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Assessment of CH_(4) flux and its influencing drivers in the rice-wheat agroecosystem of the Huai River Basin,China
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作者 Xiaolan Yu Fangmin Zhang +3 位作者 Yanqiu Fang Xiaohan Zhao Kaidi Zhang Yanyu Lu 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第12期4203-4215,共13页
To understand the CH_(4) flux variations and their climatic drivers in the rice-wheat agroecosystem in the Huai River Basin of China,the CH_(4) flux was observed by using open-path eddy covariance at a typical rice-wh... To understand the CH_(4) flux variations and their climatic drivers in the rice-wheat agroecosystem in the Huai River Basin of China,the CH_(4) flux was observed by using open-path eddy covariance at a typical rice-wheat rotation system in Anhui Province,China from November 2019 to October 2021.The variations and their drivers were then analyzed with the Akaike information criterion method.CH_(4) flux showed distinct diurnal variations with single peaks during 9:00-13:00 local time.The highest peak was 2.15μg m^(-2)s^(-1)which occurred at 11:00 in the vegetative growth stage in the rice growing season(RGS).CH_(4) flux also showed significant seasonal variations.The average CH_(4)flux in the vegetative growth stage in the RGS(193.8±74.2 mg m^(-2)d^(-1))was the highest among all growth stages.The annual total CH_(4) flux in the non-rice growing season(3.2 g m^(-2))was relatively small compared to that in the RGS(23.9 g m^(-2)).CH_(4) flux increased significantly with increase in air temperature,soil temperature,and soil water content in both the RGS and the non-RGS,while it decreased significantly with increase in vapor pressure deficit in the RGS.This study provided a comprehensive understanding of the CH_(4) flux and its drivers in the rice-wheat rotation agroecosystem in the Huai River Basin of China.In addition,our findings will be helpful for the validation and adjustment of the CH_(4) models in this region. 展开更多
关键词 CH_(4) flux eddy covariance method rice-wheat rotation agroecosystem Huai River Basin
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Fertilization and Soil Ploughing Practices under Changing Physical Environment Lead to Soil Organic Carbon Dynamics under Conservation Agriculture in Rice-Wheat Cropping System: A Scoping Review
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作者 Salwinder Singh Dhaliwal Arvind Kumar Shukla +8 位作者 Sanjib Kumar Behera Sarwan Kumar Dubey Agniva Mandal Mehakpreet Kaur Randhawa Sharanjit Kaur Brar Gagandeep Kaur Amardeep Singh Toor Sohan Singh Walia Priyadarshani Arun Khambalkar 《Agricultural Sciences》 2024年第1期82-113,共32页
Ploughing and fertilization practices in rice-wheat system have deteriorated the soil carbon (C) pools. Conservation agriculture (CA) based management approaches have proven to enhance C sequestration and reverse the ... Ploughing and fertilization practices in rice-wheat system have deteriorated the soil carbon (C) pools. Conservation agriculture (CA) based management approaches have proven to enhance C sequestration and reverse the loss of soil-organic-carbon (SOC), which further enhances soil fertility. Different fractions of SOC pools react to the alterations in management practices and indicate changes in SOC dynamics as compared to total C in the soil. Higher SOC levels in soil have been observed in case of reduced/no-till (NT) practices than conventional tillage (CT). However, between CT and zero tillage/NT, total SOC stocks diminished with an increase in soil depth, which demonstrated that the benefits of SOC are more pronounced in the topsoil under NT. Soil aggregation provides physical protection to C associated with different-sized particles, thus, the improvement in soil aggregation through CA is an effective way to mitigate soil C loss. Along with less soil disturbance, residual management, suitable crop rotation, rational application of manures and fertilizers, and integrated nutrient management have been found to be effective in not only improving soil C stock but also enhancing the soil health and productivity. Thus, CA can be considered as a potential method in the build-up of SOC of soil in rice-wheat system. 展开更多
