首页> 外文期刊>Scientific reports. >Benefits of soil biochar amendments to tomato growth under saline water irrigation
【24h】

Benefits of soil biochar amendments to tomato growth under saline water irrigation

机译:盐水灌溉下土壤生物炭改良剂对番茄生长的好处

获取原文
       

摘要

Biochar amendments have been used in agriculture to improve soil fertility and enhance crop productivity. A greenhouse experiment was conducted to test the hypothesis that biochar amendment could also enhance the productivity of salt-affected soils. The trial was conducted over two consecutive growing seasons to investigate the effect of biochar amendment (four application rates as: B1?=?0%, B2?=?2%, B3?=?4%, and B4?=?8% by mass of soil) on yield and quality of tomatoes grown in a silt loam soil using non-saline water (I0?=?0.7 dS m?1) and saline water (I1?=?1 dS m?1; I2?=?3 dS m?1) irrigation. Furthermore, the study investigated the mechanism by which biochar addresses the salt stress on plant. The results showed that soil productivity as indicated by the vegetative growth and?tomato yield components was adversely and significantly affected by saline water irrigation (P??0.05). Tomato yield decreased from 689?±?35.6 to 533?±?79.0?g per plant as salinity of irrigation water increased from I0 to I2. Then, biochar amendment increased vegetative growth, yield, and quality parameters under saline irrigation water regimes, and ameliorated the salt stresses on crop growth. The highest (8.73?±?0.15 and 4.10?±?0.82?g?kg?1) and the lowest (8.33?±?0.08 and 2.42?±?0.76?g?kg?1) values of soil pH and soil organic matter were measured at B4I0 and B1I2 treatments, respectively. Also, the highest rate of biochar amendment combining with non-saline water irrigation (B4I0) produced tomato with the highest plant photosynthetic (17.08?±?0.19 μmol m?2 s?1) and transpiration rate (8.16?±?0.18?mmol H2O m?2 s?1). Mechanically, biochar amendment reduced transient sodium ions by adsorption and released mineral nutrients such as potassium, calcium, and magnesium into the soil solution. Therefore, biochar amendments have the potential in ameliorating salt stress and enhancing tomato production.
机译:生物炭的改良剂已用于农业中,以提高土壤肥力并提高农作物的生产力。进行了温室实验,以检验生物炭改良剂也可以提高受盐影响的土壤生产力的假设。该试验在两个连续的生长季节中进行,以研究生物炭改良剂的作用(四种施用率分别为:B1?=?0%,B2?=?2%,B3?=?4%和B4?=?8%。 (以土壤质量计)对使用非盐水(I0?=?0.7 dS m?1)和盐水(I1?=?1 dS m?1; I2?= ?3 dS m?1)灌溉。此外,研究还研究了生物炭解决植物盐分胁迫的机理。结果表明,由生理生长和番茄产量构成的土壤生产力受到盐水灌溉的不利影响和显着影响(P <0.05)。随着灌溉水盐度从I0增加到I2,番茄单株产量从689?±?35.6降至533?±?79.0?g。然后,生物炭改良剂在盐水灌溉制度下增加了营养生长,产量和质量参数,并减轻了盐对作物生长的压力。土壤pH和有机质的最高值(8.73?±?0.15和4.10?±?0.82?g?kg?1)和最低值(8.33?±?0.08和2.42?±?0.76?g?kg?1)分别在B4I0和B1I2处理中测量了物质。另外,最高的生物炭改良率与非盐水灌溉(B4I0)结合产生的番茄具有最高的植物光合(17.08±0.19μmolm?2 s?1)和蒸腾速率(8.16±0.18?mmol)。 H2O·m2·2·s1)。在机械上,生物炭改良剂通过吸附减少了瞬态钠离子,并将诸如钾,钙和镁的矿物质养分释放到土壤溶液中。因此,生物炭改良剂具有改善盐分胁迫和提高番茄产量的潜力。

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