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1.
不同施肥处理对土壤团聚体和硝态氮含量的影响   总被引:1,自引:0,他引:1  
在25年长期定位试验研究基础上,分析了无肥、N、NP、NPK、N+有机肥和N+秸秆6个不同施肥处理土壤的团聚体含量和NO3-N含量。结果表明:施用有机肥以及NPK化肥合理配施可以增加土壤团聚体含量,提高团聚体的稳定性。水稳性团聚体含量与有机质含量呈r2=0.9251的正相关关系。6个不同施肥处理在施N量相同的条件下,单施N肥土壤的NO3-N含量最高,分别是N+有机肥、NPK、NP处理的2.9倍、1.8倍和1.6倍。不平衡施肥是引起土壤NO3-N大量累积的重要原因,施用有机肥以及NPK合理配合施用可明显地减少土壤NO3-N的残留。  相似文献   

2.
【目的】为探求提高青稞产量并有效改良土壤结构的施肥措施,研究了西藏自治区拉萨市不同施肥处理对青稞产量与土壤结构的影响。【方法】试验设置5个处理:不施肥(Control)、单施羊粪(M)、羊粪和氮磷肥配合施用(M+NP)、单施氮肥(N)、氮肥和磷肥配合施用(NP),采用田间试验和室内分析方法测定青稞产量和影响土壤结构的因素。【结果】与不施肥对照相比,氮肥、磷肥配施(NP)与施用有机肥(M和M+NP)均能显著提高青稞产量;化肥与有机肥配施能够改善土壤容重、紧实度和土壤结构,化肥与有机肥配施土壤容重下降幅度最大为12.13%;土壤紧实度随青稞生育期的推进呈下降趋势,收获前后羊粪+氮肥+磷肥(M+NP)配施土壤紧实度下降幅度最大为31.26%;化肥与有机肥配施提高了土壤有机质的含量,促进了土壤大团聚体(2 mm)的形成,降低了土壤微团聚体(0.25 mm)在土壤中的比重,但施用化肥没有显著影响;施用有机肥能显著提高土壤团聚体的平均重量直径和几何平均直径,而仅施化肥无显著影响。【结论】施用有机肥可以提高西藏青稞产量和土壤有机质含量,改善土壤容重、紧实度和土壤结构,从而增强西藏自治区粮食生产的稳定性和可持续性。  相似文献   

3.
以长期定位施肥的蔬菜保护地土壤为材料,研究了不同施肥处理对土壤微团聚体组成和有机质含量的影响。结果表明:保护地土壤中微团聚体的优势粒级是10~50μm,次优势粒级是50~250μm。与对照比较,施用化肥各处理土壤<10μm微团聚体含量略有增加,10~250μm微团聚体含量显著增加;与施用化肥比较,长期施用有机肥或有机肥与无机肥配施处理,土壤<10μm微团聚体含量减少,10~250μm微团聚体含量增加,土壤结构系数提高,<10μm和>10μm的微团聚体的组成比例显著降低,以有机肥与氮磷钾化肥配施处理变化最明显。长期施用化肥各处理,土壤有机质含量、易氧化有机质和难氧化有机质含量明显减少;有机肥与化肥配合施用处理,土壤有机质含量、易氧化有机质和难氧化有机质含量明显增加,其中以有机肥与磷肥配施增加最显著。相关分析表明,有机质含量与<10μm微团聚体含量呈现显著负相关。  相似文献   

4.
不同施肥处理对红壤坡耕地土壤团聚体的影响   总被引:1,自引:0,他引:1  
通过2年小区试验,研究了不施肥、单施化肥、单施有机肥、有机肥与化肥配施4种施肥处理对土壤团聚体的影响。结果表明,与对照相比,单施化肥、单施有机肥和有机肥与化肥配施土壤体积质量分别降低了1.69%、3.39%、6.78%;土壤有机质含量分别增加2.14%、14.97%、19.25%;0.25 mm机械稳定性团聚体的含量分别显著提高了10%、11.17%、17.86%(P0.05)。不同施肥处理0.25 mm水稳定性团聚体的含量无显著差异;而有机肥与化肥配施处理含量最高;有机肥与化肥配施处理的土壤团聚体平均重量直径(MWD)、土壤团聚体几何平均直径(GMD)的值最大;单施化肥团聚体破坏率最高,有机肥与化肥配施处理团聚体破坏率最低。说明有机肥与化肥配施可以降低土壤体积质量,能有效提高土壤有机质、机械稳定性团聚体、水稳性团聚体的含量,改善土壤团聚体的团聚度和稳定性,对提升耕地质量有较好的作用。  相似文献   