关键词 TILLAGE Conservation Agriculture Soil Organic Carbon Carbon Fractions rice-wheat System Organic Amendments
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Carbon Dioxide, Methane, and Nitrous Oxide Emissions from a Rice-Wheat Rotation as Affected by Crop Residue Incorporation and Temperature 被引量:29
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作者 ZOU Jianwen(邹建文) +7 位作者 HUANG Yao(黄耀) ZONG Lianggang(宗良纲) ZHENG Xunhua(郑循华) WANG Yuesi(王跃思) 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2004年第5期691-698,共8页
Field measurements were made from June 2001 to May 2002 to evaluate the effect of crop residue application and temperature on CO2, CH4, and N2O emissions within an entire rice-wheat rotation season. Rapeseed cake and ... Field measurements were made from June 2001 to May 2002 to evaluate the effect of crop residue application and temperature on CO2, CH4, and N2O emissions within an entire rice-wheat rotation season. Rapeseed cake and wheat straw were incorporated into the soil at a rate of 2.25 t hm(-2) when the rice crop was transplanted in June 2001. Compared with the control, the incorporation of rapeseed cake enhanced the emissions of CO2, CH4, and N2O in the rice-growing season by 12.3%, 252.3%, and 17.5%, respectively, while no further effect was held on the emissions of CO2 and N2O in the following wheat-growing season. The incorporation of wheat straw enhanced the emissions of CO2 and CH4 by 7.1% and 249.6%, respectively, but reduced the N2O emission by 18.8% in the rice-growing season. Significant reductions of 17.8% for the CO2 and of 12.9% for the N2O emission were observed in the following wheat-growing season. A positive correlation existed between the emissions of N2O and CO2 (R-2 = 0.445, n = 73,p < 0.001) from the rice-growing season when N2O was emitted. A trade-off relationship between the emissions of CH4 and N2O was found in the rice-growing season. The CH4 emission was significantly correlated with the CO2 emission for the period from rice transplantation to field drainage, but not for the entire rice-growing season. In addition, air temperature was found to regulate the CO2 emissions from the non-waterlogged period over the entire rice-wheat rotation season and the N2O emissions from the nonwaterlogged period of the rice-growing season, which can be quantitatively described by an exponential function. The temperature coefficient (Q(10)) was then evaluated to be 2.3+/-0.2 for the CO2 emission and 3.9+/-0.4 for the N2O emission, respectively. 展开更多
关键词 emissions of CO2 CH4 and N2O rice-wheat rotation incorporation of crop residues temperature
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A Field Study on Effects of Nitrogen Fertilization Modes on Nutrient Uptake,Crop Yield and Soil Biological Properties in Rice-Wheat Rotation System 被引量:16
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作者 GUAN Guan TU Shu-xin +2 位作者 YANG Jun-cheng ZHANG Jian-feng YANG Li 《Agricultural Sciences in China》 CAS CSCD 2011年第8期1254-1261,共8页
Rational application of nitrogen (N) fertilizers is an important measure to raise N fertilizer recovery rate and reduce N loss.A two-year field experiment of rice-wheat rotation was employed to study the effects of ... Rational application of nitrogen (N) fertilizers is an important measure to raise N fertilizer recovery rate and reduce N loss.A two-year field experiment of rice-wheat rotation was employed to study the effects of N fertilization modes including a N fertilizer reduction and an organic manure replacement on crop yield,nutrient uptake,soil enzyme activity,and number of microbes as well as diversity of microbes.The result showed that 20% reduction of traditional N fertilizer dose of local farmers did not significantly change crop yield,N uptake,soil enzyme activity,and the number of microbes (bacteria,actinomycetes,and fungi).On the basis of 20% reduction