Effect of Different Ameliorants on the Infiltration and Decontamination Capacities of Soil

Author:

Sang Tianyi1,Kang Aihong12,Zhang Yao1ORCID,Li Bo12,Mao Huiwen1,Kong Heyu1

Affiliation:

1. College of Civil Science and Engineering, Yangzhou University, Yangzhou 225100, China

2. Research Center for Basalt Fiber Composite Construction Materials, Yangzhou 225127, China

Abstract

The expansion of urban construction areas can reduce the infiltration rate of rainwater in permeable land, and a large amount of runoff rainwater cannot penetrate the soil. In extreme rainstorm weather, it is easy to cause serious urban waterlogging problems. To improve the infiltration and decontamination ability of green space soil, two types of inorganic ameliorants (i.e., sand and grain shell) and structural ameliorants (i.e., desulfurization gypsum and polyacrylamide) were utilized as amendments in the soil. The influence of the selected ameliorants on the infiltration and decontamination ability was analyzed through a soil infiltration test, soil pore distribution determination and a soil decontamination test. Three parameters including the soil infiltration rate, pore distribution characteristics and pollutant removal rate were proposed. The results showed that sand, grain shells and desulfurization gypsum (FGD gypsum) all enhanced the infiltration capacity of soil, while PAM decreased the infiltration capacity. Meanwhile, mixed sand and grain shell with the FGD gypsum and polyacrylamide can effectively improve the decontamination capacity of the soil. Comprehensive analysis showed that the better improvement combination is 10% sand + 20% grain hull + 0.5 g/kg FGD gypsum + 0.1 g/kg PAM.

Funder

Innovation and Entrepreneurship Program of Jiangsu Province

High-level Talent Introduction Project of Yangzhou University

Jiangsu Postgraduate Practice Innovation Project

Publisher

MDPI AG

Subject

General Materials Science

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