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1.
以关中平原持续4年的小麦、玉米(麦玉)秸秆还田中长期定位试验为基础,研究了麦玉秸秆9种不同还田方式对土壤总有机碳(TOC)、活性有机碳(LOC)含量和活性有机碳分配比例(LOC/TOC)、总有机碳储量(SCS)及碳库管理指数(CPMI)的影响.结果表明: 麦玉秸秆还田均可显著提高土壤(0~30 cm)TOC、LOC含量和SCS,且土壤有机碳主要集中于耕层(0~20 cm);麦玉秸秆双季还田的TOC、LOC含量和SCS显著高于单季还田和双季均不还田,其中,与双季均不还田相比,小麦秸秆粉碎还田 玉米秸秆深松还田的TOC、LOC含量和SCS提高幅度最显著.在0~10和10~20 cm土层中,小麦秸秆粉碎还田 玉米秸秆深松还田的CPMI显著高于其他处理,其中,小麦秸秆粉碎还田较其不还田可使CPMI提高19.1%和67.9%,玉米秸秆深松还田较其不还田可提高22.6%和32.4%.相关性分析显示,CPMI较LOC/TOC更能有效表征0~30 cm土层土壤有机碳的固持和转化关系.从提高本地区土壤有机碳固持量角度来看,小麦秸秆粉碎还田 玉米秸秆深松还田为最佳还田方式.  相似文献   

2.
秸秆还田配施中微量元素对农田土壤有机碳固持的影响   总被引:1,自引:0,他引:1  
为研究秸秆还田配施中量元素(S)和微量元素(Fe和Zn)对粮田土壤有机碳固持的影响,进行了为期52 d的室内玉米秸秆腐解培养试验. 结果表明:秸秆腐解过程中分别添加S、Fe和Zn元素,均提高了微生物生物量碳(MBC)及土壤CO2-C矿化速率,52 d腐解培养结束后,CO2-C的累积矿化量显著提高,但土壤有机碳含量并未显著降低;3种元素中,添加Fe或Zn的处理提高了土壤惰性碳库、惰性碳库比例及土壤有机碳表观平衡,有利于土壤有机碳固持,而添加S的处理却降低了惰性有机碳比例及土壤有机碳表观平衡,不利于有机碳固持. 因此,在施N、P肥基础上,秸秆还田添加S、Fe或Zn均能促进土壤有机碳的矿化进程,但添加Fe或Zn可使更多有机碳固持于土壤中,添加S不利于土壤有机碳的固持.  相似文献   

3.
农田土壤有机碳库是全球碳循环的重要组成部分.随着秸秆还田技术的广泛应用,作物秸秆成为土壤外源碳的主要来源.秸秆碳在土壤中的转化与分配直接影响土壤有机碳组成与含量,进而改变土壤养分循环.基于近年来的相关研究,本文探讨了还田秸秆碳转化与分配过程的影响因子,详细介绍了参与秸秆碳同化过程的土壤微生物组成,归纳与阐述了秸秆碳对土壤有机碳组成、含量及其周转的影响.同时,就非生物因子对秸秆碳的生物转化效应的影响、秸秆碳转化过程中的生物和非生物因子的互作、秸秆碳氮和土壤碳氮循环的耦合作用、秸秆碳向土壤活性有机碳库或稳定性有机碳库转化的有效调控技术等主要研究方向进行了展望,以期为准确揭示秸秆还田条件下各类土壤有机碳的变化特征,进而为实现秸秆还田的高效培肥与固碳效应提供理论依据和技术支撑.  相似文献   

4.
农业活动是温室气体重要的排放源,土壤碳库[土壤有机碳(SOC)和无机碳(SIC)]稍微变化会对大气CO_2产生很大影响。汉中盆地是南水北调的重要水源涵养地,在该区域秸秆还田、农田撂荒和林地是目前常见土地利用方式,但缺乏不同利用方式对SIC和SOC影响的研究。该研究采集该区域典型样地土壤,用滴定法和有机碳分析仪分别测定其SIC和SOC含量,研究3种土地利用方式对土壤碳库的影响。结果表明:SOC随土层深度最为敏感的是农田,其次是撂荒地,林地最不敏感。0~140 cm土层SOC碳密度,林地最大,是撂荒田的2.26倍,农田是撂荒田的1.37倍。深土层SOC碳密度,林地是撂荒田的2.44倍,农田是撂荒田的1.07倍。撂荒田的SIC密度最大,其次是农田,林地的SIC碳密度最低。在0~140 cm土层中,SIC密度依次为12.37、11.68和9.77 kg·m~2,撂荒田的SIC碳密度是林地的1.27倍。随着我国农村发展,土地利用管理出现新的方式,今后在估算土地利用管理方式对土壤碳影响时还需要综合考虑SOC和SIC。  相似文献   

