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1.
秸秆还田对江西农田土壤固碳影响的模拟分析   总被引:3,自引:0,他引:3  
秸秆还田等农田管理措施能有效地增加土壤碳储量,从而有利于减缓大气CO2浓度的上升趋势。论文基于环境政策综合气候模型(EPIC),采用千烟洲生态试验站和鹰潭生态试验站农田监测场长期观测数据,验证和优化了EPIC模型参数,同时利用1990-2010年江西省气象资料以及土壤清查资料,模拟分析了4种秸秆还田(CR)比例情景下2010-2030年江西省水稻田土壤的固碳潜力。研究结果表明,无秸秆还田 (CR0%)和秸秆还田25%(CR25%)两种处理下耕作层土壤有机碳储量分别下降21.3%和6.5%,秸秆还田50%(CR50%)和100%(CR100%)处理下土壤有机碳储量分别增加5.4%和11.9%;相对CR0%情景而言,CR25%、CR50%、CR100% 情景下江西省水稻田土壤总固碳潜力分别为6.43、14.92和25.26 TgC(1 Tg = 106 t)。研究结果表明,通过合理的调控措施,采用保护性耕作(秸秆还田)是提高水稻田土壤固碳能力的一种有效途径。  相似文献   

2.
张霞  杜昊辉  王旭东  李军 《自然资源学报》2018,33(12):2223-2237
以渭北旱塬9 a(2007—2016年)的不同耕作定位试验为对象,研究了在秸秆还田条件下3种连年单一耕作即翻耕(CC)、免耕(NN)、深松(SS)和3种轮耕措施即免耕-深松(NS)、深松-翻耕(SC)、翻耕-免耕(CN)对农田土壤固碳速率(CSE)、碳库管理指数(CPMI)、小麦产量和秸秆还田后表观腐殖化系数的影响。结果表明:以翻耕(CC)作为参照土样,免耕提高了0~10 cm表层土壤的固碳速率、有机碳(SOC)及其易氧化组分(EOC)的含量,并增加了表层(0~10 cm)土壤的碳库管理指数(CPMI),在>10 cm土层SOC、EOC含量虽有所减少,但提高了有机碳的稳定系数(KOS);深松则提高了表层和35~50 cm土层的SOC、EOC含量、CSE及CPMI,并增加了0~10 cm、35~50 cm土层的EOC/SOC值和10~20 cm土层的KOS;轮耕处理各土层的CSE、SOC和EOC含量均有所增加,且增加了0~10 cm、35~50 cm土层的EOC/SOC值,其中NS和CN轮耕处理各层CPMI都有所增加。深松、免耕和轮耕处理提高了小麦产量和小麦秸秆量,其中NS处理增加幅度最大,分别为14.3%(籽粒)和12.9%(秸秆);进行9 a小麦秸秆还田,免耕、深松和轮耕措施提高了还田秸秆的表观腐殖化系数,其中NS处理的表观腐殖化系数显著高于翻耕处理。  相似文献   

3.
陈曦  张彦军  邹俊亮  李天姿  于媛  李晶 《环境科学》2024,45(3):1702-1712
秸秆还田和耕作深度处理是影响农田土壤呼吸最重要的农业管理措施之一,但二者交互作用影响农田土壤呼吸的机制尚不清楚.基于此,针对中国的旱地农田生态系统,利用已发表的116篇研究论文,借助Meta分析技术,探究秸秆还田和耕作深度处理及其二者交互作用对农田土壤呼吸的影响及其调控因素,为农田生态系统实现“碳中和”提供重要的数据支撑和理论依据.结果表明,免耕导致土壤呼吸减少了8.3%,而浅耕和深耕处理对土壤呼吸的影响不显著,但对土壤呼吸的增加量仍呈现出深耕>浅耕>免耕的趋势.虽然,浅耕和深耕对土壤呼吸和土壤有机碳(SOC)的影响均相对较小,但是免耕导致土壤呼吸减少了8.3%的同时却又导致SOC增加了7.05%,因此实施免耕措施对农田土壤固碳减排具有重要意义.此外,耕作深度会显著调控秸秆还田对土壤呼吸的影响,且土壤呼吸的增加量呈现出深耕秸秆还田>浅耕秸秆还田>免耕秸秆还田的趋势,整体平均增加了14.51%.秸秆还田后不同深度耕作处理下土壤呼吸的增加量与土壤容重、农作物产量、土壤有机碳、以及土壤温度和水分的改变量密切相关,且对土壤呼吸增加量的贡献呈现出土壤容重>农作物产量>土壤有机碳>土壤水分>土壤温度的趋势.虽然SOC在深耕秸秆还田、浅耕秸秆还田和免耕秸秆还田处理下分别增加了29.32%、10.12%和23.94%,但是土壤呼吸在深耕秸秆还田和浅耕秸秆还田处理分别增加了29.32%和18.92%,而在免耕秸秆还田处理下仅增加1.2%.所以,免耕秸秆还田也有利于农田土壤固碳减排.因此,在中国的旱地农田生态系统中,耕作深度会调控秸秆还田对土壤呼吸的影响程度,而这种调控主要与土壤理化性质有关,尤其与土壤容重关系最为紧密,且免耕和免耕秸秆还田均是有利于农田土壤固碳减排的重要农业管理措施.  相似文献   

