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1.
长期施肥对土黑碳积累的影响   总被引:1,自引:0,他引:1  
通过长期定位试验,探讨了20年不施肥(CK)、 单施化肥(NPK)、 秸秆和化肥配施(SNPK)、 常量有机肥和化肥配施(M1NPK)以及高量有机肥和化肥配施(M2NPK)5个施肥处理对土中黑碳含量及积累的影响。结果表明: 与CK处理相比,NKP处理对黑碳含量和积累没有明显影响; 有机肥和化肥配施(M1NPK、 M2NPK)对耕层(020 cm)土壤黑碳含量的影响较大,与CK处理相比,在土壤表层(05 cm),M1NPK、 M2NPK分别提高了黑碳含量的108%和134%, 510 cm土层中黑碳含量增幅最高,分别提高164%和176%,在整个土层,M1NPK、 M2NPK处理分别增加了1.51和1.55倍; 秸秆和化肥配施(SNPK)下表层黑碳含量也有所增加,但增加幅度相对施用有机肥来说明明显较小。施肥对黑碳含量的影响主要发生在土壤表层,深层土壤黑碳受施肥影响较小。  相似文献   

2.
The efficiency of the fumigation extraction method on the determination of soil microbial biomass carbon and ninhydrin-N was tested in three different soils (UK grassland, UK arable, Chinese arable) amended with black carbon (biochar or activated charcoal). Addition of activated charcoal to soil resulted in a significant decrease in K2SO4 extractable carbon and ninhydrin-N in all three soils, whereas the addition of biochar generally did not. A lower concentration of the extraction reagent (0.05 M vs. 0.5 M K2SO4) resulted in a significantly lower extraction efficiency in the grassland soil. The extraction efficiency of organic carbon was more affected by black carbon than that of ninhydrin-N, which resulted in a decreased biomass C/ninhydrin-N ratio. The impact of black carbon on the extraction efficiency of soil microbial biomass depended on the type of black carbon, on the concentration of the extraction medium and on soil type.  相似文献   

3.
In this study we investigated the quantitative and qualitative aspects of soil organic matter (SOM) losses caused by water erosion within a small catchment in Northern Laos, under steep slopes and slash and burn agriculture. The soils in the region have a high contribution of black carbon to soil organic matter and high erosion rates. The aim of the study was to quantify the erosion of black carbon and to identify the processes involved. The conceptual approach included the measurement of contents of SOM, black carbon and mineral bound SOM in bulk soils, sediments eroded from 1 m2 plots and in sediments at the outlet of the 0.6 ha catchment. Additionally, the enrichment factors of bulk SOM, BC and mineral bound SOM were calculated for eroded sediments.  相似文献   

4.
Organic carbon levels of 542 soil samples from temperate lowland forest were determined by the original and modified Walkley–Black (WB) dichromate methods and total organic carbon (TOC) analysis. The performance and the lower and upper quantification limits of the WB method were assessed. Variable recovery rates were related to laboratory and field conditions and to the sample composition. The percentage carbon recovered by the original WB method was found to be systematically lower than commonly accepted, and the correction factor was estimated at 1.58 instead of 1.30–1.35. However, a good linear relationship with TOC enabled acceptable prediction of soil organic carbon which was most precise when using the original WB method. Texture class and pedogenetic horizon showed significant differences in recovery. Depending on the modifications of the WB method, recoveries varied significantly between laboratories, explaining up to 29% of the total variation of the topsoil carbon assessment of a site. Low recovery from samples was partly attributed to charcoal and resistant elementary carbon particles. No interference was found to be caused by iron or manganese compounds. In order to use WB carbon data of forest soils, laboratory‐ and method‐specific determination of the recovery rate using a total analyser is strongly recommended. The original WB method was unable to predict reliably forest soil carbon contents higher than 8% TOC.  相似文献   

