农业与技术 ›› 2024, Vol. 44 ›› Issue (21): 1-4.DOI: 10.19754/j.nyyjs.20241115001
• 农业科学 •
谭贤教 彭李顺 曹峥英 甘仪梅 武媛丽 蔡文伟
出版日期:
2024-11-15
发布日期:
2024-11-15
作者简介:
谭贤教(1981-),女,硕士,助理研究员。研究方向:农业经济管理;通讯作者蔡文伟(1980-),男,硕士,副研究员。研
究方向:甘蔗良种繁育与耕作栽培。
基金资助:
Online:
2024-11-15
Published:
2024-11-15
摘要: 蔗叶还田作为蔗叶资源化利用中高效且低成本的一种方式,在提升蔗田土壤质量和促进可持续发展方面 发挥着重要作用。本文综述了蔗叶还田对土壤理化性质、土壤微生物、蔗田土壤温室气体排放、蔗田病虫草害和 甘蔗生长发育等影响的研究进展。在此基础上提出了未来的一些重点研究方向,如系统监测长年开展蔗叶还田对 土壤理化性质、生态效应、甘蔗单产和品质等的影响。建立蔗叶还田最优模型,加强蔗叶还田的障碍消减研究 等,以期为蔗叶还田技术的深入研发和应用提供参考。
中图分类号:
. 蔗叶还田对蔗田土壤生态和甘蔗生长发育影响的研究进展[J]. 农业与技术, 2024, 44(21): 1-4.
[]许孚,汪洲涛,路贵龙,等.甘蔗遗传改良中的基因工程:适 用、成就、局限和展望[J].农业生物技术学报,2022,30 (03):580-593. [2]Thorbum P J,Biggs J S,Jeda P,Meier E A,Kirsten V,Skocaj D M.Prioritizing crop management to increase nitrogen use efficien- cy in Australian sugarcane Crops[J.Frontiers in Plant Science, 2017(8):1504. 3]Otto R,Castro S A Q,Mariano E,Castro S GQ,Franco HC J,Trivelin P C O.Nitrogen Use Efficiency for Sugarcane-Biofuel Pro- duction:What Is Next?[J].Bioenergy Research,2016,9 (4): 1272-1289. [4]Diego AA E,Zigomar M D S,Cassio A T,Lenon H L,Elizeu D S L,Ingrid N D O,Naiade D P R.Soil compaction,root system and productivity of sugarcane under different row spacing and control edtraffic atharvest J].Soil and Tillage Research,2019 (187): 60-71. [5]张才芳.蔗叶还田深度和生物表面活性剂对土壤养分和微生物 群落的影响[D].福州:福建农林大学,2019. [6]Popin GV,Santos A K B,Melo P L A,Cherubin M R,Sioueira -neto M.Importance of sugarcane straw maintenance to prevent soil organic matter depletion in a Nitisol in the central-southern region of Brazil [J].Soil Research,2021,59 (2):119-129. [7]Silva I D C,De Souza Z M,Santos A P G,Farhate C VV,De Oliveira I N,Torres J L R.Removal of different quantities of straw on the soil surface:effects on the physical attributes of the soil and the productivity of sugarcane yield in southeast Brazil [J.Sugar Tcch,2022,24(5):1404-1419. [8]田雪.秸秆不同还田方式对土壤物理性状及玉米生长的影响 [D].沈阳:沈阳农业大学,2022 [9]Ortiz P F S,Rolim MM,Lima R P D,Tormena C A,Cavalcanti R Q,Pedrosa E M A.A soil physical assessment over three succes- sive bumed and unbumed sugarcane annual harvests [J].Sugar Tech,2023,25(3):518-530. [10]Castioni G A,Cherubin M R,Santos M L M,Sanches G M, Bordonal R D O,Barbosa L C,Junqueira F H C,Nunes C J L. Soil physical quality response to sugarcane straw removal in Brazil: A multi-approach assessment [J].Soil and Tillage Research, 2018,184:301-309.[11]Cherubin M R,Bordonal R O,Castioni G A,Guimares E M, Lisboai P,Moraes L AA,Menandro L M S,Tenellil S,Cerri C E P,Karlen D L,Carvalho J L N.Soil health response to sugar- cane straw removal in Brazil [J].Industrial Crops and Products. 