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1.
免耕与留茬对土壤微生物量C、N及酶活性的影响   总被引:26,自引:0,他引:26  
孙建  刘苗  李立军  刘景辉  张星杰 《生态学报》2009,29(10):5508-5515
2005~2008年在内蒙古呼和浩特市清水河县进行定位试验,设免耕留低茬(NL)、免耕留高茬覆盖(NHS)和传统耕翻(T)3种耕作处理方式.结果表明:(1)免耕留高茬覆盖及免耕留低茬长期实施,能显著提高表层土壤有机质、全氮、全钾、碱解氮、速效磷和速效钾含量,且免耕留高茬覆盖处理比传统耕翻分别提高了11%、41%、22%、15%、29%、27%、13%;在测定各个时期内,土壤各营养指标含量整体趋势为NHS>NL>T.(2)免耕留高茬覆盖及免耕留低茬耕作方式有利于提高土壤微生物量C、N含量,在各测定时期均以免耕留高茬覆盖处理的土壤微生物量C、N含量最高,传统耕翻最低.与传统耕翻相比,免耕留高茬覆盖处理土壤微生物量C、N含量分别平均提高了69%、43%;测定各个时期,不同处理土壤生物量C、N含量均以7月份含量最高、5月份次之、10月份最低.(3)免耕留高茬覆盖及免耕留低茬处理土壤碱性磷酸酶、蔗糖酶、过氧化氢酶活性和脲酶活性高于传统耕翻,整个测定期内免耕留高茬覆盖处理4种酶平均活性,分别较传统耕翻增加了57%、82%、93%和25%;春季土壤酶活性开始增强,在7月份蔗糖酶、过氧化氢酶和脲酶活性达到最大值,而碱性磷酸酶的峰值出现在6月份.土壤微生物量C、N及土壤酶活性是评价土壤质量的重要因子.  相似文献   

2.
研究了不同耕作方式下土壤微生物量碳、氮、磷及玉米全生育期叶面积指数、株高和干物质积累量的动态变化,并对土壤指标与作物指标之间的关系进行分析.结果表明:免耕有利于提高土壤微生物量碳、氮、磷含量.不同处理微生物量均表现为:免耕留高茬覆盖>免耕留低茬覆盖>免耕留高茬>免耕留低茬>传统耕翻;土壤微生物量碳、氮、磷含量随土层深度的增加而呈降低趋势.除传统耕翻微生物量碳在10~20 cm土层深度含量提高外,其他处理微生物量碳、氮、磷均表现为0~10 cm>10~20 cm>20~30 cm>30~40cm土层深度;土壤生物量碳、氮、磷随季节的变化趋势基本一致,不同处理土壤生物量含量均为7月份含量最高、6月份次之、10月份最低;叶面积指数全生育期呈单峰曲线变化,株高和干物质积累呈S曲线变化.不同处理之间作物指标均表现为免耕留高茬覆盖>免耕留低茬覆盖>免耕留高茬>免耕留低茬>传统耕翻;土壤微生物量与作物指标之间的相关度较高,特别是微生物量磷,土壤微生物量在一定程度上可以反映作物的生长状况.研究结果能够很好地揭示在黄河流域内蒙古农田旱作区实施免耕的优势.
Abstract:
This paper studied the dynamic changes of soil microbial biomass and crop indices on a degraded rain-fed maize field in the Qingshuihe County of Inner Mongolia under no tillage with low stubble (NL), no tillage with high stubble (NH), no tillage with low stubble and residues (NLS), no tillage with high stubble and residues (NHS), and conventional tillage (CT). No tillage increased the soil microbial biomass C, N, and P, with the sequence of treatments NHS > NLS > NH > NL > CT. Except that the soil microbial biomass C in CT had an increase in 10-20 cm soil layer, the soil microbial biomass C, N, and P in all treatments decreased with soil depth. The soil microbial biomass C, N, and P had the same seasonal pattern, being the highest in July, secondly in June, and the lowest in October. The LAI in whole growth period varied in unimodal form, while the plant height and dry matter accumulation were in "S" form. All the crop indices followed the order of NHS > NLS > NH > NL > CT. Soil microbial biomass, its P in particular, had positive correlations with crop indices. Our results revealed the advantages of no tillage on rain-fed farmlands in Inner Mongolia.  相似文献   