5.
The carbon dynamics in soils is of great importance due to its links to the global carbon cycle. The prediction of the behavior of native soil organic carbon (SOC) and organic amendments via incubation studies and mathematical modeling may bridge the knowledge gap in understanding complex soil ecosystems. Three alkaline Typic Ustochrepts and one Typic Halustalf with sandy, loamy sand, and clay loam texture, varying in percent SOC of 0.2; S1, 0.42; S2, 0.67; S3 and 0.82; S4 soils, were amended with wheat straw (WS), WS + P, sesbania green manure (GM), and poultry manure (PM) on 0.5% C rate at field capacity (FC) and ponding (P) moisture levels and incubated at 35 °C for 1, 15, 30 and 45 d. Carbon mineralization was determined via the alkali titration method after 1, 5, 7 14, 21, and 28 d. The SOC and inorganic carbon contents were determined from dried up (50 °C) soil samples after 1, 15, 30, and 45 d of incubation. Carbon from residue mineralization was determined by subtracting the amount of CO2-C evolved from control soils. The kinetic models; monocomponent first order, two-component first order, and modified Gompertz equations were fitted to the carbon mineralization data from native and added carbon. The SOC decomposition was dependent upon soil properties, and moisture, however, added C was relatively independent. The carbon from PM was immobilized in S4. All the models fitted to the data predicted carbon mineralization in a similar range with few exceptions. The residues lead to the OC build-up in fine-textured soils having relatively high OC and cation exchange capacities. Whereas, fast degradation of applied OC in coarse-textured soils leads to faster mineralization and lower build-up from residues. The decline in CaCO3 after incubation was higher at FC than in the P moisture regime.  相似文献   

6.
Rice paddy soils are characterized by anoxic conditions, anaerobic carbon turnover, and significant emissions of the greenhouse gas methane. A main source for soil organic matter in paddy fields is the rice crop residue that is returned to fields if not burned. We investigated as an alternative treatment the amendment of rice paddies with rice residues that have been charred to black carbon. This treatment might avoid various negative side effects of traditional rice residue treatments. Although charred biomass is seen as almost recalcitrant, its impact on trace gas (CO2, CH4) production and emissions in paddy fields has not been studied. We quantified the degradation of black carbon produced from rice husks in four wetland soils in laboratory incubations. In two of the studied soils the addition of carbonised rice husks resulted in a transient increase in carbon mineralisation rates in comparison to control soils without organic matter addition. After almost three years, between 4.4% and 8.5% of the black carbon added was mineralised to CO2 under aerobic and anaerobic conditions, respectively. The addition of untreated rice husks resulted in a strong increase in carbon mineralisation rates and in the same time period 77%-100% of the added rice husks were mineralised aerobically and 31%-54% anaerobically. The 13C-signatures of respired CO2 gave a direct indication of black carbon mineralisation to CO2. In field trials we quantified the impact of rice husk black carbon or untreated rice husks on soil respiration and methane emissions. The application of black carbon had no significant effect on soil respiration but significantly enhanced methane emissions in the first rice crop season. The additional methane released accounted for only 0.14% of black carbon added. If the same amount of organic carbon was added as untreated rice husks, 34% of the applied carbon was released as CO2 and methane in the first season. Furthermore, the addition of fresh harvest residues to paddy fields resulted in a disproportionally high increase in methane emissions. Estimating the carbon budget of the different rice crop residue treatments indicated that charring of rice residues and adding the obtained black carbon to paddy fields instead of incorporating untreated harvest residues may reduce field methane emissions by as much as 80%. Hence, the production of black carbon from rice harvest residues could be a powerful strategy for mitigating greenhouse gas emissions from rice fields.  相似文献   

