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101.
ABSTRACT

Rice-Wheat rotation is the dominant land use in the state of Punjab, resulting in over exploitation of ground water resources. Thus, it is necessary to evaluate other land uses that requires less water and are sustainable. The present investigation was planned with four land uses viz., fallow (FLU), rice-wheat (ALU), grasses (GLU) and pear (PLU) with respect to their effect on soil organic carbon and soil physical characteristics in surface and subsurface depth in district Ludhiana, Punjab. The soil organic carbon (SOC) content was higher by 10, 30.9 and 24.9% under rice-wheat, grasses, and pear than that under fallow. The grasses showed higher soil moisture characteristics curve (SMCC) and lower bulk density (Db) than that under rice-wheat. The larger mean weight diameter (MWD) were observed under pear, grasses and fallow than that under rice-wheat by 0.21, 0.51 and 0.41 mm, respectively. The saturated hydraulic conductivity (Ks) was higher in magnitude by 56.1, 55.4 and 28%, respectively under PLU, GLU and FLU over ALU. Of the evaluated land uses, pear and grasses proved to be more sustainable by retaining more moisture, maintaining better soil physical characteristics and SOC under semiarid irrigated conditions in the state on long term gradual response.  相似文献   
102.
基于土壤水分下限的宁夏枸杞滴灌灌溉制度试验研究   总被引:1,自引:0,他引:1  
以宁杞7号枸杞为研究对象,在宁夏同心县开展2 a田间试验.设置4个关键控水期、3个控水水平共8个处理,研究枸杞不同生育期不同水分下限条件下根区土壤含水率、叶片光合生理指标、产量与品质变化;分析其耗水规律与水分利用效率,提出基于土壤水分下限的宁夏枸杞滴灌灌溉制度.结果表明:不同水分处理枸杞根区20~60 cm土层土壤含水率最大;叶片气孔导度随土壤下限升高而增大,高水分下限处理的蒸腾速率相对较大,叶片水分利用效率则相反;生育期耗水量随土壤水分下限升高而增大,2 a增幅分别为10.8%和12.8%,平均耗水量为386.6~463.2 mm,夏果期耗水量最大且差异具有统计学意义,是关键需水期.2 a均为处理S5的产量最大分别为2 208.15和2 571.30 kg/hm2,水分利用效率最高为0.39 kg/m3;水分处理对蛋白质含量影响差异不具有统计学意义,低土壤水分下限的枸杞多糖含量相对较高;全生育期分为6个灌水期,其中萌芽期灌水(春水)为375 m3/hm2;春梢生长期、花期、夏果期、秋果期的土壤质量含水率下限分别为50%θff为田间持水率),65%θf,65%θf,55%θf,而上限为95%θf;休眠期冬灌量为450 m3/hm2.  相似文献   
103.
全膜双垄沟双幅覆膜覆土联合作业机设计与试验   总被引:1,自引:0,他引:1  
为进一步提升全膜双垄沟覆膜种床机械化耕整作业效果与作业效率,基于全膜双垄沟种床双幅覆膜覆土农艺技术栽培模式,设计全膜双垄沟双幅覆膜覆土联合作业机,实现了全膜双垄沟种床构建过程中的旋耕、起垄、施肥、双幅覆膜覆土及镇压的一体化作业。在设定联合作业机传动系统的前提下,对样机关键部件进行设计与选型,确定其旋耕刀组、排肥装置、提土-种床覆土装置的工作参数与功耗,同时解析了刮板式提土装置、水平双向螺旋输土装置作业过程,得到满足双幅覆膜种床各部位覆土的必要条件。应用离散单元法对提土-种床覆土装置"提土-输土-覆土"动态作业过程进行数值模拟,分析了各工作环节输土、覆土特性,对影响覆土作业效果的相关因素进行了探讨。田间试验结果表明,当全膜双垄沟双幅覆膜覆土联合作业机前进速度为1. 10 m/s时,采光面地膜机械破损程度为39. 8 mm/m~2、种床膜边覆土宽度合格率为94. 5%、大垄垄体中心覆土宽度合格率为91. 6%、种床覆土厚度合格率为97. 5%、种床起垄高度合格率为93. 2%,试验指标均符合国家与行业标准要求,试验结果满足设计和实际作业要求,田间试验工况与仿真结果基本一致。  相似文献   
104.
