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1.
不同施肥条件下玉米田土壤养分淋溶规律的原位研究   总被引:13,自引:0,他引:13  
利用排水采集器法结合田间原位试验,研究了夏玉米不同施肥处理对棕壤土养分淋失的影响.结果表明:在夏玉米生长期内,影响玉米田土壤水分淋溶的主要因素是大量降雨和灌溉,夏玉米生长前期的土壤淋溶水量较大,但随夏玉米生育进程的推进而递减,各处理差异也逐渐减小;与施氮肥处理相比,秸秆还田配施氮肥处理可加剧土壤水淋溶.在夏玉米生长期内,施肥处理的土壤淋溶水硝态氮浓度均呈"双峰"曲线变化趋势,而铵态氮浓度则呈先升后降的变化趋势.玉米田土壤氮素淋失以硝态氮形式为主,其累计淋失量为12.90~46.53 kg·hm-2,铵态氮的累计淋仅为1.66~5.11 kg·hm-2,两种形态氮的淋失量都随施氮量的增加而升高.秸秆还田配施氮肥处理的氮素淋失率比单施氮肥处理高6.53%~13.07%,低氮处理的氮素淋失率比高氮处理高3.66%~10.10%;玉米田土壤速效磷的累计淋失量较小,仅为0.148~0.235 kg·hm-2,而速效钾的累计淋失量较大,为7.08~13.00 kg·hm-2.在夏玉米生长后期,秸秆还田配施氮肥处理使土壤速效磷淋失量升高,并可加剧土壤速效钾的淋失,而单施氮肥处理作用不明显.  相似文献   

2.
为了明确太湖地区高产稻田适宜施氮量,以提高水稻氮素利用效率,减少稻田氮素流失对农业生态环境的影响,本研究在调查当地农户稻田氮肥施用量的基础上,通过秸秆还田和基肥机械深施,设置不施氮肥(N0)为空白对照,当地习惯施氮水平360 kg·hm-2(N1),以及在此基础上减少氮肥施用量的10%(N2)、20%(N3)、30%(N4)等5个处理,研究其对水稻氮素利用率的影响。结果表明:氮肥减量使水稻不同生育时期稻田土壤速效氮含量明显下降;在当地习惯施氮量水平的基础上,减少10%的氮肥施用量,使水稻产量增加1.9%;与当地习惯施氮量水平相比较,N2处理水稻氮素累积量差异不明显,N3和N4处理则表现为显著下降;随着氮肥减量幅度的增加,水稻氮素籽粒生产效率逐渐增高;在当地习惯施氮量水平的基础上,通过基肥机械深施和秸秆还田等技术的应用,减少10%的氮肥施用量,能够保证水稻高产稳产,并使水稻氮肥农学利用率、氮肥吸收利用率、生理利用率以及氮肥偏生产力均得到明显提高。  相似文献   

3.
李玮  乔玉强  陈欢  曹承富  杜世州  赵竹 《生态学报》2014,34(17):5052-5061
通过安徽省蒙城县砂姜黑土上连续4a的冬小麦-夏玉米连作长期定位试验,研究了秸秆还田配合施用不同量氮肥对土壤理化性质及作物产量的影响。结果表明,秸秆还田可降低土壤容重2.5%—9.2%,提高含水量8.2%—28.5%和表层土壤贮水量4.1%—19.9%;增加土壤总孔隙度1.1%—8.9%、毛管孔隙度18.9%—41.0%,非毛管孔隙度降低6.4%—38.8%,土壤毛管孔隙度占土壤总孔隙度的比例增加。秸秆还田所有处理耕层的土壤硝态氮含量高于秸秆移除处理,施氮540、630、720 kg N hm-2a-1时,秸秆还田处理的硝态氮含量显著高于秸秆移除,而铵态氮含量无明显变化规律。无论秸秆还田还是秸秆移除,耕层土壤的硝态氮含量随氮肥用量的增加呈指数趋势增加,硝态氮含量与施氮量的相关性秸秆移除处理高于秸秆还田处理;秸秆还田处理的铵态氮含量随施氮量增加成指数趋势增加,而秸秆移除处理呈指数趋势减小,相关性均不显著。秸秆还田条件下,小麦和玉米获得高产的年氮肥用量分别为630、696 kg N hm-2a-1,秸秆移除为579、627 kg N hm-2a-1。经作用力分析,秸秆还田是影响土壤物理性质的最重要因素,作物产量受秸秆还田和施氮量的影响,但氮肥水平大于秸秆还田。  相似文献   