3.
不同耕作方式对内蒙古旱作农田土壤水热状况的影响   总被引:6,自引:0,他引:6  
为了研究免耕留茬覆盖和传统耕作土壤水热状况的差异,20052008年在内蒙古呼和浩特市清水河县进行定位试验,结果表明:(1)免耕留茬覆盖能有效的调节土壤温度,出现高温时抑制温度上升,低温时抑制温度降低的现象;土壤温度24h变化的振幅随着土壤深度的增加呈现逐渐减小的趋势,表层010cm的变化幅度最大,变化范围为17.634℃;不同耕作方式的土壤温度均从09:00开始升高,至15:00达到最高值,之后缓慢下降,到06:00达到最低值;土壤温度随季节动态变化的趋势,受制于气候。(2)测定期内免耕留高茬覆盖平均土壤含水量较传统耕作增加了7.37%,免耕留低茬覆盖较传统耕作增加了5.93%;燕麦苗期,不同耕作方式的土壤含水量随土层深度增加,呈增大的态势。分蘖期,不同耕作方土壤含水量在020cm呈下降趋势,之后逐渐升高。燕麦花期,不同耕作方土壤含水量在040cm呈下降趋势,之后逐渐上升,至80100cm土层深度达到最大值;土壤含水量主要受季节影响,随降雨量变化而变化。(3)免耕留茬覆盖耕作方式增加土壤有机质和土壤含水量,其热容量增大,因此能调节和保持温度变化平缓。  相似文献   

4.
不同玉米秸秆还田方式对冬小麦田土壤呼吸的影响   总被引:10,自引:0,他引:10  
在连续耕作10年的保护性耕作农田进行定位试验,采用静态箱-TGC气体分析仪法田间原位观测玉米秸秆还田对冬小麦田土壤呼吸的影响.结果表明:麦田土壤呼吸与玉米秸秆留茬高度呈显著正相关关系,且在小麦整个生育期具有两个峰值;免耕不还田处理的土壤呼吸为免耕全量还田处理的72.5%,常规耕作不还田处理的土壤呼吸为常规耕作全量还田处理的76.5%.土壤呼吸与20 cm土层土壤温度和有机碳含量呈显著正相关,但与40 cm土层土壤有机碳含量相关性不显著;土壤水分与土壤呼吸的相关性显著.麦田秸秆全量还田处理的土壤日呼吸值呈单峰曲线,于18:00达到最高.20 cm土层土壤温度与土壤呼吸值的变化趋势一致.不同秸秆还田量处理中,留茬1 m的秸秆还田处理能显著减少土壤呼吸,是较合理的秸秆还田方式.  相似文献   

5.
不同耕作方式下草甸栗钙土燕麦田土壤微生物特征   总被引:2,自引:1,他引:1  
河北坝上地区高寒半干旱的独特生态环境,土地沙化风蚀严重,作物产量低,土壤微生物的活动尚未有深入研究,尤其是人为干扰下的土壤微生物在作物生长季的动态变化。为了明确耕作方式对草甸栗钙土土壤微生物性状的影响特征,依托定位12a的免耕、深松、常规耕作田间试验基础,通过辅助设置12a免耕、深松后的翻耕处理,监测了燕麦田土壤微生物量碳、活跃微生物量和土壤呼吸速率等性状。结果表明,土壤微生物量碳与活跃微生物量围绕燕麦抽穗期为"W型"时序变化,长期免耕与深松下呈现0—10 cm表层土壤富集微生物量碳的空间分布特征。免耕与深松有利于提高0—10 cm土层土壤微生物量,多年免耕和深松后翻耕能使土层间土壤活跃微生物量差异减小。燕麦田土壤呼吸速率呈现"U型"时序变化,免耕0—10 cm土层呼吸速率具有较其他耕作方式更高的趋势。在燕麦生育期内,土壤呼吸商一直处于较低而平稳的水平,燕麦收获后进入土壤微生物的高活性期;0—10 cm土层翻耕与多年免耕与深松后的翻耕处理土壤呼吸商有高于免耕处理的趋势。翻耕对于促进冷凉区土壤库存养分的活化与适时供应具有重要作用。  相似文献   

