首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 171 毫秒
1.
水稻秸秆还田配施肥料对小麦产量和氮素利用的影响   总被引:2,自引:1,他引:1  
为了解高C/N比秸秆还田与肥料施用对金坛地区小麦产量和氮素利用的影响,通过设置大田试验,研究了稻秸还田与肥料施用对麦季土壤养分、微生物生物量、作物产量和氮肥利用率的影响。结果表明:稻秸还田配施肥料能够提高土壤速效养分含量。单施肥仅显著影响拔节期微生物生物量碳,单施稻秸显著影响拔节期和抽穗期微生物生物量氮,稻秸还田和肥料施用的交互作用在拔节期显著影响土壤微生物生物量和微生物熵。单施肥、稻秸配施肥料处理的氮肥表观利用率分别为31%和37%,稻秸配施肥料后的氮肥农学利用率和偏生产力表明每kg纯氮增产幅度约为6.86 kg籽粒。单施肥和稻秸配施肥料显著增加了小麦每穗粒数及千粒重,并且理论产量分别增加211%和319%,实际产量则分别增加119%和231%,而单施稻秸处理的实产却减产21%。综合分析认为,稻秸还田搭配肥料施用,能够保证当季土壤有效氮供应,促进土壤有机质转化为更易被微生物利用的形态,提高养分有效性,促进小麦对氮素的吸收利用,有利于每穗粒数和千粒重的增加,从而最终提高小麦的产量。  相似文献   

2.
  【目的】  提高冬绿肥的产量和养分积累量有利于轮作系统中主作物的高产稳产和光、温、养分资源的高效循环利用。研究稻秸还田对冬季豆科绿肥生长和养分积累及土壤性状的影响,为稻田豆科绿肥的高产栽培及稻秸资源化利用提供指导。  【方法】  在广西、四川和安徽,分别以盐渍水稻土、紫色土和黄棕壤为供试土壤,进行相同处理的豆科绿肥盆栽试验,供试品种均为当地主栽品种。稻秸添加量设 3个水平:0、3000、6000 kg/hm2 (S0、S1、S2),每个稻秸添加水平下设两个施氮水平:0和45 kg/hm2 (N0、N45),共包括6个处理。于豆科绿肥盛花期采集植株和土壤样品,测定鲜草产量和土壤理化性状。  【结果】  与稻秸不还田且不施氮肥处理(RS0N0)相比,盐渍水稻土、紫色土和黄棕壤上稻秸还田与氮肥配施处理的绿肥鲜草产量分别提高了63.0%~66.0%、35.2%~53.8%和103.6%~117.1%,植株氮累积量分别提高了19.1%~41.5%、43.7%~67.2%和65.1%~70.5%,磷累积量分别提高了12.1%~68.9%、31.4%~57.3%和37.9%~45.3%,钾累积量分别提高了22.0%~58.7%、30.7%~35.0%和89.2%~102.9%。在盐渍水稻土、紫色土,稻秸还田(S1、S2)均可提高绿肥鲜草产量和氮磷钾养分积累量,配合施氮没有进一步提高鲜草产量和氮磷钾养分积累量;而在黄棕壤与秸秆半量还田相比,稻秸全量还田降低了绿肥产量,但在一定程度上增加了绿肥地上部养分积累量,稻秸还田配合施用氮肥则显著增加了绿肥的产量和地上部养分积累量。盐渍水稻土稻秸还田与氮肥配施处理(RS1N45和RS2N45)提高了土壤有效磷含量;黄棕壤土壤有效磷含量、土壤速效钾含量随稻秸添加量增加先下降后上升,与不施肥对照相比,3种土壤上稻秸与氮肥配施处理均显著提高了土壤无机氮含量。偏最小二乘法路径模型分析表明,稻秸还田及土壤类型对豆科绿肥鲜草产量和地上部氮、磷、钾的累积量均有极显著正影响(P < 0.01),氮肥处理仅对豆科绿肥鲜草产量有极显著正影响(P < 0.01)。  【结论】  稻秸还田不同程度地促进了豆科绿肥对土壤速效养分的吸收,提高了豆科绿肥鲜草产量和地上部氮磷钾累积量。在肥力较高的盐渍水稻土和紫色土上,稻秸全量还田可显著增加豆科绿肥的鲜草产量,维持土壤有效养分,无需配合施用氮肥。在肥力较低的黄棕壤上,全量还田(6000 kg/hm2)需配施氮肥才可充分发挥稻秸还田的增产效果,缓解土壤中有效养分含量的下降。  相似文献   