4.
The Kyoto Protocol aims to reduce net emissions of greenhouse gases to the atmosphere by various measures including through management of the biosphere. However, the wording that has been adopted may be difficult and costly to implement, and may ultimately make it impossible to cost-effectively include biosphere management to reduce net greenhouse gas emissions. An alternative scheme is proposed here, especially for the second and subsequent commitment periods, to more effectively deal with the anthropogenic component of carbon stock changes in the biosphere. It would categorise the terrestrial biosphere into different land-use types, with each one having a characteristic average carbon density determined by land-use and environmental factors. Each transition from one land-use type to another, or a change in average carbon density within a specified type due to changed management would be defined as anthropogenic and credited or debited to the responsible nation. To calculate annual credits and/or debits, the change in average carbon stocks must be divided by a time constant which would either be a characteristic of each possible land-use conversion, or applicable to the sum of changes to a nation's biospheric carbon stocks. We believe that this scheme would be simpler and less expensive to implement than one based on the measurement of actual carbon changes from all specified areas of land. It would also avoid undue credits or debits, because they would only accrue as a result of identified anthropogenic components of biospheric carbon changes whereas carbon fluxes that are due to natural variation would not be credited or debited.  相似文献   

5.
Little is known about the multiple impacts of sustainable land management practices on soil and water conservation, carbon sequestration, mitigation of global change and crop yield productivity in semiarid Mediterranean agroecosystems. We hypothesized that a shift from intensive tillage to more conservative tillage management practices (reduced tillage optionally combined with green manure) leads to an improvement in soil structure and quality and will reduce soil erosion and enhance carbon sequestration in semiarid Mediterranean rainfed agroecosystems. To test the hypothesis, we assessed the effects of different tillage treatments (conventional (CT), reduced (RT), reduced tillage combined with green manure (RTG), and no tillage (NT)) on soil structure and soil water content, runoff and erosion control, soil carbon dioxide (CO2) emissions, crop yield and carbon sequestration in two semiarid agroecosystems with organic rainfed almond (Prunus dulcis Mill) in the Murcia Region (southeast Spain). It was found that reduction and suppression of tillage under almonds led to an increase in soil water content in both agroecosystems. Crop yields ranged from 775 to 1,766 kg ha?1 between tillage treatments, but we did not find a clear relation between soil water content and crop yield. RT and RTG treatments showed lower soil erosion rates and higher crop yields of almonds than under CT treatment. Overall, higher soil organic carbon contents and aggregate stability were observed under RTG treatment than under RT or CT treatment. It is concluded that conversion from CT to RTG is suitable to increase carbon inputs without enhancing soil CO2 emissions in semiarid Mediterranean agroecosystems.  相似文献   

6.
湿地垦殖对土壤微生物量及土壤溶解有机碳、氮的影响   总被引:8,自引:4,他引:8  
对三江平原天然沼泽湿地及湿地垦殖后的农田、弃耕还湿地、人工林地等不同土地利用方式下表层土壤(0~10cm)的活性碳、氮组分:微生物量碳(MBC)、微生物量氮(MBN)、溶解有机碳(DOC)、溶解有机氮(DON)进行了研究.结果表明,天然小叶章沼泽湿地垦殖为农田后,表层土壤各活性碳、氮组分显著降低:MBC减少了63.8%~80.5%; MBN减少了56.3%~67.1%; DOC减少了43.1%~44.3%; DON减少了25.2%~56.1%.农田弃耕还湿和人工造林后表层土壤的活性碳、氮组分有明显恢复的趋势,各组分恢复到天然小叶章湿地土壤水平的36.1%~59.9%(MBC);46.7%~65.9%(MBN);67.0%~69.3%(DOC);81.2%~88.3%(DON),土地利用方式是影响土壤MBC、MBN、DOC、DON变化的重要因素;各土地利用方式表层土壤的DOC、DON、MBC、MBN呈显著的正相关关系,土地利用方式对表层土壤DOC的影响大于对DON的影响;各土地利用方式下土壤微生物可利用碳、氮的来源不同是影响DOC、DON与MBC、MBN相关性差别明显的主要原因.  相似文献   

