| Literature DB >> 27502567 |
Yuan Fan1,2, Tian Ge1,2, Yanli Zheng1,2, Hua Li1,2, Fangqin Cheng3,4.
Abstract
Soil salinization has become a worldwide problem that imposes restrictions on crop production and food quality. This study utilizes a soil column experiment to address the potential of using mixed solid waste (vinegar residue, fly ash, and sewage sludge) as soil amendment to ameliorate saline-sodic soil and enhance crop growth. Mixed solid waste with vinegar residue content ranging from 60-90 %, sewage sludge of 8.7-30 %, and fly ash of 1.3-10 % was added to saline-sodic soil (electrical conductivity (EC1:5) = 1.83 dS m-1, sodium adsorption ratio (SAR1:5) = 129.3 (mmolc L-1)1/2, pH = 9.73) at rates of 0 (control), 130, 260, and 650 kg ha-1. Results showed that the application of waste amendment significantly reduced SAR, while increasing soil soluble K+, Ca2+, and Mg2+, at a dose of 650 kg ha-1. The wet stability of macro-aggregates (>1 mm) was improved 90.7-133.7 % when the application rate of amendment was greater than 260 kg ha-1. The application of this amendment significantly reduced soil pH. Germination rates and plant heights of oats were improved with the increasing rate of application. There was a positive correlation between the percentage of vinegar residue and the K/Na ratio in the soil solutions and roots. These findings suggest that applying a mixed waste amendment (vinegar residue, fly ash, and sewage sludge) could be a cost-effective method for the reclamation of saline-sodic soil and the improvement of the growth of salt-tolerant plants.Entities:
Keywords: Amendment; K/Na ratio; Mixed solid wastes; Oat seedlings; Saline-sodic soil; Wet stability of macro-aggregate
Mesh:
Substances:
Year: 2016 PMID: 27502567 DOI: 10.1007/s11356-016-7360-3
Source DB: PubMed Journal: Environ Sci Pollut Res Int ISSN: 0944-1344 Impact factor: 4.223