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1.
本研究以长武黄土高原农业生态试验站33年长期定位试验处理为研究对象,选取撂荒(R)、小麦连作(CK/W)、小麦玉米轮作(L),小麦连作选取单施氮肥(N)、单施磷肥(P)、施氮磷肥(NP)、单施有机肥(M)、氮肥配施有机肥(NM)、磷肥配施有机肥(PM)、氮磷肥配施有机肥(NPM)共10种不同种植模式和施肥田间处理,运用干湿筛法和TOC法,分析长期不同施肥和种植模式下黄土旱塬农田土壤力稳性和水稳性团聚体数量、稳定性、各粒级团聚体中全碳和有机碳的分布特征,以及各粒级团聚体对碳分布的贡献。结果表明: 力稳性团聚体以>0.25 mm大团聚体为主,含量>67%,施肥使其减少;连作减少了微团聚体,而轮作增加了微团聚体且其效果大于施肥处理。水稳性团聚体以<0.25 mm微团聚体为主,含量>61%;施肥和耕作均减少了水稳性微团聚体。不同施肥方式和种植模式均降低了团聚体破坏率(PAD),增加了大团聚体(R0.25)含量。施用有机肥显著提高了力稳性团聚体各粒级中全碳和有机碳含量;连作和轮作增加了各粒级团聚体中全碳含量,但轮作显著降低了有机碳含量。单施氮、磷肥使土壤全碳含量降低,而氮磷复合肥和有机肥使土壤全碳含量显著增加;种植模式对全碳的影响较施肥处理小,连作和轮作使土壤全碳增加。除单施氮、磷肥外,复合施肥和施用有机肥使土壤有机碳显著增加;不同种植模式对土壤有机碳的影响小于施肥处理,轮作使有机碳含量降低。微团聚体对土壤全碳和有机碳的贡献率最大,可达21.2%~33.6%;不同施肥和种植模式使微团聚体全碳的贡献率增加,施肥处理中NP和NPM显著增加了微团聚体的全碳和有机碳贡献率,轮作对微团聚体全碳和有机碳的增加趋势贡献最显著。  相似文献   

2.
长期施肥对黑土团聚体分布和碳储量变化的影响   总被引:12,自引:0,他引:12  
冷延慧  汪景宽  李双异 《生态学杂志》2008,27(12):2171-2177
用干筛与湿筛2种方法测定了22年长期田间定位试验地土壤风干及水稳性团聚体含量,研究了施肥对黑土团聚体组成、有机碳含量及有机碳库储量的影响。试验设不施肥(CK)、无机肥(NP、NPK)和无机-有机肥配施(NPK+OM)4个处理。结果表明,黑土团聚体以0.25~1 mm团聚体为主。经过湿筛法土壤各粒级水稳性团聚体含量重新分配,表现为以0.25~1 mm粒级为中心,大团聚体含量减少,微团聚体含量增加。与长期不施肥比较,长期施用化肥及有机-无机肥配施显著增加了>2 mm大团聚体含量和0.05~0.25 mm微团聚体含量,各级团聚体有机碳含量显著增加,总有机碳及各级团聚体储量增加,有机质积累,土壤结构得到改善,固碳潜力增加,有机-无机配施效果更加明显。  相似文献   

3.
通过27年的长期定位试验,研究了长期施肥对黄土高原旱地黑垆土水稳性团聚体的影响.结果表明:与自然土壤相比,黑垆土开垦后,0~10cm和10~20cm土层〉0.25mm的水稳性团聚体含量分别下降了21.35%和38.82%;0.5mm以上各粒级的水稳性团聚体含量均呈下降趋势,其中〉5mm和5~2mm大粒径团聚体的下降幅度最大;而0.5~0.25mm的水稳性团聚体含量却增加了104.75%和23.13%.0~10cm土层各粒级水稳性团聚体含量均高于10~20cm土层.单施有机肥和有机无机肥配施处理5~2mm粒级的水稳性团聚体含量增加最多,〉5mm粒级次之;增施有机肥、有机无机肥配合施用和秸秆还田处理能显著增加大粒径水稳性团聚体含量,改善土壤团聚体的结构.各处理0~10cm土壤水稳性团聚体平均质量直径(MMD)均大于10~20cm土层;自然土壤的团聚体MMD显著高于同层次耕作土壤,长期施肥处理MMD大于无肥对照,有机物质培肥处理明显高于化肥处理.土壤团聚体MMD与〉0.25mm水稳性团聚体含量呈显著正相关.  相似文献   

