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1.
通过调查发现,苏北地区粳稻生产中普遍存在化学品过量施用的现象,分析了其原因并提出了针对性减肥减药技术方案。方案主要包括:⑴选用适宜品种;⑵培育长秧龄壮秧、普施“出嫁药肥”;⑶麦秸全量还田;⑷浅耕地且防基肥渗漏;⑸抢早扩行移栽;⑹通气式灌溉、高质量搁田;⑺分蘖肥减量增效、施足穗肥;⑻综合防控。采用此减投技术,在化学品投入下降28%~42%的情况下,还能保障苏北地区粳稻成穗量充足、群体质量优良、病虫草害得到有效防控,进而实现“化投大降、产量不减、防效不降、安全高质”。  相似文献   
2.
Five fodder crop systems of different intensity (ranging from a double annual crop of Italian ryegrass + silage maize to a permanent meadow) were adopted for 30 years in the lowlands of Northern Italy under two input levels, differing mainly in their provision of organic fertiliser (manure). Herbicides were used in the maize crops included in all systems, except the meadow. After 30 years, the weed seedbank of all systems and input levels were assessed by the seedling emergence technique on soil samples from each plot. The cropping systems determined the abundance and composition of the weed assembly. Relatively few, frequent species made up the majority of the emerged seedlings in all systems, and there was no relationship between the total number of emerged seedlings and the mean number of species recorded in the different systems. Arabidopsis thaliana and Oxalis corniculata were abundant in the annual double crop and in the 3- and 6-year rotations that also comprised the annual double crop. These weeds, however, were unlikely to represent a major threat to the crops, due to their vigour and growth period. The permanent meadow tended to greater weed biodiversity than the other systems. The application of manure favoured the seedbank of species such as Lolium multiflorum, Digitaria sanguinalis and A. thaliana. Weed communities in the different systems were mainly determined by herbicide application, (through the ability of weeds to avoid its effects, determined by the weed life history and emergence period) and manure application (with its possible dual effect of spreading weed seeds and favouring nitrogen-responsive weeds).  相似文献   
3.
农户购买农资时面临多样化的购买渠道,而信息化与社会网络是影响农户农资购买渠道选择的重要因素。本文利用陕西、甘肃、山东和云南四省农户调研数据,比较了公司直销与农资零售店两种购买渠道的差异,运用二元 Logit 模型和中介效应模型,分析信息化与社会网络对农户农资购买渠道选择的影响。结果表明,农户选择公司直销与农资零售店的比例分别为10.1%和89.9%,即大多数农户选择农资零售店购买农资。信息利用对农户选择公司直销渠道具有显著正向影响;从亲戚和朋友两个维度测量社会网络,发现宗族型社会网络对农户选择公司直销渠道产生了正向影响,朋友圈型社会网络影响不显著;农户农资市场信息认知在信息利用促进农户选择公司直销渠道中发挥部分中介效应。因此,政府应加强农村信息基础设施建设,培养农户信息利用能力。公共信息供给过程中扩大宣传对象群体,促使信息在农户社会网络中有效扩散传播。建设农资企业与农户间有效的信息交流平台,打破信息壁垒,从而帮助农户改进农资购买决策。  相似文献   
4.
Sustainability of traditionally cultivated rice in the rice-wheat cropping zone (RWCZ) of Pakistan is dwindling due to the high cost of production, declining water resources and escalating labour availability. Thus, farmers and researchers are compelled to find promising alternatives to traditional transplanted rice (TPR). A field study was conducted in Punjab, Pakistan, in 2017 and 2018 to explore the trade-offs between water saving and paddy yield, water productivity and economics of two aromatic rice varieties under dry direct seeded rice (DDSR) and TPR. The experiment was comprised of three irrigation regimes on the basis of soil moisture tension (SMT) viz., continuous flooded (>−10 kPa SMT), alternate wetting and drying (AWD) (−20 kPa SMT) and aerobic rice (−40 kPa SMT), maintained under TPR and DDSR systems. Two aromatic rice verities: Basmati-515 and Chenab Basmati-2016 were used during both years of study. In both years, DDSR produced higher yields (13–18%) and reduced the total water inputs (8–12%) in comparison to TPR. In comparison to traditional continuous flooded (CF), AWD under DDSR reduced total water input by 27–29% and improved the leaf area index (LAI), tillering, yield (7–9%), and water productivity (44–50%). The performance of AWD with regard to water savings and increased productivity was much higher in DDSR system as compared to AWD in TPR system. Cultivation of DDSR with aerobic irrigation improved water savings (49–55%) and water productivity (22–30%) at the expense of paddy yield reduction (36–39%) and spikelet sterility. With regard to variety, the highest paddy yield (6.6 and 6.7 t ha−1) was recorded in DDSR using Chenab Basmati-2016 under AWD irrigation threshold that attributed to high tiller density and LAI. The economic analysis showed DDSR as more beneficial rice establishment method than TPR with a high benefit-cost ratio (BCR) when the crop was irrigated with AWD irrigation threshold. Our results highlighted that with the use of short duration varieties, DDSR cultivation in conjunction with AWD irrigation can be more beneficial for higher productivity and crop yield.  相似文献   
5.