7.
Arable land soils generally have lower organic carbon (C) levels than soils under native vegetation; increasing the C stocks through improved management is suggested as an effective means to sequester CO2 from the atmosphere. China's arable lands, accounting for 13% of the world's total, play an important role in soil C sequestration, but their potential to enhance C sequestration has not yet been quantitatively assessed. The C sequestration by agricultural soils is affected by many environmental factors (such as climate and soil conditions), biological processes (crop C fixation, decomposition and transformation), and crop and soil management (e.g. tillage and manure application). Estimation of the C sequestration potential requires the quantification of the combined effects of these factors and processes. In this study, we used a coupled remote sensing- and process-based ecosystem model to estimate the potential for C sequestration in agricultural soils of China and evaluated the sustainability of soil C uptake under different soil management options. The results show that practicing no-tillage on 50% of the arable lands and returning 50% of the crop residue to soils would lead to an annual soil C sequestration of 32.5 Tg C, which accounts for about 4% of China's current annual C emission. Soil C sequestration with improved soil management is highly time-dependent; the effect lasted for only 20–80 years. Generally, practicing no-tillage causes higher rate and longer sustainability of soil C sequestration than only increasing crop residue into soils. The potential for soil C sequestration varied greatly among different regions due to the differences in climate, soil conditions and crop productivity.  相似文献   

8.
保护性耕作对土壤结构体碳氮分布的影响   总被引:4,自引:0,他引:4  
以7年不同耕作的定位试验为研究对象,研究了深松、旋耕、免耕等保护性耕作对关中塿土小麦-玉米轮作条件下土壤结构体分布以及结构体中有机碳和全氮含量、储量的影响。结果表明,与传统耕作相比,深松、旋耕、免耕以及秸秆还田+传统耕作均提高了5 mm粒级结构体的含量。随着土壤结构体粒径的增大,结构体有机碳含量逐渐减小,有机碳含量在0.25 mm结构体中平均含量为10.87 g/kg,在5 mm结构体中平均含量为9.57 g/kg。在0.25 mm的各粒级结构体中,全氮含量也随着结构体粒径的增加而减小。深松和旋耕处理较免耕和传统耕作更有利于结构体中有机碳、氮含量的增加;深松和旋耕比较,深松更有利于2 mm结构体碳氮含量的增加。相关分析表明,土壤碳氮含量和较小粒级(2 mm)结构体的碳氮含量之间的相关性最好。从有利于结构体保持和有机碳、氮储量增加的角度考虑,深松和旋耕是当地较理想的耕作方式。  相似文献   

9.
依据田间连续7 a秸秆还田定位试验,探讨秸秆还田配施化肥对巢湖地区农田土壤剖面(0~20、20~50和50~80 cm)的土壤总有机碳(TOC)、可溶性有机碳(DOC)、颗粒有机碳(POC)、活性有机碳(LOC)、碳库管理指数(CPMI)和作物产量的影响.试验设置无秸秆还田+无施肥(CK)、常规施肥(F)、秸秆还田+常规施肥(SF1)和秸秆还田+80%常规施肥(SF2)这4个处理,分析不同土层土壤总有机碳和组分含量、CPMI和油菜-水稻产量的变化规律.结果表明,以CK为参考,常规施肥和秸秆还田配施化肥均提高了垂直剖面土壤总有机碳和组分的含量,且不同土层土壤总有机碳和组分的含量随土层深度增加而逐渐降低.在0~20 cm土层,与F处理相比,SF1和SF2处理显著提高TOC、DOC、POC和LOC的含量,增幅分别为:14.23%~28.97%、7.86%~27.01%、16.46%~24.24%和5.89%~6.64%(P<0.05);在20~50 cm土层,SF1较F处理的TOC和LOC的含量显著增加9.43%和8.34%(P<0.05),SF2较F处理的DOC和POC的含量显著增加17.51%和65.83%(P<0.05);在50~80 cm土层,各处理间土壤总有机碳和组分的含量均无显著差异.秸秆还田配施化肥对土壤碳库管理指数影响显著,SF1较F处理显著提高0~50 cm土层的CPMI,而F处理的CPMI在50~80 cm土层最大,但各处理间均无显著差异.秸秆还田配施化肥对作物产量具有显著提升作用,且SF1处理的产量最高,SF1较F处理的水稻、油菜和周年产量分别显著增加6.19%、7.67%和6.54%(P<0.05).总的来说,稻-油轮作模式下秸秆还田配施化肥对提高巢湖地区土壤碳库、土壤肥力和作物产量具有重要意义.  相似文献   

