CN101061803B - 除草组合物 - Google Patents
除草组合物 Download PDFInfo
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- CN101061803B CN101061803B CN2007101017071A CN200710101707A CN101061803B CN 101061803 B CN101061803 B CN 101061803B CN 2007101017071 A CN2007101017071 A CN 2007101017071A CN 200710101707 A CN200710101707 A CN 200710101707A CN 101061803 B CN101061803 B CN 101061803B
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- flumioxazin
- compound
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- soil
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Classifications
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01N—PRESERVATION OF BODIES OF HUMANS OR ANIMALS OR PLANTS OR PARTS THEREOF; BIOCIDES, e.g. AS DISINFECTANTS, AS PESTICIDES OR AS HERBICIDES; PEST REPELLANTS OR ATTRACTANTS; PLANT GROWTH REGULATORS
- A01N43/00—Biocides, pest repellants or attractants, or plant growth regulators containing heterocyclic compounds
- A01N43/72—Biocides, pest repellants or attractants, or plant growth regulators containing heterocyclic compounds having rings with nitrogen atoms and oxygen or sulfur atoms as ring hetero atoms
- A01N43/82—Biocides, pest repellants or attractants, or plant growth regulators containing heterocyclic compounds having rings with nitrogen atoms and oxygen or sulfur atoms as ring hetero atoms five-membered rings with three ring hetero atoms
-
- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01N—PRESERVATION OF BODIES OF HUMANS OR ANIMALS OR PLANTS OR PARTS THEREOF; BIOCIDES, e.g. AS DISINFECTANTS, AS PESTICIDES OR AS HERBICIDES; PEST REPELLANTS OR ATTRACTANTS; PLANT GROWTH REGULATORS
- A01N43/00—Biocides, pest repellants or attractants, or plant growth regulators containing heterocyclic compounds
- A01N43/72—Biocides, pest repellants or attractants, or plant growth regulators containing heterocyclic compounds having rings with nitrogen atoms and oxygen or sulfur atoms as ring hetero atoms
- A01N43/84—Biocides, pest repellants or attractants, or plant growth regulators containing heterocyclic compounds having rings with nitrogen atoms and oxygen or sulfur atoms as ring hetero atoms six-membered rings with one nitrogen atom and either one oxygen atom or one sulfur atom in positions 1,4