Abstract

Increasing resources use efficiency in intensive cultivation systems of maize (Zea mays L.) can play an important role in increasing the production and sustainability of agricultural systems. The objectives of the present study were to evaluate DM yield and the efficiency of inputs uses under different levels of water, nitrogen (N) and phosphorus (P) in maize. Therefore, three levels of irrigation including 80 (ETc80), 100 (ETc100) and 120% (ETc120) of crop evapotranspiration were considered as the main plots, and the factorial combination of three levels of zero (N0), 200 (N200) and 400 (N400) kg N ha?1 with three levels of zero (P0), 100(P100) and 200 (P200) kg P ha?1 was considered as the sub plots. The results showed that increasing the consumption of water and P was led to the reduction of N and P utilization efficiency, while RUE increased. WUE was also increased in response to application of N and P, but decreased when ETC increased. DM yield under ETc80 treatment reduced by 11 and 12%, respectively, compared to ETc100 and ETc120 which was due to reduction of cumulative absorbed radiation (Rabs(cum)) and RUE. Under these conditions, changes of stomatal conductance (gs) had little effect on DM yield. It was also found that N limitation caused 11 and 20% reduction in DM yield compared to N200 and N400, respectively. This yield reduction was mainly the result of decrease in RUE. By decreasing Rabs(cum), P deficiency also reduced DM yield by 5 and 9%, respectively, relative to P100 and P200 treatments.  相似文献   
6.
汾渭平原农户冬小麦氮磷养分投入调查与分析   总被引:1,自引:0,他引:1  
为明确汾渭平原农户冬小麦施肥现状,并指导农户合理施肥,在汾渭平原冬小麦种植区选取22个区/县,连续2年进行农户冬小麦产量及氮、磷养分投入调查。结果表明,汾河平原和渭河平原农户冬小麦平均产量分别为6 949和6 442 kg·hm-2,其中中等产量水平(5 500 kg·hm-2)以上的农户超过80%。汾河平原农户冬小麦N和P2O5的平均投入量分别为272.6和139.1 kg·hm-2,施氮不足、适中和过量的农户分别占11.84%、23.68%和64.47%,施磷不足、适中和过量的农户分别占14.03%、7.89%和78.07%。渭河平原农户N和P2O5的平均投入量分别为196.3和147.2 kg·hm-2,施氮不足、适中和过量的农户分别占 28.63%、31.97%和39.40%,施磷不足、适中和过量的农户分别占5.95%、14.50%和79.56%。汾河平原农户冬小麦氮肥基肥和追肥比例分别为60.3%和39.7%,而渭河平原农户冬小麦氮肥基肥和追肥比例分别为 97.3%和2.7%。此外,汾河平原农户冬小麦N、P2O5的平均偏生产力分别为30.4和59.6 kg·kg-1,渭河平原农户冬小麦N、P2O5的平均偏生产力分别为38.4和56.1 kg·kg-1。总之,在汾渭平原农户冬小麦种植过程中,氮、磷肥过量施用依然严重,导致肥料利用率低,因此,未来需进一步加强对农民的宣传培训,使其科学合理施肥,促进农业绿色发展。  相似文献   
7.
本研究旨在分析小麦/西瓜/玉米间作体系限制作物产量的关键因子,为该体系的优化提供科学依据。采用农户调研的方式,对河北省曲周县的小麦/西瓜/玉米间作模式展开调查,主要调研内容是小麦和玉米的播种量、养分投入量和产量以及西瓜的养分投入量和产量,应用边界线分析方法评价小麦/西瓜/玉米间作高产体系的限制因子。结果表明,限制小麦产量的关键因子为小麦播种量,贡献率达17.8%,而养分投入量的贡献率分别为:P2O5 12.5%、K2O 11.7%、N 8.0%。限制西瓜产量的关键因子为钾肥投入量,贡献率达15.8%,N、P2O5的贡献率分别为14.2%和11.8%。限制玉米产量的关键因子为氮肥投入量,贡献率达20.6%,其他因子的贡献率分别为:K2O 14.2%,P2O5 11.5%,播种密度9.2%。因此,在小麦/西瓜/玉米间作体系中,应适当调控小麦播量,优化西瓜的钾肥和玉米的氮肥投入量,促进该间作模式的产量优势。  相似文献   
8.