3.
稻麦秸秆全量还田的产量与环境效应及其调控   总被引:11,自引:1,他引:10  
秸秆还田是一项土壤培肥、实现农业可持续发展的重要措施,但稻秆还田经济效益低、增产效应不显著以及一些环境负效应,影响了该措施的推广。本文结合本课题组研究工作,综述了国内外近期的相关研究进展,就稻麦秸秆全量还田的产量效应、秸秆腐解特性与环境效应及其调控进行了分析。研究表明,秸秆还田能提高土壤肥力,增加稻麦产量,且增产效应随还田时间延长而增加;稻季麦秸/油菜秸的腐解率在50%~66%,其N、P、K养分释放率分别为42%~58%、55%~68%和92%~98%;秸秆还田能显著提高农田碳固定、减少径流损失,但也增加了稻田甲烷排放、氨挥发以及渗漏的养分损失。提高秸秆还田效益的调控措施有:增加稻麦前期氮肥施用比例,适当减少总的氮肥、磷肥用量,大幅减少钾肥用量;秸秆尽量在麦季还田、稻季采用湿润灌溉可减少甲烷排放。  相似文献   

4.
为明确秸秆还田下节水减氮以及高效肥料对不同双季稻品种N2O排放的影响及其关键驱动因素。于2020年开展田间试验,试验采用裂区设计,主区为4个水肥处理:尿素100%+间歇灌溉(U)、尿素80%+秸秆还田+间歇灌溉(US+S)、控释尿素80%+秸秆还田+间歇灌溉(CRUS+S)、尿素80%+秸秆还田+节水灌溉(US+S+SWD),副区为常规稻和杂交稻,共8个处理。监测双季稻生育期内N2O排放规律,分析单位产量N2O排放强度和影响其排放的主要驱动因素。结果表明,灌溉量、碳氮投入和植株吸氮量是调控稻田N2O排放的主导因子,可解释99%的排放变化,其中氮投入增加会促进N2O排放,而灌溉量、碳投入和吸氮量对N2O排放有负向作用。秸秆还田可以补充氮肥减量20%的养分,秸秆还田下常规氮肥或控释氮肥减量施用降低了N2O排放14.4%~49.4%,但CRUS+S较US+S处理促进了N2O排放,表明秸秆还田下施用控释尿素并不能实现N2O减排。秸秆还田后进一步控水促进了N2O排放,相比US+S,US+S+SWD处理显著增加了双季稻N2O的排放114.8%~186.4%,且常规稻增幅大于杂交稻。各处理间产量无显著差异,氮肥减量及进一步控水均可保证稳产,但US+S+SWD处理单位产量N2O排放强度显著高于其他处理。总体而言,秸秆还田搭配减氮20%有助于降低稻田N2O排放,但并不能抵消节水灌溉导致的N2O增长。在水稻生产中合理利用秸秆资源,适当减少氮肥用量可以减少稻田N2O排放并保证稳产。  相似文献   

5.
探讨秸秆还田与施氮对高纬度黑土区春玉米产量与温室气体排放特性的影响,对促进粮食增产和降低环境代价具有重要意义。本研究通过位于黑土区的大田定位试验,利用静态箱-气相色谱计数方法,在秸秆还田与不还田和3个氮素用量(纯N:120 kg·hm~(-2),240 kg·hm~(-2)和300 kg·hm~(-2))条件下,研究了春玉米不同生育时期农田土壤CO2、N2O和CH4综合温室效应与排放强度,以及土壤过氧化氢酶和脲酶活性的变化。结果表明:无秸秆还田时,高氮用量处理春玉米产量最高;秸秆还田后,中等氮用量处理(240 kg·hm~(-2))春玉米产量最高,且与无秸秆还田的高氮处理间无显著差异。无秸秆还田时,随施氮量增加,CO2、N2O和CH4排放量均显著提高,综合温室效应和土壤温室气体排放量与强度显著增加(P0.05);增施氮肥配合秸秆还田,增加了CO2和N2O的排放量,而土壤CH4的碳汇功能增强,温室气体排放量与强度未显著提高(P0.05)。无秸秆还田,增施氮肥降低了土壤过氧化氢酶活性但提高了土壤脲酶活性;而秸秆还田使得增施氮肥引起的土壤过氧化氢酶活性降低的幅度加大但土壤脲酶活性提高的幅度变小。因此,秸秆还田后配合中等用量氮处理(240 kg·hm~(-2))玉米产量最高,且能够抑制单纯增施氮肥对综合温室效应和土壤温室气体排放强度的促进作用,推荐在生产中参考使用。  相似文献   