4.
采用尼龙网袋法于2007-2008年连续2a在水稻常规栽培和节水灌溉栽培模式下,研究小麦秸秆腐解特征、养分释放规律及对土壤微生物数量、酶活性和养分状况的影响.结果表明:秸秆还田后,在0-30d腐解较快,后期腐解速率逐渐变慢.90d时累计腐解率达到了48.9%-61.3%.秸秆中养分释放速率表现为K>P>N≈C.节水栽培模式下小麦秸秆还田腐解率和养分释放率均显著高于常规栽培.秸秆还田后,土壤微生物数量以及土壤脲酶、碱性磷酸酶和蔗糖酶活性均呈现“前期迅速增加,中期急剧减少,后期缓慢减少”的变化特征,而纤维素酶活性呈现“前期剧升、中期缓增、后期骤降”的变化趋势.小麦秸秆在节水栽培模式下还田土壤微生物数量和酶活性均显著高于常规栽培.适当增加秸秆用量可以提高微生物数量和酶活性,用量过高对细菌和放线菌数量有负效应.秸秆还田可显著提高土壤有机碳和养分含量.土壤有机碳、全氮、碱解氮和速效磷含量在整个试验期间均呈增加趋势.速效钾含量在秸秆还田30 d时达到最高,而后则逐渐降低.节水栽培模式下秸秆还田后土壤有机碳和养分含量的提高效应显著高于常规栽培.提高秸秆用量对土壤养分含量有显著的正效应.  相似文献   

5.
将 Bt 水稻 (b2B138)和常规水稻 (安丰 A)秸秆平铺在装有 20 cm 厚土壤的塑料面包箱上,并加入一定量的腐秆剂, 研究 Bt 水稻秸秆覆盖还田对土壤养分含量的影响 , 同时探讨腐秆剂在此过程中的作用。结果表明 , 与常规水稻秸秆还田相比 , 无论有无腐秆剂的加入, Bt 水稻秸秆还田 120 d 和 180 d 后均能显著增加土壤速效钾含量, 但无腐秆剂加入时, Bt 水稻秸秆还田 120 d 后土壤全氮含量明显下降, Bt 水稻秸秆还田对土壤有机质、碱解氮、速效磷、全磷和全钾含量则没有显著影响。腐秆剂的加入使得 Bt 水稻秸秆还田 120 d 后土壤速效钾含量明显提高, 常规水稻秸秆还田 180 d后土壤速效磷含量也显著提高, 对其他养分指标则没有明显影响。  相似文献   

6.
添加玉米残体对土壤-植物系统中氮素转化的影响   总被引:7,自引:0,他引:7  
采用盆栽试验和^15N示踪技术对黑土添加玉米残体(秸秆和根茬)土壤-植物系统中氮素转化进行了研究,结果表明,玉米残体还田能够增加土壤氮素含量,减轻因其作为燃烧材料而造成的氮素损失和对大气的污染,玉米残体施入土壤,增加了土壤微生物氮含量,提高土壤氮活性,有利于土壤氮素养分的协调供应,玉米残体配施氮肥与氮肥单施相比,玉米植株氮素累积量相近,但氮素在玉米植株不同器官中的分配比例不同;添加玉米残体能够促进氮素从营养器官向籽粒中转移,提高氮素养分的利用效率,同时,添加玉米残体还可以降低土壤NO^-3-N的累积,减少肥料氮的损失4.7%~5.6%。  相似文献   

7.
围绕宁夏扬黄灌区土壤质地黏重、养分匮乏等导致作物产量低的问题,于2017、2018年在秸秆全量粉碎还田(12000 kg·hm-2)的同时配施4个氮肥施用水平(0、150、300、450 kg N·hm-2),以秸秆不还田常规施氮(225 kg N·hm-2)为对照,研究秸秆还田配施不同量氮肥对滴灌玉米田土壤理化性状和产量的影响.结果表明: 与秸秆不还田处理相比,秸秆还田配施氮肥300和450 kg·hm-2处理0~20 cm土层平均土壤容重分别降低3.3%和5.4%,土壤孔隙度分别增加3.7%和7.1%;秸秆还田配施氮肥对土壤养分和玉米产量的提升效果显著,其中以秸秆还田配施氮肥300和450 kg·hm-2表现最佳;秸秆还田配施氮肥可显著增加土壤贮水量和产量,秸秆还田配施氮肥300 kg·hm-2处理在2017和2018年土壤贮水量最高可分别增加13.6%和22.1%,产量分别增加31.1%和46.0%.分析产量构成因素发现,秸秆还田配施氮肥处理主要是通过增加穗粒数和百粒重而达到高产.对玉米产量-配施纯氮量关系进行曲线拟合发现,该地区秸秆全量还田配施氮肥的最佳用量为260 kg·hm-2.研究结果可为该地区土壤培肥和滴灌玉米生产提供重要依据.  相似文献   