of N fertilizer,50% replacement of N fertilizer by organic manure increased the activity of sucrose,protease,urease,and phosphatase by 46-62,27-89,33-46,and 35-74%,respectively,and the number of microbes,i.e.,bacteria,actinomycetes,and fungi by 36-150,11-153,and 43-56%,respectively.Further,organic fertilizer replacement had a Shannon's diversity index (H) of 2.18,which was higher than that of other modes of single N fertilizer application.The results suggested that reducing N fertilizer by 20% and applying organic manure in the experimental areas could effectively lower the production costs and significantly improve soil fertility and biological properties. 展开更多
关键词 rice-wheat rotation N fertilization mode organic manure replacement soil enzyme activity microbial diversity
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Application of Micronutrients in Rice-Wheat Cropping System of South Asia 被引量:2
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作者 Faisal NADEEM Muhammad FAROOQ 《Rice science》 SCIE CSCD 2019年第6期356-371,共16页
Rice-wheat cropping system (RWCS) is one of the most important cropping systems in South Asia. However, sustainability of this system is under threat owing to several factors, of which deficiency of micronutrients par... Rice-wheat cropping system (RWCS) is one of the most important cropping systems in South Asia. However, sustainability of this system is under threat owing to several factors, of which deficiency of micronutrients particularly zinc (Zn), boron (B) and manganese (Mn) is one of the major problems. Continuous rotation of rice and wheat, imbalanced fertilizer use and little/no use of micronutrient-enriched fertilizers induce deficiencies of Zn, B and Mn in the RWCS of South Asia. Here we review that (i) imbalanced fertilizer use and organic matter depletion deteriorate soil structure resulting in low efficiency of applied macro- and micro-nutrients in RWCS.(ii) The micronutrients (Zn, B and Mn) are essentially involved in metabolism of rice and wheat plants, including chlorophyll synthesis, photosynthesis, enzyme activation and membrane integrity.(iii) Availability and uptake of Zn, B and Mn from rhizosphere depend on the physico-chemical soil properties (which differ under aerobic and anaerobic conditions) including soil pH, soil organic matter, soil moisture and interaction of these micronutrients with other nutrients.(iv) Plant ability to uptake and utilize the nutrients is affected by several plant factors such as root architecture, root hairs, transport kinetics parameter and root exudates.(v) Crop management and application of these microelements can help correct the micronutrients deficiency and enhance their grain concentration. 展开更多
关键词 MICRONUTRIENT DEFICIENCY rice-wheat CROPPING system AGRONOMIC approach
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Experiences and Research Perspectives on Sustainable Development of Rice-Wheat Cropping Systems in the Chengdu Plain, China 被引量:2
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作者 ZHENG Jia-guo CHI Zhong-zhi JIANG Xin-lu TANG Yong-lu ZHANG Hong 《Agricultural Sciences in China》 CAS CSCD 2010年第9期1317-1325,共9页
The rice and wheat cropping pattern is one of the main cropping systems in the world. A large number of research results showed that successive cropping of rice and wheat resulted in a series of problems such as hinde... The rice and wheat cropping pattern is one of the main cropping systems in the world. A large number of research results showed that successive cropping of rice and wheat resulted in a series of problems such as hindering nutrition absorption, gradual degeneration of soil fertility, decline of soil organic matter, and increased incidence of diseases and pests. In China, especially in the Chengdu plain where rice-wheat cropping system is practiced, productivity and soil fertility was enhanced and sustained. This paper reviews the relevant data and experiences on rice-wheat cropping in the Chengdu Plain from 1977 to 2006. The principal sustainable strategies used for rice-wheat