6.
秸秆腐解剂在秸秆还田中的效果研究初报   总被引:21,自引:0,他引:21  
大大田、微区和盆栽条件下,研究了秸杆腐解剂对小麦、水稻生长及产量的影响,同时研究了秸杆腐解剂对小麦、水稻秸秆腐解速率及对土壤肥力的影响。结果表明,稻、麦秸秆还田时施用秸秆腐解剂对提高稻、麦产量具有明显的增产效果。增产的原因是穗数和粒数增加;稻、麦秸秆还田量不同时,还田量大且配施秸秆腐解剂的效果较还田量小好;麦秸秆还田方式不同时,麦秸以栽稻前耕翻还田且配施秸秆腐解剂的效果较好,上水沤制的效果较差;秸秆腐解剂能促进稻、麦秸秆较快腐解,减轻和防止多量秸秆还田给作物生长带来不利影响,并可稳定和提高土壤养分含量。  相似文献   

7.
改进施氮运筹对水稻产量和氮素吸收利用的影响   总被引:16,自引:1,他引:15  
【目的】秸秆还田不仅可改良土壤和增加土壤有机质,还能提高作物产量和品质。但秸秆还田后,土壤有机酸积累和微生物固氮,抑制水稻前期生长。在长江流域稻麦两熟地区,当地农户往往通过增加施氮量来解决秸秆还田的负效应,造成肥料浪费和氮污染。因此,探索研究秸秆还田条件下水稻优化的氮肥运筹措施,阐明水稻产量形成和氮素吸收与利用对氮素响应特征,对于提高水稻产量和氮素利用效率具有重要意义。【方法】2012 2013年,以超级粳稻武运粳24号和宁粳3号为材料,在江苏省兴化市进行大田试验,在秸秆全量还田条件下,设置常规施氮300 kg/hm2(N1)、增加施氮量345 kg/hm2(N2)和常规施氮运筹(CFP,基肥∶分蘖肥∶穗肥=3∶3∶4)、改进施氮运筹(MFP,基肥∶分蘖肥∶穗肥=4∶3∶3),以无氮处理为对照,研究施氮量和氮肥运筹措施对水稻产量及其产量构成、干物质积累、氮素积累、氮素吸收速率和氮肥利用效率的影响。【结果】随着氮肥水平提高,水稻穗数显著增加,每穗粒数、结实率和千粒重下降,最终增产不显著。与常规施氮运筹比较,改进氮肥运筹显著增加穗数,显著提高群体颖花量并增产,在N1水平下,改进施氮运筹增产幅度为5.18%7.10%,高于N2水平的2.70%4.29%。随着施氮量增加,水稻分蘖中期、拔节期、移栽期至分蘖中期、分蘖中期至拔节期干物质积累量、氮素积累量显著增加,最终成熟期干物质积累量和氮素积累量有所增加,但差异不显著,而氮肥农学利用率、氮肥吸收利用率和氮偏肥生产力显著下降。与常规氮运筹处理相比,改进氮运筹显著增加水稻移栽期至分蘖中期干物质积累量、氮素积累量和氮素吸收速率,增加成熟期干物质积累量和氮素积累量,提高氮肥农学利用率、氮肥吸收利用率、氮肥生理利用率和氮偏肥生产力,在N1水平下成熟期干物质积累量和氮素积累量分别增加6.52%和5.55%,氮肥农学利用率、氮肥吸收利用率、氮肥生理利用率和氮偏肥生产力分别提高13.36%、8.55%、4.44%和5.29%,差异均达显著水平。【结论】秸秆全量还田条件下,增加氮肥用量水稻增产不显著,且氮肥利用效率低。不增加氮肥用量,通过适当提高基肥比例(基肥∶分蘖肥∶穗肥=4∶3∶3),可实现提高水稻产量、干物质积累量、氮素积累量和氮肥利用效率。  相似文献   