7.
长期不同施肥下黑土与灰漠土有机碳储量的变化   总被引:6,自引:1,他引:5  
采用长期试验,研究了20年不同施肥下1 m深黑土与灰漠土有机碳含量与碳储量的剖面变化。结果表明,单施化肥和不施肥对黑土1 m土层有机碳储量没有显著影响,但灰漠土略有降低。有机肥配施化肥能显著提高土壤有机碳含量和储量。高量有机肥配施化肥(NPKM2)能提高020 cm和2040 cm土层土壤有机碳含量,黑土分别提高56.6%和49.6%、灰漠土提高143.1%和46.9%;常量有机无机配施(NPKM)效果较差,增幅分别为黑土35.1%和35.3%,灰漠土80.2%和4.1%。两种土壤1 m土体的有机碳储量,NPKM2处理分别提高了C 30.7 t/hm2与C 40.6 t/hm2。显然,有机无机肥配施可以显著提高1 m深土体中有机碳储量,主要是由于提高了040 cm土层土壤有机碳含量。  相似文献   

8.
Black soils (Mollisols) are one of the most important soil resources for maintaining food security in China, and they are mainly distributed in northeast China. A previous comprehensive study revealed the biogeographical distribution patterns of bacterial communities in the black soil zone. In this study, we used the same soil samples and analyzed the 454 pyrosequencing data for the nuclear ribosomal internal transcribed spacer (ITS) region to examine the fungal communities in these black soils. A total of 220,812 fungal ITS sequences were obtained from 26 soil samples that were collected across the black soil zone. These sequences were classified into at least 5 phyla, 20 classes, greater than 70 orders and over 350 genera, suggesting a high fungal diversity across the black soils. The diversity of fungal communities and distribution of several abundant fungal taxa were significantly related to the soil carbon content. Non-metric multidimensional scaling and canonical correspondence analysis plots indicated that the fungal community composition was most strongly affected by the soil carbon content followed by soil pH. This finding differs from the bacterial community results, which indicated that soil pH was the most important edaphic factor in determining the bacterial community composition of these black soils. A variance partitioning analysis indicated that the geographic distance contributed 20% of the fungal community variation and soil environmental factors that were characterized explained approximately 35%. A pairwise analysis revealed that the diversity of the fungal community was relatively higher at lower latitudes, which is similar to the findings for the bacterial communities in the same region and suggests that a latitudinal gradient of microbial community diversity might occur in the black soil zone. By incorporating our previous findings on the bacterial communities, we can conclude that contemporary factors of soil characteristics are more important than historical factor of geographic distance in shaping the microbial community in the black soil zone of northeast China.  相似文献   

9.
研究施肥对砂姜黑土可溶性碳淋溶的影响,对有机肥的可持续利用有重要意义.该研究依托33 a的长期试验,分析常规施肥(MF)、化肥+低量小麦秸秆(MFL)、化肥+高量小麦秸秆(MFH)、化肥+猪粪(MFP)和化肥+牛粪(MFC)等施肥方式对土壤剖面(0~60 cm)理化性质、微生物性状、可溶性有机碳(Dissolved O...  相似文献   

10.
长期秸秆还田免耕覆盖措施导致沿淮区域砂姜黑土耕层变浅、下表层(10~30 cm)容重增加、土壤养分不均衡等问题凸显,限制了小麦-玉米周年生产力的提高。耕作和秸秆还田措施合理的搭配组合是解决这一问题的有效方法。通过8年的小麦-玉米一年两熟田间试验,设置4个处理:1)玉米季免耕-小麦季免耕秸秆不还田(N);2)玉米季深耕-小麦季深耕秸秆不还田(D);3)玉米季秸秆免耕覆盖还田+小麦秸秆免耕覆盖还田(NS);4)玉米季秸秆免耕覆盖还田+小麦季秸秆深耕还田(DS)。通过分析作物收获后不同土壤深度(0~60 cm)总有机碳(TOC)、颗粒态碳(POC)、微生物生物量碳(MBC)、易氧化态碳(KMnO4-C)、可溶性有机碳(DOC)和土壤碳库管理指数(CPMI),并结合小麦-玉米的周年产量变化,以期获得培肥砂姜黑土的最佳模式。研究结果表明:1)相对于长期免耕措施(N),DS处理能够提高0~30 cm土层TOC、POC、MBC、KMnO4-C等组分含量和CPMI;而NS措施仅提高土壤表层(0~10 cm)TOC、活性有机碳组分含量和CPMI;2)DS处理显著提升了小麦-玉米的周年生产力,其麦玉的周年产量均值分别比N、D和NS处理高出14.7%、12.9%和8.5%;3)MBC和KMnO4-C对于耕作和秸秆还田措施都是较为敏感指示因子。总的来说,玉米季小麦秸秆覆盖还田+小麦季玉米秸秆深耕还田(DS)是改善沿淮地区砂姜黑土土壤碳库、提高小麦-玉米周年产量的一种有效农田管理模式。  相似文献   

