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包膜与稳定性氮肥改善棕壤理化和生物学肥力并延缓酸化的效应
引用本文:张可,李东坡,杜艳娣,薛妍,宋玉超,张艺籍,李永华,郑野,张金明,崔永坤.包膜与稳定性氮肥改善棕壤理化和生物学肥力并延缓酸化的效应[J].植物营养与肥料学报,2023,29(3):472-482.
作者姓名:张可  李东坡  杜艳娣  薛妍  宋玉超  张艺籍  李永华  郑野  张金明  崔永坤
作者单位:1.中国科学院沈阳应用生态研究所,辽宁沈阳110016
基金项目:中国科学院战略性先导科技专项(A类)(XDA28090200)。
摘    要:【目的】包膜和稳定性尿素肥料的氮素释放及其在土壤中的转化、残留特征不同于普通尿素,本研究评价了长期施用包膜和稳定性尿素肥料对土壤相关性质的影响。【方法】不同包膜和稳定性尿素肥料的定位试验始于2007年。将脲酶抑制剂N-丁基硫代磷酰三胺(N)、氢醌(H)]和硝化抑制剂3,4-二甲基吡唑磷酸盐(DM)、双氰胺(D)]按常用添加量添加到大颗粒尿素中制备6种稳定性尿素,供试包膜尿素肥料包括树脂包膜尿素(PCU)和硫包衣尿素(SCU)。试验共9个处理,具体为普通大颗粒尿素(U)、H+U、N+U、D+U、DM+U、H+D+U、N+DM+U、SCU和PCU。于2021年收获期采集0—20 cm耕层土样,分析了土壤基本理化性质指标及与氮转化相关的酶活性及土壤微生物量碳、氮含量。【结果】与试验前(2007年)土壤相比,施用包膜和稳定性尿素增加了棕壤有机质、全氮、全磷、全钾、有效磷以及速效钾含量,有机质增幅达34%~48%,以SCU和U处理的全氮含量最高,为1.26 g/kg,增幅为88%。稳定性尿素处理的土壤pH较常规尿素处理有所提高,其中DM+U处理的土壤pH最高(5.83),较U处理升高了10%...

关 键 词:长期施肥  包膜尿素  稳定性尿素  微生物生物量  土壤酶活性
收稿时间:2022-06-27

Coated and stable nitrogen fertilizers improve physico-chemical and biological quality and delay acidification in brown soil
ZHANG Ke,LI Dong-po,DU Yan-di,XUE Yan,SONG Yu-chao,ZHANG Yi-ji,LI Yong-hua,ZHENG Ye,ZHANG Jin-ming,CUI Yong-kun.Coated and stable nitrogen fertilizers improve physico-chemical and biological quality and delay acidification in brown soil[J].Plant Nutrition and Fertilizer Science,2023,29(3):472-482.
Authors:ZHANG Ke  LI Dong-po  DU Yan-di  XUE Yan  SONG Yu-chao  ZHANG Yi-ji  LI Yong-hua  ZHENG Ye  ZHANG Jin-ming  CUI Yong-kun
Institution:1.Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang, Liaoning 110016, China
Abstract:  【Objective】  Coated and stable nitrogen fertilizers have different release characteristics of N in soil. We studied their effects on soil physico-chemical properties and enzyme activities related to nitrogen conversion, to evaluate their influence in long-term application.   【Methods】  The long-term experiment was established in 2007 in Shenyang Agro-ecosystem Experimental Station. Urease inhibitor (N-butyl thiophosphate-triamine, N), hydroquinone (H), nitrification inhibitor (3, 4-dimethylpyrazole phosphonate, DM), dicyandiamide (D) were added into urea to make products. Coated urea were polymer-coated urea (PCU) and sulfur-coated urea (SCU). A total of 9 treatments were set up in the test: urea (U), H+U, N+U, D+U, DM+U, H+D+U, N+DM+U, SCU, PCU. Soil samples from 0?20 cm depth were collected in 2021 to analyze the physical and chemical properties, activities of soil nitrogen conversion-related enzymes, and soil microbial biomass C and N content.  【Results】  Compared with the soil before test (2007), the long-term application of stable urea and coated urea increased the organic matter, total N, total P, total K, available P, and available K in brown soil, the organic matter increased by 34%–48%, the highest total N was recorded in SCU and U treatments (1.26 g/kg); stable urea treatments recorded higher soil pH, with the highest pH in DM+U treatment (5.83), while SCU treatment, with soil pH 4.87, decreased soil pH by 8%, leading to serious soil acidification. Coated or stable urea increased soil microbial biomass carbon to varying degrees, and DM proved to be suitable for microbial nitrogen fixation. H+U had the strongest inhibition effect on urease activity, and two coated urea treatments significantly stimulated urease activity. The coated release-stable urea enhanced nitrification potential activity and nitrification of brown soil, improved nitrate reductase activity, except N+DM+U treatment.   【Conclusions】  The application of stable/coated urea improves brown soil fertility and soil microbial quantity. Except sulfur-coated urea, all the other stable/coated urea effectively delay the acidification of brown soil, reduce the loss of urea N, so are suitable for long-term application in dry brown soil.
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