Page 66 - 《广西植物》2024年第7期
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1 2 6 6                                广  西  植  物                                         44 卷
                                                               CROUS KYꎬ OSVALDSSON Aꎬ ELLSWORTH DSꎬ 2015. Is
            4  结论                                                phosphorus limiting in a mature Eucalyptus woodland?
                                                                 Phosphorus fertilisation stimulates stem growth [ J]. Plant
                                                                 Soilꎬ 391: 293-305.
                 在本研究中ꎬ添加 4 种不同用量的 BC 均能显                      DEMISIE Wꎬ LIU Zꎬ ZHANG Mꎬ 2014. Effect of biochar on
                                        -                        carbon fractions and enzyme activity of red soil [J]. Catenaꎬ
            著提高桉树人工林土壤的 NO  ̄N、MBP 和 pH 值ꎻ
                                       3
                                                                 121: 214-221.
            土壤 AP 和 LP 只在 10%和 20%的 BC 添加量下显
                                                               FENG YHꎬ LIANG WJꎬ WEI Xꎬ et al.ꎬ 2020. Analysis of soil
            著提高ꎬ而 pH、TN 和 TP 可能是改变桉树人工林
                                                                 nutrient characteristics of Larix principis ̄rupprechtii forests
            土壤 P 组分的最主要因素ꎻ此外ꎬBC 主要通过影                            with different altitude gradients in Guandi Mountain [J]. J
            响土壤理化性质进而提高与 C、N 循环相关的酶活                             W China For Sciꎬ 49(4): 68-73. [冯燕辉ꎬ 梁文俊ꎬ 魏
                                                                 曦ꎬ 等ꎬ 2020. 关帝山不同海拔梯度华北落叶松林土壤养
            性ꎬ并在一定程度上提高桉树人工林土壤的 P 转
                                                                 分特征分析 [J]. 西部林业科学ꎬ 49(4): 68-73.]
            化ꎬ其中以高浓度 BC 添加量(20%) 的效果最佳ꎬ                        FOLTRAN ECꎬ ROCHA JHTꎬ BAZANI JHꎬ et al.ꎬ 2019.
            而 pH、C ∶ P 和 N ∶ P 是驱动土壤 P 转化的最关键                    Phosphorus pool responses under different P inorganic
                                                                 fertilizers for a Eucalyptus plantation in a loamy Oxisol
            因子ꎮ 综上所述ꎬBC 在改善我国亚热带桉树人工
                                                                 [J]. Forest Ecol Manageꎬ 435: 170-179.
            林土壤 P 供应方面具有一定的应用潜力ꎮ
                                                               GAO LYꎬ LIN WPꎬ ZHANG FJꎬ et al.ꎬ 2021. Research
                                                                 progress of biochar in improving soil acidification [ J ].
                                                                 Guangdong Agric Sciꎬ 48(1): 35-44. [郜礼阳ꎬ 林威鹏ꎬ
            参考文献:                                                张风姬ꎬ 等ꎬ 2021. 生物炭对酸性土壤改良的研究进展
                                                                 [J]. 广东农业科学ꎬ 48(1): 35-44.]
                                                               GAO YLꎬ FANG Fꎬ TANG ZCꎬ et al.ꎬ 2022. Distribution
            ACHAT DLꎬ BAKKER MRꎬ AUGUSTO Lꎬ et al.ꎬ 2009.
                                                                 characteristics of soil phosphorus forms and phosphatase
               Evaluation of the phosphorus status of P ̄deficient podzols in
                                                                 activity at different altitudes in the soil of water ̄level ̄
               temperate pine stands: combining isotopic dilution and
                                                                 fluctuation zone in Pengxi Riverꎬ Three Gorges Reservoir
               extraction methods [J]. Biogeochemistryꎬ 92(3): 183-200.
            ANDERSON CRꎬ CONDRON LMꎬ CLOUGH TJꎬ et al.ꎬ          [J]. Chin J Environ Sciꎬ 43(10): 4630-4638. [高艺伦ꎬ
                                                                 方芳ꎬ 唐子超ꎬ 等ꎬ 2022. 三峡库区澎溪河不同高程消落
               2011. Biochar induced soil microbial community change:
                                                                 带土壤磷形态及磷酸酶活性分布特征 [J]. 环境科学ꎬ
               implications for biogeochemical cycling of carbonꎬ nitrogen
                                                                 43(10): 4630-4638.
               and phosphorus [J]. Pedobiologiaꎬ 54(5/ 6): 309-320.
