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首页> 外文期刊>Pedobiologia >Activated biochar alters activities of carbon and nitrogen acquiring soil enzymes
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Activated biochar alters activities of carbon and nitrogen acquiring soil enzymes

机译:激活的生物炭改变了碳和氮气获得土壤酶的活性

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When biochar (BC) ages in soil, its properties change substantially: cation exchange capacity (CEC), surface area and porosity increase and water repellency decreases, consequently affecting the interactions with soil microorganisms. Activation of BC by organic acids may be regarded as artificial aging. Here, we study the effect of acid-activated BCs on soil microbial enzyme activities (EA) in comparison to several different control treatments without activated BC. A greenhouse pot experiment was conducted using a vineyard soil treated with multiple soil additives (four replications). In each pot, one grapevine and a selection of cover crops was grown. During incubation, the pots were sampled three times, one month, seven months and 22 months after establishment. Potential exoglucanase (EG) and beta-glucosidase (BG) activities were measured to assess possible effects on C dynamics, and exochitinase (NAG) and protease (LAP) activities for N dynamics. One month following incubation, the EAs of treatments with activated BCs increased for all four enzyme classes compared to controls; after seven months, C acquiring EAs were elevated; while after 22 months, LAP EA was elevated. Our results suggest that biochar oxidation with organic acids simulated biochar aging with distinct effects on EAs; however, further research is needed to identify the mechanisms that drive biological parameters such as enzymatic activity in response to activated BCs.
机译:当生物炭(BC)在土壤中老化时,其性质发生显著变化:阳离子交换容量(CEC)、表面积和孔隙率增加,拒水性降低,从而影响与土壤微生物的相互作用。有机酸对BC的活化可视为人工老化。在这里,我们研究了酸活化BCs对土壤微生物酶活性(EA)的影响,并与几种不活化BC的不同对照处理进行了比较。在温室盆栽试验中,用多种土壤添加剂(四次重复)处理葡萄园土壤。在每个花盆里,种植一棵葡萄藤和一些精选的覆盖作物。在孵化过程中,在建立后1个月、7个月和22个月对这些罐子进行三次采样。测定了潜在的胞外葡聚糖酶(EG)和β-葡萄糖苷酶(BG)活性,以评估其对碳动力学的可能影响,以及胞外几丁质酶(NAG)和蛋白酶(LAP)活性对氮动力学的影响。孵化一个月后,与对照组相比,所有四种酶类的活化BCs处理的EAs均增加;7个月后,C-EAs升高;22个月后,LAP EA升高。我们的结果表明,有机酸氧化生物炭模拟了生物炭老化,对EAs有明显影响;然而,需要进一步的研究来确定驱动生物参数的机制,例如酶活性对激活的BCs的反应。

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