首页> 外文期刊>Journal of Integrative Agriculture >Soil N transformation and microbial community structure as affected by adding biochar to a paddy soil of subtropical China
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Soil N transformation and microbial community structure as affected by adding biochar to a paddy soil of subtropical China

机译:亚热带稻田加生物炭对土壤氮素转化及微生物群落结构的影响

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We have had little understanding on the effects of different types and quantities of biochar amendment on soil N transformation process and the microbial properties. In this study, various biochars were produced from straw residues and wood chips, and then added separately to a paddy soil at rates of 0.5, 1 and 2% (w/w). The effects of biochar application on soil net N mineralization and nitrification processes, chemical and microbial properties were examined in the laboratory experiment. After 135 d of incubation, addition of straw biochars increased soil pH to larger extent than wood biochars. The biochar-amended soils had 37.7, 7.3 and 227.6% more soil organic carbon (Sac), available P and K contents, respectively, than the control soil. The rates of net N mineralization and nitrification increased significantly as biochars quantity rose, and straw biochars had greater effect on N transformation rate than wood biochars. Soil microbial biomass carbon increased by 14.8, 45.5 and 62.5% relative to the control when 0.5, 1 and 2% biochars (both straw- and wood-derived biochars), respectively, were added. Moreover, biochars amendments significantly enhanced the concentrations of phospholipid fatty acids (PLFAs), as the general bacteria abundance increased by 161.0% on average. Multivariate analysis suggested that the three rice straw biochar (RB) application levels induced different changes in soil microbial community structure, but there was no significant difference between RB and masson pine biochar (MB) until the application rate reached 2%. Our results showed that biochars amendment can increase soil nutrient content, affect the N transformation process, and alter soil microbial properties, all of which are biochar type and quantity dependent. Therefore, addition of biochars to soil may be an appropriate way to disposal waste and improve soil quality, while the biochar type and addition rate should be taken into consideration before its large-scale application in agro-ecosystem.
机译:我们对不同类型和数量的生物炭改良剂对土壤氮转化过程和微生物特性的影响了解甚少。在这项研究中,秸秆残渣和木屑产生了各种生物炭,然后分别以0.5%,1%和2%(w / w)的比例添加到稻田中。在室内实验中,研究了生物炭施用对土壤净氮矿化和硝化过程,化学和微生物特性的影响。孵育135天后,添加秸秆生物炭会比木炭增加土壤pH值。经过生物炭改良的土壤比对照土壤分别增加了37.7、7.3和227.6%的土壤有机碳(Sac),有效磷和钾含量。随着生物炭数量的增加,净氮矿化率和硝化率显着提高,秸秆生物炭对氮转化率的影响大于木材生物炭。当分别添加0.5%,1%和2%的生物炭(秸秆和木材衍生的生物炭)时,土壤微生物生物量碳相对于对照增加了14.8%,45.5%和62.5%。此外,生物炭的修正显着提高了磷脂脂肪酸(PLFAs)的浓度,因为一般细菌的丰度平均提高了161.0%。多因素分析表明,三种稻草生物炭的施用量引起土壤微生物群落结构的不同变化,但在施用量达到2%之前,RB与马尾松生物炭之间没有显着差异。我们的结果表明,生物炭改良剂可以增加土壤养分含量,影响氮素转化过程,并改变土壤微生物特性,所有这些都取决于生物炭的类型和数量。因此,向土壤中添加生物炭可能是处理废物和改善土壤质量的一种合适方法,而在将其应用于农业生态系统之前,应考虑生物炭的类型和添加速率。

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