cropping systems in Chengdu Plain included: 1) creating a favorable environment and viable rotations; 2) balanced fertilization for maintenance of sustainable soil productivity; 3) improvement of crop management for higher efficiency; and 4) use the newest cultivars and cultivation techniques to upgrade the production level. Future research is also discussed in the paper as: 1) the constant topic: a highly productive and efficient rice-wheat cropping system for sustainable growth; 2) the future trend: simplified cultivation techniques for the rice-wheat cropping system; 3) the foundation: basic research for continuous innovation needed for intensive cropping. It is concluded that in the rice-wheat cropping system, a scientific and reasonable tillage/cultivation method can not only avoid the degradation of soil productivity, but also maintain sustainable growth in the long run. 展开更多
关键词 rice-wheat cropping system principle strategies ROTATION sustainable soil productivity SIMPLIFICATION cultivation techniques Chengdu Plain
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Low N apparent surplus with higher rice yield under long-term fertilizer postponing in the rice-wheat cropping system 被引量:3
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作者 Yan Zhou Lei Xu +6 位作者 Jianwei Zhang Weiwei Li Yu Jiang Songhan Wang Yanfeng Ding Zhenghui Liu Ganghua Li 《The Crop Journal》 SCIE CSCD 2022年第4期1178-1186,共9页
Nitrogen(N)fertilization increases rice yield,but inappropriate N fertilizer application increases N loss and the risk of environmental pollution.Short-term fertilizer postponing(FP)generally reduces N apparent surplu... Nitrogen(N)fertilization increases rice yield,but inappropriate N fertilizer application increases N loss and the risk of environmental pollution.Short-term fertilizer postponing(FP)generally reduces N apparent surplus and increases rice yields,but the effects of long-term FP on N surplus and rice yields remain unknown.Our study was the first to investigate the impacts of long-term FP(11 years)on N apparent surplus and rice yields.FP effects in the short term(≤6 years)did not affect rice yields,whereas FP effects in the long term(>6 years)increased rice yields by 13.9%compared with conventional fertilization(CF).FP did not affect panicles per unit area,1000-kernel weight,and filled-kernel rate,but spikelets per panicle increased over time due to spikelet formation stimulation.FP also reduced the N apparent surplus over time more strongly than CF owing to higher N accumulation and N utilization efficiency.FP effects in the long term also significantly increased soil organic matter,total N,and NH4_(+)^(-)N content.Our results were supported by a pot experiment,showing that rice yields in soils with a history of FP were significantly higher than those for soils without a history of FP,indicating that FP increased rice yields more strongly in later years mainly because of soil quality improvement.Our findings suggest that longterm FP can reduce N loss while increasing rice yields by improving soil quality. 展开更多
关键词 Fertilizer postponing N apparent surplus Rice yield Spikelets per panicle rice-wheat cropping systems
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Mechanized Transplanting of Rice(Oryza sativa L.)in Nonpuddled and No-Till Conditions in the Rice-Wheat Cropping System in Haryana,India 被引量:2
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作者 Baldev Raj Kamboj Dharam Bir Yadav +4 位作者 Ashok Yadav Narender Kumar Goel Gurjeet Gill Ram K.Malik Bhagirath Singh Chauhan 《American Journal of Plant Sciences》 2013年第12期2409-2413,共5页
