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1.
稻鸭共作生态系统稻田土壤固定态铵含量及有效性   总被引:8,自引:0,他引:8  
李成芳  曹凑贵  潘圣刚  黄丰  代光照  汪金平  展茗  龚伟玲 《生态学报》2008,28(6):2729-2729~2737
通过田间试验研究了稻鸭共作生态系统土壤固定态铵的动态及有效性和温度、土壤pH、土壤交换性铵及土壤质地对土壤固定态铵的影响.研究结果表明:(1)在水稻生育期间,土壤固定态铵含量处于不断变化之中,施肥促进土壤对铵的固定,水稻的吸收促进土壤固定态铵的释放;其中在固定态铵释放过程之中,新固定的肥料铵几乎完全释放,而原有固定态铵没有释放.(2)较之常规稻作,稻鸭共作显著地提高了土壤固定态铵含量,其平均含量高出常规稻作的7%.(3)土壤交换性NH 4含量和pH与土壤固定态铵含量呈显著正相关(p<0.01);土壤温度(5cm土层)与土壤固定态铵含量间不相关;土壤固定态铵含量与>0.2mm的砂粒含量和<0.002mm的粘粒含量呈显著或极显著相关,而与0.02~0.2mm和0.002~0.02mm粘粒含量不相关.  相似文献   

2.
缓/控释复合肥料对土壤氮素库的调控作用   总被引:3,自引:0,他引:3  
董燕  王正银 《生态学报》2010,30(24):6707-6714
采用小麦盆栽生物试验、实验室化学分析和仪器分析方法研究了缓/控释复合肥料(SRF)对土壤氮素养分库中不同组分(微生物量氮、固定态铵、NH4+-N、NO3--N、铵离子周转库)动态变化的影响及其与小麦吸收氮素养分的关系。结果表明,在小麦分蘖初期,SRF处理土壤微生物量氮、NH4+-N含量较普通复合肥料(CCF)低,此后整个小麦生育期的土壤微生物量氮、NH4+-N含量的总体变化趋势以SRF处理高于CCF处理,其中SRF处理的小麦土壤NH4+-N含量较CCF处理高108.1%—271.7%;在小麦生长前期,SRF处理土壤固定态铵含量较CCF低;在小麦生长中期,SRF处理土壤固定态铵含量较CCF处理高;与CCF处理比较,SRF处理小麦土壤硝态氮含量经历先升高后降低、在生育后期又升高的趋势。在小麦生育前期,CCF处理土壤"铵离子周转库"由371.3 mg/kg降至259.1 mg/kg;SRF处理土壤"铵离子周转库"由306.5 mg/kg升至324.5 mg/kg。在小麦需氮量较高的拔节期,CCF处理土壤"铵离子周转库"与前一次之差值仅为34.18 mg/kg,而SRF处理则达到77.21 mg/kg,表明小麦生育前期SRF土壤"铵离子周转库"能够固定更多的铵离子,降低铵离子的损失;在小麦需氮量较高的时期,"铵离子周转库"则释放更多的铵离子以供给小麦吸收利用。小麦生长初期CCF处理释放养分速率较快,小麦植株吸氮量高于SRF处理;生长中、后期SRF处理释放养分量较CCF处理高,此阶段小麦吸氮量以SRFCCF。不同处理对小麦吸氮量的影响与对小麦生物量变化是基本一致的,即初期以CCFSRF,中后期以SRFCCF,收获期SRF处理较CCF处理分别提高小麦生物量15.32%、吸氮量13.51%。相关分析表明,小麦生物试验中SRF处理土壤微生物量氮、固定态铵以及"铵离子周转库"的动态变化与小麦吸氮量之间达到显著或极显著负相关关系(r=-0.8728*—-0.9006**),SRF调控土壤氮素库的能力较CCF更强,能更好的协调土壤氮素养分供应与小麦氮素需求间的动态平衡和提高肥料氮素利用效率。  相似文献   

