Multi-analytical techniques to study changes in carbon and nitrogen forms in a tomato-cultivated soil treated with biochar and biostimulants

Ivano Vassura , Daniele Fabbri , Alessandro G. Rombolà , Beatrice Rizzi , Arianna Menichetti , Sandro Cornali , Luca Pagano , Roberto Reggiani , Maria R. Vecchi , Nelson Marmiroli
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Abstract

Agro-environmental applications of biochar and biochar in combination with biostimulants require a full understanding of the mobility and fate of the carbon and nitrogen fractions in soils. The effects of biochar and biostimulants on forms of nitrogen and carbon in soil during a field-scale incubation were investigated by a multi-analytical approach. This study was conducted on a tomato-cultivated agricultural land treated with low doses of biochar (about 0.1%) and different biostimulants: Micosat F®, arbuscular mycorrhiza fungi (AMF), or a consortium of Pseudomonas fluorescens, Bacillus sp., and a nitrogen-fixing bacteria (Consortium B). Forms of carbon and nitrogen and their mobility before, during, and after tomato growth, were studied with different techniques including elemental analysis, adsorption and molecular fluorescence spectroscopy, ion chromatography, and a column leaching test. Due to the low load of biochar and the short study time, elemental analyses might not be sensitive enough to determine C and N variation in the soil. Based on the dissolved organic carbon (DOC) and dissolved nitrogen forms, the treatments with biochar and biostimulants affected the mobility of these elements with an overall decrease at the end of tomato growth. The organic carbon is mainly ascribable to humic and fulvic acids, as indicated by spectroscopic analysis. The leaching column test demonstrated that cumulative leached C is about one order of magnitude lower than the DOC. In addition, simulated rain cycles profoundly affected their leaching, so it is important to design leaching tests based on local and seasonal weather conditions. In short, positive effects were observed in the marketable production of tomato when soil was treated with biochar combined with a mixture of biostimulants.

Abstract Image

利用多分析技术研究生物炭和生物刺激剂处理番茄栽培土壤中碳和氮形态的变化
生物炭和生物炭与生物刺激剂相结合的农业环境应用需要充分了解土壤中碳和氮组分的流动性和命运。采用多分析方法研究了生物炭和生物刺激剂在田间培养期间对土壤中氮和碳形态的影响。本研究是在一个种植番茄的农田上进行的,用低剂量的生物炭(约0.1%)和不同的生物刺激剂处理:Micosat F®,丛枝菌根真菌(AMF),或荧光假单胞菌,芽孢杆菌和固氮细菌(consortium B)的联盟。碳和氮的形式及其在番茄生长之前,期间和之后的流动性,研究了不同的技术,包括元素分析,吸附和分子荧光光谱,离子色谱和柱浸出试验。由于生物炭负荷低,研究时间短,元素分析可能不够灵敏,无法确定土壤中C和N的变化。从溶解有机碳(DOC)和溶解氮的形态来看,生物炭和生物刺激剂处理影响了这些元素的流动性,在番茄生长末期总体上降低了这些元素的流动性。光谱分析表明,有机碳主要来源于腐植酸和黄腐酸。淋溶柱试验表明,累积淋溶C比DOC低约一个数量级。此外,模拟降雨循环对其淋溶影响深远,因此根据当地和季节性天气条件设计淋溶试验具有重要意义。简而言之,用生物炭和生物刺激剂混合处理土壤,对番茄的适销产品产生了积极的影响。
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