8.
秸秆还田对土壤钾素的影响及其替代钾肥效应研究进展   总被引:15,自引:0,他引:15  
农作物秸秆是重要的有机资源,其合理有效利用也越来越受到重视。秸秆还田具有增加作物产量、提高土壤有机碳含量、培肥地力、促进养分循环利用和缓解土壤酸化等特点,对减少化肥施用具有重要作用。随着人们对资源高效利用认识的深入,秸秆还田水平正在不断的提高,国内外在秸秆还田对土壤钾素影响等方面的研究也取得了丰硕的成果。本文主要从秸秆还田对土壤钾素、作物产量的影响以及秸秆钾素与化肥钾的等效性等方面对秸秆还田的钾素效应进行了综述。还田秸秆初期主要是通过自身钾素释放提高当季土壤速效钾含量,而长期秸秆还田还可能促进矿物钾的释放;有效的秸秆还田不仅能够为土壤提供大量氮、磷、钾等速效养分,而且能为土壤中的微生物提供丰富的碳源,提高土壤肥力,进而增加作物产量。中国目前秸秆有效还田仍然不足1/3,与欧美国家秸秆还田率相比还具有很大的发展潜力。加强秸秆还田率将能缓解中国耕地土壤钾素缺乏与钾矿资源不足的矛盾。今后应进一步深入研究适宜秸秆还田量及其与化肥钾的合理配置,短期试验结合长期监测以探讨秸秆还田对钾素影响的作用机理,为提高秸秆有效还田,促进土壤-作物钾素高效循环提供理论依据。  相似文献   

9.
Bt抗虫棉秸秆还田对土壤养分特征的影响   总被引:3,自引:0,他引:3  
【目的】研究转基因作物秸秆或残茬还田可能对土壤养分特性造成的影响。【方法】以不同抗虫水平Bt棉花和常规棉花(泗棉3号)为研究材料,分别在经过一、二个生长周期后将秸秆机械粉碎后原位还田,40 d后测定分析土壤中Bt蛋白含量及肥力相关的养分含量变化。【结果】Bt棉秸秆还田后,所有品种棉花土壤中Bt蛋白含量与还田前无显著增加,且转Bt基因棉与非转基因棉还田对土壤Bt蛋白含量的影响并无显著差异。同时,棉秸秆还田可显著提高土壤有机质、速效磷、碱解氮、速效钾、全氮、全磷和全钾含量,提升土壤pH值;增加幅度在不同抗虫水平Bt棉花间及与非转基因常规棉花品种间皆无显著性差异。【结论】秸秆还田对土壤肥力的提升与Bt棉的抗虫水平无关。“转Bt基因”不成为Bt棉秸秆还田提高土壤肥力的限制性因素,其秸秆还田不会对土壤肥力质量产生负面影响,可使土壤养分含量增加,有效提升土壤肥力。秸秆原位还田简单、无害又提升肥力,有条件作为转Bt基因植物秸秆无害化处理的理想方式。  相似文献   

10.
太湖地区氮肥减量对水稻产量和氮素流失的影响   总被引:4,自引:0,他引:4  
为明确太湖地区高产稻田适宜施氮量,以减轻农田化肥过量投入所带来的农业面源污染,本研究在调查农户稻田氮肥施用量的基础上,采用基肥机械深施和秸秆还田,设置不施氮肥(N0)为对照,当地习惯施氮水平360 kg·hm~(-2)(N1)以及在此基础上减少氮肥施用量的10%(N2)、20%(N3)、30%(N4)等5个处理,研究其对水稻产量和农田地表径流养分流失量的影响。结果表明:N2处理水稻产量与N1处理大致相当;N2处理水稻产量高的主要原因是由于其经济系数较高;N2处理较N1处理地表径流总氮流失量减少9.2%;从N1到N4处理,减少氮肥施用量,减少了农田总氮流失率,但N2和N1处理差异不显著;从水稻氮素偏流失率来看,每生产百千克稻谷,N2处理的氮素流失量最少。认为通过基肥机械深施和秸秆还田,在太湖地区习惯施氮水平的基础上减氮10%,在保证水稻产量的同时,减少了农田地表径流总氮流失量和水稻氮素偏流失率,并使稻田氮素流失率保持在较低水平。  相似文献   