5.
[目的]研究施肥对不同处理的土壤修复作用。[方法]利用盆栽试验对长期不合理施肥导致土壤养分失衡及生产力下降的土壤进行施肥修复。[结果]试验结果表明:有机、无机肥配合施用是快速修复土壤养分和提高生产力的最佳方法;NP、NPK是既均衡土壤肥力又提高作物产量的无机肥施用方式;对土壤有效磷、氮极度缺乏的土壤,单施磷肥、氮肥效果极显著,其肥效在小麦上与NPK相同。[结论]长期施化肥的土壤对化肥的依赖性更强,停止施肥,玉米产量下降78.6%,小麦产量下降52.8%;而长期施NK和PK肥的土壤,停止施肥反而产量增加,NK处理玉米产量提高112%,小麦产量增加182%,PK处理中玉米产量增加15.1%,小麦产量增加59%;单施有机肥的当季效果不如化肥,但后效明显好于化肥。  相似文献   

6.
施肥对潮土养分非匀衡化的土壤修复研究   总被引:2,自引:0,他引:2  
[目的]研究施肥对不同处理的土壤修复作用。[方法]利用盆栽试验对长期不合理施肥导致土壤养分失衡及生产力下降的土壤进行施肥修复。[结果]试验结果表明:有机、无机肥配合施用是快速修复土壤养分和提高生产力的最佳方法;NP、NPK是既均衡土壤肥力又提高作物产量的无机肥施用方式;对土壤有效磷、氮极度缺乏的土壤,单施磷肥、氮肥效果极显著,其肥效在小麦上与NPK相同。[结论]长期施化肥的土壤对化肥的依赖性更强,停止施肥,玉米产量下降78.6%,小麦产量下降52.8%;而长期施NK和PK肥的土壤,停止施肥反而产量增加,NK处理玉米产量提高112%,小麦产量增加182%,PK处理中玉米产量增加15.1%,小麦产量增加59%;单施有机肥的当季效果不如化肥,但后效明显好于化肥。  相似文献   

7.
依托中国科学院千烟洲生态试验站,利用1998年建立的红壤水稻田长期定位施肥试验,研究秸秆还田(ST)、化肥(NPK)、有机肥(OM)等施肥方式对红壤水稻土各粒级团聚体分布及其碳氮含量影响。结果表明:在所有施肥处理条件下红壤水稻土团聚体分布以<63μm的粉砂和粘粒为主,占41%-54%,长期施肥特别是施用OM有利于促进红壤水稻土大粒级团聚体形成;分别施用ST、NPK和OM均能提高红壤水稻土全土及各粒级团聚体中的有机碳和全氮含量,施用OM提高幅度最大。因此,在我国南方红壤稻作区的农业生产过程中应施用有机肥,从而改善土壤结构、碳贮量和养分状况。  相似文献   

8.
长期定位施肥对土壤养分和玉米产量的影响   总被引:10,自引:0,他引:10  
通过对辽宁凤城棕壤长期定位监测点其中8年试验结果的统计分析,明确了长期不同施肥处理对土壤养分和玉米产量的影响。结果显示:较不施肥对照相比,长期不同施肥均提高了土壤有机质和速效氮、磷、钾含量。总的来说,土壤培肥效果以有机肥配施化肥好于相应的单施化肥或有机肥,化肥组合以氮磷钾或氮磷配施效果更好,单施氮肥相对较差。不同施肥处理对玉米产量的影响与上述养分的变化规律相似,且相关分析表明玉米产量与土壤碱解氮和速效磷含量密切相关。综上说明,在施用有机肥的基础上,合理配施氮磷钾肥,是该地区提高土壤肥力和实现玉米增产的最佳方案。  相似文献   

