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Crop Productivity and Resource Use Efficiency under Conservation Tillage in a Dry Land Spring Wheat-field Pea Rotation System

LIST OF FIGURE第6-8页
LIST OF TABLE第8-9页
摘要第9-11页
SUMMARY第11-12页
INTRODUCTION第13-16页
1 LITERATURE REVIEW第16-33页
    1.1 DEFINITION OF CONSERVATION TILLAGE第16-18页
        1.1.1 Stubble retention and crop residue mulch第16页
        1.1.2 No-till or minimum tillage第16页
        1.1.3 Conservation tillage第16-17页
        1.1.4 Conservation agriculture第17-18页
    1.2 HISTORY OF CONSERVATION TILLAGE第18-19页
    1.3 BENEFITS OF CONSERVATION TILLAGE ON CONTROL SOIL AND WATER EROSION第19-24页
        1.3.1 Conservation tillage effects on soil water conserving第20-21页
        1.3.2 Improving soil quality第21-23页
        1.3.3 Conservation tillage effects on soil and water erosion第23-24页
    1.4 SOIL TEMPERATURE AND CROP EARLY GROWTH UNDER CONSERVATION TILLAGE第24-26页
    1.5 CROP PRODUCTIVITY UNDER CONSERVATION TILLAGE第26-28页
    1.6 RESOURCES USE EFFICIENCY UNDER CONSERVATION TILLAGE第28-31页
        1.6.1 Water use efficiency第28-29页
        1.6.2 Nitrogen use efficiency第29-30页
        1.6.3 Profitability of conservation tillage第30-31页
    1.7 ADOPTION OF CONSERVATION TILLAGE第31-33页
2 MATERIALS AND METHODOLOGY第33-44页
    2.1 SITE DESCRIPTION第33-34页
    2.2 EXPERIMENTAL DESIGN第34-37页
    2.3 CROP MANAGEMENT第37-38页
        2.3.1 Sowing time and sowing rate第37页
        2.3.2 Crop harvest第37-38页
        2.3.3 Basal fertilizers第38页
        2.3.4 Weeds and diseases management第38页
    2.4 MEASUREMENTS第38-42页
        2.4.1 Weather data collection第38-39页
        2.4.2 Crop measurements第39页
        2.4.3 Plant chemical analysis and methods第39页
        2.4.4 Nitrogen fixation of field pea第39-40页
        2.4.5 Soil measurements第40-42页
    2.5 CALCULATION FOR RESOURCE USE EFFICIENCY第42-43页
        2.5.1 Evapotranspiration (ET)第42页
        2.5.2 Water use efficiency (WUE)第42页
        2.5.3 Nitrogen use efficiency (NUE)第42页
        2.5.4 Nitrogen balance第42-43页
    2.6 STATISTICAL ANALYSIS第43-44页
3 CONSERVATION TILLAGE EFFECTS ON SOIL TEMPERATURE IN SPRING WHEAT FIELD第44-58页
    3.1 AIR TEMPERATURE CHARACTERISTICS第44-46页
        3.1.1 Solar radiation第44-45页
        3.1.2 Long-term maximum and minimum air temperature第45-46页
        3.1.3 Monthly air temperature in research period第46页
    3.2 SOIL TEMPERATURE AT A SUNNY OR CLOUDY DAY第46-51页
    3.3 SOIL TEMPERATURE DURING CROP GROWING SEASON第51-55页
    3.4 SOIL TEMPERATURE DURING FALLOW第55-58页
4 SOIL WATER DYNAMICS UNDER CONSERVATION TILLAGE第58-78页
    4.1 RAINFALL IN THE RESEARCH PERIOD第58-59页
    4.2 SOIL WATER CHARACTERISTICS第59-64页
        4.2.1 Drainage Upper Limit (DUL)第59-60页
        4.2.2 Crop lower Limit (CLL)第60-61页
        4.2.3 Plant available water content (PAWC)第61-64页
    4.3 VERTICAL SOIL WATER PROFILE第64-70页
        4.3.1 Soil water profile at sowing第64-66页
        4.3.2 Soil water profile at anthesis第66-68页
        4.3.3 Soil water profile at maturity第68-70页
    4.4 SEASONAL SOIL WATER DYNAMICS第70-72页
    4.5 EVAPOTRANSPIRATION (ET) IN CROP GROWING SEASONS第72-74页
    4.6 CROPS’WATER CONSUMPTION DYNAMICS AT DIFFERENT PHENOLOGY第74-78页
        4.6.1 Water consumption of spring wheat第74页
        4.6.2 Water consumption of field pea第74-78页
5 CROP PRODUCTIVITY OF SPRING WHEAT – FIELD PEA ROTATION UNDER CONSERVATION TILLAGE第78-100页
    5.1 STATISTIC ANALYSIS RESULTS第78-80页
    5.2 PHENOLOGICAL DEVELOPMENT第80-84页
        5.2.1 Field pea第80-81页
        5.2.2 Spring wheat第81-84页
    5.3 CROP ESTABLISHMENT第84-87页
    5.4 DRY MATTER PRODUCTION第87-91页
        5.4.1 Dry matter at seedling第87-88页
        5.4.2 Dry matter at anthesis第88-89页
        5.4.3 Dry matter at maturity第89-91页
    5.5 GRAIN YIELD第91-94页
    5.6 HARVEST INDEX (HI)第94-95页
    5.7 1000 GRAIN WEIGHT (1000GWT)第95-97页
    5.8 GRAIN PROTEIN CONTENT (PROTEIN%)第97-100页
6 RESOURCES USE EFFICIENCY OF DIFFERENT CONSERVATION TILLAGE SYSTEMS第100-112页
    6.1 WATER USE EFFICIENCY (WUE)第100-102页
    6.2 NITROGEN FIXATION第102-103页
    6.3 NITROGEN FERTILIZER USE EFFICIENCY AND NITROGEN BALANCE第103-107页
        6.3.1 Nitrogen use efficiency of spring wheat第103-104页
        6.3.2 Nitrogen balance第104-107页
    6.4 PROFITABILITY OF DIFFERENT CONSERVATION TILLAGE SYSTEMS第107-112页
7 GENERAL DISCUSSION第112-119页
    7.1 EFFECT OF TILLAGE AND STUBBLE RETENTION ON GRAIN YIELD第112-113页
    7.2 EFFECT OF STUBBLE RETENTION ON SOIL TEMPERATURE第113-114页
    7.3 EFFECT OF SOIL WATER AVAILABILITY ON CROP PRODUCTION UNDER CONSERVATION TILLAGE第114-115页
    7.4 EFFECT OF TILLAGE AND STUBBLE RETENTION ON WATER USE EFFICIENCY AND    NITROGEN USE EFFICIENCY第115页
    7.5 HARMONY BETWEEN SOIL WATER AND TEMPERATURE CAN BE IMPROVED BY NO-TILL WITH STUBBLE RETENTION第115-116页
    7.6 NO-TILL WITH STUBBLE RETENTION IS ONE OF THE MOST PROFITABLE PRACTICE FOR THE WESTERN LOESS PLATEAU第116-119页
REFERENCES第119-133页
作者简介第133-134页
导师简介第134-135页
攻读博士学位期间发表的论文和科研成果第135-137页

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