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中国农学通报 ›› 2015, Vol. 31 ›› Issue (25): 35-40.doi: 10.11924/j.issn.1000-6850.casb15040105

所属专题: 园艺

• 林学 园艺 园林 • 上一篇    下一篇

大蒜施用“农残降解增产液”效果的研究

闫凌云,王应君,李庆伟   

  1. 河南农业职业学院 河南 郑州 中牟,河南农业职业学院 河南 郑州 中牟 河南省大蒜工程技术研究中心 河南 郑州 中牟,河南农业职业学院 河南 郑州 中牟 河南省大蒜工程技术研究中心 河南 郑州 中牟
  • 收稿日期:2015-04-14 修回日期:2015-07-26 接受日期:2015-06-12 出版日期:2015-09-23 发布日期:2015-09-23
  • 通讯作者: 王应君
  • 基金资助:
    河南省省院合作项目资金项目 “无性繁殖蔬菜 (大蒜) 种质资源收集与利用研究” (102106000039)。

Application Effect of“Agricultural Residues Degradation and Increase Production Agent”on Garlic

闫凌云,王应君 and 李庆伟   

  • Received:2015-04-14 Revised:2015-07-26 Accepted:2015-06-12 Online:2015-09-23 Published:2015-09-23

摘要: 为了解农残降解增产液在大蒜上的使用效果,以喷清水为对照,设计了5个农残降解增产液处理的对比试验。结果表明:施用农残降解增产液的处理蒜头产量比对照明显提高,增产幅度6.4%~15.4%,其中处理3产量最高,达1870g/m2,比CK增产250g/m2。蒜薹产量也表现出同样规律,增产幅度34~57g/m2,增加收益0.07~0.12元/m2;经济效益明显,所有施用农残降解增产液的处理均比对照收益增加,分别增加1.73、2.25、0.84、1.97、0.95元/m2,本试验中处理3收益最高,达到14.50元/m2。大蒜施用农残降解增产液提高了大蒜特、一级率;黄叶片数减少,绿叶数增多,增强了大蒜后期抗疫能力。处理3最优,在常规施肥基础上,用0.75mL/m2的农残降解增产液,对清水90g/m2处理土壤,在返青期、抽薹后叶面喷施农残降解增产液各0.3mL/m2农残降解液,对清水90g/m2喷洒是比较经济有效的使用方式。

关键词: 55年, 55年, 郑州市, 极端气温, 气温事件, 变化

Abstract: In order to understand the effect of“agricultural residues degradation and increase production agent”on garlic, five treatments were designed with water as control. The results showed that the yield of garlic head obviously increased after the application of this agent with the increase rate of 6.4%-15.4%, treatment 3 had the highest yield of 1870 g/m2, which was 250 g/m2 higher than that of CK. The yield of garlic sprouts also showed the same rule, the increase was 34- 57 g/m2, and the income increased 0.07- 0.12 yuan/m2. The economic benefit increase was obvious, compared with that of CK, the income increase of treatments applied “agricultural residues degradation and increase production agent”was 1.73, 2.25, 0.84, 1.97 and 0.95 yuan/m2, respectively. The highest income was treatment 3 of 14.50 yuan/m2. Special grade rate and first- grade rate increased after the application of this agent, yellow leaf number decreased, while green leaf number increased, the ability to resist disease in the late period was enhanced. Treatment 3 was the optimal in this experiment, under conventional fertilization, 0.75 mL/m2“agricultural residues degradation and increase production agent” mixed with 90 g/m2 water for soil treatment and 0.3 mL/m2“agricultural residues degradation and increase production agent”mixed with 90 g/m2 water after the green period and bolting was the most economical and effective way.