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氮添加对杨树人工林土壤活性有机碳季节变化的影响

DOI: 10.3969/j.issn.1000-2006.2014.03.004, PP. 19-23

Keywords: 氮添加,杨树人工林,土壤活性有机碳,季节变化,苏北沿海地区

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Abstract:

为研究大气氮沉降对森林生态系统碳循环的影响,从2012年5月起,选择典型的苏北杨树(populusdeltoidescv.‘i-35’)人工林为实验地,采用随机区组设计不同氮添加处理,进行野外氮添加定位试验,分析氮添加对不同林龄杨树人工林土壤活性有机碳的影响。结果表明:氮添加提高了土壤微生物生物量碳、可溶性有机碳的含量;土壤微生物生物量碳和可溶性有机碳含量有显著的季节变化,总体表现为夏秋季较高,冬春季较低。相关分析表明,微生物生物量碳含量与土壤温度呈极显著正相关(p<0.01),可溶性有机碳含量与土壤温度相关性不显著(p>0.05)。研究表明,苏北杨树人工林土壤活性有机碳含量的季节变化主要受到土壤温度影响,同时其对氮添加呈正响应。

References

[1]  邓小文,韩士杰.氮沉降对森林生态系统土壤碳库的影响[j].生态学杂志,2007,26(10):1622-1627.dengxw,hansj.impactofnitrogendepositiononforestsoilcarbonpool[j].chinesejournalofecology,2007,26(10):1622-1627.
[2]  涂利华,胡庭兴,张健,等.模拟氮沉降对华西雨屏区慈竹林土壤活性有机碳库和根生物量的影响[j].生态学报,2010,30(9):2286-2294.tulh,hutx,zhangj,etal.effectsofsimulatednitrogendepositiononsoilactivecarbonpoolandrootbiomassinneosinocalamusaffinisplantation,rainyareaofwestchina[j].actaecologicasinica,2010,30(9):2286-2294.
[3]  davidsonea,trumborese,amundsonr.soilwarmingandorganiccarboncontent[j].nature,2000,408:789-790.
[4]  mcdowellwh,magillah,aitkenhead-petersonja,etal.effectsofchronicnitrogenamendmentondissolvedorganicmatterandinorganicnitrogeninsoilsolution[j].forestecologyandmanagement,2004,196(1):29-41.
[5]  bonnettsaf,ostlen,freemanc.seasonalvariationsindecompositionprocessinavalley-bottomriparianpeatland[j].scienceofthetotalenvironment,2006,370:561-573.
[6]  wuj,brookespc.theproportionalmineralizationofmicrobialbiomassandorganicmattercausedbyair-dryingandrewettingofagrasslandsoil[j].soilbiology&biochemistry,2005,37:505-515.
[7]  liucp,sheubh.dissolvedorganiccarboninprecipitation,throughfall,stemflow,soilsolution,andstreamwaterattheguandaushisubtropicalforestintaiwan[j].forestecologyandmanagement,2003,172(23):315-325.
[8]  parkjh,kalbitzk,matznere.resourcecontrolontheproductionofdissolvedorganiccarbonandnitrogeninadeciduousforestfloor[j].soilbiologyandbiochemistry,2002,34(6):813-822.
[9]  klotzbüchert,kaiserk,stepperc,etal.long-termlitterinputmanipulationeffectsonproductionandpropertiesofdissolvedorganicmatterintheforestfloorofanorwaysprucestand[j].plantandsoil,2012,355:407-416.
[10]  丘清燕,梁国华,黄德卫,等.森林土壤可溶性有机碳研究进展[j].西南林业大学学报,2013,33(1):86-96.qiuqy,lianggh,huangdw,etal.advancesinstudiesonsolubleorganiccarboninforestsoils[j].jouranlofsouthwestforestryunversity,2013,33(1):86-96.
[11]  filept,rékásim.factorscontrollingdissolvedorganiccarbon(doc),dissolvedorganicnitrogen(don)anddoc/donratioinarablesoilsbasedonadatasetfromhungary[j].geoderma,2011,162:312-318.
