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Use of nutrients on raised beds for increasing rice production in rice - wheat cropping systems

机译:在稻米种植系统中使用营养成床的用途增加水稻生产

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A study was conducted during three rice seasons on the Regional Wheat Research Center experimental field in Rajshahi, NW Bangladesh, to compare the effects of tillage options, nitrogen levels and management strategies on rice. In a strip-split plot design, two tillage systems were tested: manually prepared, permanent bed (PB- two other crops besides rice are sown per season on the same beds) and rice conventionally tilled on the flat (CTF). Within each tillage system, two nitrogen management practices were used: broadcast (BC) and furrow placement (FP) between rice rows. Three N levels, at 50%, 100% and 150% N ha~(-1) of recommended N levels (representing 40, 80 and 120 kg ha~(-1)) were used. The data indicate that, by using raised beds compared toconventional tillage, nitrogen uptake and efficiency can be increased. The maximum N uptake by the grain and total N uptake by the plant were recorded in PB, when the highest dose of N was applied. Permanent bed tillage systems also showed substantial water savings, 25 % to 30%, over the CTF treatments. Thus, in warmer areas with multi-crop systems, where water resources are often limited and nutrient uptake and efficiencies are low, the use of raised beds in permanent bed cropping system would be a distinct advantage.
机译:在孟加拉国拉贾山地区的区域小麦研究中心实验领域进行了一项研究,以比较耕作期权,氮素水平和管理策略对稻米的影响。在条带式绘图设计中,测试了两种耕作系统:手动准备,永久床(除了米饭之外的其他作物,在同一张床上播种)和米饭在平面上耕种(CTF)。在每个耕种系统中,使用了两个氮管理实践:稻行之间的广播(BC)和犁沟放置(FP)。使用三个水平,50%,100%和150%N HA〜(-1)的推荐氮(代表40,80和120kg ha〜(-1))。数据表明,通过使用升降的床,可以增加与共同耕作,氮吸收和效率增加。当施加最高剂量的N时,植物的最大N和植物中的N颗粒的吸收量被记录在Pb中。在CTF治疗中,永久床耕作系统还显示出大量的水储蓄,25%至30%。因此,在具有多作物系统的较温暖的区域中,水资源经常有限,营养吸收和效率低,在永久床种植系统中使用升降床将是明显的优势。

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