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使用快速场循环核磁共振弛豫测量法评估三种生物炭中水的表面亲和力。

Evaluation of the surface affinity of water in three biochars using fast field cycling NMR relaxometry.

作者信息

Bubici Salvatore, Korb Jean-Pierre, Kučerik Jiří, Conte Pellegrino

机构信息

Stelar srl, 27035, Mede, PV, Italy.

JEOL (ITALIA) S.p.A., Palazzo Pacinotti-Milano 3 City, Via Ludovico il Moro 6/A, 20080, Basiglio, MI, Italy.

出版信息

Magn Reson Chem. 2016 May;54(5):365-70. doi: 10.1002/mrc.4391. Epub 2016 Jan 11.

DOI:10.1002/mrc.4391
PMID:27062147
Abstract

Many soil functions depend on the interaction of water with soil. The affinity of water for soils can be altered by applying soil amendments like stone meal, manure, or biochar (a carbonaceous material obtained by pyrolysis of biomasses). In fact, the addition of hydrophobic biochar to soil may increase soil repellency, reduce water-adsorbing capacity, inhibit microbial activity, alter soil filter, buffer, storage, and transformation functions. For this reason, it is of paramount importance to monitor water affinity for biochar surface (also referred to as 'wettability') in order to better address its applications in soil systems. In this study, we propose the use of fast field cycling NMR relaxometry technique with the application of a new mathematical model for data interpretation, as a valid alternative to the traditional contact angle (CA) measurements for biochar wettability evaluation. Either NMR or CA results revealed the same wettability trend for the biochars studied here. The advantage of NMR relaxometry over CA measurements lies in the possibility to obtain at the microscopic level a variety of different information in only one shot. In fact, while CA provides only wettability evaluation, NMR relaxometry also allows achievement of the mechanisms for water molecular dynamics on biochar surface, thereby leading to the possibility to understand better, in future research, the role of biochar in increasing soil quality and plant nutrition.

摘要

许多土壤功能取决于水与土壤的相互作用。通过施加诸如石粉、粪肥或生物炭(一种通过生物质热解获得的含碳材料)等土壤改良剂,可以改变水对土壤的亲和力。事实上,向土壤中添加疏水性生物炭可能会增加土壤斥水性、降低吸水能力、抑制微生物活性、改变土壤过滤、缓冲、储存和转化功能。因此,监测水对生物炭表面的亲和力(也称为“润湿性”)对于更好地解决其在土壤系统中的应用至关重要。在本研究中,我们建议使用快速场循环核磁共振弛豫测量技术,并应用一种新的数学模型进行数据解释,作为传统接触角(CA)测量方法的有效替代方法,用于评估生物炭的润湿性。核磁共振或接触角测量结果均显示了此处所研究生物炭相同的润湿性趋势。核磁共振弛豫测量相对于接触角测量的优势在于,有可能在微观层面一次性获得各种不同信息。事实上,虽然接触角仅提供润湿性评估,但核磁共振弛豫测量还能实现对生物炭表面水分子动力学机制的研究,从而使得在未来研究中更深入理解生物炭在提高土壤质量和植物营养方面的作用成为可能。

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