3.
冬季作物对稻田土壤微生物量碳、氮和微生物熵的短期影响   总被引:18,自引:0,他引:18  
研究不同的冬季作物马铃薯、黑麦草、紫云英、油菜在"冬季作物-双季稻"轮作种植制度下短期内对稻田土壤微生物碳、氮和微生物熵的影响,在湖南省土壤肥料研究所的实验网室内设置了小区试验.试验结果表明:几种冬季作物均提高了稻田土壤微生物碳、氮含量,黑麦草明显提高了土壤微生物量碳和微生物熵,紫云英明显提高了土壤微生物量氮.冬季作物对土壤微生物量碳和土壤微生物量氮的季节性影响变化趋势基本一致,紫云英、马铃薯处理的土壤微生物量C、N含量均在水稻生育期间8月中旬达到最大值.  相似文献   

4.
抑制剂和猪粪对尿素氮在稻田土壤中转化的影响   总被引:2,自引:0,他引:2  
为了阐明稻田土壤中尿素在配施抑制剂和猪粪的情况下不同形态氮的响应特征,探究不同管理措施下稻田土壤氮素保持和供给能力。本研究采用15N标记尿素进行盆栽试验,设置不施肥(CK)、猪粪(M)、尿素(N)、猪粪+尿素(NM)、尿素+抑制剂(NI)和尿素+抑制剂+猪粪(NIM)6个处理。抑制剂选用脲酶抑制剂(PPD+NBPT)和硝化抑制剂(DMPP)组合,测定返青期、分蘖期和成熟期土壤氮库的分配、尿素氮在氮库中的保存及水稻吸氮状况。结果表明: 施用猪粪显著提高了土壤铵态氮、固定态铵含量和微生物生物量氮,提高了分蘖期尿素氮在各氮库中的贮存,显著增加了水稻产量。与N处理相比,添加抑制剂促进了NH4+的矿物固定和微生物对尿素氮的固持;与NM处理相比,施用抑制剂增加了黏土矿物对15NH4+的固定。通径分析表明,施用猪粪能促进水稻吸收肥料氮,增加水稻产量;添加抑制剂可通过铵的矿物固定将更多的肥料氮暂时储存;NIM能将更多的氮贮存在微生物生物量氮中,至作物生长后期,铵的释放和微生物周转矿化可为水稻提供更多的有效氮源。在我国北方稻田,NM和NIM处理是推荐的施肥方式。  相似文献   

5.
湖南主要类型稻田土壤固定态铵含量及其影响因素   总被引:6,自引:0,他引:6  
通过野外调查取样和室内培养试验 ,应用Silva和Bremner方法 ,研究了湖南省主要类型稻田土壤的固定态铵含量及其影响因素 .结果表明 ,该省主要类型稻田土壤固定态铵含量为 141~ 35 3mg·kg-1,平均为 2 72± 6 7mg·kg-1,占土壤全N的 11.2 % ,高于湖南省以北各地区土壤和本地区地带性土壤———红壤的固定态铵含量 .其含量的顺序为河沙泥 >紫泥田 >潮沙泥 >黄泥田 >红黄泥 .在土壤剖面中 ,固定态铵含量随剖面深度的变化有 4种情况 :在 1m深度范围内随深度增加而增加 ;随深度增加而减少 ;随深度增加而无明显变化 ;土壤剖面中某一土层固定态铵含量明显增加或减少 .土壤固定态铵含量占土壤全N百分比随深度增加而恒增大 .土壤对NH+ 4的固定作用在 30℃下最强 ,高于 2 0℃和 40℃ ;长期淹水有利于潮沙泥、紫泥田和河沙泥对NH+ 4的固定作用 ,但干湿交替有利于黄泥田对NH+ 4的固定作用 .相关分析表明 ,土壤固定态铵含量仅与 <0 .0 1mm粘粒含量呈P0 .0 5水平的显著正相关 ,与有机质、全N、有机N和 <0 .0 0 1mm粘粒含量的相关性均不显著  相似文献   