The common practice of establishing rice in the rice-wheat system in India is manual transplanting of seedlings in the puddled soil. Besides being costly, cumbersome, and time consuming, puddling results in degradatio... The common practice of establishing rice in the rice-wheat system in India is manual transplanting of seedlings in the puddled soil. Besides being costly, cumbersome, and time consuming, puddling results in degradation of soil and the formation of a hard pan, which impedes root growth of subsequent upland crops. In addition, decreased availability and increasing cost of labor have increased the cost of rice cultivation through conventional methods. Because of these concerns, there is a need for mechanized transplanting of rice which is less labor-intensive and can ensure optimum plant population under nonpuddled and/or no-till conditions. A large number of on-farm trials were conducted at farmers’ fields in Haryana, India, from 2006 to 2010 to evaluate the performance of the mechanical transplanted rice (MTR) under nonpuddled and no-till situations as compared to conventional puddled transplant rice (CPTR). Compared with CPTR, nonpuddled MTR produced 3%-11% higher grain yield in different years. Rice cultivars, viz. HKR47, HKR127, PR113, PR114, PB1, PB1121, CSR30, and Arize6129, performed consistently better under nonpuddled MTR as compared to CPTR. Performance of different cultivars (PR113, PR114, HKR47, and Pusa 44) was also better under no-till MTR as compared to CPTR. The “basmati” cultivar CSR30 performed equally in no-till MTR and CPTR systems. The results of our study suggest that rice can be easily grown under nonpuddled and no-till conditions with yield advantages over the CPTR system. Even in the case of similar yield between CPTR and MTR systems, the MTR system will help in reducing labor requirement and ultimately, will increase overall profits to farmers. 展开更多
关键词 Farmer Participatory Research Self Propelled Paddy Transplanter Double No-Till rice-wheat System Nonpuddled Transplanted Rice
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Yield Gap Analysis of Wheat in Rice-wheat Rotation Regions of Anhui Province,China 被引量:1
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作者 Xianfang HE Li ZHAO +2 位作者 Ze LIU Muhammad SAJJAD Jianlai WANG 《Asian Agricultural Research》 2019年第11期61-66,共6页
The present study was planned to analyze the yield gap of wheat and its production constraints in order to explore the approaches for narrowing the yield gap of wheat in different wheat-rice rotation regions of Anhui ... The present study was planned to analyze the yield gap of wheat and its production constraints in order to explore the approaches for narrowing the yield gap of wheat in different wheat-rice rotation regions of Anhui Province. The production status and limiting factors of wheat in three rice-wheat rotation regions which are named Region Ⅰ,Region Ⅱ and Region Ⅲ were surveyed by using participatory rural appraisal method. The personnel,who were engaged in wheat production in rice-wheat rotation regions of Anhui Province,mainly ageing from 41 to 60,accounted for 79% of the total personnel in the regions. There were significant differences in yield of wheat which was planted after rice in Anhui. The yield was ranging from 8 907. 00 to 2 700. 00 kg/ha from north to south with an average of 4 978. 5 kg/ha,and the rank of overall average yields at province level was Region Ⅰ( 5 685. 60 kg/ha) > Region Ⅱ( 5 600. 10 kg/ha) > Region Ⅲ( 3 048. 60 kg/ha). The average yield gap of wheat in wheat-rice rotation regions at province level was up to 2 637. 00 kg/ha,and the extreme yield gaps per hectare in the same region were 2 778. 00 kg( Region Ⅰ),2 502. 00 kg( Region Ⅱ) and 1 575. 00 kg( Region Ⅲ) respectively. The objective constraints were Fusarium head blight and pre-harvest sprouting;the subjective constraints were variety selection and layout,poor sowing quality and low seedling quality;social constraints were high cost,low market price and poor efficiency;and ecological constraints were poor soil texture,soil infertility and poor water-and-fertilizer retention. The yield gap of wheat in rice-wheat rotation regions can be effectively reduced by improving yield potential of low-and-medium-yielding fields. Selecting appropriate wheat varieties and layout,constructing disease forecast system,improving agricultural machinery and social service organizations of plant protection,and strengthening scientific training as well as technological training of new agricultural operators and agricultural machinery technicians are the core means to narrowing the yield gap of wheat in rice-wheat rotation regions at province scale. 展开更多
