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养分与水分添加对弃耕地草原土壤无机磷组分的影响

[Effects of nutrient and water addition on soil inorganic phosphorus fractions in an old-field grassland].

作者信息

Zhang Yu-Ge, Li Xin-Yue, Liu He-Yong, Wang Jin-Huan, Yuan Xin, Cai Jiang-Ping, Wang Ru-Zhen, Jiang Yong

机构信息

Key Laboratory of Regional Pollution Environment and Ecological Restoration of Ministry of Education, College of Environment, Shenyang University, Shenyang 110044, China.

Erguna Forest-Steppe Ecotone Ecosystem Research Station, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2022 Feb;33(2):369-377. doi: 10.13287/j.1001-9332.202202.010.

Abstract

Reasonable nutrient and water management is effective ways to improve productivity and biodiversity of degraded grasslands. However, little is known about the effects of nutrient and water addition on soil inorganic phosphorus (P) fractions in old-field grasslands. Based on a field experiment with nutrient addition (N: 10 g·m·a, P: 10 g·m·a ) and water addition (180 mm water irrigated during plant growing season) in Duolun County, Inner Mongolia in 2005, we examined the changes of inorganic P fractions and Olsen-P contents in the topsoil (0-10 cm). Results showed that 11-year P addition significantly increased total inorganic P (TIP) content, and that exogenous P was mostly transformed into calcium phosphate (Ca-P: 62.6%-69.2%), and then into aluminium phosphate (Al-P: 19.9%-25.1%), ferric phosphate (Fe-P) and occluded P (O-P). Phosphorus incorporated with nitrogen (N) addition significantly increased Fe-P and Al-P contents by declining soil pH and activating Fe and Al in soil. Water addition alone significantly increased Fe-P, Al-P, and decalcium phosphate (Ca-P) fractions, and the contents of Fe-P, Al-P, octacalcium phosphate (Ca-P), and Ca-P were greater in P incorporated with water treatment than in P addition alone. There was no difference of each inorganic P fraction between P incorporated with N and water treatment and P incorporated with N treatment. Phosphorus and P incorporated with N additions significantly increased soil Olsen-P content, while water addition significantly decreased soil Olsen-P content under P addition alone and P incorporated with N treatment. In the calcareous soils, calcium superphosphate addition could enhance soil inorganic P pool through increasing Ca-P fraction.

摘要

合理的养分和水分管理是提高退化草原生产力和生物多样性的有效途径。然而,关于养分和水分添加对弃耕地草原土壤无机磷(P)组分的影响,人们了解甚少。基于2005年在内蒙古多伦县进行的养分添加(氮:10 g·m⁻²·年,磷:10 g·m⁻²·年)和水分添加(植物生长季节灌溉180毫米水)的田间试验,我们研究了表层土壤(0 - 10厘米)中无机磷组分和 Olsen - P 含量的变化。结果表明,连续11年添加磷显著增加了总无机磷(TIP)含量,且外源磷大多转化为磷酸钙(Ca - P:62.6% - 69.2%),然后转化为磷酸铝(Al - P:19.9% - 25.1%)、磷酸铁(Fe - P)和闭蓄态磷(O - P)。氮磷配施通过降低土壤pH值并活化土壤中的铁和铝,显著增加了Fe - P和Al - P的含量。单独添加水分显著增加了Fe - P、Al - P和磷酸二钙(Ca - P)组分,且氮磷配施处理中Fe - P、Al - P、磷酸八钙(Ca - P)和Ca - P的含量高于单独施磷处理。氮磷配施与氮磷配水处理之间各无机磷组分无差异。施磷和氮磷配施显著增加了土壤 Olsen - P 含量,而在单独施磷和氮磷配施处理下,添加水分显著降低了土壤 Olsen - P 含量。在石灰性土壤中,添加过磷酸钙可通过增加Ca - P组分来增强土壤无机磷库。

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