灌溉和生草对猕猴桃园土壤质量的影响   总被引:1,自引:0,他引:1  
为探明灌溉和生草对猕猴桃园土壤质量的影响,于2016—2017年在陕西省眉县猕猴桃园试验地分别布设地面灌溉+除草(Ⅰ)、地面灌溉+自然生草(Ⅱ)、滴灌+除草(Ⅲ)和滴灌+自然生草(Ⅳ)4种处理,对试验地0~50 cm土层的土壤机械组成、物理和化学性质进行了统计分析,并利用土壤质量综合指数对土壤质量进行了评价,结果表明:与其他处理相比,Ⅲ处理使0~30 cm土层土壤容重和砂粒质量分数分别降低了0.02~0.24g·cm~(-3)和0.36%~5.25%,使土壤孔隙度、田间持水量、黏粒质量分数和土壤粒径分形维数分别增大了0.17%~7.17%、0.59%~2.53%、0.99%~7.15%和0.01~0.13;Ⅳ处理在0~30 cm土层中的速效磷和碱解氮与Ⅰ、Ⅱ处理无差异,显著高于Ⅲ处理10.75~109.55 mg·kg~(-1)和20.74~78.91 mg·kg~(-1)(P0.05),可使0~50 cm土层的速效钾、速效磷和碱解氮分别达到猕猴桃施肥标准的丰富、中等及中等水平;与其他处理相比,Ⅳ处理可使0~50 cm土层土壤黏粒质量分数增加了1.21%~2.66%,土壤粉粒质量分数减少了0.81%~1.41%,使土壤分形维数显著增加(P0.05),土壤质量综合指数最大,达0.619。因此,滴灌+自然生草(Ⅳ)的管理方式是猕猴桃园土地可持续性利用的有效措施。  相似文献   
105.
太阳能暗管排水对银北灌区油葵土壤环境及产量影响   总被引:2,自引:0,他引:2  
针对土壤盐渍化严重影响了宁夏银北灌区土壤环境和作物产量的问题,通过太阳能暗管排水区和非暗管排水区对比试验方法,着重研究了2017和2018两年太阳能暗管长时间持续排水对土壤环境和油葵产量的影响。结果表明:太阳能暗管排水可以有效改善土壤环境,使两年的地下水平均埋深分别增加4.5%和6.4%,地下水平均矿化度分别降低7.9%和9.0%,两年土壤平均脱盐率分别为4.7%和8.2%,对表层土壤的脱盐效果最为明显。同时提高了油葵产量和水分生产效率,两年油葵产量分别提高13.8%和21.6%,灌溉水分生产效率分别增加13.3%和21.8%,作物水分生产效率分别增加16.4%和22.9%。综合试验结果和经济成本考虑,油葵生育期灌水2次、播前灌水1次、冬灌1次,生育期5-9月持续排水,这是适宜惠农当地太阳能暗管排水条件下油葵的灌排制度。  相似文献   
106.
以小麦品种济麦22为试验材料,采用裂区试验设计,耕作方式为主区,分别设常规翻耕(C)、深松(S)、旋耕(R)处理,副区为秸秆还田量,分别设秸秆全还田(P)和秸秆不还田(A)处理,采用Biolog Eco技术测定土壤微生物碳源代谢功能,并分析土壤基本理化性质和作物产量。结果显示:深松与秸秆还田均有利于土壤含水量和有机碳含量的提高,0~15 cm土层分别提高了9.78%和24.00%,15~30 cm土层分别提高了7.08%和15.81%;深松提高了15~30 cm土层的pH值6.67%,秸秆还田提高了0~15 cm土层的pH值4.32%。深松和秸秆还田均有利于代谢多样性(丰富度指数、香浓多样性指数)、碳源代谢强度的提高,0~15 cm土层分别提高了26.84%、3.84%和38.02%,15~30 cm土层分别提高了11.87%、 3.63%和14.74%。主成分分析表明常规翻耕秸秆不还田和旋耕耕作秸秆不还田碳源代谢功能相近,15~30 cm层次内常规翻耕秸秆全还田碳源代谢功能和深松耕作秸秆全还田处理相近。深松和秸秆还田平均提高了小麦产量5.82%,微生物碳源代谢功能与小麦产量具有极显著的相关性。  相似文献   
107.
