首页> 外文会议>International symposium on environmental science and technology >Soil Nutrient Dynamics in Age Sequence of Mixed Plantations of Alder and Cypress in the Hilly Area of Central Sichuan Basin, China
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Soil Nutrient Dynamics in Age Sequence of Mixed Plantations of Alder and Cypress in the Hilly Area of Central Sichuan Basin, China

机译:中国四川盆地中丘陵区混合种植年龄序列的土壤养分动力学

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Soil nutrients are essential to ecosystem processes. A field study was conducted in 2004 to study the soil nutrient dynamics in the mixed plantations of alder (Aluns cremastogyne) and cypress (Cupressus funebris) (MPAC) in the hilly area of central Sichuan Basin (HACSB), China. 25 samples in an age sequence of 10-, 15-, 20-, and 25-year-old MPAC and 30-year-old pure cypress plantation (PCP) were selected by the method of spatial-temporal transition and 150 soil samples were collected at 0-15 and 15-30 cm layers to study the soil nutrient dynamics. The concentrations of soil organic carbon (SOC), total nitrogen (Ntot) and available nitrogen (AN) in purplish soil under MPAC increased significantly within initial 15 years (p<0.01 or 0.05) and then declined gradually from 15- to 30-year-old. The concentrations of total phosphorus (Ptot) and total potassium (Ktot) in 0-15 cm layer didn’t significantly change (p>0.05) during 30 years, while those of the 15-30 cm layer changed significantly (p<0.05). The concentrations of available phosphorus (AP) and available potassium (AK) in two layers changed with no significance (p>0.05) among five age stages. But the concentrations of SOC, Ntot, AN, Ptot, AP and AK in each age stand significantly declined (p< 0.01 or 0.05) with soil depth increase, but the Ktot concentrations declined with on significance (p>0.05) except for 20-year-old stands (p<0.05) because purplish soil is originally rich in potassium. The amounts of alder litter input and it’s fixation-N2 function are the principle reasons for the SOC, Ntot and AN dynamics related to stand ages and soil depths, but the ratios of uptake by the cypress root system and the return by its litters are the main reasons for Ptot dynamics. The results indicated that the plantation age and the change of dominant species composition of MPAC are the basic reasons for soil nutrient dynamics.
机译:土壤养分对生态系统过程是必不可少的。实地研究是在2004年进行的研究中桤木(Aluns桤木)和桧(柏木)(MPAC)的混合种植园土壤养分动态四川盆地中部(HACSB),中国的丘陵地区。 25个样品中的10-,15-,20-年龄序列,和25岁的MPAC和30岁的纯柏林(PCP)通过空间 - 时间过渡和150土壤样品的方法选择为收集在0-15和15-30厘米的层来研究土壤养分动态。在MPAC下紫色土土壤有机碳(SOC),总氮(NTOT)和可用氮(AN)的浓度最初的15年(P <0.01或0.05)内显著增加,然后从15-逐渐下降到30年-老的。总磷(P合计)和总钾(Ktot)的在0-15厘米层中的浓度并没有显著在30年的变化(P> 0.05),而那些在15-30厘米层的显著变化(P <0.05) 。可用的磷(AP)和可用钾(AK)的在两层中的浓度与在五个年龄阶段没有意义(p> 0.05)改变。但SOC,NTOT,AN,P合计,AP和AK的各年龄支架浓度显著下降(P <0.01或0.05),土壤深度增加,但Ktot浓度与意义(p下降> 0.05),除了20-岁的看台(p <0.05),因为紫色土原本是含有丰富的钾。桤木凋落物的输入量和它的固定-N2的功能是对SOC的原理的原因,相关NTOT和AN动力由柏树根系统,并通过其凋落物回站摄取的年龄和土壤深度,但比是主要原因P合计动态。结果表明,林龄和MPAC的优势种组成的变化是土壤养分动态的基本原因。

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