11.
以吉林德惠市中层黑土进行7年田间定位试验的小区土壤为研究对象,对免耕(NT)和传统耕作下(CT)耕层(0~20 cm)氨基糖态碳含量的变化特征进行了分析。结果表明,与传统耕作相比,实施免耕7年后整个耕层土壤中氨基糖态碳含量显著增加(p<0.05),以表层(0~5 cm)增加幅度最大,高达94.7%。说明在研究地区,免耕措施有利于微生物代谢物如细胞壁物质等作为潜在的碳源逐渐积累在土壤中。免耕土壤中不同微生物来源氨基糖态碳的含量均较传统耕作有显著增加,但是变化特征有所不同,其中免耕条件下真菌来源的氨基葡萄糖的积累量较传统耕作高出1倍多,而且氨基葡萄糖与细菌来源的胞壁酸的比值(6.9~7.3)显著高于传统耕作(4.7~5.4),暗示实施免耕秸秆还田7年后土壤中真菌已逐渐转为优势群体,而真菌占优势的农田生态系统具有更大的固碳潜力。  相似文献   

12.
Black Mollisols are typically rich in charred organic matter, however, little is known about the zonal distribution of black C (BC) in steppe soils. In this study, we used benzene polycarboxylic acids (BPCA) as specific markers for BC in particle‐size fractions of depth profiles in several zonal soils (Greyzem, Phaeozem, Chernozem, Kastanozem) of the Russian steppe. In addition, liquid‐state 13C‐NMR spectra were obtained on the alkaline‐soluble soil organic matter (SOM). The results showed that both the content and depth distribution of BC varies in the different soil types; the concentration of BC in the bulk top soils being closely related to the aromaticity of the SOM (r2 = 0.98 for the native topsoils, 0.83 for top‐ and subsurface soils). Especially the Chernozems were rich in aromatic SOM, which partly contained more than 17% BC of total C, most of which being allocated in the mineral fractions. Long‐term arable cropping did not reduce the BC contents of the surface soil, though it did promote the enrichment of BC in the silt fractions. The same shift was detected as soil depth increased. We conclude that BC is not fully inert in these soils, but apparently can be preserved in the silt as decomposition of SOM increased, i.e., it accumulates exactly in that fraction, which has been formerly assigned to contain old, aromatic C.  相似文献   

13.
城郊土壤不透水表面有土壤机碳转化及其相关性质的研究   总被引:2,自引:0,他引:2  
Installation of impervious surface in urban area prevents the exchange of material and energy between soil and other environmental counterparts, thereby resulting in negative effects on soil function and urban environment. Soil samples were collected at 0-20 cm depth in Nanjing City, China, in which seven sites were selected for urban open soils, and fourteen sites with similar parent material were selected for the impervious-covered soils, to examine the effect of impervious surface on soil properties and microbial activities, and to determine the most important soil properties associated with soil organic carbon (SOC) transformation in the urban soils covered by impervious surfaces. Soil organic carbon and water-soluble organic carbon (WSOC) concentrations, potential carbon (C) and nitrogen (N) mineralization rates, basal respiration, and physicochemical properties with respect to C transformation were measured. Installation of impervious surface severely affected soil physicochemical properties and microbial activities, e.g., it significantly decreased total N contents, potential C mineralization and basal respiration rate (P 〈 0.01), while increased pH, clay and Olsen-P concentrations. Soil organic carbon in the sealed soils at 0-20 cm was 2.35 kg m-2, which was significantly lower than the value of 4.52 kg m-2 in the open soils (P 〈 0.05). Canonical correlation analysis showed WSOC played a major role in determining SOC transformation in the impervious-covered soil, and it was highly correlated with total N content and potential C mineralization rate. These findings demonstrate that installation of impervious surface in urban area, which will result in decreases of SOC and total N concentrations and soil microbial activities, has certain negative consequences for soil fertility and long-term storage of SOC.  相似文献   