5.
不同耕作方式和秸秆还田对麦田土壤有机碳含量的影响   总被引:60,自引:0,他引:60  
通过两个生长季试验,研究了不同耕作方式和秸秆还田及其交互效应对小麦全生育期0~20 cm土壤有机碳含量的影响.结果表明:小麦不同生育时期0~20 cm土层有机碳含量呈明显的动态变化;秸秆还田各处理的有机碳含量都高于无秸秆还田处理;保护性耕作措施土壤有机碳增加量显著高于传统翻耕.除传统翻耕处理外,各处理0~10 cm土层的有机碳含量都高于10~20 cm土层,秸秆还田各处理0~10 cm土层有机碳含量表现为深松(PS)>旋耕(PR)>免耕(PZ)>耙耕(PH)>传统翻耕(PC),而10~20 cm土层表现为传统翻耕(PC)>深松(PS)>旋耕(PR)>耙耕(PH)>免耕(PZ),说明保护性耕作措施能提高0~10 cm土层的有机碳含量.多因素方差分析表明:耕作因素、秸秆因素和两者交互效应在不同生育期对0~20 cm土层的有机碳含量都有显著影响.  相似文献   

6.
我国东北土壤有机碳、无机碳含量与土壤理化性质的相关性   总被引:18,自引:0,他引:18  
祖元刚  李冉  王文杰  苏冬雪  王莹  邱岭 《生态学报》2011,31(18):5207-5216
根据黑龙江、吉林、辽宁省和内蒙古地区相关历史资料数据,分析了我国东北表层土壤(0-50 cm)土壤相关理化性质与有机碳、无机碳的相关性,得到如下结论:土壤全氮、碱解氮、全磷、速效磷、速效钾、K+离子交换量、Fe2O3、P2O5、总孔隙度均与土壤有机碳含量呈显著正相关(R2=0.10-0.94, n=38-345, P<0.0001),但与土壤无机碳含量则大多呈显著负相关(R2=0.11-0.30, n=37-122, P<0.01);与此相反,土壤pH值、容重与土壤有机碳呈负相关(R2=0.36-0.42,n=41-304, P<0.0001),而与无机碳呈显著正相关(R2=0.29-0.31,n=39-125, P <0.01)。表层土壤有机碳、无机碳与土壤理化性质呈相反变化趋势的结果说明,由于土壤利用方式变化所导致的土壤理化性质改变对土壤无机碳和有机碳可能具有相反影响。在研究土壤碳平衡过程中,应该充分考虑这种关系所导致的相互补偿作用,即有机碳的增加,可能意味着无机碳的减少,或者反之。目前研究中普遍忽略无机碳的变化,可能导致生态系统碳收支计算显著偏差,所获得的经验拟合方程有利于对我国东北地区土壤碳平衡研究产生的这种偏差进行粗略估计。  相似文献   

7.
接种蚯蚓对秸秆还田土壤碳、氮动态和作物产量的影响   总被引:31,自引:1,他引:31  
通过为期 2年的小区 (2 .8m× 1.0m)试验 ,研究了旱作水稻 小麦轮作条件下接种蚯蚓对施用玉米秸秆 (第一季用量 15 0 0g·m-2 ,以后各季为 75 0g·m-2 )农田土壤碳、氮动态和作物产量的影响 .结果表明 ,接种 10条·m-2 或 2 0条·m-2 环毛蚓 (Pheretimasp .)对土壤有机碳和全氮含量无显著影响 ,蚯蚓活动未造成土壤C库的衰减 ,土壤碳、氮基本维持平衡 .接种蚯蚓处理土壤N的矿化作用增强 ,矿质N含量提高 ,NO3 - N含量增加 ,而且稻季比麦季增加更为明显 .接种蚯蚓在稻、麦季均能提高微生物量碳、氮含量 ,蚯蚓具有扩大土壤微生物量N库和促进有机N矿化的双重作用 .这种作用在有效C源供应丰富的作物生长发育旺盛期更为明显 .接种蚯蚓对旱作水稻和小麦有一定的增产作用 ,其中水稻的增产幅度达 9.3% ,小麦为 5 .1% .接种蚯蚓后土壤容重明显降低 ,孔隙度显著增加 .蚯蚓在保持土壤C库平衡的同时 ,对于促进秸秆有机肥N素养分的再循环和作物生产力的提高具有重要的生态学意义 .  相似文献   

