生物炭基肥对酸化茶园土壤养分及茶叶产质量的影响

Effects of Biochar Based Fertilizer on Soil Nutrients, Tea Output and Quality in An Acidified Tea Field

  • 摘要: 针对多年生茶园土壤酸化严重、养分失衡、茶叶产质量下降等问题,以七年生酸化茶园为研究对象,设置不施肥(CK)、常规化肥(F)、生物炭(B)、低量生物炭基肥(BF1)、中量生物炭基肥(BF2)和高量生物炭基肥(BF3)6个处理,通过大田试验探究生物炭基肥对酸化茶园土壤肥力性状、茶树养分吸收以及茶叶产质量的影响,揭示生物炭基肥对茶叶的增产提质机理。结果表明:与CK相比,BF1 ~ BF3处理显著提高酸化茶园土壤pH以及铵态氮、硝态氮、速效磷、速效钾、交换性钙和交换性镁含量,且随炭基肥施用量的增加而增大,改土效果明显优于B和F处理;BF1 ~ BF3处理的茶叶养分积累量、SPAD值、产质量以及水浸出物、咖啡碱、氨基酸含量均显著高于CK处理,茶叶酚氨比显著低于CK处理,但与B和F处理的差异不显著;灰色关联分析表明茶叶产质量与土壤pH、铵态氮、速效钾、交换性镁和速效磷以及茶叶SPAD值、氮和镁积累量等因子关联密切,是影响茶叶产质量的主要因子。表明施用生物炭基肥可显著减缓酸化茶园土壤酸性,提高土壤养分有效性,促进茶树对氮、钾和镁的吸收,增强茶树光合作用从而显著提高茶叶的产质量,且以施用2590 kg hm−2生物炭基肥处理的效果较优。

     

    Abstract: To address the problems of serious soil acidification, nutrient imbalance and decline of tea production and quality in the perennial tea gardens, a field experiment was conducted in a seven-year-old acidified tea garden to explore the effect and mechanism of biochar based fertilizer on soil fertility, the nutrient uptake, yield and quality of tea. Six treatments were set up as follows: control (CK), chemical fertilizer (F), biochar (B), low, medium and high application rates of biochar based fertilizer (BF1, BF2 and BF3, respectively). The results showed that the pH value and the contents of ammonium, nitrogen (NH4+-N), nitrate N (NO3-N), available phosphorus (P) and potassium (K), exchangeable calcium (Ca) and magnesium (Mg) in the acidified tea garden soil were significantly increased in BF1, BF2 and BF3 treatments compared with CK treatment, and were increased with the application rates of biochar based fertilizer. The improvement effects soil fertility in the BF1, BF2 and BF3 treatments were much better than those in the B and F treatments. The nutrient accumulation, SPAD value, yield and quality, water extract, caffeine and amino acid contents of tea leaves in the BF1, BF2 and BF3 treatments were significantly higher than those in the CK treatment.The phenol-ammonia ratio of tea leaves was significantly lower than that in the CK treatment, and was not significantly different between B and F treatments. The results of grey slope correlation analysis showed that tea yield and quality were closely related to soil pH, the contents of NH4+-N, available K, exchangeable Mg and available P, tea SPAD value, N and Mg accumulation in tea leaves, which were the main factors affecting tea yield and quality. In conclusion, the application of biochar based fertilizer significantly decreased the acidity of acidified tea garden soil, increased the availability of soil nutrients, promoted the absorption of N, K and Mg by tea trees, and enhanced the photosynthesis of tea trees, which led to the significant increase in the yield and quality of tea. The application rate of 2590 kg hm−2 biochar based fertilizer showed good effect on yield and quality of tea.

     

/

返回文章
返回