4.
长期施肥对水稻土有机碳分布及化学结合形态的影响   总被引:1,自引:0,他引:1  
采用湖南省4个23年连续施肥的稻田长期定位试验,研究了施肥对湖南省水稻土有机碳分布及化学键合形态的影响。试验设不施肥(CK)、化肥(NPK)、中量有机肥(MOM)和高量有机肥(HOM)4个处理。结果表明:在所有施肥处理中,水稳性团聚体均以0.25~1mm和2~5mm粒径含量最高,分别达全土总量的18%~43%和13%~48%。中、高量有机肥处理显著增加了>1mm大团聚体含量以及有机碳在大团聚体中的分配,其中0.25~1mm和1~2mm粒径团聚体中有机碳含量均略高于其余粒径组。与不施肥比较,钙结合态有机碳(Ca-SOC)占总有机碳的比例在2%~4%左右且随有机肥施用呈下降趋势,而铁铝结合态有机碳Fe(Al)-SOC占总有机碳的18%~33%呈上升趋势。有机肥施用条件下,有机碳在大团聚体中的分布的增加、Fe(Al)-SOC的提升以及Ca-SOC的降低意味着土壤有机碳物理和化学保护作用的增强,有利于稻田土壤有机碳的积累,是有机肥施用条件下保持稻田土壤较高固碳速率的重要原因。  相似文献   

5.
长期施肥对黄土高原旱地黑垆土水稳性团聚体的影响   总被引:11,自引:0,他引:11  
通过27年的长期定位试验,研究了长期施肥对黄土高原旱地黑垆土水稳性团聚体的影响.结果表明:与自然土壤相比,黑垆土开垦后,0~10 cm和10~20 cm土层>0.25 mm的水稳性团聚体含量分别下降了21.35%和38.82%;0.5 mm以上各粒级的水稳性团聚体含量均呈下降趋势,其中>5 mm和5~2 mm大粒径团聚体的下降幅度最大;而0.5~0.25 mm的水稳性团聚体含量却增加了104.75%和23.13%.0~10 cm土层各粒级水稳性团聚体含量均高于10~20 cm土层.单施有机肥和有机无机肥配施处理5~2 mm粒级的水稳性团聚体含量增加最多,>5 mm粒级次之;增施有机肥、有机无机肥配合施用和秸秆还田处理能显著增加大粒径水稳性团聚体含量,改善土壤团聚体的结构.各处理0~10 cm土壤水稳性团聚体平均质量直径(MMD)均大于10~20 cm土层;自然土壤的团聚体MMD显著高于同层次耕作土壤,长期施肥处理MMD大于无肥对照,有机物质培肥处理明显高于化肥处理.土壤团聚体MMD与>0,25 mm水稳性团聚体含量呈显著正相关.  相似文献   