8.
干旱区绿洲农田不同种植模式和秸秆管理下土壤质量评价   总被引:4,自引:0,他引:4  
研究干旱区绿洲农田不同种植模式和秸秆管理下土壤有机碳及其酶活性的变化,揭示农业管理措施对土壤质量的影响,以期为干旱区农业资源高效利用及可持续发展提供理论依据.在作物种植规划区,选择新疆主要农作物棉花、小麦、玉米,设计长期连作及轮作试验.结果表明:轮作处理土壤有机碳(SOC)、微生物生物量碳、易氧化有机碳、水溶性有机碳、热水溶性有机碳含量较连作处理分别提高了3.6%~9.9%、41.8%~98.9%、3.3%~17.0%、11.1%~32.4%、4.6%~27.5%;秸秆还田处理较秸秆不还田处理分别提高了12%~35.9%、22.4%~49.7%、30.7%~51.0%、10.6%~31.9%、41.0%~96.4%.轮作处理土壤过氧化氢酶、脱氢酶、β-葡萄糖核苷酶、蔗糖酶、纤维素酶活性较连作处理分别提高了6.4%~10.9%、6.6%~18.8%、5.9%~15.3%、10.0%~27.4%、28.1%~37.5%;秸秆还田处理较-秸秆不还田处理分别提高了31.4%~47.5%、19.9%~46.6%、13.8%~20.7%、19.8%~55.6%、54.1%~70.9%.相关性分析表明,SOC及其活性组分与土壤酶活性之间有极显著的正相关关系,利用土壤活性有机碳组分和酶活性变化可有效表征农田SOC和土壤质量变化.通过因子分析综合评价得知,在干旱区农业生产中,短期连作棉花兼实施秸秆还田可提高SOC及其活性组分含量和酶活性,合理轮作可有效缓解连作障碍,使土壤质量得到进一步改善,有利于农田土壤的可持续利用.  相似文献   

9.
稻田秸秆还田:土壤固碳与甲烷增排   总被引:38,自引:0,他引:38  
基于我国农田土壤有机质长期定位试验和稻田甲烷排放试验成果,将全国稻田划分为单季区和双季区.根据土壤有机质试验数据,分析了秸秆还田在我国两个稻田区的单季稻田、水旱轮作稻田和双季稻田的固碳潜力.同时根据我国稻田甲烷排放试验数据,采用取平均排放系数的方法,估算了我国稻田在无秸秆还田情况下的甲烷排放总量;结合IPCC推荐的方法和参数,估算了我国稻田秸秆还田后甲烷排放总量及增排甲烷的全球增温潜势.结果表明:在中国稻田推广秸秆还田的固碳潜力为10.48TgC.a-1,对减缓全球变暖的贡献为38.43TgCO2-eqv.a-1;但秸秆还田后稻田甲烷排放将从无秸秆还田的5.796Tg.a-1增加到9.114Tg.a-1;秸秆还田引起甲烷增排3.318Tg.a-1,其全球增温潜势达82.95TgCO2-eqv.a-1,为土壤固碳减排潜力的2.158倍.可见,推广秸秆还田后,中国稻田增排甲烷的温室效应会大幅抵消土壤固碳的减排效益,是一项重要的温室气体泄漏.  相似文献   

