斜率和截距显著增加,与各深度SWL(土壤水线)更接近.③由表层至深层,土壤水稳定同位素受降水入渗、新旧水混合和蒸发的影响减小,0~40 cm土壤水中δ18O均表现为丰水期 > 补水期 > 耗水期,而40~130 cm土壤水中δ18O的季节变化不显著.④观测期间不同水体中lc-excess(δD与LMWL的差值)的平均值依次为降水(0) > 地下水(-2.80‰) > 土壤水(-5.00‰),土壤水中lc-excess随深度的增加而增大.研究显示:土壤水下渗时新旧水混合是一个持续累积的过程,旧的土壤水逐渐被降水替代;受土壤结构、质地等性质的差异及不同降水事件的影响,土壤水分的补给在剖面上存在时滞.   相似文献   
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