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首页> 外文期刊>Applied Biological Chemistry >Effects of brewer’s spent grain biochar on the growth and quality of leaf lettuce ( Lactuca sativa L. var. crispa.)
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Effects of brewer’s spent grain biochar on the growth and quality of leaf lettuce ( Lactuca sativa L. var. crispa.)

机译:BREWER CHET FALL BIOCHAR对莴苣生长和质量的影响(Lactuca Sativa L. VAR。CRISPA。)

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摘要

The need for organic soil amendments is increasing in the Republic of Korea against the backdrop of increased?soil acidification and nutrient losses. The pyrolysis of biomass produces biochar which not only increases soil productivity but also provides environmental benefits through carbon sequestration. The portion of the brewer’s spent grain (BSG) recycled is by far less than the amount generated, but pyrolysis can help to reverse this trend by turning BSG waste into a valuable soil amendment. The current study, therefore, evaluated the effects of brewer’s spent grain biochar (BBXXX) produced at three different temperatures of 300?°C, 500?°C and 700?°C on the yield and quality characteristics of the leaf lettuce as well as the effects on soil chemical properties through a pot experiment. Each of the BBXXX and BSG were added to the soil at two rates of 2% and 5% by weight. The pH and carbon content of the BBxxx increased with increasing pyrolysis temperatures and the trend was replicated in the soil upon biochar application i.e. the soil pH and carbon content increased alongside temperatures at which?biochar?was pyrolyzed. On the other hand, however, the soil electrical conductivity (EC) diminished with the increasing pyrolysis temperatures of the biochar applied. With regards to crop growth, the BB500 5% amendment produced the highest marketable yield of the leaf lettuce and while the lettuce grown on the control produced leaf lettuce with the lowest content of nitrate nitrogen, BB500 5% amendment generally produced the highest quality lettuce. The results indicate that BB500 performed agronomically better than the rest of the amendments and is thus recommended as an effective BSG recycling measure.
机译:在大韩民国对有机土壤修正案的需求在增加的背景下增加?土壤酸化和营养损失。生物质的热解产生生物炭,不仅增加了土壤生产率,而且通过碳封存提供了环境益处。酿酒师的谷物(BSG)的部分再循环是远低于产生的量,但热解可以通过将BSG废物转化为有价值的土壤修正,帮助逆转这一趋势。因此,目前的研究评估了啤酒厂的花谷物Biochar(BBXXX)在300℃,500Ω·℃和700℃的三种不同温度下产生的效果,以及叶片生菜的产量和质量特征以及盆栽实验对土壤化学性质的影响。将每一个BBXXX和BSG以2%和5重量%的两个速率加入到土壤中。 BBXXX的pH和碳含量随着热解温度的增加而增加,并且在生物炭施用时在土壤中复制趋势,即土壤pH和碳含量随温度Δbiochar的温度增加。热解。然而,另一方面,土壤导电性(EC)随着BioChar的增加而施加的增加的热解温度降低。关于作物的增长,BB500 5%修正案产生了叶片生菜的最高可营销产量,而在对照中生长的生菜产生的硝酸氮含量最低,BB500 5%修正案通常生产最高品质的生菜。结果表明,BB500的经商比其他修正案更好地进行,因此建议作为有效的BSG回收措施。

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