Page 93 - 《广西植物》2025年第6期
P. 93
6 期 蒋潇潇等: 蔗渣生物质炭对岩溶森林土壤磷素有效性的影响 1 0 7 9
in fine root turnoverꎬ biomassꎬ and necromass of two desertification in southwestern China: geomorphologyꎬ
vegetation types in a karst ecosystemꎬ southwestern China landuseꎬ impact and rehabilitation [J]. Land Degradation &
[J]. Forestsꎬ 13: 611. Developmentꎬ 15: 115-121.
PAN FJꎬ ZHANG Wꎬ LIU SJꎬ et al.ꎬ 2015. Leaf N ∶ P YANG Yꎬ YAN JLꎬ DING Cꎬ 2013. Effects of biochar
stoichiometry across plant functional groups in the karst amendment on the dynamics of enzyme activities from a paddy
region of southwestern China [ J ]. Trees ̄Structure and soil polluted by heavy metals [ J ]. Advanced Materials
Functionꎬ 29: 883-892. Researchꎬ 610/ 611/ 612/ 613: 2129-2133.
PAZ ̄FERREIRO Jꎬ GASCÓ Gꎬ GUTIÉRREZ Bꎬ et al.ꎬ YUAN JHꎬ XU RKꎬ 2012. Research progress of amelioration
2012. Soil biochemical activities and the geometric mean of effects of biochars on acid soils [J]. Soilsꎬ 44(4): 541-
enzyme activities after application of sewage sludge and 547. [袁金华ꎬ 徐仁扣ꎬ 2012. 生物质炭对酸性土壤改良
sewage sludge biochar to soil [J]. Biology and Fertility of 作用的研究进展 [J]. 土壤ꎬ 44(4): 541-547.]
Soilsꎬ 48: 511-517. ZHANG Wꎬ ZHAO Jꎬ PAN FJꎬ et al.ꎬ 2015. Changes in
PHILLIPS RPꎬ MEIER ICꎬ BERNHARDT ESꎬ et al.ꎬ nitrogen and phosphorus limitation during secondary
2012. Roots and fungi accelerate carbon and nitrogen cycling succession in a karst region in southwest China [J]. Plant
in forests exposed to elevated CO [ J]. Ecology Lettersꎬ Soilꎬ 391: 77-91.
2
15(9): 1042-1049. ZOU CJꎬ ZHANG YYꎬ ZHANG YMꎬ et al.ꎬ 2015. Regulation
VITOUSEK PMꎬ PORDER Sꎬ HOULTON BZꎬ et al.ꎬ of biochar on matrix enzyme activities and microorganisms
2010. Terrestrial phosphorus limitation: mechanismsꎬ around cucumber roots under continuous cropping [ J ].
implicationsꎬ and nitrogen ̄phosphorus interactions [ J ]. Chinese Journal of Applied Ecologyꎬ 26 ( 6 ): 1772 -
Ecological Applicationsꎬ 20(1): 5-15. 1778. [邹春娇ꎬ 张勇勇ꎬ 张一鸣ꎬ 等ꎬ 2015. 生物炭对设
WANG GJꎬ XU ZWꎬ 2013. The effects of biochar on 施连作黄瓜根域基质酶活性和微生物的调节 [J]. 应用
germination and growth of wheat in different saline ̄alkali soil 生态学报ꎬ 26(6): 1772-1778.]
[J]. Asian Agricultural Researchꎬ 5(11): 116-119. ZHOU CFꎬ HEAL Kꎬ TIGABU Mꎬ et al.ꎬ 2020. Biochar
WANG KLꎬ ZHANG CHꎬ CHEN HSꎬ et al.ꎬ 2019. Karst addition to forest plantation soil enhances phosphorus
landscapes of China: patternsꎬ ecosystem processes and availability and soil bacterial community diversity [J]. Forest
services [J]. Landscape Ecologyꎬ 34: 2743-2763. Ecology and Managementꎬ 455: 117635.
WANG RFꎬ ZHAO LXꎬ SHEN YJꎬ et al.ꎬ 2015. Research ZHU Jꎬ LI Mꎬ WHELAN Mꎬ 2018. Phosphorus activators
progress on preparing biochar and its effect on soil physio ̄ contribute to legacy phosphorus availability in agricultural
chemical properties [J]. Journal of Agricultural Science and soils: a review [J]. Science of the Total Environmentꎬ 612:
Technologyꎬ 17(2): 126-133. [王瑞峰ꎬ 赵立欣ꎬ 沈玉君ꎬ 522-537.
等ꎬ 2015. 生物炭制备及其对土壤理化性质影响的研究进
展 [J]. 中国农业科技导报ꎬ 17(2): 126-133.] (责任编辑 周翠鸣)
WANG SJꎬ LIU QMꎬ ZHANG DFꎬ et al.ꎬ 2004. Karst rocky

