安徽农学通报 >
2026 , Vol. 32 >Issue 1: 62 - 67
DOI: https://doi.org/10.16377/j.cnki.issn1007-7731.2026.01.016
联苯·噻虫胺悬浮剂的应用现状及展望
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齐素敏(1989—),女,山东沂源人,硕士,研究实习员,从事果树病虫害防治技术研究。 |
收稿日期: 2025-04-11
网络出版日期: 2026-01-07
基金资助
山东省重点扶持区域引进急需紧缺人才项目计划
山东省果树研究所横向课题“新型高效农药试验与应用技术研究”
Application status and prospect of bifenthrin·clothianidin suspension concentrate
Received date: 2025-04-11
Online published: 2026-01-07
联苯·噻虫胺是一种新型复合型杀虫剂,可用于防治棉铃虫等20余种害虫。本文探讨了该悬浮剂的特性与组成、作用机制、使用效果及其在农业领域的应用技术与实践,并对其研究进行展望。联苯·噻虫胺悬浮剂由联苯菊酯和噻虫胺两种成分复配而成,具有快速杀虫与长效保护的双重特性;作用机制包括触杀、胃毒和内吸传导作用,既能通过直接接触害虫身体表面,通过溶解害虫外骨骼表面的蜡质层穿透进入或通过微小孔隙进入害虫体内,又能通过害虫的口器和消化道进入虫体,还能够通过害虫刺吸取食含有药剂的植物茎叶间接进入虫体,使害虫中毒死亡;使用效果上,该药剂具有杀虫谱广、速效与持效、低毒、安全环保等优势,其还具有良好的环境与生态安全性,对作物生长安全、能与其他化学药剂兼容、对水生生物和有益生物的影响较小,在土壤中可随时间推移降解为无害物质;前期该药剂已被用于防治粮食作物、果蔬等多种作物上的蚜虫、地老虎、蓟马、梨木虱等害虫,其可采用喷雾、滴灌和冲施等方式进行施用。未来,将进一步优化该药剂的配方,开发更高效、稳定的剂型,并进行环境友好性及精准施药技术研究。综上,联苯·噻虫胺悬浮剂能减少化学农药的施用量,延缓害虫抗药性发展,延长农药使用寿命,应用前景广阔。
齐素敏 , 王金平 , 蔡公战 , 张勇 . 联苯·噻虫胺悬浮剂的应用现状及展望[J]. 安徽农学通报, 2026 , 32(1) : 62 -67 . DOI: 10.16377/j.cnki.issn1007-7731.2026.01.016
Bifenthrin·clothianidin is a new type of compound insecticide that can be used to control more than 20 pests such as Helicoverpa armigera. This study explores the properties, composition, action mechanism, and application effects of this suspension concentrate, as well as its application technologies and practices in the agricultural field, and prospects for future research. The suspension concentrate is formulated by combining two active ingredients, bifenthrin and clothianidin, with dual characteristics of rapid insecticidal activity and long-term protection. Its action mechanism includes contact toxicity, stomach toxicity, and systemic translocation: it can penetrate into the insect body either by directly contacting the insect surface (dissolving the waxy layer on the exoskeleton or through microscopic pores), enter via the insect’s mouthparts and digestive tract, or indirectly infiltrate the insect body when the pest engages in piercing-sucking feeding on plant stems and leaves treated with the insecticide, ultimately leading to insect death by poisoning. In terms of application effects, this insecticide offers advantages such as a broad insecticidal spectrum, quick-acting and long-lasting efficacy, low toxicity, safety, and environmental friendliness. It also exhibits excellent environmental and ecological safety: it is safe for crop growth, compatible with other chemical agents, has minimal impacts on aquatic organisms and beneficial organisms, and can degrade into harmless substances in soil over time. Previously, this insecticide has been used to control pests such as aphids, cutworms, thrips, and pear psylla on various crops including food crops, fruits, and vegetables, and can be applied through methods such as spraying, drip irrigation, and drenching. In the future, efforts will be made to further optimize its formulation, develop more efficient and stable dosage forms, and conduct research on environmental friendliness and precise application technologies. In summary, bifenthrin·clothianidin suspension concentrate can reduce the application rate of chemical pesticides, delay the development of pest resistance, and extend the service life of pesticides, thereby boasting broad application prospects.
| [1] |
淤萍,单丽丽. 2.5%联苯菊酯乳油防治棉铃虫田间药效试验[J]. 现代农药,2002,1(4):41.
|
| [2] |
赵长民,王晓红,王培明,等. 联苯菊酯加有机硅助剂农药减量防治菜豆蓟马药效研究[J]. 农业开发与装备,2020(9):134-135.
|
| [3] |
于灏泳,何发林,乔治华,等. 防治沟金针虫的农药复配增效配方筛选[J]. 中国农学通报,2019,35(34):115-121.
|
| [4] |
陈海燕,秦双,林珠凤,等. 1.0%联苯菊酯·噻虫胺颗粒剂防治芥菜黄曲条跳甲田间药效试验[J]. 农业开发与装备,2019(4):109,106.
|
| [5] |
郭盼盼,张伟,孙瑞红,等. 15%联苯菊酯·氟啶虫酰胺悬浮剂防治桃蚜药效试验[J]. 现代农药,2021,20(1):50-53.
|
| [6] |
李新. 拟除虫菊酯类杀虫剂研发及市场概况[J]. 农药,2016,55(9):625-630.
