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首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Gasifier biochar effects on nutrient availability, organic matter mineralization, and soil fauna activity in a multi-year Mediterranean trial
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Gasifier biochar effects on nutrient availability, organic matter mineralization, and soil fauna activity in a multi-year Mediterranean trial

机译:在一项为期多年的地中海试验中,气化炉生物炭对养分有效性,有机物矿化和土壤动物活动的影响

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Gasifier pine biochar is a carbon-rich material which may be useful as a soil amendment. In Europe and elsewhere there may be potential added value of char produced in industrial gasifiers, up to now considered as wastes. Pine gasification biochar was tested as a soil amendment in a multi-year Mediterranean barley crop field trial, applied at 12 and 50 t ha(-1) while applying half the usual N rate at 50 kg ha(-1), contrasted with a full 100 kg ha(-1) N fertilizer treatment without biochar. Over the 6-30 month period following the application, biochar treatments did not have any significant effect on soil microbial biomass, respiration, or metabolic coefficient. N mineralization as NO3- was decreased by biochar at 6 and 12 months from experiment start and coincided with ammonium accumulation. Biochar increased overall soil concentrations of K+ and SO42-, attributed to a direct additive effect, agreeing with data from other sources. Biochar treatments (with half usual N fertilization) did not have any significant effects on barley crop parameters, and when biochar treatments were contrasted against full N fertilization with no biochar, the usual N dosage was clearly more beneficial to crop development. Finally, soil fauna activity was negatively impacted by gasifier biochar treatments in years two and three, indicating a risk to soil processes mediated by soil invertebrates. Though this gasifier biochar is expected to be highly stable and therefore of interest for carbon sequestration, its utilization therefore risks negative effects on some biologically-mediated soil processes at high application rates. (C) 2015 Elsevier B.V. All rights reserved.
机译:气化炉松木生物炭是一种富含碳的材料,可用作土壤改良剂。在欧洲和其他地方,工业气化炉中产生的炭可能具有潜在的附加值,直到现在仍被视为废物。在多年的地中海大麦作物田间试验中,对松树气化生物炭作为土壤改良剂进行了测试,施用量为12和50 t ha(-1),而施用氮肥的一半量为50 kg ha(-1)。无需生物炭即可进行100千克ha(-1)N肥料全处理。在施用后的6-30个月内,生物炭处理对土壤微生物生物量,呼吸或代谢系数没有任何显着影响。从实验开始的6和12个月,生物炭减少了氮的矿化,即NO3-的生成,并与铵的积累相吻合。生物炭增加了土壤中钾离子和SO42-的总体浓度,这归因于直接加性效应,与其他来源的数据一致。生物炭处理(普通氮肥施用量的一半)对大麦作物参数没有任何显着影响,并且当将生物炭处理与不施用生物炭的全氮施肥进行对比时,常规氮肥显然对作物生长更有利。最后,在第二年和第三年,气化器生物炭处理对土壤动物活动产生了负面影响,这表明了由无脊椎动物介导的土壤过程的风险。尽管预计该气化炉生物炭具有很高的稳定性,因此对于碳固存具有重要意义,但其利用仍面临着在高施用量下对某些生物介导的土壤过程产生负面影响的风险。 (C)2015 Elsevier B.V.保留所有权利。

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