11.
Soil infertility is the main barrier to dryland agricultural production in China. To provide a basis for the establishment of a soil amelioration technical system for rainfed fields in the semiarid area of northwest China, we conducted a four—year (2007–2011) field experiment to determine the effects of wheat straw incorporation on the arid soil nutrient levels of cropland cultivated with winter wheat after different straw incorporation levels. Three wheat straw incorporation levels were tested (H: 9000 kg hm-2, M: 6000 kg hm-2, and L: 3000 kg hm-2) and no straw incorporation was used as the control (CK). The levels of soil nutrients, soil organic carbon (SOC), soil labile organic carbon (LOC), and enzyme activities were analyzed each year after the wheat harvest. After straw incorporation for four years, the results showed that variable straw amounts had different effects on the soil fertility indices, where treatment H had the greatest effect. Compared with CK, the average soil available N, available P, available K, SOC, and LOC levels were higher in the 0–40 cm soil layers after straw incorporation treatments, i.e., 9.1–30.5%, 9.8–69.5%, 10.3–27.3%, 0.7–23.4%, and 44.4–49.4% higher, respectively. On average, the urease, phosphatase, and invertase levels in the 0–40 cm soil layers were 24.4–31.3%, 9.9–36.4%, and 42.9–65.3% higher, respectively. Higher yields coupled with higher nutrient contents were achieved with H, M and L compared with CK, where these treatments increased the crop yields by 26.75%, 21.51%, and 7.15%, respectively.  相似文献   

12.
农业土壤具有可观的固碳及减碳潜力,有助于减缓人类温室气体排放导致的气候变化。为了更好地了解华北平原土壤有机碳储量动态及其驱动因子,结合荟萃分析、随机森林机器学习模型和卫星遥感数据,研究了1981-2019年间中国华北平原农田土壤有机碳储量的时空变化及其驱动因子。结果表明,1981-2019年间华北平原0-20 cm农田土壤有机碳储量约为(523.10±79.36) Tg C ((14.56±1.66) Mg C/hm2),并以5.94 Tg C/a (0.12 Mg C hm-2 a-1)的年固持速率稳步增长,占比约为中国农田每年新增土壤有机碳的23.3%。其中,常规农田管理措施,包括无机肥施用、有机肥施用和秸秆还田,对土壤有机碳增长的贡献平均为25.1%,即1.49 Tg C/a (0.03 Mg C hm-2 a-1)。相比对照组,氮磷钾无机肥施用可提高22.7%-26.0%的土壤有机碳固定速率,有机肥可提高48.3%,秸秆还田可提高23.4%。同时,上述常规农田管理措施对土壤有机碳的积累作用受到土壤本身理化性质的调控,在温度和降水较高的气候条件下更显著。值得注意的是,无论是无机肥施用、有机肥施用还是秸秆还田,当投入量超过农作物和土壤微生物对碳和养分的需求时,土壤有机碳累积速率会显著下降。这也导致2000年后土壤有机碳固持速率明显减缓,由9.4 Tg C/a下降为3.5 Tg C/a。总的来说,过去几十年农田管理措施的改进显著提高了华北平原农田土壤有机碳的增加速率,而未来华北平原农田系统固碳潜力仍然可观,但亟待明确在保证粮食产量的同时不同气候和土壤环境条件下最佳固碳所需的化肥、有机肥和秸秆投入量。  相似文献   