9.
长期施肥对黑土水稳性团聚体稳定性及有机碳分布的影响   总被引:1,自引:0,他引:1  
【目的】基于黑土长期定位试验平台,研究不同施肥方式下土壤水稳性团聚体和有机碳分布特征,以期揭示化肥和有机肥长期施用对土壤肥力的影响,为实现黑土合理培肥提供理论指导。【方法】依托37年黑土长期定位试验,采集CK(不施肥)、NPK(化肥)、M_2(常量有机肥)、M_2NPK(常量有机肥配施化肥)、M_4(高量有机肥)、M_4NPK(高量有机肥配施化肥)处理0—20 cm土层的土壤样品,利用湿筛法分析水稳性团聚体稳定性及有机碳在不同粒级团聚体中的分配特征。【结果】长期有机无机配施以及施高量有机肥显著降低大团聚体比例,提高微团聚体比例。长期施用化肥及常量有机肥并未明显改变团聚体的分布。M_2NPK、M_4NPK、M_4处理的大团聚体比例较CK处理分别降低32.7%、45.8%和55.4%,而微团聚体的比例较CK处理分别提高73.2%、102.5%和123.9%。长期有机无机配施及高量有机肥的施用显著降低表层土壤水稳性团聚体的稳定性。长期施肥显著增加土壤有机碳含量,增加量为CK的1.12—2.06倍,施用有机肥及有机无机配施处理有机碳含量增加更为显著。长期施用有机肥可以增加各粒级水稳性团聚体中有机碳的含量,且随着粒径的变小,各处理有机碳含量的增加幅度逐渐减小。各处理水稳性大团聚体中有机碳含量显著高于微团聚体,这表明有机碳主要分布在大团聚体中。长期施高量有机肥及配施化肥显著降低了大团聚体对有机碳的贡献率,增大了微团聚体的贡献率,即微团聚体有机碳贡献率高于大团聚体,而其他处理大团聚体有机碳贡献率高于微团聚体。【结论】黑土长期施用化肥对团聚体的分布及团聚体有机碳含量没有显著影响。高量有机肥以及有机无机配施显著降低了大团聚体的比例,进而降低土壤团聚体的稳定性。长期施用有机肥显著增加土壤及各粒级团聚体中有机碳含量。高量有机肥及配施化肥显著降低了大团聚体有机碳贡献率,有机碳贡献率的优势粒级为微团聚体。  相似文献   

10.
长期定位施肥对土壤腐殖质理化性质的影响   总被引:26,自引:0,他引:26  
 以潮土、旱地红壤和红壤性水稻土为研究对象 ,探讨了长期施肥对土壤腐殖质含量与性质的影响。结果表明 ,长期施肥不仅影响土壤腐殖质的含量与组成 ,还影响腐殖质的理化性质。施有机肥或有机无机肥配施降低潮土和旱地红壤胡敏酸的E4和E6值 ,提高红壤性水稻土胡敏酸的E4和E6值。单施化肥也能提高红壤性水稻土胡敏酸的E4和E6值 ,但对潮土和旱地红壤胡敏酸E4和E6值影响不大。长期施肥对土壤耕层富里酸可见光谱的影响与胡敏酸不同 ,施有机肥或有机无机肥配施均能提高 3种土壤富里酸的E4和E6值 ,单施化肥对 3种土壤富里酸的E4和E6值基本上没有影响。长期施肥也影响腐殖质的紫外吸收光谱 ,长期施用有机肥或有机无机肥配施均能提高 3种土壤胡敏酸和富里酸的紫外吸收光谱值 ,但这种作用只在短波长方向明显 ,随着波长的增加影响减小。单施化肥也可以提高富里酸的紫外吸收值 ,但只能提高潮土胡敏酸的紫外吸收值。长期施用有机肥或有机无机肥配施均能提高 3种土壤胡敏酸和富里酸的总酸性基、羧基和酚羟基含量 ,单施化肥对胡敏酸和富里酸含氧功能团含量的影响不大  相似文献   