            BAILEY VLꎬ FANSLER SJꎬ SMITH JLꎬ et al.ꎬ 2011.     GUNDALE MJꎬ DELUCA THꎬ 2006. Temperature and source
               Reconciling apparent variability in effects of biochar  material influence ecological attributes of ponderosa pine and
               amendment on soil enzyme activities by assay optimization  Douglas ̄fir charcoal [ J]. For Ecol Managꎬ 231(1/ 2/ 3):
               [J]. Soil Biol Biochemꎬ 43(2): 296-301.           86-93.
            CAIJIZHUOMAꎬ ZHAI LMꎬ XI Bꎬ et al.ꎬ 2014. Effect of  GUNDALE MJꎬ DELUCA THꎬ 2007. Charcoal effects on soil
               boichar on Olsen ̄P and CaCl  ̄P in different types of soil  solution chemistry and growth of Koeleria macrantha in the
                                     2
               [J]. Chin J Soil Sciꎬ 45(1): 163-168. [才吉卓玛ꎬ 翟丽   ponderosa pine/ Douglas ̄fir ecosystem [J]. Biol Fert Soilsꎬ
               梅ꎬ 习斌ꎬ 等ꎬ 2014. 生物炭对不同类型土壤中 Olsen ̄P               43(3): 303-311.
               和 CaCl  ̄P 的影响 [J]. 土壤通报ꎬ 45(1): 163-168.]       GUO Fꎬ YOST RSꎬ 1998. Partitioning soil phosphorus into three
                    2
            CAO Jꎬ YAN WDꎬ XIANG WHꎬ et al.ꎬ 2014. Characteristics  discrete pools of differing availability [ J ]. Soil Sciꎬ
               of soil phosphorus in different aged stands of Chinese fir  163(10): 822-833.
               plantations in Huitongꎬ Hunan Province [J]. Acta Ecol Sinꎬ  HOSSEINI BSꎬ XU CYꎬ XU Zꎬ et al.ꎬ 2015. Soil and foliar
                                                                                                 15
               34( 22): 6519 - 6527. [ 曹 娟ꎬ 闫 文 德ꎬ 项 文 化ꎬ 等ꎬ     nutrient and nitrogen isotope composition (δ N) at 5 years
               2014. 湖南 会 同 不 同 年 龄 杉 木 人 工 林 土 壤 磷 素 特 征        after poultry litter and green waste biochar amendment in a
               [J]. 生态学报ꎬ 34(22): 6519-6527.]                    macadamia orchard [ J]. Environ Sci Poll Resꎬ 22(5):
            CHEN WJꎬ XIA HJꎬ LIU DFꎬ et al.ꎬ 2022. Characteristics of  3803-3809.
               biochar and its effects and mechanism on soil properties  HUANG Mꎬ WU JSꎬ HUANG QYꎬ et al.ꎬ 2003. Process in
               [J]. J Environ Eng Technolꎬ 12(1): 161-172. [陈斐杰ꎬ  research on microbiological action of soil phosphorus
               夏会娟ꎬ 刘福德ꎬ 等ꎬ 2022. 生物质炭特性及其对土壤性                   [J]. Ecol Environ ꎬ12(3): 366-370. [黄敏ꎬ 吴金水ꎬ 黄
               质的影响与作用机制 [J]. 环境工程技术学报ꎬ 12(1):                   巧云ꎬ 等ꎬ 2003. 土 壤 磷 素 微 生 物 作 用 的 研 究 进 展
               161-172.]                                         [J]. 生态环境ꎬ 12(3): 366-370.]
            COSTA MGꎬ GAMA ̄RODRIGUES ACꎬ GONCALVES JLMꎬ et     HUANG XMꎬ LIU SYꎬ YOU YMꎬ 2014. Effects of N  ̄ fixing
               al.ꎬ 2016. Labile and non ̄labile fractions of phosphorus and  tree species on soil microbial biomass and community
               its transformations in soil under Eucalyptus plantationsꎬ  structure of the second rotation Eucalyptus plantations
               Brazil [J]. Forestsꎬ 7(1): 15.                    [J]. For Resꎬ 27(5): 612-620. [黄雪蔓ꎬ 刘世荣ꎬ 尤业
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