2021(163):113315. [12]Satiro L S,Cherubin M R,Safanelli J L,Lisboa I P,Rocha Junior P R D,Cerri C E P,Cerri CC.Sugarcane straw removal effects on Ultisols and Oxisols in south-central Brazil [J].Geo- derma Regional,2017 (11):86-95. [13]樊保宁,游建华,周秋惠。我国糖料甘蔗叶有效处理与利用 [J].中国糖料,2020,42(01):77-80 [14]李浩杰。不同蔗叶还田模式对土壤养分和甘蔗产量品质的影 响[D].重庆:西南大学,2023. [15]Blair N.Impact of cultivation and sugar-cane green trash manage- ment on carbon fractions and aggregate stability for a Chromic Luvi- sol in Queensland,Australia J.Soil and Tillage Research, 2000(55):183-191. [16]Cherubin M R,Lisboa I P,Silva A G B,Varanda LL,Cerri C E P.Sugarcane straw removal:implications to soil fertility and fertilizer demand in Brazil.BioEnergy Research,2019,12 (4): 888-900. [17]Canellas L,Busato J,Bobbss L B,Baildotto M A,RumjanekV,Olivares F.Soil organic matter and nutrient pools under long- term non-buming management of sugar cane [J].European Jour- nal of Soil Science,2010,61 (3):375-383. [18]Soltangheisi A,Haygarth P M,Pavinato P S,Cherubin M R, Teles A P B,Bordonal R DO,Carvalho J L N,Withers P JA, Martinelli L A.Long term sugarcane straw removal affects soil phosphorus dynamics J ]Soil and Tillage Research,2021 (208):103898. [19]Chang C Y,Weindorf D C,Deramus A,Goodeaux LL.Surface and subsurface phosphorus losses from sugarcane fields with differ- ent management practices [J ]Water Air and Soil Pollution, 2011,217(1):649-661. [20]宋日云,陈超君,孙少华,谢金兰,蒋治俊,陈欣,李仕龙 蔗叶还田方法对宿根蔗地一些土壤肥力因素的效应研究[J]· 广西蔗糖,2008(01):18-19. [21]Gregorich E,Janzen HH,Helgason B,Ellert B.Nitrogenous gas emissions from soils and greenhouse gas effects [J ]Advances in Agronomy,2015(132):39-74. [22]Wierzbowska J,Sienkiewicz S,Zauski D.Nitrogen fractions in soil fertilized with waste organic materials [J].Agronomy.2021, 11(08):1474-1481. [23]Graham M H,Haynes R J.Organic matter accumulation and fer- tilizer-induced acidification interact to affect soil microbial and en- zyme activity on a long-term sugarcane management experiment [J].Biology Fertilizer Soils,2005 (41):249-256. [24]Yadav R L,Shukla S K,Suman A,Singh P N.Trichoderma in- oculation and trash management effects on soil microbial biomass, soil respiration,nutrient uptake and yield of ratoon sugarcane un- der subtropical conditions J].Biology and Fertility of Soils, 2009,45(5):461-468.[25]Chandre R,Rana N S,Kumar S,Panwar G S.Effects of sugar- cane residue and green manure practices in sugarcane-ratoon- wheat sequence on productivity,soil fertility and soil biological properties [J ]Archives of Agronomy and Soil Science,2008, 54(6):651-664. [26]Li G Y,Wu C F,Gao W D.Effects of short-term fallow manage- ments on soil microbial properties:A case study in China [J]. Applied Soil Ecology,2018 (125):128-137. [27]Denmead O T,Macdonald B C T,Bryant G,Nnylor T,WilsonS,Griffith D W T,Wang W J,Salter B,White I,Moody P W. Emissions