11.
通过对红壤旱地长期不同施肥处理的土壤研究,发现不同的施肥处理对红壤旱地性质影响极为明显:长期施用化肥,耕作13年后,土壤活性有机质下降39.6%,在NPKS处理中,活性有机质上升16.9%,M中上升11%。长期施用有机物的处理中,土壤的微生物的数量和土壤酶的活性显著高于长期施用化学肥料的处理,由以长期单度施用化学氮肥为最低。在红壤旱地上长期施用化学肥料,使土壤严重酸化,不利于玉米的生长,肥料的长期效果为:氮肥仅增产24.9%,化学肥料配合施用的NPK处理增产率267%,NPKS处理增产率319%,M处理增产率267%,NPKM处理增产率高达367%。施用有质物还可防止土壤酸化,提高土壤的养分的有效性和肥料的利用率。  相似文献   

12.
【目的】研究长期施肥对红壤性水稻土有机无机复合体中有机碳(OC)、全氮(TNOIC)特征的影响,为红壤性水稻土管理和培育土壤肥力提供依据。【方法】以长期定位施肥试验的红壤性水稻土为研究对象(始于1984年),选取CK(不施肥)、PK(施磷钾肥)、NPK(施氮磷钾肥)、NPKM(施70%氮磷钾肥+30%有机肥)4个处理。采集0—20 cm土层土样,分析各粒级(<2、2—10、10—20、20—50和50—250μm)有机无机复合体的分布,并探讨施肥对复合体中有机碳(OC)和全氮(TNOIC)含量、储量和碳氮比(C/N)的影响,以及有机无机复合体中OC和TNOIC对红壤性水稻土有机碳(SOC)、全氮(TN)贡献率的影响。【结果】与不施肥CK相比,施肥处理显著提高了20—50μm粒级复合体的比例,降低了<10μm粒级复合体比例,而NPKM处理与其他施肥处理相比,50—250μm粒级复合体的比例增加更显著;不同施肥对各粒级复合体中OC和TNOIC含量影响不同,与PK相比,NPK处理的50—250μm粒级复合体中OC和TNOIC分别增加了36.3%、80.6%;与NPK相比,NPKM...  相似文献   

13.
Soil organic carbon (SOC) and nitrogen (N) are two of the most important indicators for agricultural productivity. The primary objective of this study was to investigate the changes in SOC and N in the deep soil profile (up to 100 cm) and their relationships with crop productivity under the influence of long-term (since 1990) fertilization in the wheat-maize cropping system. Treatments included CK (control), NP (inorganic N and phosphorus (P) fertilizers), NPK (inorganic N, P and potassium fertilizers), NPKM (NPK plus manure), and M (manure). Crop yield and the properties of topsoil were measured yearly from 2001 to 2009. C and N contents were measured at five different depths in 2001 and 2009. The results showed that wheat and maize yields decreased between 2001 and 2009 under the inorganic fertilizer (NP and NPK) treatments. The average yield between 2001 and 2009 under the NP, NPK, NPKM, and M treatments (compared with the CK treatment) increased by 38, 115, 383, and 381%, respectively, for wheat and 348, 891, 2 738, and 1 845%, respectively, for maize. Different long-term fertilization treatments significantly changed coarse free particulate (cfPOC), fine free particulate (ffPOC), intramicroaggregate particulate (iPOC), and mineral-associated (mSOC) organic carbon fractions. In the experimental years of 2001 and 2009, soil fractions occurred in the following order for all treatments: mSOC>cfPOC>iPOC>ffPOC. All fractions were higher under the manure application treatments than under the inorganic fertilization treatments. Compared to the inorganic fertilization treatments, manure input enhanced the stocks of SOC and total N in the surface layer (0–20 cm) but decreased SOC and N in the deep soil layer (80–100 cm). This reveals the efficiency of manure in increasing yield productivity and decreasing risk of vertical loss of nutrients, especially N, compared to inorganic fertilization treatments. The findings provide opportunities for understanding deep soil C and N dynamics, which could help mitigate climate change impact on agricultural production and maintain soil health.  相似文献   