14.
土壤易分解与耐分解碳、氮组分是表征土壤有机碳、氮转化特征的一项重要指标,但如何高效获得该组分的大量样品是当前的一个难题。本文改进传统少量筛分法,设计一次性大量筛分设备,对我国两种典型旱地土壤黑土与潮土的不施肥(CK)、化肥(NPK)、化肥配施秸秆(NPKS)和化肥配施有机肥(NPKM)4个处理土壤分别进行一次性大量(100、200和300 g)筛分,并比较与传统(50 g)筛分法的差异,了解该设备大量筛分样品的工作效率与可行性。结果表明:黑土或潮土大量(300 g)筛分时,与筛分量200和100 g的质量、全碳和全氮回收率无显著差异,均在97%以上;3个筛分量下同一处理的黑土或潮土的易分解碳、氮或耐分解碳、氮含量基本无显著差异。与传统筛分法相比,黑土或潮土筛分量为300 g的质量回收率比50 g的质量回收率提高1%~3%,全碳和全氮回收率提高1%~8%;易分解碳、氮或耐分解碳、氮含量基本无显著差异,以黑土CK处理为例,筛分量为300 g与50 g的土壤易分解组分氮含量分别为0.12和0.14 g/kg,两者无显著差异;与传统筛分法相比,筛分量由50 g提高到300 g,单位时间获得土壤易、耐分解碳、氮组分样品的效率提高了5倍。因此,改进设备后的筛分法可以一次性筛分300 g旱地土样,且土壤质量、全碳和全氮回收率提高1%~8%,是一种获取旱地土壤易、耐分解碳、氮组分较为简单高效的方法。  相似文献   

15.
Abstract

The effect of soil series, cultivation, soil depth, and parent material on the correction factor which should be applied to organic carbon values determined by the method of Walkley and Black, has been examined using 450 low‐activity‐clay soil samples from high rainfall tropical Queensland. There were minimal effects due to soil depth, and differences between virgin and cultivated soils were greatest in soils formed on beach sands. However, soils formed on granitic or metamorphic rocks require a factor of 1.24, whereas the originally recommended factor of 1.32 (Walkley and Black) has been confirmed for soils formed on basalt, alluvium, and beach sands.  相似文献   

16.
不同浸提剂处理森林土壤溶解性有机碳含量比较   总被引:1,自引:0,他引:1  
丁咸庆  柏菁  项文化  侯红波  彭佩钦 《土壤》2020,52(3):518-524
为了解亚热带森林土壤溶解性有机碳(DOC)的特征规律,采用培养离心的方法获取土壤溶液测得DOC含量,对比传统水溶性有机碳(WSOC)提取法间的差异。选取湖南大山冲森林公园保存完好的3种亚热带典型次生林地,按10cm一层采集剖面土壤,采用不同方法提取测定土壤DOC和WSOC含量,分析与土壤理化指标的相关性及方法间的显著性关系。结果表明:①典型森林土壤DOC或WSOC含量随土壤剖面深度的增加,呈显著下降趋势。培养离心提取测得的土壤DOC含量明显较低,仅0.82~9.52 mg/kg,超纯水浸提的风干土WSOC含量达10.56~249.19 mg/kg,而0.5 mol/L K_2SO_4提取的鲜土WSOC含量达155.70~576.94 mg/kg,0.5mol/L K_2SO_4浸提的干土WSOC含量最高,达158.94~797.56 mg/kg,含量表现为:DOC干土超纯水浸提WSOC鲜土K_2SO_4浸提WSOC干土K_2SO_4浸提WSOC;②3种次生林土壤DOC或WSOC含量存在显著差异,不同方法测定的含量均表现为针叶林常绿阔叶林落叶林;③培养离心法测得土壤DOC含量与其他测定方法间存在极显著正相关(P0.01),并且土壤DOC和WSOC均与土壤pH、总有机碳、胡敏酸、富啡酸、全氮、全磷、速效态氮以及微生物生物量碳氮达到极显著相关(P0.01),与土壤含水率和容重显著相关(P0.05)。培养离心法测得土壤DOC含量远低于水溶液提取WSOC含量,该方法下的测得值更接近于原位土壤溶解性有机碳实际值。  相似文献   

