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富氮生物炭对比施用对中国亚热带稻田和水稻叶片磷素形态的影响。

Effects of contrasting N-enriched biochar applications on paddy soil and rice leaf phosphorus fractions in subtropical China.

机构信息

Key Laboratory of Humid Subtropical Eco-geographical Process, Ministry of Education, Fujian Normal University, Fuzhou 350117, China; Institute of Geography, Fujian Normal University, Fuzhou 350117, China.

Ministry of Education Key Laboratory of Environment Remediation and Ecosystem Health, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou 310058, China.

出版信息

Sci Total Environ. 2023 Jun 15;877:162949. doi: 10.1016/j.scitotenv.2023.162949. Epub 2023 Mar 20.

Abstract

Biochar has been proved to be an important soil amendment to alleviate soil phosphorus (P) in the paddy crops. However, the role of specially prepared biochar (N-enriched biochar) on the distribution and transformation of P soil in and rice leaves needs to be revealed. In this study, we studied in a field experiment the effects of two different levels of application of N-enriched biochar on the P fractions of soil and leaves. The results showed that: (1) in early rice, both rates of N-enriched biochar increased soil concentrations of labile inorganic P (Pi) (+51.5 % and +66.2 %, respectively) and labile organic P (Po) (+167 % and + 76.9 %, respectively) and moderately labile Pi (+37.8 % and +27.8 %, respectively) and decreased soil concentration of moderately labile Po (-17.0 % and -52.7 %, respectively) in the 0-15 cm layer. Soil total P concentration was positively correlated with soil labile P fractions and moderately labile Pi concentrations (p < 0.05); (2) in early and late rice, application of the biochar at 4 t ha increased rice leaf concentration of inorganic (+13.3 % and +34.8 %, respectively), nucleic acid (+24.2 % and +13.0 %, respectively) (p < 0.05). The foliar inorganic and nucleic acid P concentrations were positively correlated with foliar total P concentrations; (3) redundancy analysis showed that with the application of N-enriched biochar, soil total carbon (C), nitrogen (N) and P concentration were important factors affecting the chemical forms of soil P, while soil organic matter, soil total P and leaf total P content were important factors affecting the chemical forms of leaf P; (4) allometric growth models showed that under the application of N-enriched biochar, 0-30 cm soil labile Po concentration was positively related to leaf concentration of nucleic acid P, 0-15 cm soil moderately labile Pi concentration was positively related to leaf concentration of inorganic P and nucleic acid P. Thus, this study provides evidence that N-enriched biochar increase the soil P-availability of labile and moderately labile P that in turn improved rice plants P use efficiency.

摘要

生物炭已被证明是一种重要的土壤改良剂,可以缓解稻田土壤中的磷(P)。然而,特别制备的生物炭(富氮生物炭)对土壤和水稻叶片中 P 的分布和转化的作用仍需揭示。本研究通过田间试验研究了两种不同施氮量的富氮生物炭对土壤和叶片中 P 形态的影响。结果表明:(1)在早稻中,两种富氮生物炭的用量均增加了土壤中易解无机磷(Pi)(分别增加了 51.5%和 66.2%)和易解有机磷(Po)(分别增加了 167%和 76.9%)和中效解 Pi(分别增加了 37.8%和 27.8%)的浓度,降低了 0-15cm 土层中中效解 Po 的浓度(分别减少了 17.0%和 52.7%)。土壤总磷浓度与土壤易解磷和中效解 Pi 浓度呈正相关(p<0.05);(2)在早稻和晚稻中,施用量为 4t/ha 的生物炭增加了水稻叶片中无机(分别增加了 13.3%和 34.8%)和核酸(分别增加了 24.2%和 13.0%)的浓度(p<0.05)。叶片无机和核酸 P 浓度与叶片总 P 浓度呈正相关;(3)冗余分析表明,随着富氮生物炭的施用,土壤总碳(C)、氮(N)和 P 浓度是影响土壤 P 化学形态的重要因素,而土壤有机质、土壤总 P 和叶片总 P 含量是影响叶片 P 化学形态的重要因素;(4)异速生长模型表明,在富氮生物炭的施用下,0-30cm 土壤易解 Po 浓度与叶片核酸 P 浓度呈正相关,0-15cm 土壤中效解 Pi 浓度与叶片无机 P 和核酸 P 浓度呈正相关。因此,本研究提供了证据表明,富氮生物炭增加了土壤中易解和中效解 P 的有效性,进而提高了水稻植株对 P 的利用效率。

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