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Effects of bamboo charcoal-based bio-fertilizer on wine bamboo sap yield and nutrient composition

机译:竹炭基生物肥料对酒竹汁产量和养分组成的影响

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摘要

To explore fertilization methods for wine bamboo cultivation in southwestern semi-arid areas of China,this study analyzed annual changes in sap yield and nutrient composition from May 2013 to March 2015 by using bamboo charcoal-based bio-fertilizer (ZT) and organic fertilizer treatments (CK).The study also provided basic data for functional beverage preparation and for application of ZT.The results of the two experimental cycles revealed that under the ZT treatment,sap was available for collection from May,the beginning of the rainy season,to November,the beginning of the dry season.The period of abundance was July to October with the highest yield of sap of 3.18 L stalk-t in September,2014,still lower than the moso bamboo sap,which was likely due to the scale of sap production of monopodial bamboos being different from that of sympodial bamboos.In January,trace amounts of sap were still detected,suggesting that the effect of the treatment was significant.Moreover,in the dry season,soil water content and soil temperatures at 10-15 cm depths indicated that the fertilizer had the ability to maintain soil temperatures and moisture.In both fertilizer treatments,the correlation between the collected sap and environmental parameters was significant.In the ZT treatment for the entire 2 years,the effectual environmental factors were soil water at 10-15 cm,air temperatures,and wind speeds.The same determining factors were observed for the rainy season.In the CK treatments,the effectual environmental factors for the entire year and the rainy season were soil water at 0-5 cm and air moisture.The bamboo charcoal-based bio-fertilizer elevated the potassium,calcium,iron,manganese,copper,and total phosphorus content,simultaneously increasing the sap yield,protein and reducing sugar contents,and with a relative increase in sap pH.The wine bamboo sap contained 18 amino acids.Glutamic acid,alanine and proline were the most abundant.Compared to the controls,the treatment showed higher levels of all amino acids.Thus,the ZT treatment could be more beneficial to the development of root systems because the function of heat preservation and moisture retention prolong the sap collection period,increase sap yields,and elevate mineral element,conventional nutrients,and amino acid contents with evident fertilization effects and broader application prospects.
机译:为探索中国西南半干旱地区酿酒竹的施肥方法,本研究分析了2013年5月至2015年3月采用竹炭基生物肥和有机肥处理的汁液产量和养分组成的年度变化。 (CK)。该研究还为功能性饮料的制备和ZT的应用提供了基础数据。这两个实验周期的结果表明,在ZT处理下,从5月,雨季开始到5月可收集树液。 11月,旱季开始。丰年期为7月至10月,2014年9月的最高汁液产量为3.18 L茎秆,但仍低于毛竹汁液,这可能是因为单足竹的汁液生产与双足竹的不同。在一月份,仍检测到微量的汁液,这表明该方法的效果显着。此外,在干燥季节,soi l水分含量和土壤温度在10-15 cm深度表明肥料具有维持土壤温度和水分的能力。在两种肥料处理中,收集的汁液与环境参数之间的相关性均很显着。 2年时,影响环境的因素是10-15 cm处的土壤水分,气温和风速。在雨季中观察到相同的决定因素。在CK处理中,全年和雨季的影响环境因素是相同的。季节为0-5 cm的土壤水分和空气湿度。竹炭基生物肥料可提高钾,钙,铁,锰,铜和总磷的含量,同时增加汁液产量,蛋白质和降低糖分,酒液汁液中含有18个氨基酸,谷氨酸,丙氨酸和脯氨酸含量最高。因此,ZT处理可能更有利于根系的发育,因为保温和保水的功能延长了汁液的收集时间,增加了汁液的产量,并提高了矿质元素,常规营养素和氨基酸的含量。酸含量高,施肥效果明显,具有广阔的应用前景。

著录项

  • 来源
    《林业研究(英文版)》 |2018年第4期|1083-1092|共10页
  • 作者

    Weicheng Li; Haiyan Sheng;

  • 作者单位

    National Bamboo Research center/Key Laboratory of High Efficient Processing of Bamboo of Zhejiang Province,Hangzhou 310012, People's Republic of China;

    College of Life Sciences, Southwest Forestry University,Kunming 650224, People's Republic of China;

    Hangzhou Environmental Protection Science Institute,Hangzhou 310005, People's Republic of China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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