10.
通过监测绿洲滴灌棉田不同秸秆管理和施肥方式下土壤有机碳库及碳库组分的变化,可揭示农田管理措施对棉田土壤有机碳库的调节机制,为干旱区提高农田土壤生产力以及农业固碳减排措施的制定提供科学依据.试验采用裂区设计,以秸秆还田(S)和秸秆不还田(NS)2种秸秆管理方式为主区,4种施肥处理为副区:包括不施肥(CK)、单施氮磷钾化肥(NPK)、单施有机肥(OM)和氮磷钾化肥与有机肥混施(NPK+OM).结果表明: 施肥和秸秆还田均显著增加了土壤有机碳库,提高了有机碳(CT)、易氧化有机碳(CL)、微生物生物量碳(CMB)、水溶性有机碳(CWS)、热水溶性有机碳(CHWS)的含量和有机碳累计矿化量(CTM)及碳库管理指数(CMI).秸秆还田较秸秆不还田土壤有机碳库提高了20.6%;处理NPK、OM、NPK+OM分别较CK提高了7.8%、29.5%、37.7%.不同施肥处理下CT、CL、CMB、CWS、CHWS均表现为NPK+OM>OM>NPK>CK.秸秆还田较秸秆不还田CTM提高了5.9%;NPK、OM、NPK+OM处理较CK分别提高了32.7%、59.5%、97.3%.对CMI与SOC及其组分间的相关性分析表明,CMI与CT、CMB、CL、CWS、CHWS、CTM、C库、固碳潜力均呈极显著相关关系,因此, CMI是评价绿洲棉田管理措施对土壤质量影响的重要指标.在干旱区建设高标准绿洲农田,发展棉花生产,采用秸秆还田和有机无机肥配施等农业技术措施,不仅能增加土壤有机碳及活性组分的含量,培肥地力,而且能促进土壤固碳,有利于农业资源高效利用和可持续发展.  相似文献   

11.
Soil as the largest global carbon pool has played a great role in sequestering the atmospheric carbon dioxide (CO2). Although global carbon sequestration potentials have been assessed since the 1980s, few investigations have been made on soil carbon sequestration (SCS) in China's cropland. China is a developing country and has a long history of agricultural activities. Estimation of SCS potentials in China's cropland is very important for assessing the potential measures to prevent the atmospheric carbon rise and predicting the atmospheric CO2 concentration in future. After review of the available results of the field experiments in China, relationships between SCS and nitrogen fertilizer application, straw return and no‐tillage (NT) practices were established for each of the four agricultural regions. According to the current agricultural practices and their future development, estimations were made on SCS by nitrogen fertilizer application, straw return and NT in China's cropland. In the current situation, nitrogen fertilizer application, straw return and zero tillage can sequester 5.96, 9.76 and 0.800 Tg C each year. Carbon sequestration potential will increase to 12.1 Tg C yr−1 if nitrogen is fertilized on experts' recommendations. The carbon sequestration potentials of straw return and NT can reach 34.4 and 4.60 Tg C yr−1 when these two techniques are further popularized. In these measures, straw return is the most promising one. Full popularization of straw return can reduce 5.3% of the CO2 emission from fossil fuel combustion in China in 1990, which meets the global mean CO2 reduction requested by the Kyoto Protocol (5.2%). In general, if more incentive policies can be elaborated and implemented, the SCS in China's cropland will be increased by about two times. So, popularization of the above‐mentioned agricultural measures for carbon sequestration can be considered as an effective tool to prevent the rapid rise of the atmospheric CO2 in China.  相似文献   

12.
Straw return has been widely recommended as an environmentally friendly practice to manage carbon (C) sequestration in agricultural ecosystems. However, the overall trend and magnitude of changes in soil C in response to straw return remain uncertain. In this meta‐analysis, we calculated the response ratios of soil organic C (SOC) concentrations, greenhouse gases (GHGs) emission, nutrient contents and other important soil properties to straw addition in 176 published field studies. Our results indicated that straw return significantly increased SOC concentration by 12.8 ± 0.4% on average, with a 27.4 ± 1.4% to 56.6 ± 1.8% increase in soil active C fraction. CO2 emission increased in both upland (27.8 ± 2.0%) and paddy systems (51.0 ± 2.0%), while CH4 emission increased by 110.7 ± 1.2% only in rice paddies. N2O emission has declined by 15.2 ± 1.1% in paddy soils but increased by 8.3 ± 2.5% in upland soils. Responses of macro‐aggregates and crop yield to straw return showed positively linear with increasing SOC concentration. Straw‐C input rate and clay content significantly affected the response of SOC. A significant positive relationship was found between annual SOC sequestered and duration, suggesting that soil C saturation would occur after 12 years under straw return. Overall, straw return was an effective means to improve SOC accumulation, soil quality, and crop yield. Straw return‐induced improvement of soil nutrient availability may favor crop growth, which can in turn increase ecosystem C input. Meanwhile, the analysis on net global warming potential (GWP) balance suggested that straw return increased C sink in upland soils but increased C source in paddy soils due to enhanced CH4 emission. Our meta‐analysis suggested that future agro‐ecosystem models and cropland management should differentiate the effects of straw return on ecosystem C budget in upland and paddy soils.  相似文献   

