|Table of Contents|

Effects of Hydrothermal Organic Fertilizer on Cabbage Growth and Soil Properties

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2023年23
Page:
8-14
Research Field:
Publishing date:

Info

Title:
Effects of Hydrothermal Organic Fertilizer on Cabbage Growth and Soil Properties
Author(s):
WANG Jue1LI Yanming2SUN Hui3CHEN Qing2ZHANG Yanguo1
(1.Department of Energy and Power Engineering,Tsinghua University,Beijing 100084;2.College of Resources and Environment,China Agricultural University,Beijing 100193;3.Beijing Hydecom Technology Co.Ltd.,Beijing 100083)
Keywords:
hydrothermal crackingorganic fertilizergreenhouse vegetableyieldqualitysoil conditioning
PACS:
S 634.1
DOI:
10.11937/bfyy.20232451
Abstract:
Taking solid and liquid organic fertilizers produced by hydrothermal cracking process as experimental materials,and adopted field plot experiment method to investigate the effects of hydrothermal cracking organic fertilizer and chemical fertilizer on the growth,quality and soil physicochemical properties of greenhouse cabbage,in order to provide reference for the agricultural utilization of organic fertilizer produced by hydrothermal cracking process.The results showed that compared with single application of chemical fertilizer,mixed application of solid or liquid organic fertilizer and chemical fertilizer could significantly promote the growth of cabbage plant and leaf,and the cabbage yield increased by up to 14.9%,showing a good effect of increasing the efficiency of chemical fertilizer.At the same time,compared with single application of chemical fertilizer,application of solid or liquid organic fertilizer could significantly increase the vitamin C content of cabbage,reduce the nitrate accumulation by more than 6%,and improve the quality and storage resistance of cabbage.In addition,liquid organic fertilizer could quickly increase soil organic matter content and activate phosphorus,and the soil organic matter and available phosphorus content increased by 23.8% and 13.1% respectively after mixed application with chemical fertilizer.Therefore,mixed application of solid or liquid organic fertilizer produced by hydrothermal cracking process and chemical fertilizer was an effective way to promote the yield and quality of greenhouse cabbage and improve soil environment.

References:

[1]苏淑仪,周玉玺,周霞.中国蔬菜种植化肥施用强度时空演变及影响因素[J].中国农业大学学报,2022,27(6):248-263.[2]万连杰,李俊杰,张绩,等.有机肥替代化肥技术研究进展[J].北方园艺,2021(11):133-142.[3]黄梓翀,刘善江,孙昊,等.我国蔬菜肥料利用率现状与提高对策[J].蔬菜,2021(7):43-50.[4]梁朗玛,汪洋,黄芳薇,等.生物有机肥改善蔬菜栽培土壤环境的研究进展[J].南方农业,2022,16(10):235-237.[5]李季,彭生平.堆肥工程实用手册[M].2版.北京:化学工业出版社,2011.[6]袁京,刘燕,唐若兰,等.畜禽粪便堆肥过程中碳氮损失及温室气体排放综述[J].农业环境科学学报,2021,40(11):2428-2438,2590.[7]孙辉,余志敏,陈新,等.水热裂解有机肥对水果萝卜生长、产量及品质的影响[J].安徽农学通报,2021,27(21):109-112.[8]WANG T,ZHAI Y,ZHU Y,et al.A review of the hydrothermal carbonization of biomass waste for hydrochar formation:Process conditions,fundamentals,and physicochemical properties[J].Renewable and Sustainable Energy Reviews,2018,90:223-247.[9]刘志鹏,徐昊,陈康,等.高湿固体废弃物水热炭化处理技术及产物还田的生态环境效应研究进展[J].南京农业大学学报,2022,45(5):1001-1018.[10]许凤智,许传阳,杨英,等.生物质废弃物水热制肥技术研究进展[J].应用化工,2022,51(6):1833-1838,1842.[11]FENG Y,HE H,LI D,et al.Biowaste hydrothermal carbonization aqueous product application in rice paddy:Focus on rice growth and ammonia volatilization[J].Chemosphere,2021,277:130233.[12]张福锁,王激清,张卫峰,等.中国主要粮食作物肥料利用率现状与提高途径[J].土壤学报,2008,45(5):915-924.[13]王现洁,梁嘉伟,廖新荣,等.华南地区主要蔬菜磷钾肥料利用率研究现状[J].中国农学通报,2020,36(1):49-55.[14]马征,崔荣宗,贾德,等.氮磷钾平衡施用对大葱产量、养分吸收及利用的影响[J].中国土壤与肥料,2019(3):109-114.[15]张迎春,颉建明,李静,等.生物有机肥部分替代化肥对莴笋及土壤理化性质和微生物的影响[J].水土保持学报,2019,33(4):196-205.[16]邬刚,严从生,袁嫚嫚,等.化肥减量配施有机肥对叶菜类蔬菜产量、品质和养分吸收的影响[J].中国瓜菜,2021,34(12):58-62.[17]杨静,仝玉琴,张俊鹏,等.有机肥替代部分化肥对设施大棚小白菜产量及土壤速效养分的影响[J].陕西农业科学,2020,66(11):14-16.[18]李际会,魏萍,杨宝山,等.秸秆及生物炭对土壤盐分含量和小白菜发芽的影响[J].北方园艺,2021(3):13-19.[19]王立刚,李维炯,邱建军,等.生物有机肥对作物生长、土壤肥力及产量的效应研究[J].土壤肥料,2004,10(5):12-16.[20]王腾飞.餐厨垃圾水热碳化机制及生物碳的清洁和成型提质特性研究[D].长沙:湖南大学,2019.[21]雷娟利,陈杰,戴丹丽,等.低硝酸盐叶菜类蔬菜水培技术研究[J].浙江农业学报,2004,16(2):52-54.[22]杜相革,董民,王锋,等.不同有机肥处理对油菜硝酸盐和亚硝酸盐含量的影响[J].北方园艺,2017(16):128-131.[23]汤桂容,周旋,田昌,等.有机无机氮肥配施对蔬菜产量、品质及经济效益的影响[J].生态学杂志,2017,36(5):1292-1299.[24]杨涵,靳芙蓉,关统伟,等.有机肥替代部分化肥对温室土壤肥力和真菌群落的短期影响[J].西北农业学报,2021,30(3):422-430.[25]张世标,韦寿莲,刘永,等.有机肥与磷钾肥配施对辣椒产量及土壤肥力的影响[J].南方农业学报,2016,47(7):1105-1109.[26]马祥,贾志锋,张永超,等.生物有机肥对青海高寒牧区燕麦产量和土壤肥力的影响[J].草地学报,2019,27(6):1759-1765.[27]董文,张青,罗涛,等.不同有机肥连续施用对土壤质量的影响[J].中国农学通报,2020,36(28):106-110.[28]柏延芳,张海,张立新.氮肥对黄土高原大棚蔬菜及土壤硝酸盐累积的影响[J].中国生态农业学报,2008,16(3):555-559.[29]王珏.炭基材料对牛粪堆肥及其产品土壤施用过程中磷素形态的影响[D].北京:中国农业大学,2019.[30]赵宽,万昕,邢德科,等.低分子量有机酸对土壤有效磷及重金属释放影响的研究进展[J].土壤通报,2022,53(5):1228-1236.

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Last Update: 2023-12-19