14.
沼液还田对旱地红壤有机质及团聚体特征的影响   总被引:9,自引:0,他引:9  
郑学博  樊剑波  周静 《中国农业科学》2015,48(16):3201-3210
【目的】通过沼液还田试验,探明沼液对旱地红壤有机质含量、团聚体结构和稳定性的影响,为沼液合理应用及培肥旱地红壤肥力,提升土壤结构提供理论依据。【方法】通过红壤旱地2013-2014年沼液还田定位试验,按照不同沼液全氮还田比例设6个等氮量(N-P2O5-K2O量均为120-90-135 kg·hm-2,对照除外)处理:对照(不施肥,CK)、100%化学氮(NPK)、85%化学氮+15%沼液N(BS15)、70%化学氮+30%沼液N(BS30)、55%化学氮+45%沼液N(BS45)和100%沼液N(BS100),分析各处理下土壤有机质含量(OM)、>0.25 mm机械稳定性(DR0.25)和水稳定性(WR0.25)团聚体含量、团聚体平均质量直径(MWD)、几何平均直径(GMD)、团聚体稳定率(AR,%)和分形维数(D)等团聚体稳定性指标。【结果】沼液化肥配施处理土壤有机质含量(OM)较CK、NPK、BS100处理分别增加16.21%-21.34%、2.94%-7.49%、7.69%-12.45%,而且随着沼液量增加呈先升高后降低趋势;沼液化肥配施处理显著提高土壤DR0.25和WR0.25团聚体含量,DR0.25较CK、NPK、BS100处理分别增加1.34%-6.66%、0.26%-5.52%、1.32%-5.25%,WR0.25较CK、NPK、BS100处理分别增加5.17%-10.37%、3.75%-8.88%、1.97%-4.94%,相关分析发现土壤有机质含量升高是土壤>0.25 mm机械稳定性(DR0.25)和水稳定性(WR0.25)团聚体含量增加的主要原因;沼液化肥配施处理机械稳定性团聚体平均质量直径(MWD)、几何平均直径(GMD)显著升高,而水稳定性MWD和GMD无显著差异,同时,团聚体稳定率(AR,%)显著高于CK和NPK处理,机械稳定性团聚体分形维数(D)较CK和NPK处理显著降低,而水稳定性团聚体分形维数(D)无显著差异。【结论】沼液化肥配施还田对提高旱地红壤有机质含量、>0.25 mm机械稳定性和水稳定性团聚体含量及团聚体机械稳定性具有显著作用,尤其是沼液全氮还田比例在30%-45%范围,适宜在红壤旱地地区推广。  相似文献   

15.
长期施肥对中性紫色水稻土氮素矿化和硝化作用的影响   总被引:10,自引:0,他引:10  
【目的】揭示长期施肥对中性紫色水稻土生态系统氮素内循环矿化及硝化特征的影响,探索维持紫色水稻土长期供氮潜力的途径。【方法】利用重庆市北碚区21年的中性紫色水稻土长期定位试验,通过淹水密闭培养-间歇淋洗法研究长期施肥对土壤氮素矿化特性的影响,并测定了不同施肥措施下土壤硝化细菌数量、氨氧化潜势及硝化强度的变化。【结果】与长期不施肥对照相比,单施化肥(除单施氮肥)、有机肥或有机无机配施显著提高了土壤累积矿化氮量和氮素矿化势(N0),氮磷钾肥配施有机肥处理累积矿化氮量最高达164.43 mg•kg-1,氮素矿化势相比CK处理增加了59.29%,而含氯氮磷钾肥配施有机肥增加累积矿化氮量和氮素矿化势幅度显著低于氮磷钾肥配施有机肥处理;不同施肥(除氮磷钾肥与单施有机肥)显著提高了氮素矿化速率常数(k)。施用氮肥处理显著提高了土壤硝化细菌数量,尤其是氮磷钾肥配施有机肥处理最高为CK处理的74.25倍;土壤氨氧化潜势和硝化强度表现出一致的趋势,均是氮磷钾肥配施有机肥处理最高而含氯氮磷钾肥配施有机肥显著低于不施肥对照处理。相关分析表明,土壤氨氧化潜势和硝化强度与土壤pH呈显著正相关关系(P<0.05)。【结论】氮磷钾肥配施有机肥是提高紫色水稻土供氮潜力及改善有机氮品质的有效手段,含氯化肥抑制了硝化过程,可充当硝化抑制剂使用。  相似文献   