6.
长期施肥对水稻土颗粒有机碳和矿物结合态有机碳的影响   总被引:18,自引:0,他引:18  
在23a的田间定位试验区,研究了长期施肥对水稻土颗粒有机碳和矿物结合态有机碳的影响.结果表明,在不施肥(CK)、无机肥(NPK)、有机肥(猪粪 紫云英绿肥)(OM)和无机肥与有机肥配施(NPKM)处理中,A层游离态和闭蓄态颗粒有机物含量比P层高,随着土层的加深呈下降的趋势;而矿物态有机物呈相反的趋势.增施有机肥(NPKM,OM处理)有利于提高土壤中游离态和闭蓄态颗粒有机物及其有机碳的含量以及占土壤有机碳的比例.团聚体中颗粒有机物占土壤团聚体重量的比例及颗粒有机物的有机碳含量均随着团聚体粒径的减小而明显增加.增施有机肥显著提高了团聚体特别是微团聚体(<0.25mm)中颗粒有机物及其有机碳的含量.团聚体中颗粒有机物的有机碳含量显著高于容积土壤中颗粒有机物的有机碳含量.这些结果表明微团聚体对颗粒有机物具有富集和保护作用. 和闭蓄态颗粒有机物含量比P层高,随着土层的加深呈下降的趋势;而矿物态有机物呈相反的趋势.增施有机肥(NPKM,OM处理)有利于提高土壤中游离态和闭蓄态颗粒有机物及其有机碳的含量以及占土壤有机碳的比例.团聚体中颗粒有机物占土壤团聚体重量的比例及颗粒有机物的有机碳含量均随着团聚体粒径的减小而明显增加. 施有机肥显著提高了团聚体特别是微团聚体(<0.25mm)中颗粒有机物及其有机碳的含量.团聚体中颗粒有机物的有机碳含量显著高于容积土壤中颗粒有机物的有机碳含量.这些结果表明微团聚体对颗粒有机物具有富集和保护作用. 和闭蓄态颗粒有机物含量比P层高,随着土层的加深呈下降的趋势;而矿物态有机物呈相反的趋势.增施有机肥  相似文献   

7.
长期施肥对小麦-玉米作物系统土壤颗粒有机碳和氮的影响   总被引:19,自引:0,他引:19  
通过对华北平原小麦-玉米轮作农田生态系统18年田间施肥试验,研究了长期不同施肥处理对耕层(0~20 cm)土壤颗粒有机碳和氮及矿质结合有机碳和氮的影响.施肥处理包括化肥NPK不同组合(NPK、NP、NK、PK)、全部施用有机肥(OM)、一半有机肥+化肥NPK(1/2OMN)及不施肥(CK)共7个处理.结果表明:各施肥处理均能在不同程度上增加土壤颗粒有机碳和氮及矿质结合有机碳和氮含量,提高土壤颗粒有机碳和氮分配比例及颗粒有机质C/N.施肥处理颗粒有机碳和氮储量较不施肥处理分别增加11.7%~196.8%和13.0%~152.2%,土壤颗粒有机碳对总有机碳储量增加的贡献率为31.5%~67.3%,土壤颗粒有机氮对全氮储量增加的贡献率为14.3%~100.0%;矿质结合有机碳和氮储量较不施肥处理分别增加2.0%~75.0%和0.0%~69.8%.各处理颗粒有机碳和氮及矿质结合有机碳和氮储量均以OM处理最高,且有机肥与化肥NPK配施高于单施化肥各处理,而化肥处理中NPK均衡施用效果最好.说明施用有机肥、有机肥与化肥NPK配施及化肥NPK均衡施用是增加土壤颗粒有机碳和氮及矿质结合有机碳和氮的关键.  相似文献   

8.
地膜覆盖是提高作物产量的重要措施,理解覆膜条件下黑土团聚体中外源碳和氮的固存特征,为深刻认识地膜覆盖措施的可持续应用提供理论依据。选取长期定位试验站(29年)不施肥(CK)、单施化肥(NPK)和有机肥配施化肥(MNPK)3个典型施肥处理,表层土壤(0—20 cm)添加13C15N双标记玉米秸秆后设置裸地和覆膜的田间原位微区培养试验,探讨不同施肥处理结合覆膜黑土团聚体中有机碳和全氮对秸秆来源碳和氮的响应。结果表明,与裸地相比,所有处理覆膜后微团聚体(<0.25 mm)中秸秆来源碳和氮的含量平均降低了26.49%和32.05%。覆膜MNPK与裸地处理相比大团聚体(>0.25 mm)中秸秆来源碳和氮的含量显著降低了35.58%和15.97%,但大团聚体中原土壤有机碳的含量提高了9.16%。在CK和NPK处理微团聚体中,秸秆来源碳占该粒级团聚体有机碳的比例表现为覆膜>裸地,而在MNPK处理各粒级团聚体中则表现为裸地>覆膜。无论覆膜与否,秸秆来源碳对团聚体有机碳和秸秆来源氮对团聚体全氮的贡献率受施肥处理的影响表现为CK>N...  相似文献   