6.
依托长期定位试验(包括6个施肥处理:CK,不施肥;M,施循环猪圈肥;NP,施N、P化肥;NPK,施N、P、K化肥;NPK+M,N、P、K化肥+循环猪圈肥;PK,施P、K化肥),研究了不同施肥制度对下辽河平原地区潮棕壤固定态铵含量的影响及其变化过程。结果表明:随着种植时间推移,不同施肥模式下固定态铵含量均呈先降低而后逐渐稳定的趋势。与试验初期固定态铵含量相比,试验进行22年后,不同施肥处理固定态铵有18.0%~38.7%的释放。施用氮肥会导致土壤固定态铵含量降低;钾肥则能阻碍固定态铵释放,延缓其降低过程;单纯施用循环猪圈肥对固定态铵含量无显著影响;而施用N、P、K化肥基础上配施循环猪圈肥不仅可提高作物产量,且可使土壤固定态铵库保持在较高水平,有利于构建土壤氮素养分库,应为本地区旱田农业生产中的最佳施肥模式。  相似文献   

7.
以湖南省稻田土壤肥力监测点为基础,研究了稻田生态系统土壤微生物量碳、氮的特性.结果表明,不同施肥措施对不同地域和母质发育的稻田生态系统土壤微生物量碳、氮的影响程度不同.经过18年的不同施肥处理,不同母质发育的稻田生态系统土壤微生物量碳、氮的变化趋势基本一致,变化顺序为湖积物发育的水稻土>河流冲积物和第四纪红土发育的水稻土>石灰岩发育的水稻土>板页岩发育的水稻土.土壤微生物量碳为259.5~864.4 mg·kg-1,土壤微生物量氮为8.7~70.7 mg·kg-1.施肥可以明显提高稻田生态系统土壤微生物量碳、氮含量;有机肥是改善土壤微生物量碳、氮的主要基础物质,但以有机无机配合施用效果最好.与对照相比,施化肥和有机无机配施处理土壤微生物量碳、氮最大增量分别为407.6和59.2 mg·kg-1,最大增长率分别为102.8%和514.8%.  相似文献   

8.
以南粳44为供试材料,在粘土和砂土土壤中,设置麦秸秆不还田和全量还田(6000kg·hm-2)及3种施氮量(0、225、300 kg·hm-2)试验,研究了麦秸秆全量还田的腐解率和有机碳释放量动态变化,及其对稻田0~45 cm土壤溶解有机碳(DOC)含量和水稻产量的影响.结果表明:麦秸秆还田的前期(0~30 d)其腐解率和有机碳释放量最高,腐解率为35.0%(粘土)和31.7%(砂土),有机碳释放率为34.1%(粘土)和33.1%(砂土);30 d后两者均减小.施用氮肥可显著促进秸秆腐解和有机碳释放量,粘土中麦秸秆腐解率和有机碳释放量明显大于砂土.麦秸秆还田后土壤DOC含量逐渐增加,至25 d达最大值,粘土和砂土分别为60.18和56.62 mg·L-1,此后逐渐减小并趋于稳定.麦秸秆还田处理15 cm处土壤DOC含量显著高于未还田处理,但两者在30和45 cm处土壤DOC含量差异不显著,说明秸秆还田主要增加了稻田0~15 cm土层DOC含量.与不施氮处理相比,施氮处理土壤DOC含量降低,2种施氮处理间差异不显著.秸秆还田减少了水稻前期分蘖发生量,显著降低了有效穗数,增加了穗粒数、结实率和千粒重,显著提高了水稻产量.  相似文献   