10.
Carbon dioxide release due to change in land usein China mainland   总被引:4,自引:0,他引:4  
CarbondioxidereleaseduetochangeinlanduseinChinamainlandWangXiaoke;ZhuangYahui;FengZongwei(ResearchCenterforEco-EnvironmentalS...  相似文献   

11.
To participate in the potential market for carbon credits based on changes in the use and management of the land, one needs to identify opportunities and implement land-use based emissions reductions or sequestration projects. A key requirement of land-based carbon (C) projects is that any activity developed for generating C benefits must be additional to business-as-usual. A rule-based model was developed and used that estimates changes in land-use and subsequent carbon emissions over the next twenty years using the Eastern Panama Canal Watershed (EPCW) as a case study. These projections of changes in C stocks serve as a baseline to identify where opportunities exist for implementing projects to generate potential C credits and to position Panama to be able to participate in the emerging C market by developing a baseline under scenarios of business-as-usual and new-road development. The projections show that the highest percent change in land use for the new-road scenario compared to the business-as-usual scenario is for urban areas, and the greatest cause of C emission is from deforestation. Thus, the most effective way to reduce C emissions to the atmosphere in the EPCW is by reducing deforestation. In addition to affecting C emissions, reducing deforestation would also protect the soil and water resources of the EPCW. Yet, under the current framework of the Clean Development Mechanism (CDM), only credits arising from reforestation are allowed, which after 20 years of plantation establishment are not enough to offset the C emissions from the ongoing, albeit small, rate of deforestation in the EPCW. The study demonstrates the value of spatial regional projections of changes in land cover and C stocks: The approach helps a country identify its potential greenhouse gas (GHG) emission liabilities into the future and provides opportunity for the country to plan alternative development pathways. It could be used by potential project developers to identify which types of projects will generate the largest C benefits and provide the needed baseline against which a project is then evaluated. Spatial baselines, such as those presented here, can be used by governments to help identify development goals. The development of such a baseline, and its expansion to other vulnerable areas, well positions Panama to respond to the future market demand for C offsets. It is useful to compare the projected change in land cover under the business-as-usual scenario to the goals set by Law 21 for the year 2020. Suggested next steps for analysis includeusing the modeling approach to exploreland-use, C dynamics and management ofsecondary forests and plantations, soilC gains or losses, sources ofvariability in the land use and Cstock projections, and other ecologicalimplications and feedbacks resulting fromprojected changes in land cover.  相似文献   

12.
为探究连续周年轮作休耕对红壤团聚体稳定性及有机碳含量的影响,以坡耕地红壤为研究对象,采用湿筛法和重铬酸钾-浓硫酸外加热法分别测定水稳性团聚体和有机碳含量,分析了2020~2022年玉米-苕子-玉米轮作(M-V-M)、玉米-豌豆-玉米轮作(M-P-M)、玉米-冬闲-玉米(M-F-M)和周年休耕(F-F-F)这4个处理下土壤团聚体稳定性及有机碳含量变化特征以及两者间的相互关系.结果表明,在2021年和2022年中,F-F-F、M-V-M和M-P-M处理的> 2 mm团聚体含量较M-F-M分别显著提高了67.01%~100.92%、29.71%~33.67%和29.68%~38.07%;2021年和2022年中F-F-F、M-V-M的团聚体稳定性参数显著高于M-F-M(P < 0.05).M-V-M处理下的> 2 mm团聚体含量、GMD(几何平均直径)和MWD(平均重量直径)及F-F-F处理的R0.25( > 0.25 mm团聚体含量)、MWD和> 2 mm团聚体含量随着轮作休耕年限的延长而增加,而F-F-F处理下1~2 mm和< 0.25 mm团聚体含量随着休耕年限的增加而降低.绿肥轮作和休耕处理均能够提高SOC含量,且F-F-F和M-V-M处理的SOC含量随年限的延长而增加.相关性分析表明,所有处理下SOC含量与R0.25呈极显著正相关,与GMD呈显著正相关;F-F-F处理下的R0.25和GMD及M-V-M处理下的GMD和MWD均与SOC含量显著正相关.结果表明,连续周年轮作休耕有利于提高土壤大团聚体含量、团聚体稳定性和SOC含量,可为我国南方坡耕地红壤区推行合理的连续周年轮作休耕模式和水土流失防治提供理论依据.  相似文献   