17.
黑碳添加对土壤有机碳矿化的影响   总被引:10,自引:0,他引:10  
通过室内培养试验,向土壤中分别添加不同温度制备的黑碳,热解温度分别为350℃(T350)、600℃(T600)和850℃(T850),研究了黑碳添加对土壤有机碳矿化的影响。结果表明,不同温度条件制备的黑碳在15℃和25℃培养条件下,土壤CO2释放速率总的趋势是前期分解速率快,后期缓慢。在整个培养过程中(112天),随着培养时间的延长,土壤CO2释放速率下降趋势逐渐降低,CO2释放速率相对值的大小随着培养温度的的升高而增大。在不同温度培养条件下,添加黑碳后土壤CO2-C累计量均是T350>T600>T850,T350土壤CO2-C累计量最高分别为415.26 mg/kg和733.82 mg/kg。添加不同黑碳后,土壤有机碳矿化增加率存在极显著差异(p<0.01),表明不同温度制备的黑碳对土壤有机碳矿化的影响显著。  相似文献   

18.
【目的】土壤易分解碳库(labile organic carbon,Lab-C)和耐分解碳库(recalcitrant organic carbon,Rec-C)是土壤有机质的重要组分,其组分大小与比例可反映土壤有机碳的周转与固存特性。因此,研究长期不同施肥制度下土壤易分解碳库与耐分解碳库的大小与比例,对土壤养分管理及肥力培育具有重要的意义。【方法】利用我国东部23年长期不同施肥制度下的黑土、潮土、红壤和32年水稻土共四类土壤的典型土样为代表,以不施肥(CK)、施化肥(NPK)、化肥配施秸秆(NPKS)和化肥配施有机肥(NPKM)4个处理土壤,采用颗粒密度相结合的方法,将土壤有机碳分为易分解碳和耐分解碳2个组分,分析了其不同组分碳含量及比例的变化特征。【结果】土壤经该方法分组后,四种土壤的平均质量回收率和碳回收率均超过95%,是一种测定土壤易分解碳和耐分解碳的可行方法。旱作土壤(黑土、潮土和红壤)易分解碳的平均含量为1.91 g/kg低于水田的2.42 g/kg,而易分解碳占总有机碳的平均比例为15.4%,高于水田的9.9%。NPKM处理下,黑土、潮土和红壤易分解碳含量显著高于NPKS、NPK及CK处理(P0.05),较NPK处理增加的比例分别为98.4%、43.7%和71.2%,同时提高了易分解碳占总有机碳的比例,但无显著差异性;NPK和NPKS处理下黑土与潮土易分解碳的含量较不施肥无显著变化,而红壤易分解碳含量较不施肥显著降低(P0.05),降低的比例分别为33.1%和29.6%;水稻土4个处理间易分解碳的含量及其占全碳的比例无显著差异性。四类土壤耐分解碳的含量与总有机碳含量的变化一致,均表现为NPKMNPKSNPKCK。NPKM处理下,四种土壤耐分解碳含量显著增加(P0.05),黑土、潮土、红壤和水稻土较NPK处理增加的比例分别为68.8%、42.7%、17.6%和17.2%,同时耐分解碳占全碳的比例降低;NPKS处理下黑土、潮土和水稻土耐分解碳的含量较NPK处理也增加,对应增加的比例分别为10.9%、15.1%和18.0%。同时,易分解碳和耐分解碳的含量与土壤总有机碳含量之间有极显著的正相关关系。【结论】旱作土壤易分解碳含量比水田土壤更易受不同施肥处理的影响,有机无机配施(NPKM与NPKS)可提高旱作与水田土壤易分解碳与耐分解碳的含量,同时相对提高了易分解碳占全碳的比例,且NPKM处理的效果优于NPKS处理,更优于化肥处理。  相似文献   