16.
Understanding the impact of biological activities on the soil phosphorus (P) distribution under long-term fertilizer application can facilitate better soil P fertility management. Therefore, the primary objectives of this study were to investigate the effect of long-term (since 1981) fertilizer application on the soil P fractions and microbial community and to evaluate correlations between the microbial community structure and P distribution. The following treatments were implemented in a long-term field trial: no fertilization (CK), inorganic N and K (NK), inorganic P and K (PK), inorganic N, P and K (NPK) and manure+NPK (MNPK) fertilization. The study showed that the soil pH, soil organic carbon and total and available N and P concentrations were considerably higher in the MNPK treatment than in the CK treatment. The soil microbial biomass C, N and P concentrations were also significantly higher in the MNPK treatment than in the CK treatment. Among fertilization treatments, the β-1,4-glucosidase, α-1,4-glucosidase, urease, acid phosphatase and phosphodiesterase activities were the highest in the MNPK treatment. Compared to inorganic fertilization, the MNPK treatment increased the labile soil P fractions and decreased the residual soil P concentration. Continuous fertilization significantly affected the soil microbial composition. The total phospholipid fatty acid (PLFA) concentrations in the NK, PK, NPK and MNPK treatments were 23.3, 43.1, 48.7 and 87.7% higher, respectively, than in the CK treatment. A significant correlation was observed between the microbial community and soil P fractions. Moreover, the aggregated boosted tree (ABT) model showed that among the various soil biochemical properties, the total PLFA concentration was the factor that most influenced the active P pool, accounting for 35.4% of the relative influence of all soil biochemical properties examined. These findings reveal that combined manure and inorganic fertilizer application is a better approach than applying inorganic fertilizer alone for sustaining long-term P fertility by mediating soil biological activity.  相似文献   

17.
为研究长期有机无机肥配施对红壤性水稻田作物产量、土壤微生物生物量及有机碳分子结构的影响,以始于1984年的江西红壤性水稻田长期定位试验为平台,选取的试验处理包括:不施肥(CK)、单施化肥(NPK)和等养分条件下70%化肥配施30%有机肥(NPKM1)、50%化肥配施50%有机肥(NPKM2)、30%化肥配施70%有机肥(NPKM3),采用固体13C核磁共振测定了土壤有机碳组分含量,分析了土壤化学指标和土壤微生物生物量碳(Microbial biomass carbon,MBC)和微生物生物量氮(Microbial biomass nitrogen,MBN)。结果表明,连续34年的不同施肥处理显著影响了水稻产量、土壤微生物生物量及土壤有机碳(SOC)分子结构。与NPK处理相比,有机肥配施(NPKM1、NPKM2、NPKM3)提高了水稻产量,增幅为6.5%~7.7%(P>0.05),中低有机肥配施比例(30%和50%)稳产效果更优。长期单施化肥使土壤严重酸化,而配施有机肥可减缓土壤酸化。长期施肥处理MBC和MBN较CK处理分别显著提高17.0%~71.1%和104.1%~267.0%,但MBC/MBN下降,有机无机肥配施处理较NPK处理提高了微生物熵。长期单施化肥主要提高了烷基碳的相对含量,而配施有机肥同时提高烷基碳和烷氧碳(甲氧基/含氮烷基碳)含量,有利于土壤活性有机质累积。Pearson相关性分析表明土壤微生物生物量与SOC、氮磷养分指标及甲氧基/含氮烷基碳呈显著或极显著正相关,与芳基碳和羧基碳呈显著负相关。冗余分析显示SOC、有效磷、速效钾及烷基碳等对水稻产量的影响较大。研究表明,在供试条件下,长期实行中低比例有机肥配施化肥有利于提高土壤养分和土壤微生物生物量,并改善土壤有机质结构,是维持作物高产和提升土壤质量的有效施肥措施。  相似文献   

18.
玉米秸秆对棕壤中可溶性无机氮和有机氮的影响   总被引:2,自引:0,他引:2  
在(30±2)℃条件下对3种不同有机肥施用量(中量、高量和不施肥)耕层土壤和土壤母质(40~60 cm)及其加入玉米秸秆的相应土壤培养100 d,研究了玉米秸秆对不同有机肥施用量棕壤水溶性无机氮和有机氮的影响.结果表明:所有处理可溶性有机碳(DOC)含量表现相同的趋势,先增加后降低而后达平稳状态,玉米秸秆对土壤DOC含...  相似文献   