9.
不同施肥处理对红壤性水稻土微团聚体有机碳汇的影响   总被引:40,自引:0,他引:40  
袁颖红  李辉信  黄欠如  胡锋  潘根兴 《生态学报》2004,24(12):2961-2966
在田间定位试验区 ,研究了不同施肥处理对表层红壤性水稻土微团聚体组成以及土壤有机碳在各级微团聚体中分布和赋存的影响。结果表明 ,红壤性水稻土中 0 .0 2~ 0 .0 5 mm微团聚体所占比例最大 ,达 4 0 % ;其次是 0 .0 0 2~ 0 .0 2 mm和 0 .0 5~0 .1mm的微团聚体 ;>0 .2 mm微团聚体占的比例最小。长期施用无机肥 (NPK)、有机肥 (猪粪 紫云英绿肥 ) (OM)、无机肥与有机肥配施 (NPKM) ,能显著增加 0 .0 0 2~ 0 .0 2 mm微团聚体的含量而降低 <0 .0 0 2 m m微团聚体的含量。土壤有机碳含量与0 .0 0 2~ 0 .0 2 mm微团聚体含量之间呈显著正相关关系 ;而与 <0 .0 0 2 mm微团聚体含量呈显著负相关关系。各级微团聚体有机碳含量从高到低顺序为 :>0 .2 mm,0 .1~ 0 .2 mm,<0 .0 0 2 m m,0 .0 5~ 0 .1m m,0 .0 0 2~ 0 .0 2 mm,0 .0 2~ 0 .0 5 m m。 OM、NPKM处理能显著增加 >0 .0 0 2 mm各级微团聚体有机碳的赋存量 ,新增加的有机碳主要向微团聚体 0 .1~ 0 .0 5 m m,0 .0 5~ 0 .0 2 mm和 0 .0 2~ 0 .0 0 2 mm富集 ,它们是土壤有机碳的主要载体。 3种施肥处理对提高土壤有机碳赋存效果高低顺序为 :NPKM>OM>NPK。  相似文献   

10.
新型大颗粒活化腐植酸肥(LAF)在苹果化肥减量和果实稳产方面的效果显著,探明其对土壤团聚体和有机碳的影响是揭示该新型肥料对苹果土壤结构影响的重要依据。本研究设置4个LAF处理:LAF1[全量施肥,施肥时期及重量比(下同):萌芽期∶膨果期∶成熟期=3∶4∶3]、LAF2(全量施肥,萌芽期∶膨果期∶成熟期=2∶3∶5)、LAF3(减量1/4施肥,萌芽期∶膨果期∶成熟期=2∶3∶5)、LAF4(减量1/3施肥,萌芽期∶膨果期∶成熟期=2∶3∶5),以不施肥(CK)处理为对照。通过4年盆栽试验,研究苹果土壤团聚体组成、稳定性和有机碳对不同施肥处理的响应。结果表明: 1)与CK相比,LAF各处理显著提高了土壤水稳性大团聚体含量,>2 mm和2~0.25 mm粒径团聚体含量分别提高了53.4%~77.5%和12.3%~17.0%,且提高幅度随施肥量的增加而增大,其中LAF1处理土壤水稳性大团聚体含量最高。2)LAF各处理在各粒径团聚体含量上差异不显著,其中2~0.25 mm粒径团聚体含量所占的比例最高。3)与CK相比,LAF各处理均显著提高了团聚体平均重量直径(MWD)和几何平均直径(GMD),降低了分形维数(D),其中LAF1处理的MWD和GMD值最高,对土壤团聚体稳定性提升效果最好。4)除LAF4外,其他LAF处理土壤有机碳含量均显著高于CK,其中LAF2处理土壤有机碳含量最高;LAF各处理均增加了土壤各粒径团聚体有机碳含量,LAF1、LAF2、LAF3处理显著提高了>2 mm粒径团聚体有机碳含量,且>2 mm团聚体有机碳对总有机碳的贡献率最大;LAF各处理的水稳性大团聚体有机碳对总有机碳的贡献率均显著高于CK,且贡献率均在66.0%以上,其中LAF1处理最高。综上,施用LAF在促进苹果土壤水稳性大团聚体形成和稳定性、提高团聚体有机碳含量上应用效果显著,其中全量施用效果最好。施用LAF可作为改善苹果土壤结构和提升土壤肥力的有效措施。  相似文献   