of methane and nitrous oxide from Australian sugarcane soils [J].Agricultural and Forest Meteorology,2010,150 (6): 748-756. [28]Panosso A R,Marges J,Milori D M B P,Ferraudo A S.Soil CO2 emission and its relation to soil properties in sugarcane areas under Slash-and-bum and Green harvest [J].Soil and Tillage Research,2011(111):190-196. [29]Vasconcelos A L,Cherubin M R,Feigl B J,Cerri C E.Green- house gas emission responses to sugarcane straw removal [J.Bi- omass and Bioenergy,2018 (113)15-21. [30]Patrick L P,Sylvie R,Guilherme D,Douglas A W,Roberta L G,Ana P M,Sandro J G.Straw removal reduces the mulch physical barrier and ammonia volatilization after urea application in sugarcane [J.Atmospheric Environment,2018 (194):179- 187. [31]林兆里,徐金汉,许莉萍,张华.蔗叶粉碎还田对甘蔗螟虫 发生的影响[J].中国糖料,2013(04):4-6. [32]Judice W E,Griffin J L,Etheredge L M,Jones C A.Effeets of crop residue management and tillage on weed control and sugarcane production [J].Weed Technology,2007,21 (3):606-611. [33 Sampietro D A,Vattuone M A.Nature of the interference mechanism of sugarcane Saccharum.officinarum L.)straw [J]. Plant and Soil,2006(280):157-169. [34]Lisboa I P,Cherubin M R,Lima R P,Cerri C C,Satiro L S, Wienhold B J,Schmer M R,Jin V L,Cerri C E P.Sugarcane straw removal effects on plant growth and stalk yield [J].Indus- trial Crops and Products,2018 (111):794-806. [35]宋日云.蔗叶还田方法对宿根蔗抗旱性及一些土壤肥力指标 的影响[D].南宁:广西大学,2008. [36]陈寿宏,杨清辉,郭兆建,宴祥玉,杨洪岂,杨梅,张永港, 康宁,杨光琴。蔗叶覆盖还田系列研究L对甘蔗工、农艺性 状的影响[J].中国糖料,2016,38(04):10-13,18. [37]Viator R P,Johnson R M,Richard E P,Waguespack H L, Jackson W.Influence of nonoptimal ripener applications and post- harvest residue retention on sugarcane second ratoon yields [J]. Agronomy J6umal,2008,100(6):1769-1773. |
[1] | . 不同钝化材料对镉污染农田土壤及水稻的影响[J]. 农业与技术, 2024, 44(20): 11-15. |
[2] | . 不同墙体材料日光温室保温性能分析对比[J]. 农业与技术, 2024, 44(20): 22-25. |
[3] | . 凋落物对植物幼苗更新的影响综述[J]. 农业与技术, 2024, 44(20): 67-71. |
[4] | . 菌根真菌与深色有隔内生真菌互作研究进展[J]. 农业与技术, 2024, 44(19): 1-3. |
[5] | . 丹皮根石油继萃取物对水稻纹枯菌的毒力评估及化学成分分析[J]. 农业与技术, 2024, 44(19): 9-12. |
[6] | . 鸭梨果渣中可溶性膳食纤维的提取及功能性质研究[J]. 农业与技术, 2024, 44(19): 13-17. |
[7] | . 麻城菊花主要活性成分研究进展[J]. 农业与技术, 2024, 44(19): 22-24. |
[8] | . 多功能环境材料对陇东旱塬区玉米生长和土壤改良的影响分析[J]. 农业与技术, 2024, 44(19): 28-32. |
[9] | . 锰铜复合迫对向日葵幼苗生理生化特性的影响[J]. 农业与技术, 2024, 44(19): 33-36. |
[10] | . 海藻糖与芽胞杆菌A2混用增强黄瓜抗缺水迫和抗枯萎病能力[J]. 农业与技术, 2024, 44(18): 1-4. |
[11] | . QuEChERS联合GC-MS/MS法测定金银花中农药的残留量[J]. 农业与技术, 2024, 44(18): 5-9. |
[12] | . 中国人参属植物生境适宜性研究[J]. 农业与技术, 2024, 44(18): 10-15. |
[13] | . 月季花红色素稳定性研究[J]. 农业与技术, 2024, 44(18): 16-18. |
[14] | . 不同温度下球孢白僵菌菌株YG-JCF2对家蚕的侵染效果研究[J]. 农业与技术, 2024, 44(18): 19-23. |
[15] | . 大豆细胞色素P450基因GmCYP86A1s的表达分析[J]. 农业与技术, 2024, 44(18): 24-27. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||