6.
基于农户认知的保护性耕作模式产量效应模糊数学分析   总被引:1,自引:0,他引:1  
为了从产量角度评价不同生态区主体保护性耕作模式,以东北平原、华北平原、成都平原、西北绿洲区不同耕作模式为研究对象.经过专家咨询和相关文献分析,筛选确定7个因素作为保护性耕作影响产量的指标集,通过农户一对一调查,将农户对影响产量因素的认知作为基础数据,运用模糊综合评价方法对不同生态区主体保护性耕作模式进行评价.结果显示:不同生态区得分最高的模式分别为东北平原宽窄行留高茬交替休闲种植模式;华北平原上茬玉米秸秆还田+旋耕播种小麦,下茬小麦秸秆还田+免耕直播玉米模式;西北绿洲留高茬免耕直播模式;成都平原小麦或油菜或马铃薯等免耕+稻草覆盖模式.为选择各地具有产量优势的保护性耕作模式提供参考.  相似文献   

7.
以陇东黄土旱塬已进行7年的田间定位试验为基础,分析了免耕和传统耕作条件下5个施肥处理冬小麦收获期土壤水分、土壤容重(2011年)及土壤养分和产量(2005-2011年)变化,探讨了耕作方式和施肥对冬小麦-春玉米轮作农田土壤蓄水保墒效果及土壤肥力和产量的影响.结果表明:2011年免耕条件下0~ 200 cm各土层土壤含水量、0~ 20 cm和20~40 cm土层土壤容重及土壤有机质、速效氮、速效磷含量均高于传统耕作.相同耕作条件下氮磷化肥与有机肥配施处理的土壤有机质、速效氮、速效磷含量高于其他施肥处理;不同耕作方式及施肥处理下速效钾呈逐年减少的趋势;传统翻耕处理的产量高于免耕,相同耕作条件下氮磷化肥与有机肥配施处理产量最高,不施肥对照产量最低.不同耕作方式和施肥处理的土壤蓄水保墒能力和肥力效应以免耕优于传统翻耕,产量以传统翻耕下有机无机肥配施处理最好.  相似文献   

8.
为探究免耕和不同秸秆覆盖量下土壤微生物群落组成及残留物的变化规律,依托中国东北黑土区的玉米保护性耕作长期平台(始建于2007年),以传统耕作(翻耕+无秸秆还田)为对照(CT),对免耕结合不同秸秆覆盖量[免耕+无秸秆还田(NT0)、免耕+1/3秸秆覆盖还田(NT1/3)、免耕+2/3秸秆覆盖还田(NT2/3)和免耕+全量秸秆覆盖还田(NT3/3)]下不同土层(0~5、5~10、10~20 cm)土壤理化性质、磷脂脂肪酸和氨基糖的变化特征进行分析。结果表明:与CT相比,免耕无秸秆还田处理(NT0)对土壤有机碳(SOC)、全氮(TN)、可溶性有机碳(DOC)、可溶性有机氮(DON)、含水量、微生物群落及其残留物等均无显著影响;免耕结合秸秆覆盖还田主要影响了土壤表层各指标,与CT相比,0~5 cm土层中NT1/3、NT2/3、NT3/3处理SOC含量分别显著提高了27.2%、34.1%、35.6%,NT2/3和NT3/3处理磷脂脂肪酸含量分别显著提高了39.2%和65.0%,NT3/3处理氨基糖含量(微生物残留物)显著提高了47.2%;免耕不同秸秆覆盖量的土壤理化性质和微生物群落差异随土壤深度...  相似文献   

9.
耕作措施对土壤水热特性和微生物生物量碳的影响   总被引:10,自引:0,他引:10  
庞绪  何文清  严昌荣  刘恩科  刘爽  殷涛 《生态学报》2013,33(4):1308-1316
通过山西寿阳设置的8a田间定位试验,比较了全量秸秆还田、免耕覆盖和常规耕作3种耕作措施下土壤含水量、温度及土壤微生物生物量碳变化.结果表明:免耕覆盖与全量还田处理显著提高土壤含水量,与常规耕作相比表层土壤体积含水量在玉米苗期、拔节期、灌浆期和成熟期分别高出18%、22%、29%、21%和3%、10%、12%、13%,具有保水保墒的作用.在苗期不同耕作措施对土壤温度的影响达到显著水平,5 cm处免耕覆盖、全量还田与常规耕作处理土壤温度依次为:18.12、18.76和19.44℃,免耕覆盖和全量还田处理平均温度比常规耕作分别低1.32℃和0.69℃.土壤微生物量碳在整个生育期动态变化是首先迅速上升在玉米生育高峰期(拔节期)达到最高峰,然后开始下降,成熟期趋于平缓.免耕覆盖与全量还田处理下玉米各生育期土壤表层微生物量碳显著高于常规耕作,在苗期、拔节期、灌浆期和成熟期分别比常规耕作高出70%、40%、85%和30%和10%、20%、15%和15%.土壤微生物量碳与土壤温度和土壤含水量相关和极相关.  相似文献   

