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1.
Experiments evaluated the effect of glyphosate rate and Anoda cristata density, on crop and weed biomass and weed seed production in wide (70 cm) and narrow rows (35 cm) glyphosate‐resistant soyabean (Glycine max). Soyabean density was higher at 35 cm row spacing as an increase in planting rate in narrow‐row soyabean is recommended for producers in Argentina. Soyabean biomass at growth stage V4 (four nodes on the main stem with fully developed leaves beginning with the unifoliate leaves) was higher when grown on narrow than in wide‐rows but was not affected by the presence of A. cristata. At growth stage R5 (seed initiation – seed 3 mm long in a pod at one of the four uppermost nodes on the main stem, with a fully developed leaf and full canopy development), crop biomass was greater in narrow rows compared with wide rows with 12 plants m?2 of A. cristata. In narrow‐row soyabean, a single application of a reduced rate of glyphosate maintained soyabean biomass at R5 and provided excellent weed control regardless of weed density. In wide‐row soyabean control was reduced at the high weed density. Regardless of row spacing, A. cristata biomass and seed production were severely reduced by half of the recommended dose rate of glyphosate but the relationship between biomass and seed production was not altered. Glyphosate rates as low as 67.5 g a.e. ha?1 in narrow rows or 540 g a.e. ha?1 in wide rows provided excellent control of A. cristata. To minimize glyphosate use, planting narrow‐row soyabean are effective where A. cristata density is low.  相似文献   
2.
Trees are the dominant species in agroforestry systems, profoundly affecting the performance of understory crops. Proximity to trees is a key factor in crop performance, but rather little information is available on the spatial distribution of yield and yield components of crop species under the influence of trees in agroforestry systems. Also, little information is available on how crop density may be exploited to optimize the yield in such systems. Here we studied the performance of cotton in jujube/cotton agroforestry. Field experiments were conducted in 2012 and 2013 in Hetian, Xinjiang, China. Cotton was grown at a row distance of 60 cm in three densities, 13.5, 18.0 and 22.5 plants m−2 in six m wide paths between tree lines in a jujube plantation. Plant density affected both cotton aboveground dry matter and yield significantly. The highest yield was attained at the intermediate density of 18.0 plants m−2 (20.0 plants m−2 corresponding in sole cotton), lower than the optimal density in sole cotton (25.0 plants m−2). Yield at the lower density was constrained by the low number of bolls per m2 as a direct consequence of the low density, whereas at the high plant density yield was constrained by a lower allocation of assimilates to cotton seed and lint, as a consequence of intraspecific and interspecific competitions. There were strong gradients in yield and yield components in relation to the distance from the tree rows. Leaf area and total dry matter of cotton in rows close to the tree lines were reduced, especially in the rows next to the trees. Moreover, biomass allocation to cotton fruits was reduced in these rows. Competitive influences from the trees on cotton performance extended two rows deep in a six-year old jujube stand, and even three rows deep in a seven-year old stand. Shading effects on cotton yield were compensated by increasing plant density as a result of greater boll numbers per unit ground area. Data from this study help guide the design of optimal plant density of cotton in jujube plantations and give insight in the spatial distribution and dynamics of competitive effects in agroforestry systems in general.  相似文献   
3.
试验采用随机区组试验设计,大垄双行,整薯播种。在同一密度下对不同行距间的各指标进行比较及单因素方差分析。旨在为马铃薯生产和机械化作业提供理论依据。结果表明:在12株·m~(-2)和9株·m~(-2)的种植密度下,主茎数、结薯数、产量都是随行距的增加而呈现递减的变化趋势;在7.2株·m~(-2)的种植密度下,主茎数、结薯数、产量是随行距的增加而呈现"增-减-增"的变化趋势;同一密度下,淀粉含量随行距增加变化不明显,大部分维持在15%~16%之间。总体来看,同一密度下不同行距间对主茎数、结薯数、产量及淀粉含量的影响均差异不显著。  相似文献   
4.