8.
麦秸还田及水稻氮肥配施技术研究   总被引:9,自引:0,他引:9  
通过麦秸直接还田和水稻氮肥配施技术的研究表明:经过三熟作物秸杆连续还田,土壤有机质、全氮、速效钾显著地增加;秸杆全量还田,水稻产量随秸杆还田量增加而提高,秸杆还田量5400kg/hm^2的产量比不还田的增产6.6%;全生育期氮肥配比以前∶中∶后期为6.5;0.5∶3为最佳。  相似文献   

9.
以东北潮棕壤为供试土壤,通过室外水稻盆栽试验,研究不同水分管理模式下氮肥和秸秆配施对稻田CH4排放的影响。在长期淹水(CF)和干湿交替(AWD)两种水分管理模式的基础上,设置无氮肥对照(CK)、单施秸秆(S)、单施尿素(U)、尿素+秸秆(US)4个处理,对水稻整个生长季CH4排放进行监测,并测定不同生育期间土壤微生物量碳(MBC)含量以及收获后水稻产量。结果显示:AWD模式下CH4累积排放量低于CF模式;两种水分模式下CK与U处理CH4累积排放无显著差异,添加秸秆处理(S,US)CH4累积排放量显著增加。CF模式下US处理CH4累积排放量显著高于S处理,但在AWD模式下正好相反。AWD模式在降低CH4排放的同时并未显著降低水稻产量,尿素的施用显著增加了水稻产量,秸秆还田虽然对水稻产量无显著影响,但它显著提高了土壤微生物量碳含量,有助于培肥地力。与CF模式相比,AWD模式显著降低了CH4排放,同时,US处理施在降低CH4排放和保证水稻产量的同时,增加土壤MBC含量,有助于培肥地力。因此,AWD模式是东北潮棕壤发育的水田中较为优异的水分管理模式,U和US处理是较为优异的施肥措施。  相似文献   

10.
秸秆还田与氮肥运筹对土壤水碳氮耦合及作物产量的影响   总被引:3,自引:1,他引:2  
探究全覆膜双垄沟播栽培下玉米秸秆还田与氮肥运筹对土壤水、碳、氮及作物产量的影响,为内蒙古黄土高原秸秆还田氮肥合理施用和节氮、高效秸秆还田技术研发提供科学依据。对比分析了氮肥习惯施用(FN)、氮肥习惯施用配合秸秆还田(FNS)、氮肥高量施用配合秸秆还田(HNS)、氮肥后肥前移施用(RN)、氮肥后肥前移施用配合秸秆还田(RNS)5种不同耕作措施对玉米农田土壤水分、土壤碳氮、酶活性、微生物量及玉米籽粒产量的影响,并通过相关分析和通径分析进一步揭示土壤理化性质和生物学性质变化规律及其耦合效应,明确秸秆还田玉米田不同氮肥运筹方式下土壤水碳氮演变特征。结果表明,与不还田相比,秸秆还田可显著提高0~100 cm土层土壤水分含量,且玉米秸秆还田与全膜垄沟栽培结合后(FNS、HNS、RNS),二者的协同效应较单一地膜覆盖(FN、RN)增强了土壤纳雨增墒能力,为秸秆的正常腐解提供了适宜水热环境;秸秆还田下不同氮肥运筹处理较对照FN均可显著提高土壤有机质和全氮含量,其中以氮肥后肥前移施用配合秸秆还田和氮肥高量施用配合秸秆还田提升效果最显著,土壤过氧化氢酶、脲酶、蔗糖酶和碱性磷酸酶活性以及微生物量碳、氮明显增加,表现为0~20 cm土层大于20~40 cm土层,秸秆不还田氮肥习惯施用和氮肥后肥前移施用无显著性差异;土壤微生物量碳、氮与土壤酶活性和土壤碳氮呈显著或极显著正相关关系,且土壤微生物量碳、氮对土壤有机质、蔗糖酶、全氮和过氧化氢酶变化较敏感,对土壤性质变化具有一定指示作用。在产量方面,还田处理FNS、HNS、RNS较对照FN分别提高5.30%、10.93%、11.41%,且氮肥的常量投入即可获得较高的氮肥偏生产力。综合土壤因子、玉米产量和氮素利用率来看,秸秆还田条件下可通过调整氮肥的后肥前移平衡土壤碳氮收支,实现节本增产增效,同时提高氮肥利用率,是内蒙古黄土高原地区一种节氮、稳产、增效秸秆还田技术模式。  相似文献   