[12]  袁颖红,樊后保,刘文飞,等.模拟氮沉降对杉木人工林土壤可溶性有机碳和微生物量碳的影响[j].水土保持学报,2012,26(2):138-143.yuanyh,fanhb,liuwf,etal.effectsofsimulatednitrogendepositiononsoildissolvedorganiccarbonandmicrobialbiomasscarboninachinesefirplantation[j].journalofsoilandwaterconservation,2012,26(2):138-143.
[13]  吕超群,田汉勤,黄耀.陆地生态系统氮沉降增加的生态效应[j].植物生态学报,2007,31(2):205-218.lvcq,tianhq,huangy.ecologicaleffectsofincrasednitrogendepositioninterrestrialecosystems[j].journalofplantecology,2007,31(2):205-218.
[14]  李玉强,赵哈林,陈银萍.陆地生态系统碳源和碳汇及其影响机制研究进展[j].生态学杂志,2005,24(1):37-42.liyq,zhaohl,chenyp.advancesinthestudyofterrestrialecosystemcarbonsource,sinkandaffectionmechanisms[j].chinesejournalofecology,2005,24(1):37-42.
[15]  fengxj,simpsonaj,schlesingerwh,etal.alteredmicrobialcommunitystructureandorganicmattercompositionunderelevatedco2andnfertilizationinthedukeforest[j].globalchangebiology,2010,16:2104-2116.
[16]  柳敏,宇万太,姜子绍,等.土壤活性有机碳[j].生态学杂志,2006,25(11):1412-1417.lium,yuwt,jiangzs,etal.aresearchreviewonsoilactiveorganiccarbon[j].chinesejournalofecology,2006,25(11):1412-1417.
[17]  涂利华,胡庭兴,张健,等.模拟氮沉降对华西雨屏区苦竹林土壤有机碳和养分的影响[j].植物生态学报,2011,35(2):125-136.tulh,hutx,zhangj,etal.responseofsoilorganiccarbonandnutrientstosimulatednitrogendepositioninpleioblastusamarusplantation,rainyareaofwestchina[j].chinesejournalofplantecology,2011,35(2):125-136.
[18]  jonesdl,willettvb.experimentalevaluationofmethodstoquantifydissolvedorganicnitrogen(don)anddissolvedorganiccarbon(doc)insoil[j].soilbiologyandbiochemistry,2006,38:991-999.
[19]  freysd,knorrm,parrentjl,etal.chronicnitrogenenrichmentaffectsthestructureandfunctionofthesoilmicrobialcommunityintemperatehardwoodandpineforests[j].forestecologyandmanagement,2004,196:159-171.
[20]  全国农业技术推广服务中心.土壤分析技术规范[m].2版.北京:中国农业出版社,2006.
[21]  devinb,yadavaps.seasonaldynamicsinsoilmicrobialbiomassc,nandpinamixed-oakforestecosystemofmanipur,north-eastindia[j].appliedsoilecology,2006,31(3):220-227.
[22]  edwardska,mccullochj,kershawgp,etal.soilmicrobialandnutrientdynamicsinawetarcticsedgemeadowinlatewinterandearlyspring[j].soilbiologyandbiochemistry,2006,38(9):2843-2851.
[23]  涂利华,胡庭兴,张健,等.模拟氮沉降对华西雨屏区苦竹林细根特性和土壤呼吸的影响[j].应用生态学报,2010,21(10):2472-2478.tulh,hutx,zhangj,etal.effectsofsimulatednitrogendepositiononthefinerootcharacteristicsandsoilrespirationinapleioblastusamarusplantationinrainyareaofwestchina[j].chinesejournalofappliedecology,2010,21(10):2472-2478.

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