19.
  【目的】  研究长期施肥以及秸秆还田对黑土中微生物标识物氨基糖含量的影响,以期为调节黑土碳循环提供理论支撑。  【方法】  吉林省农业科学院黑土长期定位试验始于1990年,2018年选取其中不施肥对照(CK)、单施化肥(NPK)和有机肥配施化肥(MNPK) 三个处理进行秸秆微区田间试验。这三个处理的土壤中分别再设加入1 cm 长玉米秸秆6000 kg/hm2的处理(CKS、NPKS、MNPKS)和不加入玉米秸秆的处理(CK、NPK、MNPK),共6个处理。秸秆与土壤混匀后置于PVC框(长0.9 m、宽0.6 m、高0.6 m)内,PVC框上端高于地面20 cm。在PVC框埋入土壤60天(夏季)、150天(秋季)后,取土样测定理化性状及氨基葡萄糖(GluN)、氨基半乳糖(GalN)和胞壁酸(MurN)含量。微生物真菌残体碳和细菌残体碳含量依据各氨基糖含量计算。  【结果】  与CK相比,NPK和MNPK处理能够促进氨基糖在土壤中的积累,其中第60天氨基葡萄糖分别显著增加18.81%和105.36%;胞壁酸分别显著增加19.62%和129.30%。两种施肥措施均能提升土壤中微生物残体碳的含量,而且MNPK处理微生物残体碳积累量较CK处理高出近1倍。各处理中真菌残体碳含量要远高于细菌残体碳含量,两种施肥措施均会降低真菌残体碳占微生物残体碳的比重,说明施肥会增加细菌在这一过程中对黑土有机碳积累的贡献。NPKS处理氨基葡萄糖占总氨基糖含量百分比明显增加,MNPKS处理真菌来源的氨基葡萄糖所占百分比也在第60天、第150天这两个时期内逐渐上升,表明真菌细胞死亡残体积累量在增加。  【结论】  添加秸秆后的MNPK处理促进了黑土中微生物残体碳的积累,NPK处理与秸秆添加相结合可以提高真菌残体碳在微生物残体碳中所占比重。因此,施肥和秸秆添加会使黑土中微生物群落组成发生变化,从而影响微生物残体的积累特征。  相似文献   

20.
Andosols are characterized by an abundance of black humic acids (HAs) belonging to Type A with a high content of aromatic carbon (C) in particular condensed aromatic C. Black HAs are also observed in other soils, such as Chernozems and the subsoil of paddy field, and extracted after washing with an acid or using chelating agent such as sodium pyrophosphate (Na4P2O7). However, contribution of condensed aromatic structures to those soil HAs are unknown. To obtain the information about C skeletal structures of black HAs in soils other than Andosols, HAs were obtained from 2 Chinese Chernozem samples, 2 subsoil samples from Japanese paddy fields (Fulvisols), and a Rendzina-like soil (Cambisols) as well as an Andosol sample (reference) by successive extraction with 0.1 M NaOH (HAs1) and 0.1 M Na4P2O7 (HAs2), and 13C nuclear magnetic resonance and X-ray diffraction 11-band profile analyses were applied. In the black HAs2 from the non-Andosol samples, the proportion of C present as aromatic C, size of C layer planes, and relative C layer plane content ranged from 52 to 59%, 0.48 to 1.92 nm (mean size, 0.76–0.91 nm), and 58 to 100 AU (arbitrary unit) mg?1, respectively, with a positive correlation between total C layer plane content and the degree of humification. Those ranges were similar to the distribution ranges of Andosols HAs1 reported by our previous study.  相似文献   

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