河南农业科学 ›› 2025, Vol. 54 ›› Issue (9): 1-14.DOI: 10.15933/j.cnki.1004-3268.2025.09.001
张朝辉1,刘阳1,张广1,王振河1,邱立友2
收稿日期:2025-03-08
接受日期:2025-04-21
出版日期:2025-09-15
发布日期:2025-09-10
通讯作者:
邱立友(1963-),男,河南信阳人,教授,博士,主要从事真菌学研究。E-mail:qliyou@henan.edu.cn
作者简介:张朝辉(1983-),男,河南信阳人,副教授,博士,主要从事食药用菌生理生化研究。E-mail:p686@163.com基金资助:ZHANG Chaohui1,LIU Yang1,ZHANG Guang1,WANG Zhenhe1,QIU Liyou2
Received:2025-03-08
Accepted:2025-04-21
Published:2025-09-15
Online:2025-09-10
摘要: 食用菌是我国第五大种植产业,是乡村振兴的重要产业支柱。食用菌产业快速发展的同时产生了大量菌渣,这些菌渣被随意丢弃或焚烧,造成严重的环境污染和资源浪费,因此,食用菌菌渣资源化利用问题受到了广泛关注。在分析菌渣来源、理化性质和营养成分的基础上,综述了菌渣资源化利用现状及其研究进展,包括菌渣作为能源材料、制作生物肥料、改良土壤环境、提取生物活性物质、制作复合材料等,并指出菌渣利用存在的问题,结合食用菌产业发展现状对菌渣综合利用进行展望,旨在提高菌渣的利用率,促进食用菌产业的可持续发展。
中图分类号:
张朝辉, 刘阳, 张广, 王振河, 邱立友. 食用菌菌渣资源化利用现状分析及其研究进展[J]. 河南农业科学, 2025, 54(9): 1-14.
ZHANG Chaohui, LIU Yang, ZHANG Guang, WANG Zhenhe, QIU Liyou. Analysis of the Current Status and Research Progress on the Resource Utilization of Spent Mushroom Substrate in Edible Fungi Cultivation[J]. Journal of Henan Agricultural Sciences, 2025, 54(9): 1-14.
| [1]任彩红,王明友,吴今姬,等. 我国食用菌工厂化装备研究现状与展望[J]. 中国农机化学报,2025,46(5): 207‑213. REN C H,WANG M Y,WU J J,et al. Research status and prospect of edible fungus factory equipment inChina[J]. Journal of Chinese Agricultural Mechanization,2025,46(5):207‑213. [2]中国食用菌协会. 2023年度全国食用菌统计调查结果分析[J]. 中国食用菌,2025,44(1):120‑129. China Edible Fungi Association. Analysis on the results of the national statistical survey of edible fungi in 2023[J].Edible Fungi of China,2025,44(1):120‑129.[3]KUMAR H,BHARDWAJ K,SHARMA R,et al.Potential usage of edible mushrooms and their residues to retrieve valuable supplies for industrial applications[J]. Journal of Fungi,2021,7(6):427. [4]QIN P F,LI T Y,LIU C,et al. Extraction and utilization of active substances from edible fungi substrate and residue:A review[J]. Food Chemistry,2023,398:133872.[5]MOHD HANAFI F H,REZANIA S,MAT TAIB S,et al.Environmentally sustainable applications of agro‑based spent mushroom substrate(SMS):An overview[J].Journal of Material Cycles and Waste Management,2018,20(3):1383‑1396. [6]王艮梅,黄松杉,郑光耀,等. 菌渣作为土壤调理剂资源化利用的研究进展[J].土壤通报,2016,47(5):1273‑1280. WANG G M,HUANG S S,ZHENG G Y,et al. Advance in beneficial use of spent mushroom substrate as soil conditioner[J].Chinese Journal of Soil Science,2016,47(5):1273‑1280. [7]梁涛,胡留杰,张涛,等. 重庆市食用菌菌渣养分与重金属含量分析[J].植物营养与肥料学报,2022,28(4):715‑725. LIANG T,HU L J,ZHANG T,et al. Nutrient and heavy metal contents in edible fungus residues in Chongqing[J]. Journal of Plant Nutrition and Fertilizers,2022,28(4):715‑725. [8]宫志远,韩建东,杨鹏. 食用菌菌渣循环再利用途径[J].食药用菌,2020,28(1):9‑16. GONG Z Y,HAN J D,YANG P. Reutilization methods of spent substrate of mushroom[J]. Edible and Medicinal Mushrooms,2020,28(1):9‑16. [9]ALHUJAILY A,YU H B,ZHANG X Y,et al.Highly efficient and sustainable spent mushroom waste adsorbent based on surfactant modification for the removal of toxic dyes[J]. International Journal of Environmental Research and Public Health,2018,15(7):1421. [10]MENG L Q,LI W G,ZHANG S M,et al. Feasibility of co‑composting of sewage sludge,spent mushroom substrate and wheat straw[J]. Bioresource Technology,2017,226:39‑45. [11]LIN L,CUI F Y,ZHANG J J,et al. Antioxidative and renoprotective effects of residue polysaccharides from Flammulina velutipes[J]. Carbohydrate Polymers,2016,146:388‑395. [12]FIDANZA M A,SANFORD D L,BEYER D M,et al.Analysis of fresh mushroom compost[J].HortTechnology,2010,20(2):449‑453. [13]葛桂民,李建欣,卢钦灿,等. 