11.
应用化学分析和变性梯度凝胶电泳(DGGE)技术分离PCR扩增的16S rDNA的方法,研究了不同施肥制度对土壤微生物量碳、氮变化及微生物多样性的影响。结果表明,连续15a长期试验下,土壤微生物量碳(SMB-C)和微生物量氮(SMB-N)的含量大小均为长期撂荒(CK0)土壤高于农田土壤,而在农田土壤中,长期施肥的处理(NPK、NPKM、NPKSt和NPKF)高于长期不施肥处理(CK),不同的种植制度中,长期复种轮作(NPKF)高于长期复种连作(NPK);各处理的SMB-C/SOC(土壤有机碳)和SMB-N/TN(全氮)的比值的变化趋势与SMB-C和SMB-N变化一致;从PCR-DGGE分析,长期氮磷钾化肥配施有机肥(NPKM)处理的微生物量碳、氮的含量最高,微生物丰度最高,细菌物种最多,其次为长期撂荒(CK0),CK处理细菌物种最少。UPGMC聚类分析表明NPK和NPKF处理细菌的群落结构相似,CK和CK0处理细菌的群落结构相似,而NPKM和NPKSt处理细菌的群落结构相似。  相似文献   

12.
长期施肥对土壤微生物量及土壤酶活性的影响   总被引:80,自引:0,他引:80       下载免费PDF全文
 该文以北京国家褐潮土土壤肥力与肥料效益长期监测基地的长期肥料定位试验为平台,研究了长期不同施肥制度对土壤的生物学特性及其土壤酶的影响。主要研究结果:长期撂荒土壤(15年)的有机质和全氮(TN)的含量、微生物量碳(SMB-C)和氮(SMB-N)、土壤的蔗糖酶、磷酸酶和脲酶活性以及SMB-C/SOC(土壤有机碳)和SMB-N/TN比值都高于种植作物的农田土壤;而其代谢商和容重值低于农田土壤。长期施肥的农田(NPK、NPKM 、NPKS和NPKF),其土壤养分含量、微生物量碳和氮以及土壤蔗糖酶、磷酸酶和脲酶活性均高于不施肥的农田(CK);而小麦(Triticum aestivum)-玉米(Zea mays)→小麦-大豆(Glycine max)复种轮作(NPKF)的农田又高于长期复种连作(NPK)的农田;在施肥处理中(NPK、NPKM、NPKS和NPKF),长期化肥与有机肥配合施用的处理(NPKM )的土壤上述指标高于其它施肥处理(NPK、NPKS和NPKF),但其土壤的代谢商、pH值和容重值较低。  相似文献   

13.
长期不同施肥制度下几种土壤微生物学特征变化   总被引:20,自引:0,他引:20       下载免费PDF全文
 为阐明土壤微生物对土壤健康的生物指示功能, 以国家褐潮土肥力与肥料效益监测基地的长期肥料试验为平台, 应用BIOLOG ECO微平板培养法与常规分析法研究了长期施肥15年后不同施肥制度对土壤微生物生物量、活性、群落代谢功能多样性及土壤肥力的影响。研究结果表明, 与对照(CK)相比, 长期化肥与有机肥配施土壤中土壤有机质(SOM)、全氮(STN)、全磷(STP)含量升高, 土壤C/N与pH值降低, 土壤微生物量碳(Soil microbial biomass carbon, SMBC)、生物微生物量氮(Soil microbial biomass nitrogen, SMBN)、微生物商(qMB)及脲酶(Urease)活性升高, BIOLOG ECO微平板平均颜色变化率(Average well color development, AWCD)、土壤微生物代谢功能多样性指数变化不明显。和长期单施化肥处理(NPK)相比, 长期化肥与有机肥配施处理中上述几种微生物学特征(SMBC、SMBN、qMB、Urease及AWCD、代谢功能多样性指数)均呈极显著增加。NPK处理与CK相比虽然SOM、STN、STP含量稍有升高, 土壤C/N与pH值降低, SMBC、SMBN、qMB及Urease活性增高, 但是AWCD、土壤微生物代谢功能多样性指数却显著下降。过氧化氢酶活性(Catalase)在各处理土壤中的差异不显著。土壤微生物碳源利用的主成分分析表明, 长期不同施肥各处理在土壤微生物利用碳源的种类和能力上有差异。此试验说明, 土壤微生物受农业管理措施和多种环境因素的影响, 土壤微生物学特征可作为土壤质量的敏感指标, 为提高作物产量、增强肥力提供理论参考。  相似文献   