108.
109.
Succession is one of the central themes of ecology;however,the relationship between aboveground plant communities and underground soils during secondary succession remains unclear.In this study,we investigated the composition of plant community,plant-soil C:N:P stoichiometry and their relationships during secondary succession after the abandonment of farmlands for 0,10,20,30,40 and 50 a in China,2016.Results showed that the composition of plant communities was most diverse in the farmlands after secondary succession for 20 and 50 a.Soil organic carbon and total nitrogen contents slightly decreased after secondary succession for 30 a,but both were significantly higher than those of control farmland(31.21%-139.10%and 24.24%-121.21%,respectively).Moreover,C:N ratios of soil and microbe greatly contributed to the changes in plant community composition during secondary succession of abandoned farmlands,explaining 35.70%of the total variation.Particularly,soil C:N ratio was significantly and positively related with the Shannon-Wiener index.This study provides the evidence of synchronous evolution between plant community and soil during secondary succession and C:N ratio is an important linkage between them.  相似文献   
110.
Soil surface mulching and planting density regulation are widely used for effective utilization of limited rainwater resources and improvement of crop productivity in dryland farming.However,the combined effects of mulching type and planting density on maize growth and yield have been seldom studied,especially in different hydrological years.A field experiment was conducted to evaluate the effects of mulching type and planting density on the soil temperature,growth,grain yield(GY),water use efficiency(WUE)and economic benefit of rainfed maize in the drylands of northern China during 2015-2017.Precipitation fluctuated over the three years.There were four mulching types(NM,flat cultivation with non-mulching;SM,flat cultivation with straw mulching;RP,plastic-mulched ridge plus bare furrow;RPFS,plastic-mulched ridge plus straw-mulched furrow)and three planting densities(LD,low planting density,45.0×10^3 plants/hm^2;MD,medium planting density,67.5×10^3 plants/hm^2;HD,high planting density,90.0×10^3 plants/hm^2).Results showed that soil temperature was higher with RP and lower with SM compared with NM,but no significant difference was found between RPFS and NM.More soil water was retained by soil mulching at the early growth stage,but it significantly varied at the middle and late growth stages.Maize growth was significantly improved by soil mulching.With increasing planting density,stem diameter,net photosynthetic rate and chlorophyll content tended to decline,whereas a single-peak trend in biomass yield was observed.Mulching type and planting density did not have significant effect on evapotranspiration(ET),but GY and WUE were significantly affected.There were significant interacting effects of mulching type and planting density on biomass yield,GY,ET and WUE.Compared with NM,RPFS,RP and SM increased GY by 57.5%,50.8%and 18.9%,and increased WUE by 66.6%,54.3%and 18.1%,respectively.At MD,GY increased by 41.4%and 25.2%,and WUE increased by 38.6%and 22.4%compared with those of at LD and HD.The highest maize GY(7023.2 kg/hm^2)was observed under MD+RPFS,but the value(6699.1 kg/hm^2)was insignificant under MD+RP.Similar trends were observed for WUE under MD+RP and MD+RPFS,but no significant difference was observed between these two combinations.In terms of economic benefit,net income under MD+RP was the highest with a 9.8%increase compared with that of under MD+RPFS.Therefore,we concluded that RP cultivation pattern with a suitable planting density(67.5×10^3 plants/hm^2)is promising for rainwater resources utilization and maize production in the drylands of northern China.  相似文献   
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