9.
长期施用含硫和含氯化肥对稻田杂草生长动态的影响   总被引:1,自引:0,他引:1  
Shen P  Gao JS  Xu MG  Li DC  Niu DK  Qin DZ 《应用生态学报》2011,22(4):992-998
利用湖南祁阳红壤稻田长期定位试验,研究了在等量氮磷钾养分条件下,长期施用含Cl-、SO2-4和Cl-+SO2-4化肥水稻生育期间杂草种类和生物量的变化.结果表明:施肥34年后,施用含Cl-化肥处理水稻生育期间杂草的种类最多、总生物量(浮生杂草和湿生杂草的生物量之和)最大,早稻期间杂草平均总干物质量分别比含SO2-4和Cl-+SO2-4化肥处理增加了51.4%和17.6%,晚稻期间分别增加了144%和242%.含SO2-4和Cl-+SO2-4化肥处理稻田中浮生杂草生物量较大,而含Cl-化肥处理田间几乎没有浮生杂草生长.杂草总干物质量和湿生杂草干物质量均与土壤Cl-含量呈显著正相关(相关系数分别为0.764**和0.948**),与土壤SO2-4-S含量呈显著负相关(相关系数分别为0.849**和0.641*).土壤碱解氮和有效磷受土壤SO2-4-S、Cl-及pH的共同作用对杂草总干物质量产生影响.通过各种施肥措施维持土壤适宜pH及碱解氮、有效磷含量,提高土壤SO2-4-S含量、降低Cl-含量,能有效抑制南方红壤稻田中湿生杂草的生长,降低杂草总生物量.  相似文献   

10.
以南粳44为供试材料,在粘土和砂土土壤中,设置麦秸秆不还田和全量还田(6000 kg·hm-2)及3种施氮量(0、225、300 kg·hm-2)试验,研究了麦秸秆全量还田的腐解率和有机碳释放量动态变化,及其对稻田0~45 cm土壤溶解有机碳(DOC)含量和水稻产量的影响.结果表明: 麦秸秆还田的前期(0~30 d)其腐解率和有机碳释放量最高,腐解率为35.0%(粘土)和31.7%(砂土),有机碳释放率为34.1%(粘土)和33.1%(砂土);30 d后两者均减小.施用氮肥可显著促进秸秆腐解和有机碳释放量,粘土中麦秸秆腐解率和有机碳释放量明显大于砂土.麦秸秆还田后土壤DOC含量逐渐增加,至25 d达最大值,粘土和砂土分别为60.18和56.62 mg·L-1,此后逐渐减小并趋于稳定.麦秸秆还田处理15 cm处土壤DOC含量显著高于未还田处理,但两者在30和45 cm处土壤DOC含量差异不显著,说明秸秆还田主要增加了稻田0~15 cm土层DOC含量.与不施氮处理相比,施氮处理土壤DOC含量降低,2种施氮处理间差异不显著.秸秆还田减少了水稻前期分蘖发生量,显著降低了有效穗数,增加了穗粒数、结实率和千粒重,显著提高了水稻产量.  相似文献   

11.
Summary A pot experiment was carried out using a Bangladesh sandy loam paddy soil of pH 6.9 to compare the rates at which nitrogen from Azolla and ammonium sulphate was available to a high yielding rice variety, IR8, grown for 60 days in pots with 4 cm standing flood water.15N tracer studies confirm that nitrogen from ammonium sulphate was more available to the rice plants than from Azolla. An application of 6, 9 and 18 mg N of Azolla pot–1 (each pot contained 250 g soil) increased shoot dry matter yields by 13, 29 and 49% for an uptake of 19, 36 and 85% more nitrogen; the corresponding increases on using ammonium sulphate were 33, 54 and 114% for an increased uptake of 57, 90 and 177% more nitrogen, respectively. About 34% of applied15N of Azolla was taken up by the rice plants in 60 days but 61% of15N of the ammonium sulphate was absorbed during this period. About 45% of the Azolla-N was released in 60 days, 55% remained in the soils as undecomposed material and 11% was lost as gas. The gaseous loss of15N from ammonium sulphate was 14%; 25% remained in the soils.  相似文献   