-
- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01N—PRESERVATION OF BODIES OF HUMANS OR ANIMALS OR PLANTS OR PARTS THEREOF; BIOCIDES, e.g. AS DISINFECTANTS, AS PESTICIDES OR AS HERBICIDES; PEST REPELLANTS OR ATTRACTANTS; PLANT GROWTH REGULATORS
- A01N47/00—Biocides, pest repellants or attractants, or plant growth regulators containing organic compounds containing a carbon atom not being member of a ring and having no bond to a carbon or hydrogen atom, e.g. derivatives of carbonic acid
- A01N47/08—Biocides, pest repellants or attractants, or plant growth regulators containing organic compounds containing a carbon atom not being member of a ring and having no bond to a carbon or hydrogen atom, e.g. derivatives of carbonic acid the carbon atom having one or more single bonds to nitrogen atoms
- A01N47/28—Ureas or thioureas containing the groups >N—CO—N< or >N—CS—N<
- A01N47/36—Ureas or thioureas containing the groups >N—CO—N< or >N—CS—N< containing the group >N—CO—N< directly attached to at least one heterocyclic ring; Thio analogues thereof
Landscapes
- Life Sciences & Earth Sciences (AREA)
- Agronomy & Crop Science (AREA)
- Pest Control & Pesticides (AREA)
- Plant Pathology (AREA)
- Health & Medical Sciences (AREA)
- Engineering & Computer Science (AREA)
- Dentistry (AREA)
- General Health & Medical Sciences (AREA)
- Wood Science & Technology (AREA)
- Zoology (AREA)
- Environmental Sciences (AREA)
- Agricultural Chemicals And Associated Chemicals (AREA)
Abstract
一种除草组合物,包含N-(7-氟-3,4-二氢-3-氧-4-丙-2-炔基-2H-1,4-苯并噁嗪-6-基)环己-1-烯-1,2-二酰胺(丙炔氟草胺)和由式(I)表示的化合物:
Description
技术领域
本发明涉及除草组合物和除草方法。
背景技术
现今市售众多的除草剂,并被广泛使用。然而,存在多种多样的杂草需要控制,而且它们的生长延续很长时间。因此需要具有较高的除草活性、宽广的杂草控制谱、长效和对作物安全的除草剂。
发明内容
本发明提供了一种组合物和方法,用于控制多种多样的杂草并具有较高的除草活性,且对作物无植物毒性。
也就是说,本发明提供了一种除草组合物,其包含N-(7-氟-3,4-二氢-3-氧-4-丙-2-炔基-2H-1,4-苯并噁嗪-6-基)环己-1-烯-1,2-二酰胺(丙炔氟草胺)和由式(I)表示的化合物:
(化合物[I])作为活性成分,其中丙炔氟草胺∶化合物[I]的重量比为1∶0.01-1∶100。
此外,本发明还提供了一种除草方法,包括将丙炔氟草胺和化合物[I]应用于杂草生长或将会生长的地方的杂草或土壤,其中丙炔氟草胺∶化合物[I]的重量比为1∶0.01-1∶100。
丙炔氟草胺(flumioxazin)[化学名:N-(7-氟-3,4-二氢-3-氧-4-丙-2-炔基-2H-1,4-苯并噁嗪-6-基)环己-1-烯-1,2-二酰胺]是一种除草活性化合物,描述于Crop Protection Handbook Vol.89(2003),MeisterPublishing Company,ISBN:1-892829-06-1,C-236页中。可通过已知生产方法制备该化合物,并且已有包含丙炔氟草胺的制剂上市销售。
