Study on soil quality effect of reconstructing by Pisha sandstone and sand soil

Author:

Zhang Haiou1234,Guo Zhen1234,Zhou Hang123,Yang Chenxi234,Wang Yingguo234

Affiliation:

1. Shaanxi Provincial Land Engineering Construction Group Co., Ltd. , Xi’an 710075, Shaanxi Province , China

2. Institute of Land Engineering and Technology , Shaanxi Provincial Land Engineering Construction Group Co., Ltd. , Shaanxi , Xi’an 710072 , China

3. Key Laboratory of Degraded and Unused Land Consolidation Engineering , Ministry of Natural Resources , Shaanxi , Xi’an 710072 , China

4. Land Engineering Technology Innovation Center , Ministry of Natural Resources , Xi’an 710075, Shaanxi Province , China

Abstract

Abstract In order to explore the effect of reconstructing soil quality change after adding Pisha sandstone rich in clay mineral materials to improve sandy soil in the Mu Us Sandy Land. Long-term field monitoring experiments were conducted to study the characteristic changes of the reconstructed soil carbon and nitrogen content and corn yield with different proportions of Pisha sandstone and sand. The results showed that after 9 years of experiment, compared with the original sandy soil, in T1, T2, and T3 treatments the reconstructed soil organic matter content increased by 10, 12, and 11 times, total nitrogen content increased by 5.5, 5.4, and 3.9 times, and corn yield increased by 43.9, 105.9, and 58.5%. Especially, the corn yield of T2 and T3 treatment is greater than or equal to the corn yield of local high-yield fields. In summary, the reconstructed soil quality in different proportions has developed toward a good trend after long-term planting. T2 and T3 treatments have the best effects on reconstructing soil carbon and nitrogen accumulation reconstruction and corn yield increase. T2 and T3 treatments are recommended as the best scientific ratio for improving sandy soil with Pisha sandstone in Mu Us Sandy Land. This method has important reference and guidance for ecological remediation of desertification and degraded land.

Publisher

Walter de Gruyter GmbH

Subject

General Earth and Planetary Sciences,Environmental Science (miscellaneous)

Reference29 articles.

1. Ni HB, Zhang LP, Zhang DR, Wu XY, Fu XT. Weathering of pisha-sandstones in the wind-water erosion crisscross region on the Loess Plateau. J Mt Sci. 2008;5:340–9.

2. Yang MH, Cao MM, Zhu ZM. Vegetation degradation and its stability in desertification at Southeastern edge of Mu Us Sandy Land. Bull Soil Water Conserv. 2017;37(5):10–5.

3. She XY, Zhang XC, Wei XR. Improvement of water absorbing and holding capacities of sandy soil by appropriate amount of soft rock. Trans CSAE. 2014;30:115–23.

4. Han JC, Xie JC, Zhang Y. Potential role of feldspathic sandstone as a natural water retaining agent in Mu Us Sandy Land. Northwest China Chin Geogr Sci. 2012;22:550–5.

5. Han JC, Liu YS, Zhang Y. Sand stabilization effect of feldspathic sandstone during the fallow period in Mu Us Sandy Land. J Geogr Sci. 2015;4:428–36.

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