13.
秸秆还田配施不同比例化肥对晚稻产量及土壤养分的影响   总被引:12,自引:0,他引:12  
杨滨娟  黄国勤  徐宁  钱海燕 《生态学报》2014,34(13):3779-3787
在不同秸秆还田方式对早稻的效应研究确定的最佳还田方式和还田量(粉碎还田3000 kg/hm2)基础上,以单施秸秆为对照,研究了秸秆还田配施不同比例化肥对晚稻产量、干物质积累与分配及土壤养分的影响。结果表明:(1)与对照相比,秸秆3000 kg/hm2+N 150 kg/hm2+P2O575 kg/hm2+K2O 37.5 kg/hm2增产效果最为显著,在水稻的每穗粒数、千粒重、结实率、充实度和产量等方面增加幅度最大,分别为9.32%、4.28%、13.70%、2.74%和26.38%。(2)各处理的干物质茎鞘比例随着生育进程不断降低,从孕穗期的66.68%—77.00%降低至成熟期的25.97%—34.79%,除SNPK1外,叶片比例从孕穗期的23.00%—33.32%降低至成熟期的7.41%—21.03%;秸秆还田配施不同比例化肥处理的茎鞘比例在孕穗期、抽穗期和成熟期高于对照,而叶片比例与茎鞘比例呈相反趋势。(3)与对照相比,秸秆还田配施不同比例化肥处理提高了土壤pH值、有机碳、全氮、碱解氮、全磷、有效磷、全钾、速效钾,降低了土壤C/N比。研究结果说明,秸秆还田配施不同比例化肥可以提高植株干物质积累速率、群体生物量,合理改善土壤养分,保证较高的水稻增产潜力,其中秸秆3000 kg/hm2+N 150 kg/hm2+P2O575 kg/hm2+K2O 37.5 kg/hm2效果最为显著。  相似文献   

14.
盘礼东  李瑞  张玉珊  黎庆贵  高家勇  袁江 《生态学报》2022,42(11):4428-4438
土壤养分亏缺是限制作物生长的关键因素,同时也是制约作物产量的重要影响因子。为提高西南喀斯特区坡耕地土壤肥力和作物产量,于2018—2019年连续两年在贵州省黔西县开展了野外原位径流小区观测试验。通过该试验探讨不同秸秆覆盖率下土壤碳(C)、氮(N)、磷(P)、钾(K)含量及其生态化学计量特征,揭示不同秸秆覆盖率下土壤养分状况及土壤改良效果。共设6个秸秆覆盖梯度,玉米单作+秸秆覆盖(SM0—SM5,0,1111、2222、3889、5556,6944 kg/hm~2),其中SM0为对照组(CK)。结果表明:(1)秸秆覆盖不同程度增加了土壤有机碳(SOC)、全氮(TN)及全磷(TP)含量,总体上随覆盖量的增加而增加,尤其是覆盖量较多的情况下(SM4,SM5),均显著高于对照(P<0.05),但两者之间差异不显著(P> 0.05),而全钾(TK)则随着覆盖量的增加而减少。(2)在高秸秆覆盖条件下(SM4,SM5),除了N∶P外,两...  相似文献   

15.
Soil nitrogen (N) is a vital source of nutrients for maintaining soil fertility and crop production. However, the effect of biochar application rate on the mechanism of organic N transformation and the contribution of enzyme mineralization is still unclear. Therefore, we conducted two 5-year field experiments in contrasting soils (Phaeozem and Luvisol) with biochar application rate at 0 t hm−2 (CK, 0), 22.5 t hm−2 (D1, 1%), 67.5 t hm−2 (D2, 3%), and 112.5 t hm−2 (D3, 5%) to investigate the potential effects of biochar application rate on soil organic nitrogen (N) turnover and its linkage to enzymatic mineralization in contrasting soil. The results showed that soil organic carbon (SOC) and microbial biomass nitrogen (MBN) contents, microbial biomass carbon to nitrogen ratio (MBC:MBN) and protease activity are significantly influenced by biochar application rate whereas not by soil type. Ammonium nitrogen (NH4+-N) and nitrate nitrogen (NO3-N) contents, and dehydrogenase activity are significantly changed by soil type whereas not by biochar application rate. Based on the redundancy analysis, we found that organic N fractions are associated with MBN, SOC, and protease in Phaeozem, but related to protease activity in Luvisol. Our findings indicate that organic N turnover is not only related to the bioavailability of N but also requires carbon substrates in Phaeozem, whereas the transformation of organic N in Luvisol is dominated by enzymatic mineralization as the relatively low level of bioavailable N.  相似文献   