11.
A field experiment involving rice–wheat rotation was performed to investigate the effect of mushroom residue (MR) in comparison with chemical fertilizer (CF) and crop straw return on methane (CH4) and nitrous oxide (N2O) emissions in 2012–2013. Five treatments in quadruplicate were included in this study: (1) CF only, (2) CFS (straw + CF), (3) MR-1 (50% amount of N in CF was replaced with MR), (4) MR-2 (100% amount of N in CF was replaced with MR) and (5) MR-3 (150% amount of N in CF was replaced with MR). Results showed that the effects of CFS and MR-1 treatments on CH4 and N2O emissions did not significantly differ. By contrast, CH4 emissions decreased as the amount of applied MR increased. Crop straw and MR stimulated CH4 emissions (from 48.8% to 119%) in rice season in 2012. In 2013, the applied crop straw and MR decreased CH4 emissions (from 21.3% to 37.3%). This contrasting effect might be explained by the difference in soil moisture content between the two seasons. N2O emission in wheat season could be efficiently decreased (from 25.2% to 29.7%) by applying MR. Our results suggesting that MR could be used as a soil organic amendment under the premise of proper water management.  相似文献   

12.
秸秆条带状覆盖对稻田CH_4和N_2O排放的影响   总被引:2,自引:1,他引:1  
采用3种秸秆还田方式(对照、秸秆均匀混施和秸秆条带状覆盖)进行田间试验,观测稻田CH4和N2O的排放通量,以探讨秸秆条带状覆盖对稻田CH4和N2O排放的影响。结果表明:秸秆条带状覆盖的CH4排放量是对照的2.7倍,二者的N2O排放量无明显差异;秸秆条带状覆盖的稻田CH4排放量较秸秆均匀混施减少32%,其N2O排放量是后者的5.1倍;稻田排放CH4和N2O的全球增温潜势(GWP)为:秸秆均匀混施秸秆条带状覆盖对照,且差异显著;秸秆条带状覆盖的水稻产量分别较对照和秸秆均匀混施增加27%和17%。秸秆条带状覆盖是值得推荐的稻季秸秆还田方式。  相似文献   

13.
王强盛  刘欣  许国春  余坤龙  张慧 《土壤》2023,55(6):1279-1288
稻田是大气温室气体甲烷(CH4)和氧化亚氮(N2O)的重要排放源, 稻田温室气体减排一直是生态农业研究的热点。目前, 采用水稻品种选择利用、水分控制管理、肥料运筹管理、耕作制度调整以及种养结合模式等方法来减少稻田温室气体排放有较好实践效应, 但不同稻田栽培环境(露地、网室)基础上的稻鸭共作对麦秸全量还田的稻田温室气体排放特征及相关土壤理化特性关联性的影响尚为少见。本研究采用裂区设计, 在两种栽培环境条件下, 以无鸭子放养的常规稻作和麦秸不还田为对照, 在等养分条件下分析麦秸全量还田与稻鸭共作模式对稻田土壤氧化还原电位、CH4排放量、产CH4潜力及CH4氧化能力、N2O排放量及N2O排放高峰期土壤反硝化酶活性、全球增温潜势、水稻产量的影响, 为稻田可持续生产和温室气体减排提供参考。结果表明, 麦秆还田增加了稻田产CH4潜力、提高了CH4排放量, 降低了稻田土壤反硝化酶活性、土壤氧化还原电位和N2O排放量, 整体上导致全球增温潜势上升96.89%~123.02%; 稻鸭共作模式, 由于鸭子的不间断活动提高了稻田土壤氧化还原电位, 降低了稻田产CH4潜力, 增强了稻田CH4氧化能力, 从而降低稻田CH4排放量, N2O排放量虽有提高, 整体上稻鸭共作模式的全球增温潜势较无鸭常规稻田下降8.72%~14.18%; 网室栽培模式显著提高了稻田土壤氧化还原电位, 降低稻田产CH4潜力、CH4氧化能力和土壤反硝化酶活性, 减少了稻田CH4和N2O排放量, 全球增温潜势降低6.35%~13.14%。本试验条件下, 稻田土壤的CH4氧化能力是产CH4潜力的2.21~3.81倍; 相同环境条件下, 稻鸭共作和麦秸还田均能增加水稻实际产量, 网室栽培的所有处理较相应的露地栽培减少了水稻实际产量1.19%~5.48%。本试验表明, 稻鸭共作和网室栽培可减缓全球增温潜势, 稻鸭共作和麦秸还田能够增加水稻实际产量。  相似文献   