10.
保护性耕作对土壤微生物量及活性的影响   总被引:23,自引:0,他引:23  
研究保护性耕作对土壤微生物特性的影响对于土壤管理具有重要意义。试验研究了保护性耕作对麦田土壤微生物量碳、活跃微生物量、土壤呼吸、呼吸商的影响。前3项采用的方法分别是:基质诱导呼吸法、呼吸曲线数学分析法和CO2释放量法。结果表明,保护性耕作土壤微生物量碳0~10cm土层大于10~20cm土层,而常规耕作两土层间无明显差异。秸秆还田在播种前、越冬期和起身期能显著提高土壤微生物量碳,而开花期和收获期则降低土壤微生物量碳。少耕还田10~20cm土层微生物具有较强的养分调控作用。保护性耕作利于0~10cm土层活跃微生物量的提高。秸秆还田和保护性耕作在耕作作业初期(越冬期和起身期)能增强土壤呼吸速率;在耕作作业后期(开花期和收获期)能显著降低土壤呼吸速率。免耕秸秆覆盖在10~20cm土层呼吸商较高,而常规耕作无秸秆还田在0~10cm土层呼吸商较高。土壤微生物量碳和呼吸商是衡量土壤微生物特性的重要指标。  相似文献   

11.
通过田间试验分析了玉米根茬留田对土壤生物活性动态变化的影响,结果表明,玉米根茬留田对提高土壤微生物量碳含量和土壤脲酶、磷酸酶、纤维素酶以及转化酶活性效果显著。动态变化特征表明,各处理的土壤微生物量碳和4种酶活性均在播种后60d左右出现高峰。此时正值作物生育旺盛时期,利于作物生长发育,说明玉米根茬留田配施化肥的培肥土壤效果显著,而且可以保持玉米持续高产稳产。  相似文献   

12.
Soil microbiological and chemical aspects were evaluated to determine the effects of conservation tillage and crop rotation on soil fertility over a 16-year period. A field trial was established to compare two cropping systems (continuous soybean and maize/soybean, soybean/maize rotation). In addition, maize (Zea mays L.) and soybean (Glycine max L., Merr) were grown in two different tillage systems: no tillage and reduced tillage. Soil populations of Trichoderma spp., Gliocladium spp. and total fungi were more abundant when maize or soybean were under conservation tillage and in the maize/soybean and soybean/maize rotation, than in continuous soybean. Furthermore, higher levels of microbial respiration and fluorescein diacetate hydrolysis (FDA), were recorded under no tillage systems. However, soil counts of Actinomycetes and Pythium spp., and Pythium diversity together with soil microbial biomass were not affected by the field treatments. To establish a correlation with soil biological factors, soil chemical parameters, such as pH, organic matter content, total N, electrical conductivity, N–NO3 and P were also quantified, most of the correlations being significantly positive. Under no tillage there was a clear increase of the amount of crop residues and the C and N soil content due to the presence of residues. Also the distribution of crop residues in surface soil due to zero tillage and the quality of these residues, depending on the crop rotation employed, improved on soil biological and chemical characteristics. Crop yield was also enhanced by zero tillage through the management of residues. Although yield values were not directly associated with the development of microorganisms, both yield and microorganisms were influenced by crop management. These results suggest that measuring soil properties over a long period helps to define effective management strategies in order to preserve soil conditions.  相似文献   

13.
为探明保护性耕作对蔗田土壤及甘蔗生长的影响,该研究设置2种耕作方式(常规耕作、粉垄耕作)与2种施肥水平(减量施肥20%、常规施肥),并于甘蔗苗期后在甘蔗行间近根部覆盖豆科秸秆,以第二年宿根蔗为研究对象,采用染色示踪法测定秸秆覆盖下蔗田土壤优先流特征,同时测定分析甘蔗株高、茎围、地下根系生物量、产量及品质等重要农艺性状。结果表明:(1)粉垄耕作方式下蔗田土壤优先流发生速度快且活跃,添加秸秆覆盖降低了土壤优先流发生程度,增加了土壤水分在10~25 cm土层的横向运移能力,在一定程度上提高了土壤蓄水能力。(2)粉垄保护性耕作在秸秆覆盖下提高了甘蔗根系生物量和产量,秸秆覆盖下粉垄免耕宿根蔗根系生物量提高了8.97%~25.54%,并且减量施肥处理中秸秆覆盖宿根蔗伸长期地下根系生物量显著高于无秸秆覆盖,秸秆覆盖下甘蔗株高提高了4.2%~13.1%; 在减量施肥处理中,粉垄耕作添加秸秆覆盖甘蔗产量提高了16.27%,并且添加秸秆覆盖较常规施肥中无秸秆覆盖,产量提高了5.95%。(3)粉垄保护性耕作利于提高甘蔗品质,对比无秸秆覆盖处理,粉垄耕作下秸秆覆盖后显著提高了甘蔗蔗汁视纯度,并且宿根蔗纤维分、蔗汁锤度、转光度和蔗糖分均有提升。综上认为,免耕秸秆覆盖可作为粉垄红壤坡耕地蔗田保护性生产调控方式。  相似文献   

