首页> 外文期刊>African Journal of Agricultural Research >Effect of organic manure and nitrogen on growth yield and quality of kinnow mandarin in sandy soils of hot arid region
【24h】

Effect of organic manure and nitrogen on growth yield and quality of kinnow mandarin in sandy soils of hot arid region

机译:有机肥和氮肥对干旱地区沙质土壤中金橘生长发育及品质的影响

获取原文
           

摘要

The findings of present investigation revealed that the application of 80 kg farm yard manure (FYM) per plant significantly increased trunk diameter (9.47%), fruit yield (25.22 kg/tree), number of fruits (212.75 fruits/tree), average fruit weight (118.22 g), fruit diameter (5.96 cm), fruit length (5.58 cm), volume of fruit (129.71 cc), peel weight (32.95 g), weight of sacs (85.27 g), juice percentage (48.30%), TSS (12.11 °B), ascorbic acid (26.37 mg/100 g edible portion), total sugar (6.63%), reducing sugar (2.92%), non-reducing sugar (3.71%), juice acidity (0.79%) (significantly minimum), phosphorus soil at 15 to 30 cm depth (12.50%), soil potassium at 0 to 15, 15 to 30 and 30 to 60 cm depths (0.74, 2.27 and 0.75%, respectively), leaf nitrogen (28.17%), leaf potassium (6.28%), leaf zinc (27.88%), leaf iron (5.47%) and minimum 29.92 days to 75% flowering, 52.58 days to fruit set at initial stage and 6.33% fruit drop at maturity. Whereas, application of FYM 60 kg per plant gave maximum B:C ratio (2.30) and net return (38472.31 Rs/ha). The application of 750 g nitrogen per plant gave significant maximum trunk diameter (8.99%), average weight (118.19 g), diameter (6.06 cm) and length of fruit (5.53 cm), peel weight (33.38 g), weight of sacs (84.80 g), volume of fruit (132.31 cc), titrable acidity (0.83%), leaf nitrogen (25.25%), leaf zinc (24.37%), leaf iron (3.46%) and minimum 55.60 days to fruit set at initial stage and 6.79% fruit drop at maturity. While the application of 500 g nitrogen per plant increased number of fruits (204.20 per plant), yield (23.19 kg per plant, TSS (11.37 °B), ascorbic acid (25.66 mg/100 g edible portion), total sugar (6.30%), reducing sugar (2.83%), non-reducing sugar (3.48%), B:C ratio (2.55), net return (39212.93 Rs./ha) and minimum 31.33 days to 75% flowering. The combined application of 80 kg FYM and 750 g nitrogen per plant led to significant increase in plant height (15.20%), spread (N-S, 18.03%; E-W, 18.99%), canopy volume (81.81%), soil nitrogen at different depths (0 to 15 cm, 41.78%; 15 to 30 cm, 51.36% and 30 to 60 cm, 27.71%) over initial level.
机译:本次调查的结果表明,每株植物施用80千克农家肥(FYM)显着增加了树干直径(9.47%),果实产量(25.22公斤/树),果实数量(212.75果实/树),平均果实重量(118.22 g),果实直径(5.96 cm),果实长度(5.58 cm),果实体积(129.71 cc),果皮重量(32.95 g),囊重量(85.27 g),果汁百分比(48.30%), TSS(12.11°B),抗坏血酸(26.37 mg / 100 g可食用部分),总糖(6.63%),还原糖(2.92%),非还原糖(3.71%),果汁酸度(0.79%)(显着最低),深度为15至30厘米的磷土壤(12.50%),深度为0至15、15至30和30至60厘米的土壤钾(分别为0.74、2.27和0.75%),叶氮(28.17%),叶片钾(6.28%),叶片锌(27.88%),叶片铁(5.47%)和最少29.92天至75%的开花期,到初生期坐果的时间为52.58天,成熟时减少的果实量为6.33%。然而,每株植物施用60公斤FYM可获得最大的B:C比(2.30)和净收益(38472.31 Rs / ha)。每株植物施用750 g氮可显着提高最大树干直径(8.99%),平均重量(118.19 g),直径(6.06 cm)和果实长度(5.53 cm),果皮重量(33.38 g),囊重( 84.80克),水果体积(132.31 cc),可滴定酸度(0.83%),叶氮(25.25%),叶锌(24.37%),叶铁(3.46%),以及在初始阶段至少需要55.60天才能结实成熟时下降6.79%的水果。虽然每株植物施用500 g氮会增加果实数量(每株植物204.20),产量(每株植物23.19 kg,TSS(11.37°B),抗坏血酸(25.66 mg / 100 g可食用部分),总糖(6.30% ),还原糖(2.83%),非还原糖(3.48%),B:C比(2.55),净收益(39212.93 Rs./ha)和最少31.33天至75%开花,联合施用80公斤FYM和每株植物750 g的氮导致植物高度(15.20%),传播(NS,18.03%; EW,18.99%),冠层体积(81.81%),不同深度(0至15 cm,比初始水平高41.78%; 15至30厘米,51.36%和30至60厘米,27.71%)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号