13.
为探明渭北旱塬免耕秸秆覆盖对春玉米田土壤活性有机碳(LOC)、碳库管理指数(CMI)和作物产量的影响,进而明确该区免耕覆盖的适宜年限,于2001-2010年在陕西合阳县旱农试验站,设置了不同年限处理:1年(S1)、3年(S3)、5年(S5)、8年(S8)和10年(S10)的免耕秸秆覆盖定位试验,以常规耕作(CK)和10年免耕不覆盖(CK)为对照.结果表明:与CK相比,S1、S3、S5、S8和S10处理0~10 cm土层土壤有机碳(TOC)质量分数分别提高7.6%、13.5%、25.4%、48.6%和79.0%:LOC分别提高40.1%、51.5%、102.4%、78.4%和75.3%;CMI分别提高49.4%、61.2%、126.8%、85.4%和75.3%.春玉米产量、全氮、全磷和有效磷分别与LOC和CMI呈极显著相关(P<0.01),而与TOC无显著相关性.本研究表明,LOC和CMI较TOC更能快速准确地反映不同年限免耕覆盖对土壤碳库和玉米产量的影响,可以作为渭北旱塬免耕秸秆覆盖生态效应的评价指标,且该区覆盖年限以5~8年为宜.  相似文献   

14.
Soil organic carbon (SOC) is essential for soil fertility and climate change mitigation, and carbon can be sequestered in soil through proper soil management, including straw return. However, results of studies of long‐term straw return on SOC are contradictory and increasing SOC stocks in upland soils is challenging. This study of North China upland agricultural fields quantified the effects of several fertilizer and straw return treatments on SOC storage changes and crop yields, considering different cropping duration periods, soil types, and cropping systems to establish the relationships of SOC sequestration rates with initial SOC stocks and annual straw C inputs. Our meta‐analysis using long‐term field experiments showed that SOC stock responses to straw return were greater than that of mineral fertilizers alone. Black soils with higher initial SOC stocks also had lower SOC stock increases than did soils with lower initial SOC stocks (fluvo‐aquic and loessial soils) following applications of nitrogen‐phosphorous‐potassium (NPK) fertilizer and NPK+S (straw). Soil C stocks under the NPK and NPK+S treatments increased in the more‐than‐20‐year duration period, while significant SOC stock increases in the NP and NP+S treatment groups were limited to the 11‐ to 20‐year period. Annual crop productivity was higher in double‐cropped wheat and maize under all fertilization treatments, including control (no fertilization), than in the single‐crop systems (wheat or maize). Also, the annual soil sequestration rates and annual straw C inputs of the treatments with straw return (NP+S and NPK+S) were significantly positively related. Moreover, initial SOC stocks and SOC sequestration rates of those treatments were highly negatively correlated. Thus, long‐term straw return integrated with mineral fertilization in upland wheat and maize croplands leads to increased crop yields and SOC stocks. However, those effects of straw return are highly dependent on fertilizer management, cropping system, soil type, duration period, and the initial SOC content.  相似文献   

15.
Soil organic carbon (SOC) dynamics are regulated by the complex interplay of climatic, edaphic and biotic conditions. However, the interrelation of SOC and these drivers and their potential connection networks are rarely assessed quantitatively. Using observations of SOC dynamics with detailed soil properties from 90 field trials at 28 sites under different agroecosystems across the Australian cropping regions, we investigated the direct and indirect effects of climate, soil properties, carbon (C) inputs and soil C pools (a total of 17 variables) on SOC change rate (rC, Mg C ha?1 yr?1). Among these variables, we found that the most influential variables on rC were the average C input amount and annual precipitation, and the total SOC stock at the beginning of the trials. Overall, C inputs (including C input amount and pasture frequency in the crop rotation system) accounted for 27% of the relative influence on rC, followed by climate 25% (including precipitation and temperature), soil C pools 24% (including pool size and composition) and soil properties (such as cation exchange capacity, clay content, bulk density) 24%. Path analysis identified a network of intercorrelations of climate, soil properties, C inputs and soil C pools in determining rC. The direct correlation of rC with climate was significantly weakened if removing the effects of soil properties and C pools, and vice versa. These results reveal the relative importance of climate, soil properties, C inputs and C pools and their complex interconnections in regulating SOC dynamics. Ignorance of the impact of changes in soil properties, C pool composition and C input (quantity and quality) on SOC dynamics is likely one of the main sources of uncertainty in SOC predictions from the process‐based SOC models.  相似文献   