关键词 rice-wheat ROTATION Yield gap Production Constraints WHEAT CLIMATIC FACTORS Disease FACTORS Policy FACTORS
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Responses of Wheat Production, Quality, and Soil Profile Properties to Biochar Applied at Different Seasons in a Rice-Wheat Rotation
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作者 Lipei Chen Rilie Deng +2 位作者 Xuewen Li Min Yu Hongdong Xiao 《Phyton-International Journal of Experimental Botany》 SCIE 2023年第12期3359-3370,共12页
In the rice-wheat rotation system,biochar(BC)can be applied at the initiation of the rice or wheat season.Here,we compared the effects of BC that were applied at two different crop seasons on wheat production,quality,... In the rice-wheat rotation system,biochar(BC)can be applied at the initiation of the rice or wheat season.Here,we compared the effects of BC that were applied at two different crop seasons on wheat production,quality,and soil profile properties in a rice-wheat rotation system with nitrogen(N)fertilizer applied at 280 kg/ha rate.Results showed that both wheat grain production and N recovery use efficiency were influenced by BC applied at two crop seasons.Biochar application did not affect the total non-essential amino-acid,but when applied during wheat season,BC significantly(p<0.05)increased total essential amino acid in grain by 12.3%,particularly for the valine(+48.2%),methionine(+43.8%),and isoleucine(+10.3%).We found that BC significantly(p<0.05)decreased the pH of soil at 0–6 cm and 20–30 cm by 0.14–0.18 and 0.05–0.08 units,respectively.The NH4+-N content of the whole observed soil profile were reduced by BC application,however,the effect of BC on NO3–-N content varied with the application season and profile depth.Interestingly,BC applied at wheat and rice season significantly(p<0.05)improved topsoil N contents by 48.4%and 19.7%,respectively.In addition,data suggested that BC applied during wheat season performed better in enhancing soil available phosphorus,potassium,and organic matter contents.In conclusion,we suggest that the optimum application time of BC for enhancing crop production and quality(take amino-acid content for example)and improving soil fertility is at the initiation of the wheat season. 展开更多
关键词 AMINO-ACID BIOCHAR paddy soil rice-wheat rotation soil fertility soil organic matter
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Design and experiment of the ditching device for wheat seeders capable of ditching sloped drainage furrows in rice-wheat rotation areas
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作者 Quanyu Wang Ming Peng +3 位作者 Jin He Caiyun Lu Chao Wang Zhenwei Tong 《International Journal of Agricultural and Biological Engineering》 2025年第1期154-164,共11页
To solve the problem of field waterlogging during wheat sowing in rice-wheat rotation areas,which causes sticky and wet soil,thus affecting the growth of wheat,this paper proposed a sloped ditching method based on las... To solve the problem of field waterlogging during wheat sowing in rice-wheat rotation areas,which causes sticky and wet soil,thus affecting the growth of wheat,this paper proposed a sloped ditching method based on laser alignment technology,and designed a combined ditching device with a front ditching shovel(FDS)and a rear ditching plow(RDP)to create sloped drainage furrows when sowing wheat.The key factors affecting the performance of RDP and value ranges were determined through theoretical analysis.Through discrete element method(DEM)simulation,the influence of different structural parameter combinations on slope stability was studied,and the optimal parameter combination was determined as the soil lifting angle of 50°,the minimum element angle of 35°,and the maximum element angle of 40°.The field test showed that the ditching device can effectively create sloped trapezoidal drainage furrows.The slope stability coefficient and slope accuracy coefficient were both greater than 85%,which meets the requirements of drainage.This paper provides a new ditching method and theoretical basis for the development of a sowing and ditching combined machine in rice stubble fields. 展开更多