四种食用菌菌渣发酵后的理化性质及其栽培黄瓜的效果比较[J].北方园艺,2020(14):56‑59. GE G M,LI J X,LU Q C,et al. Comparison of physicochemical properties and cucumber culture effect of four kinds of mushroom dregs after fermentation[J]. Northern Horticulture,2020(14):56‑59. [14]李海渤,魏旭,杨春亚,等. 以灵芝菌渣为原料堆制生物有机肥研究初报[J].中国食用菌,2021,40(5):36‑43. LI H B,WEI X,YANG C Y,et al. Preliminary study on preparation of bio‑organic fertilizer from Ganoderma lucidum residue[J]. Edible Fungi of China,2021,40(5):36‑43. [15]陈亮,胡瑶,李宏告,等. 平菇菌糠栽培基质对菜薹生长与品质的影响[J]. 湖南农业科学,2019(6):23‑25. CHEN L,HU Y,LI H G,et al. Effects of Pleurotus ostreatus cultivation substrate on growth and quality of cabbage[J]. Hunan Agricultural Sciences,2019(6):23‑25. [16]孟祥海,王佰成,于文全,等. 不同外源添加物下黑木耳废弃菌渣无害化处理效果[J].北方园艺,2023(14):71‑78. MENG X H,WANG B C,YU W Q,et al. Study on the harmless treatment effect of waste fungus residue of Auricularia auricula with different exogenous additives[J]. Northern Horticulture,2023(14):71‑78. [17]黄枭,谭笑,杨云贵,等. 黑木耳菌糠育苗基质对黄瓜苗期生长的影响[J].天津农业科学,2020,26(12):30‑32. HUANG X,TAN X,YANG Y G,et al. Effects on cucumber seedling growth of the fungus chaff substrate of Auricularia auricula[J]. Tianjin Agricultural Sciences,2020,26(12):30‑32. [18]赵荷娟,魏启舜,王琳,等. 双孢蘑菇菌糠基质对架式栽培草莓生长和果实品质的影响[J].江苏农业科学,2014,42(4):120‑121. ZHAO H J,WEI Q S,WANG L,et al. Effects of Agaricus bisporus substrate on the growth and fruit quality of strawberry in shelf culture[J]. Jiangsu Agricultural Sciences,2014,42(4):120‑121. [19]王琳,毛久庚,赵荷娟,等. 蚓粪作为覆土材料提高双孢蘑菇产量的效果[J].江苏农业科学,2017,45(15):131‑132. WANG L,MAO J G,ZHAO H J,et al. Effect of earthworm manure as covering material on increasing yield of Agaricus bisporus[J].Jiangsu Agricultural Sciences,2017,45(15):131‑132. [20]田红梅,王朋成,刘松年,等. 农业废弃物制备生物菌基质在西瓜育苗中的应用研究[J]. 现代农业科技,2021(11):62‑64.
TIAN H M,WANG P C,LIU S N,et al. Study on the application of biological bacteria substrate prepared from agricultural wastes in watermelon seedling raising[J]. Modern Agricultural Science and Technology,2021(11):62‑64.
[34]朱丹,冯锐,陈学东,等. 菌渣有机肥的制备及其对西瓜产量和品质的影响[J].江苏农业科学,2022,50(21):145‑150.
[40]齐广耀,李增安,左杰,等. 大球盖菇菌渣改良滨海盐碱土试验[J]. 山东农业科学,2020,52(4):126‑130.
[85]李思苇,Sarfraz RUBAB,杨文浩,等. 炭化温度和时间对不同废菌棒生物炭结构性质的影响[J].福建农业学报,2019,34(10):1211‑1220. [86]DAI Y J,LI J J,SHAN D X. Adsorption of tetracycline in aqueous solution by biochar derived from waste Auricularia auricula dregs[J]. Chemosphere,2020,238:124432. [87]LLOYD M,KLUEPFEL D,GORDON T. Evaluation of four commercial composts on strawberry plant productivity and soil characteristics in California[J].International Journal of Fruit Science,2016,16(S1):84‑107.
[88]耿和田,王旭东,石思博,等. 菌渣与化肥配施对稻田土壤微生物群落组成及多样性的影响[J].环境科学,2023,44(4):2338‑2347. |
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