16.
Precise estimations of soil organic carbon (SOC) stocks are of decided importance for the detection of C sequestration or emission potential induced by land use changes. For Germany, a comprehensive, land use–specific SOC data set has not yet been compiled. We evaluated a unique data set of 1460 soil profiles in southeast Germany in order to calculate representative SOC stocks to a depth of 1 m for the main land use types. The results showed that grassland soils stored the highest amount of SOC, with a median value of 11.8 kg m?2, whereas considerably lower stocks of 9.8 and 9.0 kg m?2 were found for forest and cropland soils, respectively. However, the differences between extensively used land (grassland, forest) and cropland were much lower compared with results from other studies in central European countries. The depth distribution of SOC showed that despite low SOC concentrations in A horizons of cropland soils, their stocks were not considerably lower compared with other land uses. This was due to a deepening of the topsoil compared with grassland soils. Higher grassland SOC stocks were caused by an accumulation of SOC in the B horizon which was attributable to a high proportion of C‐rich Gleysols within grassland soils. This demonstrates the relevance of pedogenetic SOC inventories instead of solely land use–based approaches. Our study indicated that cultivation‐induced SOC depletion was probably often overestimated since most studies use fixed depth increments. Moreover, the application of modelled parameters in SOC inventories is questioned because a calculation of SOC stocks using different pedotransfer functions revealed considerably biased results. We recommend SOC stocks be determined by horizon for the entire soil profile in order to estimate the impact of land use changes precisely and to evaluate C sequestration potentials more accurately.  相似文献   

17.
基于我国南方38个稻田试验点222个样本的表土有机碳数据,设5种施肥措施类型[无机氮肥(N)、无机氮磷肥配施(NP)、无机氮磷钾肥配施(NPK)、单施有机肥(O)和有机无机肥配施(OF)],研究了不同施肥措施下我国南方稻田表土有机碳含量的相对年变化量和固碳持续时间.结果表明:5种施肥措施下,稻田表土有机碳含量相对年变化量集中在0~0.4 g·kg-1·a-1,两熟制和三熟制的表土有机碳含量相对年均增量分别为0.20和0.26 g·kg-1·a-1;有机肥处理(O和OF)比无机肥处理(N、NP和NPK)的表土有机碳含量相对年增量更高,其中,OF处理最高,为0.32 g·kg-1·a-1;随着时间的延长,土壤有机碳的累积速率逐渐降低,N、NP、NPK、O和OF处理下表土固碳持续时间分别为22、28、38、57和54年.从土壤固碳角度考虑,有机无机肥配施为我国南方稻田最佳施肥措施.  相似文献   

18.
常汉达  王晶  张凤华 《生态学杂志》2019,30(4):1218-1226
以新疆玛纳斯河流域长期连作棉田为研究对象,采用傅里叶红外光谱技术(FTIR)分析不同连作年限[0(对照)、5、10、15和20年]棉田土壤红外光谱特征,分析连作结合秸秆还田对土壤有机碳结构和稳定性的影响.结果表明: 随连作年限增加,土壤有机质中多糖和芳香族基团相对峰强度下降,脂肪族和醇酚相对峰强度上升,脂肪族-CH/芳香族C=C逐年升高.连作5年土壤颗粒有机碳含量最高,比对照土壤高5.11倍,之后随连作年限增加颗粒有机碳含量逐渐降低;连作10年土壤矿物结合态有机碳含量最高,比对照高1.84倍,连作5年土壤颗粒有机碳与矿物结合态有机碳含量之比(ω(POC)/ω(MOC))最高,之后随连作年限增加开始下降.综上,棉田长期连作结合秸秆还田后土壤有机质结构趋于脂肪化,土壤矿物结合对有机质保护性升高,有机质稳定性升高.  相似文献   

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