13.
熊瑛  王龙昌  杜娟  赵琳璐  周泉  张赛 《环境科学》2017,38(5):2102-2110
土壤呼吸是土壤有机碳库输出的主要途径,为探讨垄作和不同秸秆覆盖量对旱三熟蚕豆田土壤呼吸及有机碳特征的影响,测定了平作无覆盖(T)、垄作无覆盖(R)、垄作+半量覆盖(RS1)、垄作+全量覆盖(RS2)这4个处理下的西南紫色土丘陵区蚕豆/玉米/甘薯旱三熟体系中蚕豆田土壤呼吸及有机碳变化,分析了土壤温度和水分与土壤呼吸的关系.结果表明,蚕豆生长季节农田土壤呼吸随作物生长一致,呈先增加后减弱的变化趋势,全生育期平均土壤呼吸速率差异显著,表现为RS2RS1TR,分别为3.365、2.935、2.683、2.263 g·(m~2·d)~(-1).垄作显著降低了蚕豆农田土壤呼吸速率,而秸秆覆盖显著提高土壤呼吸速率,且随着覆盖量的增加而增加.土壤呼吸速率随土壤温度(5 cm和10 cm)呈指数型增长,10 cm处的回归模型明显好于5 cm.10 cm土层Q10值表现为RS2RS1RT,分别为1.751、1.665、1.616、1.35.垄作和秸秆覆盖下土壤温度、水分与土壤呼吸速率的混合指数模型可以解释土壤呼吸速率变异的68%(R)、79%(RS1)和76%(RS2).垄作和秸秆覆盖下0~5 cm、5~10 cm、10~20 cm、20~30 cm土层土壤有机碳含量均得到不同程度的提高,且随着覆盖量的增加而增加,其中5~10 cm、10~20 cm土层表现为RS2RS1RT,差异达显著水平,且5~10 cm土层有机碳含量增幅最大;但垄作和秸秆覆盖仅显著提高了颗粒有机碳0~30 cm加权平均值,对颗粒有机碳占土壤有机碳比例的影响效应不显著.  相似文献   

14.
滇黔桂地区土壤有机碳储量与影响因素研究   总被引:13,自引:1,他引:12  
土壤有机碳(SOC)库在陆地生态系统中具有重要作用.由于土壤剖面数量和采用的土壤图比例尺等的限制,目前土壤有机碳库估箅尚存在很大不确定性.为了提高SOC库估算的精确性,利用798个土壤剖面及1:50万土壤图估算了滇黔桂地区(云南省、贵州省和广西壮族自治区)的SOC储量,并采用逐步回归分析和通径分析方法分析了影响SOC密度的主要因子.结果表明,滇黔桂地区表土层(0-20 cm)和土壤剖面(0-100 cm)的SOC储量分别为4.39 Pg和10.91 Pg;SOC密度分别为56.2Mg·hm-2和139.8 Mg·hm-2.高于全国平均水平.环境因子(海拔、经度、纬度、气温和降雨)、成土母质和土地利用方式对表土层和土壤剖面SOC密度变异性的解释度分别为37.9%和30.7%;环境因子为影响SOC密度的主要因子.环境因子中.气温对SOC密度的影响大干降雨,其中气温和降雨的变化分别主要由海拔和纬度的变化引起的.除气温和降雨外,还有其它随海拔或经纬度而变化的因子也对SOC密度产生显著影响,这种影响要大于降雨的影响.  相似文献   