针对300mm行距插秧机在南方双季稻区栽插行距过大、穴数过少及不能充分发挥机插稻的增产潜力问题,在300mm行距插秧机结构的基础上,通过机械优化设计和田间农艺技术相结合的方法,对其插植部箱体、苗箱、支架(包括左右支架和中间支架)和浮板4个关键部位技术参数改进设计,研制出了适合南方双季稻区作业的2ZS-488B型(264mm行距)插秧机,并于2012-2013年在江西省2个试验点进行不同早晚稻品种机插行距的大田对比试验。结果表明:该插秧机作业性能稳定,漂秧率、伤秧率和漏插率分别为1.55%、2.68%和1.93%,相对均匀度合格率为89.54%。与300mm行距插秧机相比,其产量平均增产529.43kg/hm2,平均增产率达8.57%。该研究结果创新了南方双季稻区新的机械化栽插方式,有利于农机农艺的有效融合。  相似文献   
5.
对玉米联合收获机推广应用较多的山东、山西及河北等省的玉米联合收获机试验情况进行了研究分析.其结果表明,影响玉米联合收获机推广的诸多因素中,最为关键的因素就是行距的适应性问题。为此,结合小麦联合收获机推广经验,指出了加快玉米联合收获机推广应用速度的关键是实现玉米生产过程机械化,而在小麦玉米一年两熟地区则要从小麦的种植规格入手,即实现小麦玉米全过程的机械化;并将系统工程的方法运用于种植收获的全过程,真正实现优质与高效的现代化农业生产。  相似文献   
6.
为解决机器视觉对早期玉米苗带在多环境变量下导航线提取耗时长、准确率低的问题,该研究提出了一种基于中值点Hough变换作物行检测的导航线提取算法。首先,改进了传统的2G-R-B算法,再结合中值滤波、最大类间方差法和形态学操作实现土壤背景与玉米苗带的分割。其次,通过均值法提取玉米苗带特征点,然后采用中值点Hough变换拟合垄间两侧玉米苗列线,最后将检测出的双侧玉米苗列线为导航基准线,利用夹角正切公式提取导航线。试验结果表明:改进的灰度化算法能够正确分割玉米苗带与土壤,处理一幅640×480像素彩色图像平均耗时小于160 ms,基于中值点Hough变换检测玉米苗列再提取导航线的最大误差为0.53°,相比于传统Hough变换时间上平均快62.9 ms,比最小二乘法平均精确度提高了7.12°,在农田早期玉米苗带多环境变量影响因素下导航线提取准确率均达92%以上,具有较强的可靠性和准确性。  相似文献   
7.
探究是否可以将行距比例和种植密度集成于同一作物生产系统中来提高作物产量,增加水分利用效率。以玉米"五谷568"为研究材料,于2017—2018年进行大田试验,设7∶3(L_1,宽行56 cm∶窄行24 cm),6∶4 (L_2,宽行48 cm∶窄行32 cm),5∶5(L_3,等行距40 cm) 3个行距比例水平,82 500株/hm~2(D_1)、90 000株/hm~2(D_2)、97 500株/hm~2(D_3)、105 000株/hm~2(D_4)、112 500株/hm~2(D_5) 5个种植密度,探讨不同行距比例及密度处理对玉米的耗水特征、产量及水分利用效率的影响。结果表明,L1行距比例可有效降低玉米耗水量,但会增加棵间蒸发,对E/ET影响不显著,其中2017年L_1较L_3能有效降低耗水量11.9%,2018年无显著差异;此外与传统行距比例相比,L_1行距比例具有增产优势,玉米增产5.2%~10.5%,提高水分利用效率6.5%~8.7%。密度间比较,D_3密度较传统密度D_1能有效降低耗水量、棵间蒸发量以及E/ET,对玉米增产及水分利用效率的提高有促进作用;其中D_3密度较传统密度D_1耗水量降低13.3%,2018年差异不显著;棵间蒸发量减小7.1%~7.2%;E/ET减小6.8%~19.2%;玉米增产7.5%~17.1%;水分利用效率提高23.9%~46.2%。2年L_1D_3较传统处理L_3D_1耗水量降低12.8%~30.6%;棵间蒸发量降低8.5%~10.4%;E/ET降低7.3%~7.5%;玉米产量增加7.7%~25.5%;水分利用效率提高36.0%~41.2%。因此,在河西绿洲灌区,7∶3(L_1,宽行56 cm∶窄行24 cm)行距比例结合97 500株/hm~2(D_3)种植密度可有效增加玉米产量,提高玉米水分利用效率。  相似文献   
8.