|
| [7] |
农业部种植业管理司,农业部农药检定所. 新编农药手册[M]. 2版. 北京:中国农业出版社,2015.
|
| [8] |
程志明. 杀虫剂噻虫胺的开发[J]. 世界农药,2004,26(6):1-3,22.
|
| [9] |
汪勇,朱飞,陆远强,等. 茶棍蓟马防治试验[J]. 吉林农业,2010(12):105.
|
| [10] |
|
| [11] |
张琪,赵成,卢晓霞,等. 新烟碱类杀虫剂对非靶标生物毒性效应的研究进展[J]. 生态毒理学报,2020,15(1):56-71.
|
| [12] |
林璐璐,陈浩梁,张光玲,等. 杀虫剂及其复配对安徽韭菜韭蛆的防治效果[J]. 农药,2018,57(2):143-147.
|
| [13] |
庄占兴,胡尊纪,范金勇,等. 噻虫胺与高效氯氟氰菊酯复配防治韭菜迟眼蕈蚊幼虫配方筛选与田间应用效果[J]. 农药,2017,56(3):228-230,234.
|
| [14] |
孙杨,谢秀挺,秦文婧,等. 双甲脒和噻虫胺防治柑橘木虱高效配方的筛选初试[J]. 生物灾害科学,2018,41(4):294-298.
|
| [15] |
白佳硕. 安徽省麦蚜抗药性监测及对联苯菊酯抗性机理研究[D]. 合肥:安徽农业大学,2023.
|
| [16] |
吴朝波,于欢,朱明军,等. 海南百香果黄胸蓟马对5种常用杀虫剂的抗药性监测[J]. 农药,2023,62(4):299-304,308.
|
| [17] |
金若珩. 褐飞虱对噻虫胺代谢抗性及其调控机制[D]. 武汉:华中农业大学,2021.
|
| [18] |
薛超,王爱玉,张芸,等. 花生—棉花间作田蚜虫的发生及其对新烟碱类杀虫剂抗性水平评价[J]. 农药,2024,63(5):376-381.
|
| [19] |
|
| [20] |
高远起,赖开平,阮志强,等. 2%联苯·噻虫胺颗粒剂防治蔗龟田间药效试验[J]. 化工技术与开发,2016,45(10):9-11.
|
| [21] |
张艳荣. 37%联苯·噻虫胺悬浮剂防治小麦蚜虫田间药效试验[J]. 现代农业科技,2017(10):112,114.
|
| [22] |
|
| [23] |
|
| [24] |
张汉鹄,谭济才. 中国茶树害虫及其无公害治理[M]. 合肥:安徽科学技术出版社,2004.
|
| [25] |
|
| [26] |
吴少英,段文波,李芬,等. 昆虫钠离子通道的研究进展[J]. 昆虫学报,2021,64(7):862-874.
|
| [27] |
杜红霞,张树秋,陈子雷,等. 联苯菊酯在小麦和土壤中的残留和降解行为研究[J]. 山东农业科学,2016,48(10):125-128.
|
| [28] |
丁蕊艳,郭长英,方丽萍,等. 联苯菊酯在小麦和土壤中的残留消解动态[J]. 现代农药,2019,18(6):35-38.
|
| [29] |
|
| [30] |
|
| [31] |
|
| [32] |
|
| [33] |
尤天阳. 基于噬菌体展示多肽的噻虫胺和吡虫啉免疫分析方法研究[D]. 南京:南京农业大学,2021.
|
| [34] |
刘同金,付亚萍,赵亚,等. 噻虫胺在花生中的残留动态及安全性评价[J]. 安徽农业科学,2020,48(9):158-160,166.
|
| [35] |
|
| [36] |
|
| [37] |
王振宇,王会福,何贤彪,等. 噻虫胺防治甘薯害虫的效果[J]. 浙江农业科学,2016,57(4):611-612.
|
| [38] |
卢海博,魏东,龚学臣,等. 新烟碱类杀虫剂在苹果果实不同部位中的残留[J]. 农药学学报,2019,21(4):500-505.
|
| [39] |
杨屹. 新烟碱类杀虫剂噻虫胺在斑马鱼体内的生物富集、组织分布和代谢转化研究[D]. 长春:东北师范大学,2021.
|
| [40] |
|
| [41] |
张鹏,金芬,杨莉莉,等. 噻虫胺在番茄和土壤中的残留及消解动态[J]. 农药学学报,2016,18(4):490-496.
|
| [42] |
陈玲. 噻虫胺和吡蚜酮在柑橘上的残留消解及其在粘土矿物中的吸附[D]. 长沙:湖南农业大学,2019.
|
| [43] |
|
| [44] |
张慧春,周宏平,郑加强,等. 农药助剂对空中和地面防控林业有害生物的雾滴粒径影响[J]. 林业科学,2020,56(5):118-129.
|
| [45] |
赵玉玉. 黏虫抗药性监测及其对高效氯氰菊酯抗性机理研究[D]. 杨凌:西北农林科技大学,2018.
|
| [46] |
李良德,王定锋,吴光远,等. 福建省3个地区茶小绿叶蝉对5种常用农药的抗药性比较[J]. 茶叶学报,2020,61(3):133-137.
|
| [47] |
杨风波,李志薇,王子龙,等. 多旋翼植保无人飞机施药研究进展及展望[J]. 江西农业大学学报,2024,46(5):1341-1355.
|
| [48] |
曾林涛,马嘉昕,周子伦,等. 智能果园农药精准施用技术现状研究[J]. 农业与技术,2024,44(22):55-60.
|
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