14.
Soil organic carbon (SOC) sequestration is important for improving soil fertility of cropland and for the mitigation of greenhouse gas emissions to the atmosphere. The efficiency of SOC sequestration depends on the quantity and quality of the organic matter, soil type, and climate. Little is known about the SOC sequestration efficiency of organic amendments in Vertisols. Thus, we conducted the research based on 29 years (1982–2011) of long-term fertilization experiment with a no fertilizer control and five fertilization regimes: CK (control, no fertilizer), NPK (mineral NPK fertilizers alone), NPK+1/2W (mineral NPK fertilizers combined with half the amount of wheat straw), NPK+W (mineral NPK fertilizers combined with full the amount of wheat straw), NPK+PM (mineral NPK fertilizers combined with pig manure) and NPK+CM (mineral NPK fertilizers combined cattle manure). Total mean annual C inputs were 0.45, 1.55, 2.66, 3.71, 4.68 and 6.56 ton/ha/yr for CK, NPK, NPKW1/2, NPKW, NPKPM and NPKCM, respectively. Mean SOC sequestration rate was 0.20 ton/ha/yr in the NPK treatment, and 0.39, 0.50, 0.51 and 0.97 ton/ha/yr in the NPKW1/2, NPKW, NPKPM, and NPKCM treatments, respectively. A linear relationship was observed between annual C input and SOC sequestration rate (SOCsequestration rate  = 0.16 Cinput –0.10, R = 0.95, P<0.01), suggesting a C sequestration efficiency of 16%. The Vertisol required an annual C input of 0.63 ton/ha/yr to maintain the initial SOC level. Moreover, the C sequestration efficiencies of wheat straw, pig manure and cattle manure were 17%, 11% and 17%, respectively. The results indicate that the Vertisol has a large potential to sequester SOC with a high efficiency, and applying cattle manure or wheat straw is a recommendable SOC sequestration practice in Vertisols.  相似文献   

15.
陈哲  袁红朝  吴金水  魏文学 《生态学报》2009,29(11):5923-5929
以中国科学院桃源农业生态试验站长期定位施肥试验为平台,研究了3种长期施肥制度(对照不施肥-CK,化学施肥-NPK,化学施肥+有机肥-NPKOM)下土壤反硝化速率的差异.同时,以硝酸还原酶基因(narG)作为反硝化细菌的功能标志物,分析了施肥对反硝化细菌群落结构和多样性的影响.结果表明,长期施用有机肥的土壤反硝化速率,反硝化菌多样性都高于对照和施用化肥处理.从3个处理的土壤样品中共获得35个narG基因的可操作分类单元(OTU)主要分布在两个簇,与变形菌门(Proteobacteria)和放线菌门(Actinobacteria)的反硝化细菌有一定的亲缘关系,均为首次从土壤中克隆.Shannon多样性指数显示,NPKOM处理的narG基因多样性最高,CK处理次之,NPK处理最低.LUBSHUFF软件对narG基因群落组成的分析显示,施有机肥后含narG基因的细菌群落组成与CK之间有显著性差异(P<0.05),而化肥(NPK)没有产生显著影响.实验结果为进一步研究亚热带地区水稻土反硝化作用及反硝化功能菌提供了重要的依据.  相似文献   

