Institute of Basic Biological Problems Russian Academy Sci, Pushchino, Russia.
Institute Physicochemical and Biological Problems in Soil Science Russian Academy of Sciences, Pushchino, Russia.
Environ Sci Pollut Res Int. 2017 Nov;24(31):24311-24317. doi: 10.1007/s11356-017-0051-x. Epub 2017 Sep 9.
The poor adsorption capacity of sandy soils is one of the primary reasons of a high level of phosphorus (P) leaching. Silicon (Si)-rich soil amendments have the potential to improve the low absorption capacity of sandy soils for P. The objective of this study was to evaluate the ability of different Si-rich materials to regulate P adsorption and retention by sandy soils. Amorphous fine silica (FSS), calcium silicate (CaSiO), chemically pure CaCO, and two types of Ca-silicate slags from metal industry (Pro-Sil) and chemical industry (TS) were used in laboratory experiments being conducted with pure quartz sand and cultivated and virgin Entisols and Spodosols collected in the South Florida. The binding energy-related constants were evaluated for soils treated by Si-rich materials and then incubated during 2 months. The following row of tested materials on the increasing level of "affinity parameter" was determined: for virgin Spodosol, Pro-Sil < CaCO < FSS< CaSiO < TS; for cultivated Spodosol, FSS < Pro-Sil < CaCO< CaSiO < TS; for virgin Entisol, Pro-Sil < CaSiO < CaCO < FSS < TS; and for cultivated Entisol, FSS < Pro-Sil < CaSiO < CaCO < TS. Chemical, physical, and physical-chemical mechanisms of increasing soil adsorption capacity are hypothesized and discussed to explain the results obtained. The conducted experiments have demonstrated high prospective of Si-rich materials for reduction of P leaching from cultivated sandy soils.
贫瘠土壤的吸附能力差是磷淋溶水平高的主要原因之一。富含硅(Si)的土壤改良剂有可能改善贫瘠土壤对磷的低吸收能力。本研究旨在评估不同富硅材料调节贫瘠砂土对磷的吸附和保持能力。在南佛罗里达州采集的纯石英砂和耕种的和原始的淋溶土和灰壤中进行了实验室实验,使用无定形细硅石(FSS)、硅酸钙(CaSiO)、化学纯碳酸钙(CaCO)和两种来自金属工业(Pro-Sil)和化学工业(TS)的钙硅酸盐炉渣。评估了用富硅材料处理的土壤的与结合能相关的常数,然后在 2 个月的时间里进行培养。受测试材料对土壤的“亲和力参数”的影响大小排序如下:原始灰壤中,Pro-Sil<CaCO<FSS<CaSiO<TS;耕种灰壤中,FSS<Pro-Sil<CaCO<CaSiO<TS;原始淋溶土中,Pro-Sil<CaSiO<CaCO<FSS<TS;耕种淋溶土中,FSS<Pro-Sil<CaSiO<CaCO<TS。提出并讨论了增加土壤吸附能力的化学、物理和物理化学机制,以解释所获得的结果。进行的实验表明,富硅材料具有减少耕种贫瘠砂土磷淋溶的巨大潜力。