长江流域资源与环境 >> 2010, Vol. 19 >> Issue (05): 540-.

• 生态环境 • 上一篇    下一篇

川西亚高山人工针叶林枯落物持水与土壤渗透性能

霍小鹏1|2| 李贤伟1*| 张健1| 张兴华3| 代杰1| 张良辉1   

  1. (1.四川农业大学长江上游林业生态工程四川省重点实验室| 四川 雅安 625014; 
    2.西南油气田公司安全环保与技术监督研究院| 四川 成都 610213; 3.金堂县林业园林管理局| 四川 金堂 610400)
  • 出版日期:2010-05-20

WATER HOLDING CAPACITY OF LITTER LAYERS AND SOIL INFILTRATION CAPABILITY OF SUBAPPINE CONIFEROUS PLANTATIONS IN WESTERN SICHUAN|CHINA

HUO Xiaopeng1| LI Xianwei1| ZHANG Jian1| ZHANG Xinghua3| DAI Jie1| ZHANG Lianghui1
    

  1. (1.Forestry Ecological Engineering in Upper Reaches of Yangtze River Key Laboratory of Sichuan Province| Sichuan Agricultural University| Ya’an 625014| China;
    2.Environment &|Technology Supervision Research Institute| Southwest Oil &|Gasfield Compang Safety| Chengdu 610213| China;
    3.Jintang County of Forestry and Garden Administration Bureau| Jintang 610400| China
  • Online:2010-05-20

摘要:

为川西亚高山人工林水源涵养效益评价与林分结构合理配置提供科学依据,对该区不同恢复阶段的人工针叶林类型林地枯落物蓄积量及其最大持水量、土壤贮水与渗透性能进行了试验研究。研究结果表明:(1)林地枯落物蓄积量随林龄增大而增加,排序为:70 a云杉林(F)>40 a云杉林(C)>40 a云杉落叶松林(E)>55 a云杉林(B)>40 a落叶松林(D)>桦木林(BF)>25 a云杉落叶松林(A)>灌木林(SF)>裸露地(BL),林地枯落物最大持水量也呈相同的趋势。(2)随土壤深度增加,土壤容重逐渐增大,有机质与非毛管孔隙度逐渐减小,土壤pH、毛管孔隙度和总孔隙度变化趋势不明显。(3)在0~30 cm土层,滞留贮水量在3632~7037 t/hm2,排序为:E>C>F>SF>D>BF>B>A>BL;最大贮水量在12294~23154 t/hm2,排序为:SF>D>F>E>A>B>BF>C>BL。(4)在0~20 cm土层,初渗率在080~2595 mm/min,排序为:C>D>E>BF>B>SF>F>A>BL;稳渗率在055~425 mm/min,排序为:BF>E>SF>A>B>F>D>C>BL。(5)各渗透率指标与土壤容重极显著负相关 (〖WTBX〗P〖WTBZ〗<001),与有机质含量、非毛管孔隙度极显著正相关 (〖WTBX〗P〖WTBZ〗<001);稳渗率与枯落物蓄积量显著正相关 (〖WTBX〗P〖WTBZ〗<005

Abstract:

In order to provide scientific basis for evaluating water conservation benefit and allocating stand structure,the cumulated mass (CM) and maximal water holding capacity (MWHC) of litter layers,and soil water storage capacity and infiltration capability of different coniferous plantations in the different ecological restoration stages were examined in the subalpine region of western Sichuan.The results showed that CM increased with the increased age of plantation,and it was in the order of 70a spruce plantation(F)>40a spruce plantation(C)>40a sprucelarch plantation(E)>55a spruce plantation(B)>40a larch plantation(D)>birch forests(BF)>25a sprucelarch plantation(A)> shrub forest(SH)> bare land(BL).MWHC showed a similar pattern.With the increment of soil depth,the soil bulk density increased and organic matter content and noncapillary porosity decreased,whereas pH,capillary porosity and total porosity showed no significant change.In the layer of 0~30 cm,the soil noncapillary waterstorage capacity were 3632~7037 t/hm2,and in the order of E>C>F>SF>D>BF>B>A>BL;maximum waterstorage capacity were 12294~23154 t/hm2,and in the order of SF>D>F>E>A>B>BF>C>BL.In the layer of 0~20 cm,soil initial infiltration rate were 08~2595 mm/min,and in the order of C>D>E>BF>B>SF>F>A>BL;soil solid infiltration rate were 055~425 mm/min,and in the order of BF>E>SF>A>B>F>D>C>BL.There were great significant correlations(〖WTBX〗P〖WTBZ〗<001) between the indexes of infiltration characteristics,soil buck density,the organic matter content and noncapillary porosity,whereas solid infiltration rate was inversely correlated with CM significantly (〖WTBX〗P〖WTBZ〗<005).〖

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