化合物[I]可采用USP 2005-0032650A中描述的已知生产方法来制备。
本发明的除草组合物包含丙炔氟草胺和化合物[I]作为活性成分,且除草组合物中丙炔氟草胺∶化合物[I]的重量比为1∶0.01-1∶100,优选1∶0.1-1∶20,更优选1∶0.2-1∶10。
除草组合物对多种杂草具有除草活性,因而可用于有效控制已耕作或未耕作的种植作物的土地、菜地、林地或非耕作的土地中的多种多样的杂草。此外,它不会产生对有用植物的显著植物毒性。
本发明还提供了一种控制杂草的方法,包括将丙炔氟草胺和化合物[I]联合或同时应用于杂草生长或将会生长的地方的杂草或土壤,其中丙炔氟草胺∶化合物[I]的重量比为1∶0.01-1∶100,优选1∶0.1-1∶20,更优选1∶0.2-1∶10。
本方法可用于控制杂草,尤其是农田、菜地、林地或非耕作的土地里的杂草。
本发明的农田实例包括食用作物例如花生、大豆、玉米、小麦和大麦;饲料作物例如高粱和燕麦;工业作物例如棉花;和糖类作物例如甘蔗的农田。本发明的菜地实例包括茄科蔬菜例如茄子、西红柿、青椒、辣椒和马铃薯;葫芦科蔬菜例如黄瓜、南瓜、夏南瓜、西瓜和甜瓜;十字花科蔬菜例如萝卜、芜菁、山葵、cohlrabi、大白菜、卷心菜、芥菜、椰菜和花椰菜;菊科蔬菜例如牛蒡、茼蒿、朝鲜蓟和莴苣;百合科蔬菜例如韭菜、洋葱、大蒜和莴笋;伞形科蔬菜例如胡萝卜、欧芹、芹菜和欧洲防风根;藜科蔬菜例如菠菜和甜菜;薄荷科蔬菜例如紫苏、薄荷、罗勒和熏衣草;草莓;甘薯;山药;和芋头的菜地。林地实例包括果树园、茶树种植园、桑树种植园、咖啡种植园、香蕉种植园、棕榈种植园、花树种植园、花种植园、苗圃园、小树种植园、森林和花园的土地。果树的实例包括仁果类例如苹果、梨、日本梨、木瓜和榅桲;核果类例如桃、李子、油桃、梅子、樱桃、杏和洋李;柑橘类例如温州蜜柑、柑橘、柠檬、酸橙和柚子;坚果类例如栗子、胡桃、榛子、杏仁、开心果、腰果和澳大利亚坚果;浆果类例如蓝莓、蔓越橘、黑莓和悬钩子;葡萄树;柿子树;橄榄树;和枇杷树。本发明的非耕作的土地实例包括运动场、空地、铁路旁边的土地、公园、停车场、公路边的土地、干涸的河床、输电线下面的土地、住宅用地和工厂用地。
杂草的实例包括:
蓼科杂草例如卷茎蓼(Polygonum convolvulus,wild buckwheat)、酸模叶蓼(Polygonum lapathifolium,pale smartweed)、宾夕法尼亚荨麻(Polygonum pensylvanicium,Pennsylvania smartweed)、春蓼(Polygonum persicaria,ladysthumb)、皱叶酸模(Rumex crispus,curly dock)、钝叶酸模(Rumex obtusifolius,European dock)和红川七(Polygonum cuspidatum,Japanese knotweed);
马齿苋科杂草例如马齿苋(Portulaca oleracea,common purslane);
石竹科杂草例如繁缕(Stellaria media,common chickweed);
藜科杂草例如藜(Chenopodium album,common lambsquarters)和
地肤(Kochia scoparia,fireweed);
苋科杂草例如反枝苋(Amaranthus retroflexus,redroot pigweed)和
绿穗苋(Amaranthus hybridus,smooth pigweed);
十字花科杂草例如野萝卜(Raphanus raphanistrum,wild radish)、野欧白芥(Sinapis arvensis,wild mustard)和荠(Capsella burse-pastoris,shepherdspurse);
豆科杂草例如麻田菁(Sesbania exaltata,hemp sesbania)、镰刀豆(Cassia obtusifolia,sicklepod)、南美山蚂蟥(Desmodium tortuosum,Florida beggarweed)、白车轴草(Trifolium repens,white clover)、野葛(Pueraria lobata,arrowroot)和窄叶野豌豆(Vicia angustifolia,common vetch);
锦葵科杂草例如苘麻(Abutilon theophrasti,velvetleaf)和Sidaspinosa(prickly sida);
堇菜科杂草例如Viola arvensis(field pansy)和三色堇(Violatricolor,wild pansy);
茜草科杂草例如猪殃殃(Galium aparine,cleavers);
旋花科杂草例如裂叶牵牛(Ipomoea hederacea,ivyleafmorningglory)、圆叶牵牛(Ipomoea purpurea,tall morningglory)、Ipomoea hederance var intergriuscula(entireleaf morningglory)、野牵牛(Ipomoea lacunose,pitted morningglory)和田旋花(Convolvulus arvensis,field bindweed);