关键词 rice-wheat rotation laser wheat seeder sloped drainage furrow discrete element method
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藕-稻轮作对土壤肥力及后茬水稻产量和品质的影响 被引量:1
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作者 王志刚 周佳燕 +7 位作者 周建霞 陈惠哲 张玉屏 向境 张义凯 徐逸文 黄颂迪 王亚梁 《中国稻米》 北大核心 2025年第3期100-102,107,共4页
浙江人多地少,人均耕地面积仅200 m2左右,粮食自给率不高。为稳定当地水稻种植面积并提高农民收入,开展了藕-稻轮作模式和麦-稻轮作模式比较试验。结果表明,水稻种植前,藕-稻轮作模式的土壤全氮、碱解氮、有效磷和速效钾含量极显著高于... 浙江人多地少,人均耕地面积仅200 m2左右,粮食自给率不高。为稳定当地水稻种植面积并提高农民收入,开展了藕-稻轮作模式和麦-稻轮作模式比较试验。结果表明,水稻种植前,藕-稻轮作模式的土壤全氮、碱解氮、有效磷和速效钾含量极显著高于麦-稻模式,分别高21.52%、45.28%、274.57%和56.50%,而有机质含量和pH值与麦-稻模式相近;水稻收获后,藕-稻轮作模式下的土壤碱解氮和速效钾含量较麦-稻模式显著降低,分别低13.90%和33.47%,而pH值、有效磷和有机质含量显著或极显著高于麦-稻模式,分别高9.23%、333.78%和58.13%;藕-稻轮作模式水稻产量低于麦-稻模式,其中,每穗实粒数显著高于麦-稻模式,而有效穗数和千粒重显著或极显著低于麦-稻模式;藕-稻轮作模式稻米品质总体上优于麦-稻模式,其中,糙米率和蛋白质含量显著或极显著高于麦-稻模式。在实际生产中,为了协调穗粒结构从而提高水稻产量,建议在藕-稻轮作模式下采取适当增加水稻种植密度、后期少量施用穗肥或者喷施叶面肥等措施。 展开更多
关键词 水稻 种植模式 藕-稻轮作 麦-稻模式 产量 品质
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组合式稻麦兼用播种开沟器设计与试验
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作者 臧英 罗锋 +3 位作者 黄子顺 姜有聪 李嘉琦 张明华 《农业工程学报》 北大核心 2025年第19期42-53,共12页
为了减小双圆盘开沟器工作阻力,改善种沟沟底不平整、沟壁倾斜不合适的问题,从而为稻麦种子提供更适宜的种床环境,该研究结合切割挤压及滑切原理,设计了一种组合式稻麦兼用播种开沟器,利用双圆盘开沟部件与滑切部件协同配合开出种沟。首... 为了减小双圆盘开沟器工作阻力,改善种沟沟底不平整、沟壁倾斜不合适的问题,从而为稻麦种子提供更适宜的种床环境,该研究结合切割挤压及滑切原理,设计了一种组合式稻麦兼用播种开沟器,利用双圆盘开沟部件与滑切部件协同配合开出种沟。首先,通过理论分析确定了开沟器的关键结构参数;其次,基于EDEM仿真软件,结合土槽试验验证构建了开沟器高可靠性仿真模型;随后,采用EDEM软件进行开沟过程仿真试验,以工作阻力、回土率及土壤扰动宽度为试验指标开展单因素试验,得到各关键参数的取值范围;最后,通过Box-Behnken正交组合仿真试验,得出开沟器的最优参数组合为:圆盘夹角16°、入土角40°、竖直距离14 mm;以此参数组合进行土槽试验,明确了开沟器工作阻力为105.5 N,回土率为41.3%,土壤扰动宽度为108 mm,相较于稻麦轮作区常用双圆盘开沟器,工作阻力减小了13.74%,回土率增加了20.41%,土壤扰动宽度减小了6.25%。播种试验进一步表明,所设计的开沟器作业效果满足稻麦播种农艺要求。 展开更多
关键词 农业机械 开沟器 稻麦兼用 工作阻力 回土率
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基于CFD-DEM的气送式稻麦兼用型高速播种机种子减速器设计与试验
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作者 臧英 张美林 +3 位作者 黄子顺 姜有聪 钱诚 王在满 《农业机械学报》 北大核心 2025年第5期222-234,共13页
针对气送式稻麦兼用型高速播种机作业时种子输送速度快造成投种精度低、投种不稳定等问题,设计了一种基于旋风减速原理的种子减速器。采用CFD-DEM耦合仿真方法进行单因素试验,确定主要结构因素并选取适宜尺寸区间。为确定种子减速器结... 针对气送式稻麦兼用型高速播种机作业时种子输送速度快造成投种精度低、投种不稳定等问题,设计了一种基于旋风减速原理的种子减速器。采用CFD-DEM耦合仿真方法进行单因素试验,确定主要结构因素并选取适宜尺寸区间。为确定种子减速器结构参数,基于单因素试验结果开展了Box-Behnken正交组合仿真试验,结果表明:最佳结构尺寸为圆筒直径D为82.352 mm,圆筒长度H_(t)为101.364 mm,排气口直径D_(P)为25.0002 mm,锥筒长度H_(z)为67.9025 mm,此时籼稻种子出种口流速V_(1)和种子竖直速度V_(2)分别为5.212 m/s和0.462 m/s;粳稻种子出种口流速V_(1)和种子竖直速度V_(2)分别为5.339 m/s和0.473 m/s;小麦种子出种口流速V_(1)和种子竖直速度V_(2)分别为5.341 m/s和0.408 m/s。台架验证试验结果表明,在出种口处籼稻种子竖直速度为0.411 m/s,粳稻种子竖直速度为0.452 m/s,小麦种子竖直速度为0.457 m/s,与仿真试验结果较符合。条播性能台架试验结果表明,有种子减速器时排种成条效果明显优于无种子减速器情况,而且籼稻、粳稻和小麦排量均匀性变异系数分别由无种子减速器时41.61%、25%和37.84%依次降至9.10%、8.42%和8.49%,满足种子减速器性能要求。研究结果可为后续提高气送式稻麦兼用型播种机播种性能提供指导。 展开更多
关键词 高速播种机 稻麦兼用 种子减速器 CFD-DEM
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我国主要粮食作物抗病性及病害绿色防控
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作者 曾庆东 吴建辉 +3 位作者 刘胜杰 韩德俊 刘万才 康振生 《植物保护》 北大核心 2025年第5期74-86,130,共14页
我国是人口众多的农业大国,粮食年消费量超7亿t,未来粮食供需紧平衡将成长期态势,病虫害加重是重要制约因素。“预防为主,综合防治”的植保方针推动我国从单一化学防治转向科学综合防控。20世纪80年代以来,我国农作物重大病虫害呈现先... 我国是人口众多的农业大国,粮食年消费量超7亿t,未来粮食供需紧平衡将成长期态势,病虫害加重是重要制约因素。“预防为主,综合防治”的植保方针推动我国从单一化学防治转向科学综合防控。20世纪80年代以来,我国农作物重大病虫害呈现先加重后下降的趋势,这得益于综合防控技术手段的提升。其中种植抗病品种是最为有效的措施,目前小麦、水稻、玉米等作物已定位和克隆众多抗病基因,并转入到生产品种中,提高了作物的整体抗病水平。此外,感病基因研究也取得进展,其功能缺失突变可赋予广谱抗性。在当前大健康的背景下,需要统筹推进绿色防控与统防统治协同治理,强化生态优先、分区施策和科学用药,注重从农田生态系统优化与作物健康着手,分作物集成,推广非化学防控优先、化学防治精准高效的综合策略,以实现产量稳定、品质提升和农业可持续发展。 展开更多
关键词 小麦 玉米 水稻 抗病性 绿色防控
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稻麦之别:种植结构差异与农村人力资本积累
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作者 马克卫 王丽丽 尤亮 《贵州财经大学学报》 北大核心 2025年第4期82-89,共8页
“南稻北麦”是我国粮食种植结构最典型的差异化特征,对农村人力资本积累的影响持久且深远。利用CFPS数据作为研究样本,聚焦60、70后农村劳动力主体,结合多元回归模型,考察粮食种植结构对农村人力资本积累的影响效应。结果表明,稻谷种... “南稻北麦”是我国粮食种植结构最典型的差异化特征,对农村人力资本积累的影响持久且深远。利用CFPS数据作为研究样本,聚焦60、70后农村劳动力主体,结合多元回归模型,考察粮食种植结构对农村人力资本积累的影响效应。结果表明,稻谷种植区的农村人力资本积累水平显著低于小麦种植区。经济发展水平的提高可以弱化稻谷种植对人力资本积累的显著负向影响;粮食种植结构对农村人力资本积累的影响在不同年龄结构之间也呈现出差异性,特别是在1960—1964年与1975—1979年出生的农村劳动力,种植结构对其人力资本积累水平的影响更为显著。值得注意的是,农民受教育水平提高和稻谷种植面积扩大的协同作用,将增强农民从事农业工作的意愿。 展开更多