Fishmeal is being trusted as the most reliable protein source due to its nutritional quality in terms of attractability, palatability, digestibility, excellent nutrient profiles to fulfil the dietary requirement of aquatic species. The aquaculture sector consumes >70% of global fishmeal, though aqua feeds constitute only 4% in total industrial feed production (900–1,000 Mt in 2018). The global fishmeal production has shown a downward trend of 26.50% during 2000 to 2018 due to the occurrences of El Niño–Southern Oscillationsand other climatic events, which in turn increased the fishmeal price from 452 USD/t (2000) to 1596.54 USD/t (2018). The increasing trend of aquaculture production along with reduced fish‐in/fish‐out ratios (0.63 in 2000 to 0.33, 0.22 in 2010 and 2015 respectively) indicates the resilience of the aquafeed sector for fishmeal replacement. The wide availability, reasonable price and reliable nutrient content made an interest in plant protein sources, but their utilization was limited due to poor digestibility, imbalanced profiles of essential nutrients and the presence of anti‐nutrients. Numerous methodologies are invented in recent times to enrich the nutritional qualities for maximizing the utilization of plant proteins in aquafeed formulations. The present review concludes that the aquafeed sector should use climate economics and technological innovations for substituting fishmeal to formulate the cost‐effective feeds.  相似文献   
9.
Data from 147 field trials were collected to study the influence of straw incorporation on soil potassium (K) under an intensive rice–oilseed rape rotation system, while pot experiments were conducted to evaluate the effects of rice straw incorporation on soil K availability. A significant correlation was observed between the soil available K and the relative yield (RRY) and the relative K uptake (RKU) of oilseed rape, with R2 values ranging from 0.07 to 0.08 and from 0.10 to 0.11, respectively, when data were fitted to a logarithmic equation model. In approximately 30% of trials, RRY reached 90%, while soil test available K values were below the critical limit, indicating that soil K values at the time of sampling (within 1 week of rice harvest) underestimated the actual soil K supply capacity. The pot experiment results showed that soil available K was affected by straw incorporation and soil type in the fallow period. The NH4OAc‐K and NaBPh4‐K concentrations of soils increased at first, and then, plateaued after 28 days. Straw incorporation significantly influenced the critical soil K concentration, which is important for making accurate K fertilizer recommendation. These results suggested that straw K should be seriously considered in making K fertilizer recommendations. Extending the sampling time from 1 to 3 weeks after the harvesting of rice to stabilize the effects of straw incorporation may help achieve a more accurate evaluation of soil available K.  相似文献   
10.
The continuous use of plowing for grain production has been the principal cause of soil degradation. This project was formulated on the hypothesis that the intensification of cropping systems by increasing biomass‐C input and its biodiversity under no‐till (NT) drives soil restoration of degraded agro‐ecosystem. The present study conducted at subtropical [Ponta Grossa (PG) site] and tropical regions [Lucas do Rio Verde, MT (LRV) site] in Brazil aimed to (i) assess the impact of the continuous plow‐based conventional tillage (CT) on soil organic carbon (SOC) stock vis‐à‐vis native vegetation (NV) as baseline; (ii) compare SOC balance among CT, NT cropping systems, and NV; and (iii) evaluate the redistribution of SOC stock in soil profile in relation to soil resilience. The continuous CT decreased the SOC stock by 0·58 and 0·67 Mg C ha−1 y−1 in the 0‐ to 20‐cm depth at the PG and LRV sites, respectively, and the rate of SOC sequestration was 0·59 for the PG site and ranged from 0·48 to 1·30 Mg C ha−1 y−1 for the LRV site. The fraction of C input by crop residues converted into SOC stock was ~14·2% at the PG site and ~20·5% at the LRV site. The SOC resilience index ranged from 0·29 to 0·79, and it increased with the increase in the C input among the NT systems and the SOC sequestration rates at the LRV site. These data support the hypothesis that NT cropping systems with high C input have a large potential to reverse the process of soil degradation and SOC decline. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   
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