16.
A field experiment was conducted under a wheat-maize rotation system from 1990 to 2006 in North China Plain (NCP) to determine the effects of N, P and K on yield and yield gap. There were five treatments: NPK, PK, NK, NP and a control. Average wheat and maize yields were the highest in the NPK treatment, followed by those in the NP plots among all treatments. For wheat and maize yield, a significant increasing trend over time was found in the NPK-treated plots and a decreasing trend in the NK-treated plots. In the absence of N or P, wheat and maize yields were significantly lower than those in the NPK treatment. For both crops, the increasing rate of the yield gap was the highest in the P omission plots, i.e., 189.1 kg ha−1 yr−1 for wheat and 560.6 kg ha−1 yr−1 for maize. The cumulative omission of P fertilizer induced a deficit in the soil available N and extractable P concentrations for maize. The P fertilizer was more pivotal in long-term wheat and maize growth and soil fertility conservation in NCP, although the N fertilizer input was important for both crops growth. The crop response to K fertilizers was much lower than that to N or P fertilizers, but for maize, the cumulative omission of K fertilizer decreased the yield by 26% and increased the yield gap at a rate of 322.7 kg ha−1 yr−1. The soil indigenous K supply was not sufficiently high to meet maize K requirement over a long period. The proper application of K fertilizers is necessary for maize production in the region. Thus, the appropriate application of N and P fertilizers for the growth of both crops, while regularly combining K fertilizers for maize growth, is absolutely necessary for sustainable crop production in the NCP.  相似文献   

17.
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   

18.
程乙  任昊  刘鹏  董树亭  张吉旺  赵斌  李耕  刘少坤 《生态学杂志》2016,27(11):3521-3528
在两种肥力条件下设置超高产栽培模式(SH)、高产高效栽培模式(HH)、农民习惯处理(FP)和不施肥对照处理(CK)4种栽培管理模式的定位试验,研究了以肥料投入为主要影响因素的不同栽培管理模式对黄淮海区域不同肥力农田耕层土壤团聚体组成及其碳、氮分布的影响,为通过培肥土壤实现小麦-玉米周年可持续增产增效提供技术支持.结果表明: 与低肥力田块(LSF)相比,高肥力田块(HSF)耕层土壤团聚体的平均质量直径和几何平均直径高、分形维数低,有利于大团聚体的形成与稳定,各级团聚体的有机碳和全氮含量较高.优化施用氮磷钾肥、配施有机肥可增加耕层土壤团聚体的粒径、降低其分形维数,促进大团聚体的形成与稳定,对高肥力田块的影响大于低肥力田块;二者亦可提高有机碳和全氮在大团聚体中的含量与分布,其中,对>5 mm团聚体的贡献率的影响在低肥力田块大于高肥力田块,对5~0.5 mm的各粒级团聚体的贡献率的影响在高肥力田块优于低肥力田块.  相似文献   

19.
The effects of inorganic fertilizers on soil nematode communities were studied in a long-term fertilization experimental field in the Black Soil Region of Northeast China, where no fertilizer (CK), N fertilizer (N), combined application of N and P (NP), combined application of N and K (NK), and combined application of N, P and K (NPK) were compared. The results showed that the total nematode abundance was not affected significantly by inorganic fertilizers in the long-term field experiment. The numbers of bacterivores increased significantly in the NP treatment compared to the CK treatment, and those of fungivores and plant-parasites were inhibited in the NPK treatment. The similarity between CK and NPK treatment and the nematode diversity were higher than in other treatments. The stability of the soil ecosystem was disturbed by the inorganic fertilizers, as indicated by the change in MI values under different treatments. The response of soil nematodes mainly depended on the types of inorganic fertilizers applied.  相似文献   

20.
The effects of inorganic fertilizers on soil nematode communities were studied in a long-term fertilization experimental field in the Black Soil Region of Northeast China,where no fertilizer (CK),N fertilizer (N),combined application of N and P (NP),combined application of N and K (NK),and combined application of N,P and K (NPK) were compared.The results showed that the total nematode abundance was not affected significantly by inorganic fertilizers in the long-term field experiment.The numbers of bacterivores increased significantly in the NP treatment compared to the CK treatment,and those of fungivores and plant-parasites were inhibited in the NPK treatment.The similarity between CK and NPK treatment and the nematode diversity were higher than in other treatments.The stability of the soil ecosystem was disturbed by the inorganic fertilizers,as indicated by the change in MI values under different treatments.The response of soil nematodes mainly depended on the types of inorganic fertilizers applied.  相似文献   

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