12.
水分管理模式对水稻吸收累积镉的影响及其作用机理   总被引:30,自引:1,他引:29  
利用盆栽试验研究了不同水分管理模式(全生育期淹水,WF;分蘖期晒田,TP;乳熟期晒田,MP;分蘖-乳熟期两次晒田,TMP;湿润灌溉,WI)对Cd污染红黄泥和潮泥田水稻吸收累积Cd的影响.结果表明:两种土壤Fe2+含量均以WF处理最高,TMP处理最低;潮泥田和红黄泥WF处理的Fe2+含量分别比TMP增加了585.4%和1316.3%(P<0.01).不同处理的两种土壤有效S和有效态Cd含量顺序均表现为:WF2+和有效S含量变化对两种Cd污染土壤水稻吸收累积Cd产生显著影响,其中有效S的影响程度显著大于Fe2+.  相似文献   

13.
The differences in rhizosphere nitrification activities between high- and low- fertility soils appear to be related to differences in dissolved oxygen concentrations in the soil, implying a relationship to differences in the radial oxygen loss (ROL) of rice roots in these soils. A miniaturised Clark-type oxygen microelectrode system was used to determine rice root ROL and the rhizosphere oxygen profile, and rhizosphere nitrification activity was studied using a short-term nitrification activity assay. Rice planting significantly altered the oxygen cycling in the water-soil system due to rice root ROL. Although the oxygen content in control high-fertility soil (without rice plants) was lower than that in control low-fertility soil, high rice root ROL significantly improved the rhizosphere oxygen concentration in the high-fertility soil. High soil fertility improved the rice root growth and root porosity as well as rice root ROL, resulting in enhanced rhizosphere nitrification. High fertility also increased the content of nitrification-induced nitrate in the rhizosphere, resulting in enhanced ammonium uptake and assimilation in the rice. Although high ammonium pools in the high-fertility soil increased rhizosphere nitrification, rice root ROL might also contribute to rhizosphere nitrification improvement. This study provides new insights into the reasons that an increase in soil fertility may enhance the growth of rice. Our results suggest that an amendment of the fertiliser used in nutrient- and nitrification-poor paddy soils in the red soil regions of China may significantly promote rice growth and rice N nutrition.  相似文献   

14.
Fixed ammonium in Libyan soils and its availability to barley seedlings   总被引:4,自引:0,他引:4  
Summary Native fixed ammonium nitrogen and fixation of added ammonium nitrogen were studied in soil profile samples of three Libyan soils. The availability of both forms of fixed ammonium N to barley seedlings was investigated using surface soil samples under pot culture.All soils contained native fixed ammonium N which ranged from 9.26 to 10.36 mg/100 g soil. Fixation of added ammonium N was of the order of 5.10 mg/100 g for surface soils and 5.26 mg/100g for sub-surface soils. Fixation increased with profile depth.It was found that 38 percent of the soil total fixed ammonium N and 70 percent of the soil KOBr extractable N were available to barley seedlings. An equation representing the uptake of N from these two sources was established and their contribution to plant content of N was calculated.  相似文献   