14.
The objectives of this study were to explore the effects of long-term and continued application of fertilizers and manures on microbial biomass, soil biological activity and their seasonal variations in surface and subsurface soils in relation to soil fertility. For this, soils were sampled in spring, summer and autumn from Shenyang Long-term Experimental Station, northeastern China. The results showed that soil total nitrogen (N), organic carbon (C), basal respiration, microbial biomass and enzymatic activity increased in manure-amended surface soils, but decreased with soil depth. Long-term application of inorganic fertilizers significantly decreased soil pH value, sucrase activity and microbial biomass C, but increased soil metabolic quotient (qCO2). However, no significant effect of inorganic fertilizers on soil total N, urease activity and microbial biomass N was observed in comparison with CK0 (neither tillage nor fertilization) and CK (no fertilizers). There was no significant difference between CK0 and CK in soil total N, organic C and microbial activity in surface soil layer (0–20 cm), but these parameters in subsurface soil layer (20–40 cm) were higher in CK than in CK0. Moreover, seasonal changes were observed in terms of soil nutrient contents, enzymatic activity, microbial biomass and soil respiration. There were significant correlations between soil microbial biomass C and N, between organic C and sucrase activity and between total N and urease activity, respectively. It is recommended that combined use of organic manure with inorganic fertilizers should be considered to maintain higher microbial biomass, soil biological activity and soil fertility. Considering considerably high nutrients reserve and microbial activity in subsurface layers of soil and wind-erosion-caused nutrient loss in spring in north China, we also propose that low tillage should be considered to make use of nutrients in soils.  相似文献   

15.
The current cropping system of excessive tillage and stubble removal in the northwestern Loess Plateau of China is clearly unsustainable. A better understanding of tillage and stubble management on surface soil structure is vital for the development of effective soil conservation practices in the long term. Changes in surface soil structure and hydraulic properties were measured after 4 years of stubble management (stubble retained vs. stubble removed) under contrasting tillage practices (no-tillage vs. conventional tillage) in a silt loam soil (Los Orthic Entisol) in Dingxi, Gansu, the northwestern Loess Plateau, China. Our results indicated that after 4 years small but significant changes in soil properties were observed amongst the different tillage and stubble treatments. Surface soil (0–5 cm) under no-tillage with stubble retention had the highest water stability of macroaggregates (>250 μm), soil organic carbon (SOC) and saturated hydraulic conductivity. Significant correlation was found between water stable macro-aggregates and soil organic carbon content, indicating the importance of the latter on soil structural stability. The improvement in soil structure and stability was confirmed by higher soil hydraulic conductivity measurements. Consistently higher Ksat was detected in the no tillage with stubble retained soil compared to other treatments. Therefore, no-tillage with stubble retention practice is an effective management technique for improving physical quality of this fragile soil in the long term.  相似文献   

16.
秸秆覆盖免耕土壤细菌和真菌生物量与活性的研究   总被引:21,自引:0,他引:21       下载免费PDF全文
土壤微生物生物量在土壤生态系统中具有非常重要的作用。大量的试验研究表明 ,土壤微生物生物量是植物营养元素的一个重要的源与库 ,生物量对土壤养分的调控作用 ,已经成为土壤培肥、耕作制度改革和作物栽培实践中的重要理论依据之一。自从Jenkinson提出了测定土壤微生物量的原理和概念以来 ,Jenkinson和 Powlson提出了测定微生物生物量的方法[16] ,Van De Werf和 Verstraete提出了土壤微生物生物量可以分为全微生物量和活动微生物量[10 ] ,Anderson和 Domsch提出了生物量与生物活性中细菌与真菌的比例为 2 2 /78% [8]。虽然生物量的研…  相似文献   

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