唇形科杂草例如Lamium purpureum(purple deadnettle)和宝盖草(Lamium amplexicaule,henbit);
茄科杂草例如曼陀罗(Datura stramonium,jimsonweed)和龙葵(Solanum nigrum,black nightshade);
玄参科杂草例如阿拉伯婆婆纳(Veronica persica,Persian speedwell)和Veronica hederaefolia(ivyleaf speedwell);
菊科杂草例如欧洲龙牙草(Xanthium pensylvanicum,commoncocklebur)、向日葵(Helianthus annuus,common sunflower)、田春黄菊(Matricaria inodora,scentless chamomile)、南茼蒿(Chrysanthemum segetum,corn marigold)、同花母菊(Matricariamatricarioides,pineappleweed)、豚草(Ambrosia artemisiifolia,common ragweed)、三裂叶豚草(Ambrosia trifda,giant ragweed)、加拿大飞蓬(Erigeron Canadensis,horseweed)、魁蒿(Artemisiaprinces,Japanese mugwort)和北美一枝黄(Solidago aitissima,tallgoldenrod);
紫草科杂草例如勿忘我(Myosotis arvensis,forget-me-not);
萝藦科杂草例如小飞扬草(Asclepias syriaca,common milkweed);
大戟科杂草例如泽漆(Euphorbia helioscopia,sun spurge)和美洲地锦(Euphorbia maculata,spotted spurge);
牻牛儿苗科杂草例如野老鹳草(Geranium carolinense,Carolinageranium)和芹叶牻牛儿苗(Erodium cicutarium);
禾本科杂草例如稗草(Echinochloa crus-galli,barnyardgrass)、狗尾草(Setaria viridis,green foxtail)、大狗尾草(Setaria faberi,giantfoxtail)、马唐(Digitaria sanguinalis,sourthern crabgrass)、牛筋草(Eleusine indica,goosegrass)、早熟禾(Poa annua,annualbluegrass)、大穗看麦娘(Alopecurus myosuroides,blackgrass)、野燕麦(Avena fatus,wild oats)、石矛(Sorghum halepense,Johnsongrass)、偃麦草(Agropyron repens,quackgrass)、旱雀麦(Bromus tectorum,downy brome)、狗牙根(Cynodone dactylon,Bermudagrass)、洋野黍(Panicum dichotomiflorum,fall panicum)、得克萨斯黍(Panicum texanum,Texas panicum)、高粱(Sorghumvulgare,shattercane)和多花黑麦草(Lolium multiflorum,Italianryegrass);
鸭跖草科杂草例如鸭跖草(Commeline communis,Asiatic dayflower)和饭包草(Commeline benghalensis,Bengal dayflower);
木贼科杂草例如问荆(Equisetum arvense,field horsetail);和莎草科杂草例如碎米莎草(Cyperus iria,rice flatsedge)、香附子(Cyperus rotundus,purple nutsedge)和莎草(Cyperus esculentus,yellow nutsedge)。
通过混合固体载体或液体载体和任选的表面活性剂及其它的制剂辅助剂,可将除草组合物配制成乳状浓缩液、可湿性粉末剂、悬浮浓缩液、颗粒剂。这些制剂通常含有丙炔氟草胺和化合物[I]的总重量为大约0.1wt%到90wt%,优选大约1wt%到80wt%。
用于配制本发明组合物的固体载体的实例包括粘土的细粉和颗粒例如高岭土、硅藻土、合成水合二氧化硅、Fubasami粘土、斑脱土和白土;滑石;其它的无机矿物例如绢云母、石英粉、硫磺粉、活性碳和碳酸钙;和化学肥料例如硫酸铵、磷酸铵、硝酸铵、氯化铵和尿素。液体载体的实例包括水;醇例如甲醇和乙醇;酮例如丙酮、甲乙酮和环己酮;芳香烃例如甲苯、二甲苯、乙苯和甲基萘;非芳香烃例如己烷、环己烷和煤油;酯例如乙酸乙酯和乙酸丁酯;腈例如乙腈和异丁腈;醚例如二氧杂环己烷和二异丙基醚;酰胺例如二甲基甲酰胺和二甲基乙酰胺;卤代烃例如二氯乙烷和三氯乙烯。
