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首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Effect of biochar on aerobic processes, enzyme activity, and crop yields in two sandy loam soils
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Effect of biochar on aerobic processes, enzyme activity, and crop yields in two sandy loam soils

机译:生物炭对两种沙壤土土壤好氧过程,酶活性和农作物产量的影响

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摘要

Biochar added to agricultural soils may sequester carbon and improve physico-chemical conditions for crop growth, due to effects such as increased water and nutrient retention in the root zone. The effects of biochar on soil microbiological properties are less certain. We addressed the effects of wood-based biochar on soil respiration, water contents, potential ammonia oxidation (PAO), arylsulfatase activity (ASA), and crop yields at two temperate sandy loam soils under realistic field conditions. In situ soil respiration, PAO, and ASA were not significantly different in quadruplicate field plots with or without biochar (20 Mg ha(-1)); however, in the same plots, volumetric water contents increased by 7.5 % due to biochar (P = 0.007). Crop yields (oat) were not significantly different in the first year after biochar application, but in the second year, total yields of spring barley increased by 11 % (P < 0.001), though the increase in grain yield was not significant. Field plots with cumulative biochar rates of up to 100 Mg ha(-1), applied during two consecutive years, substantiated that biochar was not inhibitory to PAO and ASA as reference plots consistently showed lowest activities. For PAO, it was found that soil pH, rather than biochar rates, was a driving environmental variable. For ASA, the methodological approach was challenged by product sorption, but results did not suggest that biochar significantly stimulated the enzyme activity. Crop yields of maize in field experiments with 10-100 Mg biochar ha(-1) were unaffected by biochar except for a negative effect of the highest annual rates of 50 Mg ha(-1) in the first year after application. In conclusion, the present wood-based biochar poorly affected the measured microbial processes and generally resulted in similar crop yields in reference and biochar-amended soil plots.
机译:由于诸如增加根系中水分和养分的保留等作用,添加到农业土壤中的生物碳可以隔离碳并改善作物生长的物理化学条件。生物炭对土壤微生物特性的影响尚不确定。我们研究了在现实田间条件下,在两种温带沙质壤土上,木质生物炭对土壤呼吸,水分,潜在的氨氧化(PAO),芳基硫酸酯酶活性(ASA)和农作物产量的影响。在有或没有生物炭(20 Mg ha(-1))的一式四份田地中,原位土壤呼吸,PAO和ASA均无显着差异。但是,在相同的样地中,由于生物炭的存在,含水量增加了7.5%(P = 0.007)。在施用生物炭后的第一年,作物产量(燕麦)没有显着差异,但是在第二年,春季大麦的总产量增加了11%(P <0.001),尽管谷物产量的增加并不显着。连续两年使用累积生物炭速率高达100 Mg ha(-1)的田间田地,证实了生物炭对PAO和ASA无抑制作用,因为参考田地始终显示出最低的活性。对于PAO,发现土壤pH值而非生物炭速率是驱动环境变量。对于ASA,该方法学方法受到产品吸附的挑战,但结果并未表明生物炭显着刺激了酶的活性。施用10-100 Mg生物炭ha(-1)的田间试验中的玉米作物产量不受生物炭的影响,除了在施用后第一年最高年产50 Mg ha(-1)的不利影响。总而言之,目前的木质生物炭几乎不影响所测量的微生物过程,并且在参考土壤和生物炭改良的土壤样地中通常导致相似的农作物产量。

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