关键词 稻麦之别 粮食种植结构 农村人力资本积累 种植面积 农民就业选择
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稻麦周年轮作区秸秆还田农机农艺融合技术现状与展望
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作者 李新伟 袁先福 +2 位作者 王伏伟 程驭 汪建飞 《安徽农学通报》 2025年第21期1-6,共6页
本文系统梳理了稻麦周年轮作区秸秆还田的技术体系、机械装备发展现状以及农机农艺融合的实践模式,并提出对农机农艺融合技术的展望。粉碎旋耕、覆盖、翻埋和反旋灭茬等秸秆还田技术已在区域内广泛推广,并配套研发了粉碎还田机、深翻还... 本文系统梳理了稻麦周年轮作区秸秆还田的技术体系、机械装备发展现状以及农机农艺融合的实践模式,并提出对农机农艺融合技术的展望。粉碎旋耕、覆盖、翻埋和反旋灭茬等秸秆还田技术已在区域内广泛推广,并配套研发了粉碎还田机、深翻还田机、免耕与覆盖播种机以及多功能一体化机具等一系列机械装备。秸秆还田中典型的农机农艺融合模式涉及“粉碎还田+免耕播种”“秸秆粉碎+深松整地+宽窄行种植”“部分还田+秸秆肥料化利用”“秸秆还田+配方施肥+病虫草害综合防控”等。其关键技术包括机具秸秆粉碎与农艺覆盖控制的协同化结合有助于保障幼苗顺利出土;秸秆粉碎还田与腐熟剂及有机肥施用的结合可促进养分循环利用;通过均匀覆盖和优化轮作制度等措施能够实现对秸秆还田可能引发的病虫害的综合防治;“粗粉碎+精细粉碎”配合水分调控与微生物菌剂使用利于提升腐殖化效率。农机农艺融合在实际应用中仍面临着地形适应性不足、秸秆处理效率偏低、重复机械作业导致土壤压实问题突出以及秸秆覆盖还田可能加剧病虫草害的发生等挑战。未来应在以下几个方面加以提升:研发轻简型、多功能及可组合式机具,融合发展大功率多功能一体化机具与经济型轻便机具;改进粉碎装置,加快粉碎—翻埋—播种一体化复式机具的迭代升级,通过一次作业完成秸秆处理与播种;优化农艺参数,加强对典型融合模式的系统研究;注重农机与农艺措施和生态过程的协同配合。本文为优化稻麦轮作区秸秆还田技术提供参考。 展开更多
关键词 稻麦周年轮作 秸秆还田技术 农机装备 农机农艺融合 智能化 可持续农业
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施氮量对稻茬小麦弱筋生产性能的影响
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作者 佟汉文 李朝苏 +5 位作者 刘易科 付鹏浩 邹娟 吴波 朱展望 张平 《应用生态学报》 北大核心 2025年第5期1422-1430,共9页
弱筋小麦生产以较低的蛋白质和湿面筋含量为优质目标,产量和品质对施氮量的需求存在矛盾。本试验在长江中游稻茬麦区连续两年研究了施氮量(0、45、90、135、180和225 kg·hm^(-2))对4个小麦品种(川麦104、绵麦367、蜀麦1671和西科麦... 弱筋小麦生产以较低的蛋白质和湿面筋含量为优质目标,产量和品质对施氮量的需求存在矛盾。本试验在长江中游稻茬麦区连续两年研究了施氮量(0、45、90、135、180和225 kg·hm^(-2))对4个小麦品种(川麦104、绵麦367、蜀麦1671和西科麦8号)弱筋生产性能的影响。结果表明:与年度和品种相比,施氮量对小麦单位面积穗数、穗粒数、倒二叶SPAD值、氮肥偏生产力、蛋白质和湿面筋含量的影响更显著。随施氮量的增加,平均籽粒产量、单位面积穗数、穗粒数和上二叶SPAD值呈增加趋势,千粒重和氮肥偏生产力呈降低趋势,氮肥农学利用率先升后降,在90 kg·hm^(-2)施氮量达到最高值,而蛋白质和湿面筋含量先降后升,均在45 kg·hm^(-2)施氮量达到最低值。施氮量>180 kg·hm^(-2)后,4个品种籽粒产量两年度均无显著增加。施氮量≤135 kg·hm^(-2)时,绵麦367的蛋白质和湿面筋含量两年度均符合优质弱筋小麦标准,籽粒产量可达6030 kg·hm^(-2);施氮量≤90 kg·hm^(-2)时,川麦104、蜀麦1671和西科麦8号的蛋白质和湿面筋含量两年度均符合优质弱筋小麦标准,籽粒产量分别达5550、5397和5066 kg·hm^(-2)。相关分析表明,籽粒产量与单位面积穗数和穗粒数,蛋白质含量与上二叶SPAD值均呈极显著正相关。综上,稻茬小麦弱筋生产中量质协同的适宜施氮量为90~135 kg·hm^(-2),4个品种中绵麦367表现更优。提高单位面积穗数和穗粒数、降低上二叶SPAD值是长江中游稻茬小麦弱筋生产的品种选择和氮肥施用目标。 展开更多
关键词 长江中游 稻茬小麦 施氮量 籽粒产量 弱筋
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有机肥等氮替代对巢湖流域稻麦产量及土壤肥力的影响 被引量:5
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作者 刘莹 李陈 +4 位作者 骆美 高庭峰 范松 马友华 朱林 《农业资源与环境学报》 北大核心 2025年第2期329-339,共11页
为推动巢湖流域秸秆及畜禽粪便资源化利用,建立巢湖流域稻麦轮作区有机肥替代化肥技术模式,以巢湖地区典型稻-麦轮作体系为对象,本研究设置8个处理,分别为CK(不施肥)、CF(常规施肥)以及100%、50%、30%猪粪和秸秆等氮替代化肥处理,对稻... 为推动巢湖流域秸秆及畜禽粪便资源化利用,建立巢湖流域稻麦轮作区有机肥替代化肥技术模式,以巢湖地区典型稻-麦轮作体系为对象,本研究设置8个处理,分别为CK(不施肥)、CF(常规施肥)以及100%、50%、30%猪粪和秸秆等氮替代化肥处理,对稻麦产量、肥料利用效率及土壤肥力进行分析。结果表明:50%秸秆有机肥替代处理下,小麦和水稻产量最高,分别为4611.11、10364.44 kg·hm^(-2),相较于常规处理无显著差异。100%有机肥替代处理显著降低作物产量(P<0.05)。秸秆有机肥替代处理下,小麦、水稻平均产量高于猪粪有机肥替代处理。50%有机肥替代处理有效提高了小麦、水稻季氮、磷素偏生产力,相较于常规处理,小麦季氮素、磷素偏生产力平均提高14.64%、4.35%,水稻季氮素偏生产力平均增幅为13.13%。100%有机肥替代处理则显著降低了作物养分吸收利用率(P<0.05)。有机肥等氮替代能有效提高土壤pH及养分含量,并与替代比例呈正相关。综合分析稻麦生长情况及土壤理化性质,有机肥等氮替代化肥在本试验条件下是适宜巢湖流域稻麦轮作生长的化肥减量增效模式。 展开更多
关键词 有机肥 水稻 小麦 产量 土壤肥力 养分吸收
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小麦秸秆集中还田配施腐秆剂对稻麦系统温室气体排放的影响 被引量:1
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作者 李若林 王世辰 +5 位作者 靳鹏辉 张广斌 马静 祝贞科 闫志英 徐华 《农业环境科学学报》 北大核心 2025年第6期1658-1666,共9页
秸秆不合理还田显著促进稻田甲烷(CH_(4))排放,为减少CH_(4)排放,本研究提出了一种新型稻季秸秆还田方式——秸秆集中还田并配施腐秆剂。试验设置秸秆常规均匀混施还田(CK)、秸秆集中2倍还田配施腐秆剂(S2)以及秸秆集中4倍还田配施腐秆... 秸秆不合理还田显著促进稻田甲烷(CH_(4))排放,为减少CH_(4)排放,本研究提出了一种新型稻季秸秆还田方式——秸秆集中还田并配施腐秆剂。试验设置秸秆常规均匀混施还田(CK)、秸秆集中2倍还田配施腐秆剂(S2)以及秸秆集中4倍还田配施腐秆剂(S4)3个处理,采用静态箱-气相色谱法监测了2022—2023年稻麦轮作系统CH_(4)和N_(2)O的排放通量,测定了土壤氧化还原电位+-(Eh)及土壤溶解性有机碳(DOC)、土壤铵态氮(NH_(4)^(+)-N)和硝态氮(NO_(3)^(-)-N)含量。结果显示:CK处理周年CH_(4)和N_(2)O排放量分别为120.1 kg·hm^(-2)和5.08 kg·hm^(-2)(以N计);与CK相比,S2和S4分别显著降低稻季41%和28%的CH_(4)排放,但增加10%和26%的N_(2)O排放;小麦季,各处理CH_(4)均呈吸收状态,N_(2)O排放无显著差异;S2和S4水稻季CH_(4)的显著减排抵消了N_(2)O增加的增温效应,使得周年的温室气体排放总量较CK处理分别显著降低25%和12%;各处理间作物产量(水稻为5.50~5.59 t·hm^(-2),小麦为3.18~3.24 t·hm^(-2))均无显著性差异,故S2和S4的全年温室气体排放强度显著低于CK。研究表明,稻季秸秆集中还田配施腐秆剂可在不减少稻麦产量的同时显著降低温室气体排放量。 展开更多
关键词 稻麦轮作 秸秆还田 腐秆剂 温室气体 产量
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