16.
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   

17.
Soil nitrogen heterogeneity in a Dehesa ecosystem   总被引:1,自引:0,他引:1  
The C mineralization and N transformations during the decomposition of sunflower stalks (Helianthus annuus L.) and wheat straw (Triticum aestivum L.) with and without addition of (NH4)2SO4 (27.53 atom% 15N) were studied in a Vertisol. Soil samples were incubated under aerobic conditions for 224 days at 22 °C. The plant residues were added at a rate of 5.2 g kg-1 soil. Nitrogen was applied at a rate of 50.7 mg N kg-1 soil. Carbon dioxide emission and inorganic N content in soil were periodically determined. Gross N immobilization and remineralization were calculated on the basis of the isotopic dilution technique. At the end of the incubation period a 15N balance was established. Respectively, 68 and 45% of the applied residue-C mineralized from the sunflower stalks and wheat straw after 224 days. Both crop residues caused losses of up to 25% of added 15N after 224 days of incubation. These 15N losses were about three times larger than in the control soil, and were probably due to denitrification. The net immobilization of soil derived N following residue incorporation was largest in the case of wheat straw, depleting all soil inorganic N. In the wheat straw treatment with added (NH4)2SO4 soil inorganic N remained available, resulting in an enhanced initial C mineralization and N immobilization compared to the treatment without added N. In the case of the sunflower stalks, the high inorganic N content of the stalks suppressed the effects of N addition on C mineralization and N immobilization/mineralization. Gross N immobilization amounted to 31.9 and 28.2 mg N g-1 added C after 14 days for wheat straw and sunflower stalks, respectively. At the end of the incubation, about 35% of the newly immobilized N was remineralized in both plant residue treatments. Gross N immobilization plotted against decomposed C suggests that fairly uniform C-N relationships exist during the decomposition of divers C substrates. The results demonstrate that low fertilizer N use efficiencies may be expected in a wheat-sunflower cropping system with incorporation of crop residues, as the fertilizer N applied becomes largely immobilized in the soil organic fraction. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   

18.
1980—2011年川东平行岭谷区农田土壤有机碳动态   总被引:4,自引:0,他引:4  
邵景安  惠辽辽  慈恩  谢德体 《生态学报》2014,34(15):4347-4360
选取重庆市垫江县为川东平行岭谷的典型区,使用1980第二次土壤普查和2011年实测土壤数据,基于土壤类型,运用通用SOC密度/储量计算法和逐步回归分析,对研究区1980—2011年0—20 cm农田SOC动态和动因进行分析,结果表明:(1)1980—2011年农田0—20 cm土层SOC密度/储量总体表现为略有增加态势,单位面积碳增量2307.63 kg C/hm2,碳增汇235945.83 t,增幅为10.74%,年均增长速率为72.11 kg C hm-2a-1;(2)丢碳、固碳和相对平衡面积比37.61∶49.03∶13.36,总体呈西部、西北部高于南部、东南部,更高于东北部和西南部的格局;(3)宏观上1980—2011年农田0—20 cm土层SOC密度/储量变化与土壤类型的分布及利用有很大关系,尤其是黄壤和紫色土在相异的质地本底和不同的扰动下,展现出相反的碳汇/源状态;(4)微观上SOC密度年均变化速率影响最大的因素是SOC密度初始值全N密度C/N比,且全N密度和C/N比拥有正向影响,SOC密度初始值则相反;⑸结果为川东平行岭谷区借助施加适当投入和合适的耕作与管理实践,有效管理农田表层SOC库提供科学依据。  相似文献   

19.
Cereal residues are considered an important feedstock for future biofuel production. Harvesting residues, however, could lead to serious soil degradation and impaired agroecosystem services. Our objective was to evaluate trade-offs of harvesting wheat and barley residues including impacts on soil erosion and quality, soil organic C (SOC), and nutrient removal. We used agricultural data from 369 geo-referenced points on the 37-ha Washington State University Cook Agronomy Farm combined with model simulations to develop straw harvest scenarios for conventional tillage (CT) and no-tillage (NT) and both 2- and 3-year crop rotations with sequences of wheat, barley, and peas. Site-specific estimates of ethanol production from 2- and 3-year rotation scenarios ranged from 681 to 1,541 L ha?1 yr?1, indicating that both crop rotation and site-specific targeting of residue harvest are important factors. Harvesting straw reduced residue C inputs by 46 % and resulted in levels below that required to maintain SOC under CT. This occurred as a function of both straw harvest and low residue producing crops in rotation. Harvesting straw under CT was predicted to reduce soil quality as Soil Conditioning Indices (SCIs) were negative throughout the field. In contrast, SCIs under NT were positive despite straw harvest. Replacement value of nutrients (N, P, K, S) removed in harvested straw averaged $14.54 Mg?1 dry straw and ranged from $36.04 to $80.30 ha?1, while straw harvesting costs averaged $34.25 Mg?1, and the current (2014) market value of straw is $65 Mg?1. We concluded that substantial trade-offs exist in harvesting straw for biofuel, that trade-offs should be evaluated on a site-specific basis, and that support practices such as crop rotation, reduced tillage, and site-specific nutrient management need to be considered if residue harvest is to be sustainable.  相似文献   

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