19.
不同施肥处理对侵蚀性红壤酸性和交换性能的修复效应   总被引:1,自引:0,他引:1  
为探讨不同施肥处理对侵蚀性红壤的修复效应,研究了施化肥(NPK)、化肥+有机肥(NPKM)、化肥+土壤调理剂2号(NPKR2)与不施肥(CK)处理对不同母质发育的侵蚀性红壤酸性和交换性能的修复效应.结果表明:NPKM及NPKR2处理均可明显提高各种酸性土壤的pH缓冲能力,NPK处理效果则不明显;NPKR2可改良和降低土壤酸化程度,NPKM处理则只能增大土壤的pH缓冲容量,对改良土壤酸化的效果不显著;NPKM处理可提高土壤有机质含量,但土壤有机质含量与土壤pH缓冲能力不成正比;各施肥处理均能显著降低板页岩红壤、网纹层红壤和均质层红壤铝离子的活性,但只有NPKR2处理能明显降低花岗岩红壤的铝离子活性,其他施肥处理的效果不明显;各施肥处理的土壤阳离子交换量(CEC)均差异不大;NPKR2处理的土壤有效阳离子交换量(ECEC)显著高于其他处理;不同施肥处理下网纹层红壤和均质层红壤的ECEC均显著高于对照,而花岗岩红壤和板页岩红壤仅NPKR2处理有显著提高.  相似文献   

20.
Exploration of soil environmental characteristics governing soil microbial community structure and activity may improve our understanding of biogeochemical processes and soil quality. The impact of soil environmental characteristics especially organic carbon availability after 15-yr different organic and inorganic fertilizer inputs on soil bacterial community structure and functional metabolic diversity of soil microbial communities were evaluated in a 15-yr fertilizer experiment in Changping County, Beijing, China. The experiment was a wheat-maize rotation system which was established in 1991 including four different fertilizer treatments. These treatments included: a non-amended control(CK), a commonly used application rate of inorganic fertilizer treatment(NPK); a commonly used application rate of inorganic fertilizer with swine manure incorporated treatment(NPKM), and a commonly used application rate of inorganic fertilizer with maize straw incorporated treatment(NPKS). Denaturing gradient gel electrophoresis(DGGE) of the 16 S r RNA gene was used to determine the bacterial community structure and single carbon source utilization profiles were determined to characterize the microbial community functional metabolic diversity of different fertilizer treatments using Biolog Eco plates. The results indicated that long-term fertilized treatments significantly increased soil bacterial community structure compared to CK. The use of inorganic fertilizer with organic amendments incorporated for long term(NPKM, NPKS) significantly promoted soil bacterial structure than the application of inorganic fertilizer only(NPK), and NPKM treatment was the most important driver for increases in the soil microbial community richness(S) and structural diversity(H). Overall utilization of carbon sources by soil microbial communities(average well color development, AWCD) and microbial substrate utilization diversity and evenness indices(H' and E) indicated that long-term inorganic fertilizer with organic amendments incorporated(NPKM, NPKS) could significantly stimulate soil microbial metabolic activity and functional diversity relative to CK, while no differences of them were found between NPKS and NPK treatments. Principal component analysis(PCA) based on carbon source utilization profiles also showed significant separation of soil microbial community under long-term fertilization regimes and NPKM treatment was significantly separated from the other three treatments primarily according to the higher microbial utilization of carbohydrates, carboxylic acids, polymers, phenolic compounds, and amino acid, while higher utilization of amines/amides differed soil microbial community in NPKS treatment from those in the other three treatments. Redundancy analysis(RDA) indicated that soil organic carbon(SOC) availability, especially soil microbial biomass carbon(Cmic) and Cmic/SOC ratio are the key factors of soil environmental characteristics contributing to the increase of both soil microbial community structure and functional metabolic diversity in the long-term fertilization trial. Our results showed that long-term inorganic fertilizer and swine manure application could significantly improve soil bacterial community structure and soil microbial metabolic activity through the increases in SOC availability, which could provide insights into the sustainable management of China's soil resource.  相似文献   

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