14.
Abstract

Burial of wheat straw in ditches and incorporation of wheat straw are the two main ways of returning wheat straw prior to rice cultivation in China. To examine the effect of burying wheat straw in ditches on CH4 emissions from rice cultivation, a field experiment was conducted at Yixing, Jiangsu, China in 2004. CH4 flux was measured using a closed-chamber technique in three treatments (CK, no wheat straw application; WI, evenly incorporating 3.75 t ha?1 wheat straw into the 0.1 m topsoil; WD, burying 3.75 t ha?1 wheat straw in 0.14-m deep by 0.25-m wide ditches). Seasonal CH4 emissions ranged from 49.7 to 218.4 kg CH4 ha?1. The application of wheat straw in these two ways significantly increased CH4 emissions by 4.0-fold and 4.4-fold, respectively (P < 0.05). Although CH4 flux from the non-ditch area in the WD treatment was as low as that in the CK treatment, it was counter-balanced by extremely high CH4 flux from the ditch, which was approximately 6.0-fold as much as that from WI, leading to comparability between treatments WI and WD in total CH4 emissions (P > 0.05). No significant difference was observed between the three treatments in grain yield (P > 0.05). The results indicated that burial of wheat straw in ditches is not a way to reduce CH4 emission from rice cultivation.  相似文献   

15.
Returning rice straw and leguminous green manure alone or in combination to soil is effective in improving soil fertility in South China. Despite the popularity of this practice, our understanding of the underlying processes for straw and manure combined application is relatively poor. In this study, rice straw (carbon (C)/nitrogen (N) ratio of 63), green manure (hairy vetch, C/N ratio of 14), and their mixtures (C/N ratio of 25 and 35) were added into a paddy soil, and their effects on soil N availability and C or N loss under waterlogged conditions were evaluated in a 100-d incubation experiment. All plant residue treatments significantly enhanced CO2 and CH4 emissions, but decreased N2O emission. Dissolved organic C (DOC) and N (DON) and microbial biomass C in soil and water-soluble organic C and N and mineral N in the upper aqueous layer above soil were also enhanced by all the plant residue treatments except the rice straw treatment, and soil microbial biomass N and mineral N were lower in the rice straw treatment than in the other treatments. Changes in plant residue C/N ratio, DOC/DON ratio, and cellulose content significantly affected greenhouse gas emissions and active C and N concentrations in soil. Additionally, the treatment with green manure alone yielded the largest C and N losses, and incorporation of the plant residue mixture with a C/N ratio of 35 caused the largest net global warming potential (nGWP) among the amended treatments. In conclusion, the co-incorporation of rice straw and green manure can alleviate the limitation resulting from only applying rice straw (N immobilization) or the sole application of leguminous green manure (high C and N losses), and the residue mixture with a C/N ratio of 25 is a better option because of lower nGWP.  相似文献   

16.

Purpose

Genetic modification of Bt rice may affect straw decomposition and soil carbon pool under flood conditions. This study aims to assess the effects of cry gene transformation in rice on the residue decomposition and fate of C from residues under flooded conditions.

Materials and methods

A decomposition experiment was set up using 13C-enriched rice straws from transgenic and nontransgenic Bt rice to evaluate the soil C dynamics and CH4 or CO2 emission rates in the root and non-root zones. The concentrations and stable carbon isotope compositions of the soil organic carbon (SOC), dissolved organic carbon (DOC), microbial biomass carbon (MBC), CH4, and CO2 of the root and non-root zones were determined from 7 to 110 days after rice straw incorporation.