15.
气候变暖会提高土壤温度从而导致土壤碳释放,但也可以通过提高初级生产力增加土壤有机碳.农田土壤被认为具有巨大的固碳潜力,然而大区域尺度上气候变暖如何影响农田土壤有机碳变化尚缺少直接观测.水稻土是我国重要的耕作土壤之一,基于1980~1985年全国第二次土壤普查获得的2 217个样点数据和2017~2019年2 382个实地采样数据,分析了四川盆地水稻土表层土壤有机碳含量的变化特征,并探究了水稻土有机碳含量变化与气温、降雨量、农田利用方式、施肥强度和粮食产量的关系.结果表明,近40年间四川盆地水稻土表层有机碳含量从13.33 g·kg-1上升到15.96 g·kg-1,增长了2.63 g·kg-1,呈“碳汇”效应;不同地貌区和不同二级流域水稻土有机碳含量变化幅度不同.水稻土有机碳含量增加量与年均气温呈正相关关系,与年均降雨量呈负相关关系,与年均施肥量及其增长速率、年均粮食产量及增长率则均呈先增加后降低的抛物线关系.不同农田利用方式下水稻土有机碳含量增加量与年均气温增长率关系不同,年均气温增长率的增加仅在水旱轮作下对有机碳增长...  相似文献   

16.
中国西南喀斯特森林土壤有机碳空间变化及影响因素   总被引:4,自引:0,他引:4  
喀斯特地区土壤碳储量及其影响因素的认识是评估我国陆地土壤生态系统碳汇能力不可或缺的内容。本文通过对中国西南北起秦岭北坡南至中越边境一条剖面上土壤有机碳的分析,研究了喀斯特森林0~10cm土壤有机碳空间变化及其控制因素。研究发现西南地区土壤有机碳含量和碳密度平均为32.3 g/kg和33.1t/hm2。无论是在整个西南区还是其省市范围内,二者均低于非喀斯特森林土壤。通径分析表明,影响喀斯特表层土壤碳含量和密度的主要因素有土壤容重、地形海拔和有机质C/N;粘粒含量和年平均气温的影响很小,而降水量仅在地处最北部的陕西省构成了土壤碳密度的影响因素。此现象与世界许多地区特别是高纬度地区形成鲜明对比。本研究结果表明,不同区域/气候带土壤碳库的主要影响因素会存在很大差异,这对认识气候变化背景下土壤碳库的反馈作用具有重要意义。  相似文献   

17.
The rate of carbon accumulation in the atmosphere can be reduced by decreasing emissions from the burning of fossil fuels and by increasing the net uptake (or reducing the net loss) of carbon in terrestrial (and aquatic) ecosystems. The Kyoto Protocol addresses both the release and uptake of carbon. Canada is developing a National Forest Carbon Monitoring, Accounting and Reporting System in support of its international obligations to report greenhouse gas sources and sinks. This system employs forest-inventory data, growth and yield information, and statistics on natural disturbances, management actions and land-use change to estimate forest carbon stocks, changes in carbon stocks, and emissions of non-CO2 greenhouse gases. A key component of the system is the Carbon Budget Model of the Canadian Forest Sector (CBM-CFS). The model is undergoing extensive revisions to enable analyses at four spatial scales (national, provincial, forest management unit and stand) and in annual time steps. The model and the supporting databases can be used to assess carbon-stock changes between 1990 and the present, and to predict future carbon-stock changes based on scenarios of future disturbance rates and management actions.  相似文献   