15.
用渗漏池模拟洞庭湖区2种主要稻田土壤(河沙泥和紫潮泥),研究了施用尿素(CF)和控释氮肥(CRNF)对双季稻田表面水pH、电导率(EC)、全氮(TN)、铵态氮(NH4+-N)和硝态氮(NO3--N)浓度变化规律及TN径流损失的影响.结果表明,双季稻田施用尿素后,表面水TN、NH4+-N浓度分别在第1、3天达到高峰,然后迅速下降;NO3--N浓度普遍很低;早稻表面水pH在施用尿素后15 d内(晚稻3 d)逐渐升高;EC与NH4+动态变化一致.与尿素相比,施用CRNF能显著降低双季稻田表面水pH、EC、TN和NH4+-N浓度,70% N控释氮肥的控制效果最显著;但后期NO3--N浓度略有升高.径流监测结果表明,洞庭湖区种植双季稻期间施用尿素的TN径流损失为7.70 kg·hm-2,占施氮量的2.57%;施肥后20 d内发生的径流事件对双季稻田TN径流损失的贡献极为显著;与施用尿素相比,施用控释氮肥显著降低了施肥后10 d内发生的第1次径流液中的TN浓度,施用CRNF和70%N CRNF的氮素径流损失分别降低24.5%和27.2%.  相似文献   

16.
Seng  Vang  Bell  R.W.  Willett  I.R.  Nesbitt  <<>H.J. 《Plant and Soil》1999,207(2):121-132
In the rainfed lowlands, temporary loss of soil-water saturation during crop growth is a common factor limiting rice (Oryza sativa L.) yield but its effects on phosphorus (P) availability are poorly understood. Rice plants were transplanted into pots containing soils that were either continuously flooded, maintained at field capacity or flooded and then dried to field capacity for 3 weeks during the vegetative stage. A black clay soil (Kandic Plinthaquult) and a sandy soil (Plinthustalf) from south-east Cambodia were compared with or without amendments by rice straw and P fertilizer. Under continuously flooded conditions, the growth of rice was vigorous without straw addition and there was a strong response of rice growth to the addition of P fertilizer. The soil underwent reduction, which increased pH from 4.2 to 5.5 or 6.0, in the black clay or sandy soil, respectively. By contrast, a loss of soil-water saturation 3 weeks before panicle initiation (PI) markedly impaired the growth of rice. This was not through any effect of water stress, and the growth reductions were not as strong as with continued loss of soil-water saturation from transplanting to PI. Fluctuations in soil pH and Eh corresponded closely to changes in soil-water regimes. Growth reductions were attributed to reduced shoot P levels resulting from the decline in P availability during the loss of soil-water saturation. The addition of rice straw stimulated soil reduction and lessened changes in soil pH and Eh during the loss of soil-water saturation in both soils. Straw addition enhanced P uptake by the rice plants during loss of soil-water saturation, but its beneficial effects could not be attributed to the direct addition of P, N or K to the soils. Thus the application of rice straw may be effective in lessening the effects of temporary loss of soil-water saturation on rice growth in lowland rice soils by minimising the decline in P availability. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   

17.
以洞庭湖区2个典型水稻土(红黄泥和紫潮泥)为对象,研究了25℃、淹水培养条件下稻草-硫铵配施和单施硫铵处理土壤微生物生物量碳、氮(SMBC、SMBN)和可溶性有机碳、氦(SDOC、SDON)的动态变化.结果表明,SMBC、SMBN和SDOC、SDON在培养前期达到峰值,之后降低,并趋于稳定.添加底物后,2种土壤不同处理土壤微生物生物量碳与有机碳(SMBC/TC)和土壤微生物生物量氮与全氮(SMBN/TN)的平均值都在2%-3%之间变化;可溶性碳与全碳(SDOC/TC)的平均值为1%左右,可溶性氮与全氮(SDON/TN)平均值为5%-6%.2种土壤中SMBC峰值单施硫铵处理最大,但与稻草-硫铵配施处理差异均不显著;SMBN、SDOC和SDON峰值稻草-硫铵配施最大.稻草.硫铵配施与单施硫铵处理中,低肥力红黄泥的SMBN、SDOC和SDON峰值差异显著;而高肥力紫潮泥SMBN和SDOC峰值差异不显著.前7d,SMBC/SMBN〈10;14d后,同一时刻单施硫铵处理SMBC/SMBN〉稻草.硫铵配施.不同处理的SDOC!SDON3d时最大.28d时最小.  相似文献   

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