Results and discussion

Rice straw incorporation into soil significantly increased the SOC, DOC, and MBC concentrations and the CH4 and CO2 emission rates. The percentage of 13C-SOC remaining in the root zone was significantly lower than that in the non-root zone with rice straw decomposition. The DOC and MBC concentrations significantly increased in both the root and non-root zones between 0 and 80 days after rice straw incorporation. However, no significant differences were found after Bts (Bt rice straw added into soil) and Cks (nontransgenic Bt rice straw added into soil) incorporation in the root and non-root zones. This result may be attributed to the priming effects of sufficient oxygen and nutrients on straw degradation in the root zone.

Conclusions

Bt gene insertion did not affect the SOC, DOC, and MBC concentrations and the CH4 and CO2 emission rates in both the root and non-root zones. However, rice straw incorporation and root exudation significantly increased the SOC, DOC, and MBC concentrations and the CH4 and CO2 emission rates.  相似文献   

17.
李力  陈明茹  张久红  张军  黄应平  袁喜  李萌 《土壤》2022,54(5):1058-1063
本文通过土壤腐解试验研究外源添加水稻或玉米秸秆对多环芳烃(PAHs)污染土壤CO2-C释放和污染物去除率的影响,同时清晰秸秆腐解中间产物溶解性有机碳(DOC)与土壤PAHs降解的关系。结果表明:秸秆添加处理促进了PAHs污染土壤CO2-C的释放,以玉米秸秆提升效果较好。外源添加秸秆显著增加了土壤DOC含量,且增加幅度随秸秆添加量的增加而增大;水稻秸秆对土壤DOC含量的提升幅度较大。与对照相比,秸秆添加处理下土壤菲、芘残留量均显著降低,菲、芘去除率显著增加,去除效果:玉米>水稻,高量>低量,菲>芘;与对照相比,添加高量玉米秸秆处理(PY15)对土壤菲、芘去除率的增加幅度分别为91.7%和182%。此外,在一定范围内土壤DOC含量与PAHs去除率呈正相关关系。可见,农作物秸秆,尤其是玉米秸秆添加可提升PAHs污染土壤有机碳矿化,亦可在提升土壤DOC含量的同时促进污染土壤PAHs的降解。  相似文献   

18.
This study evaluated the effects of rice straw and water regimes on CH4 and N2O emissions from paddy fields for two rice growing seasons (summer 2014 and spring 2015). Water regimes included alternating wet–dry irrigation (AWD) maintained at three levels (–5 cm, – 10 cm and –15 cm) in comparison to continuous flooding irrigation (CF). Rice straw (5 t ha–1) was incorporated into the top soil (0 – 15 cm), distributed and burned in situ. Results showed that using burned in situ rice straw was found to reduce seasonal cumulative CH4 emission (24–34% in summer; 18–28% in spring), N2O emission (21–32% in summer; 22–29% in spring) and lower rice yield (8–9%) than rice straw incorporation into top soil. AWD methods reduced the amount of CH4 production (22.6–41.5%) and increased N2O emission (25–26%) without any decrease in rice yield. Rice straw incorporation into the top soil with AWD had higher water productivity (23–37%) than rice straw when burned in situ with CF. The results conclude that AWD and rice straw management can be employed as mitigation strategy for CH4 and N2O emissions from paddy fields in Central Vietnam.  相似文献   

19.
长期稻草还田对紫色水稻土肥力和生产力的影响   总被引:44,自引:5,他引:39  
通过8年淹水条件下一季中稻的田间定位试验,研究了长期稻草还田以及稻草与不同化肥配合施用对紫色水稻土生产力和土壤肥力的影响。结果表明,稻草与N、P、K化肥配合施用能维持或提高紫色水稻土的生产力和土壤肥力;水稻获得了持续高产,土壤有机质和全氮含量提高,土壤磷的有效性增加,速效钾与试验前基本平衡。纯化肥处理尤其是N、NP、NK处理水稻产量、土壤氮和钾含量逐年降低,不能维持系统生产力和土壤肥力。稻草还田对翌年水稻具有显著的增产作用,8年平均稻草还田处理比对照增产39.5%,稻草的增产作用还随着稻草还田时间的延长而逐年升高。稻草还田携入的钾与化学钾肥具有相同的营养功效,稻草可替代部分化学钾肥。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号