苕溪流域茶园不同种植模式下地表径流氮磷流失特征   总被引:6,自引:3,他引:6  
为探讨苕溪流域不同种植模式下茶园地表径流氮磷养分流失特征,于2010年5-10月对等高种植和顺坡种植2种种植模式下茶园地表径流水样进行取样测定,分析径流水样中的氮磷元素各指标的含量、形态特征及其随时间的变化规律。结果表明:无论是顺坡种植还是等高种植,茶园径流中氮素各指标含量的峰值均出现在6月底或7月初,茶园径流中磷素各指标含量的峰值出现在6月底、7月初或9月初。在整个监测时期内,等高种植茶园径流中总氮、硝氮、铵氮含量分别比顺坡种植茶园低8.54%~43.01%,4.05%~46.70%,5.92%~33.19%,但2种种植模式间不存在显著差异;等高种植茶园径流水中总磷、可溶态总磷、颗粒态磷的含量分别比顺坡种植低8.51%~31.07%,0.39%~17.91%,8.45%~36.86%,2种种植模式之间径流水中总磷、颗粒态磷含量存在极显著差异,可溶态磷含量不存在显著差异。无论是顺坡种植还是等高种植,硝态氮均为茶园氮素地表径流流失的主要形态,颗粒态磷则是茶园磷素地表径流流失的主要形态。总的来说,等高种植模式能有效地截留茶园氮磷营养元素,防止其随地表径流流失。  相似文献   
9.
针对水稻钵苗宽窄行Z字形移栽农艺要求,提出了一种差速式水稻钵苗Z字形宽窄行移栽机构,利用差速轮系的不等速传动和空间传动,以空间轨迹实现水稻钵苗Z字形宽窄行移栽.将非均匀B样条曲线理论应用于非圆齿轮节曲线的拟合,并采用坐标变换方法建立了机构齿轮箱轮系的数学模型.将水稻钵苗Z字形宽窄行移栽的轨迹和姿态要求参数化为9个具体的运动学优化目标,编写了基于机构数学模型的可视化参数优化界面,利用该软件界面分析了传动箱非圆齿轮节曲线和齿轮箱非圆齿轮节曲线对轨迹形状的影响,以及斜齿轮螺旋角和取秧夹片长度与轨迹偏移量的关系.通过优化得到取秧段偏移量为3.9mm,取秧段轨迹有效长度为45.6mm,移栽机构离地高度为32.6mm,夹片离从动非圆齿轮牙嵌轴距离6.7mm的大环扣式移栽轨迹.完成了移栽机构的虚拟仿真与样机试制,利用自制试验台架、工业相机和图像处理软件对机构移栽臂运动轨迹和姿态进了分析,结果与理论数据吻合,验证了移栽机构方案的可行性和结构的合理性.  相似文献   
10.
Seed crops of white clover (Trifolium repens L.) are usually established with a cover crop. Provided sufficient light, white clover may compensate for low plant density by stoloniferous growth. Our objectives were (1) to compare spring barley or spring wheat used as cover crops for white clover and (2) to find the optimal seeding rate/row distance for white clover. Seven field trials were conducted in Southeast Norway from 2000 to 2003. Barley was seeded at 360 and 240 seeds m?2 and wheat at 525 and 350 seeds m?2. White clover was seeded perpendicularly to the cover crop at 400 seeds m?2/13 cm row distance or 200 seeds m?2/26 cm. Results showed that light penetration in spring and early summer was better in wheat than in barley. On average for seven trials, this resulted in 11% higher seed yield after establishment in wheat than in barley. The 33% reduction in cover crop seeding rate had no effect on white clover seed yield for any of the cover crops. Reducing the seeding rate/doubling the row distance of white clover had no effect on seed yield but resulted in slightly earlier maturation of the seed crop.  相似文献   
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