18.
植被恢复通过改变碳输入和转化速率,影响陆地生态系统的碳循环.为探明喀斯特地区植被恢复过程中土壤活性有机碳组分与碳库管理指数的演变特征,以喀斯特地区草地序列(5、10、15和20 a)、灌木序列(5、10、15和20 a)和园地序列(5、10和15 a)土壤为研究对象,以相邻农田为对照(CK),分析了不同植被恢复年限对土壤有机碳(SOC)、易氧化有机碳(ROC333、ROC167和ROC33,即能被333、167和33 mmol·L-1 KMnO4氧化的土壤活性有机碳)、微生物量碳(MBC)、溶解性有机碳(DOC)及碳库管理指数(CPMI)演变的影响.结果表明,与CK相比,0~40 cm土层草地、灌木和园地序列平均SOC含量分别增加了70.77%、114.40%和50.17%.在0~20 cm土层,随恢复年限增加,草地序列和园地序列的SOC含量呈先升后降势态,灌木序列呈先升后降再升势态,ROC333、ROC167和ROC33与对应序列的SOC变化势态一致;在20~40 cm土层,各序列的ROC333、ROC167和ROC33与对应序列的SOC的变化势态不一致.在0~40 cm土层,草地序列MBC含量呈先降后升再降势态,各土层MBC最大值均在G15;灌木序列在0~10 cm土层为先升后降再升势态,在10~40 cm土层为先升后降势态;园地序列在0~30 cm土层为先升后降势态,在30~40 cm土层为逐渐升高势态.3个序列Kos大致呈先降后升再降势态,L和LI与Kos相反;CPI呈先升后降势态;草地和园地序列的碳库管理指数(CPMI)呈先升后降势态,而灌木序列CPMI的则呈先升后降再升势态.SOC、ROC333、ROC167、ROC33和MBC含量及Kos的年增长量大小为:灌木>草地>园地,DOC和CPMI的年增长量大小为:园地>草地>灌木.3个序列SOC及其组分含量均总体随土层增加而降低,具有明显的表聚性.冗余分析结果显示碱解氮(AN)是影响喀斯特地区植被恢复下土壤活性有机碳组分和土壤有机碳库的主要环境因子.综上,土壤活性有机碳组分和CPMI随植被恢复时间发生演变,不同植被恢复均能一定程度地提高喀斯特地区SOC及其组分含量,灌木恢复促进SOC的积累.  相似文献   

19.
农田是重要的陆地生态系统土壤碳库和作物生长的有机养分库.为明确气候变暖对稻麦轮作农田土壤碳库的影响,利用田间开放式增温平台,分析了增温、施肥和其交互作用对土壤有机碳和其活性组分的影响,并评估了土壤碳库管理指数的变化.结果表明,增温、施肥对土壤有机碳含量和其活性有机碳组分的影响均无显著交互作用.增温增加了土壤有机碳含量,且总有机碳(TOC)和惰性有机碳(ROC)含量差异显著.与不增温对照相比,增温处理的TOC、 ROC和活性有机碳(LOC)含量分别增加了7.72%、7.42%和10.11%.土壤微生物量碳(MBC)含量的增加(20.4%)和颗粒有机碳(POC)含量的降低(36.51%)可能是增温下土壤有机碳含量变化的主要原因.增温对土壤可溶性有机碳(DOC)含量无显著影响,但显著降低了其可溶性微生物副产物组分含量(41.89%).结果同时表明,施肥对土壤有机碳含量均无显著影响,但显著降低了活性碳组分的DOC和POC含量,增加了MBC含量.与不施肥对照相比,施肥处理的土壤DOC和POC含量分别降低了35.44%和28.33%,MBC含量增加了33.38%.此外,施肥有增加可溶性有机物中人为...  相似文献   

20.
植被恢复对侵蚀型红壤碳吸存及活性有机碳的影响   总被引:4,自引:0,他引:4       下载免费PDF全文
依托江西水土保持生态科技园,研究了侵蚀型红壤退化裸地恢复为百喜草地、柑橘果园和湿地松林后,0~100 cm深度范围内不同土层(0~10、>10~20、>20~40、>40~70和>70~100 cm)中w(TOC)(TOC为总有机碳)以及表层(0~40 cm)土壤中活性有机碳组分含量的变化. 结果表明:①退化裸地土壤中w(TOC)和有机碳库储量分别仅为4.73 g/kg和48.41 t/hm2,均处于较低水平,w(TOC)的垂直分布特征也不明显;恢复为百喜草地和柑橘园后,w(TOC)分别增至7.08和7.69 g/kg,有机碳库储量分别增至55.09和70.78 t/hm2,并且植被恢复对表层土壤中w(TOC)影响显著,而对深层(>40 cm)土壤影响有限. ②以退化裸地为对照,百喜草地和柑橘果园土壤碳吸存量分别为6.68和22.36 t/hm2,平均碳吸存速率分别为0.51和1.72 t/(hm2·a);以保存较好的湿地松林为参照,退化裸地、百喜草地和柑橘果园土壤碳吸存潜力分别为23.71、17.03和1.34 t/hm2,说明严重侵蚀地的碳吸存潜力巨大. ③侵蚀型红壤退化裸地的植被恢复可积极促进表层土壤中DOC(水溶性有机碳)、MBC(微生物生物量碳)和POC(颗粒有机碳)的积累,同时该影响存在表聚效应,即植被恢复后土壤表层中活性有机碳组分含量在w(TOC)中所占比例增大.   相似文献   

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