用于制剂的表面活性剂的实例包括烷基硫酸酯、烷基磺酸盐、烷基芳基磺酸盐、烷基芳基醚、聚氧乙烯烷基芳基醚、聚乙二醇醚、多价醇酯和糖醇衍生物。其它制剂辅助剂的实例包括粘着剂和分散剂例如酪蛋白;明胶;多聚糖(例如淀粉、阿拉伯胶、纤维素衍生物、褐藻酸);木质素衍生物;斑脱土;和合成水溶性聚合物(例如聚乙烯醇、聚乙烯吡咯烷酮、聚丙烯酸);和稳定剂例如PAP(异丙酸磷酸酯)、BHT(2,6-叔丁基-4-甲酚)、BHA(2-/3-叔丁基-4-甲氧基苯酚),植物油、矿物油、脂肪酸和脂肪酸酯。
也可采用上述方法配制每一种活性成分后再混合每种制剂来制备除草组合物。
上面所获得的除草组合物可原样应用于本发明的除草方法。此外,可用水等对其进行稀释,然后可将稀释液施用于土壤或植物。可望通过将本发明的除草组合物与其它除草剂联合应用来增加除草效果。而且,除草组合物可与杀虫剂、杀真菌剂、植物生长调节剂、肥料、安全剂、土壤改善剂等一起使用。
除草组合物或方法的剂量取决于作为活性成分的丙炔氟草胺和化合物[I]的混合比率、天气条件、制剂类型、施用时间、施用方法、施用地点、目标杂草和作物,通常每公顷使用大约1到1000g的活性成分总量。当制剂为乳状浓缩液、可湿性粉末剂、悬浮浓缩液时,通常将指定量的制剂以每公顷大约100到2000升水稀释后再使用。另外,当本发明的组合物应用于处理叶状杂草时,可望通过向本发明组合物的稀释液中加入佐剂来增加对杂草的除草效果。
实施例
下面通过实施例对本发明进行详细解释。
下面给出了制剂实施例。在下面的实施例中,份表示重量份。
制剂实施例1
将25份丙炔氟草胺、25份化合物[I]、3份木质素磺酸钙、2份十二烷基硫酸钠和45份合成水合二氧化硅充分研磨成粉,混合制成可湿性粉末剂。
制剂实施例2
将70份丙炔氟草胺、14份化合物[I]、3份木质素磺酸钙、2份十二烷基硫酸钠和11份合成水合二氧化硅充分研磨成粉,混合制成可湿性粉末剂。
制剂实施例3
将14份丙炔氟草胺、70份化合物[I]、3份木质素磺酸钙、2份十二烷基硫酸钠和11份合成水合二氧化硅充分研磨成粉,混合制成可湿性粉末剂。
制剂实施例4
将10份丙炔氟草胺、5份化合物[I]、3份木质素磺酸钙、2份十二烷基硫酸钠和80份合成水合二氧化硅充分研磨成粉,混合制成可湿性粉末剂。
制剂实施例5
将20份丙炔氟草胺、20份化合物[I]、3份聚氧乙烯失水山梨醇单油酸酯、3份CMC(羧甲基纤维素)和54份水混合,湿法研磨,制成粒径为5μ或更小的悬浮浓缩液。
制剂实施例6
将50份丙炔氟草胺、10份化合物[I]、3份聚氧乙烯失水山梨醇单油酸酯、3份CMC(羧甲基纤维素)和34份水混合,湿法研磨,制成粒径为5μ或更小的悬浮浓缩液。
制剂实施例7
将5份丙炔氟草胺、25份化合物[I]、3份聚氧乙烯失水山梨醇单油酸酯、3份CMC(羧甲基纤维素)和64份水混合,湿法研磨,制成粒径为5μ或更小的悬浮浓缩液。
制剂实施例8
将4份丙炔氟草胺、2份化合物[I]、3份聚氧乙烯失水山梨醇单油酸酯、3份CMC(羧甲基纤维素)和88份水混合,湿法研磨,制成粒径为5μ或更小的悬浮浓缩液。
制剂实施例9
将1份丙炔氟草胺、1份化合物[I]、0.5份Neocol YSK(Dai-ichiKogyo Seiyaku有限公司生产的二烷基磺酸酯琥珀酸钠)、2份ToxanonGR31A(Sanyo Chemical Industries有限公司生产的阴离子型聚羧酸酯表面活性剂)、30份Kunigel V1(Kuminime Industries有限公司生产的斑脱土)和65.5份碳酸钙装料于小型捏合机中,混合,捏合,用挤出机(Kikusui Seisakusho有限公司生产,RG-5M型)造粒,以流化床干燥器(Fuji Paudal有限公司生产,MDB-400型)干燥,然后以16到48目筛过筛制成颗粒剂。
下面给出了生物学实验。
评价基础
采用指标0到10,在11个水平上评价了除草活性,即0、1、2、3、4、5、6、7、8、9或10,其中分数“0”表示在观察时间发现经处理的和未处理的植物之间的生长程度没有或几乎没有差异,分数“10”表示受试植物完全死亡或它们的生长被完全抑制。除草数值“7”、“8”、“9”和“10”表示具有优良的除草活性,数值“6”或更低的数值表示除草活性不足。分别以“没有损害”、“小”、“中”或“严重”评价对作物的植物毒性,其中“没有损害”表示发现没有或几乎没有损害,“小”表示轻微的损害,“中”表示中等损害,“严重”表示发现有严重的损害。
实验实施例1
在每个直径18cm、高14cm的塑料罐中装满高原土,然后播种小麦和稗草。在上述塑料罐的土壤表面,按照表1给出的指定量分别人工施用丙炔氟草胺颗粒剂(含有0.25%丙炔氟草胺的颗粒剂,商品名:Broad Star,美国Valent生产)、含有化合物[I]的颗粒剂(根据制剂实施例9,由1份化合物[I]、0.5份Neocol YSK、2份ToxanonGR31A、30份Kunigel V1和66.5份碳酸钙制成)以及丙炔氟草胺颗粒剂与含有化合物[I]的颗粒剂的混合物。
经处理的植物生长在温室中。施用48天后检查除草活性和对作物的植物毒性。结果见表1。
表1
如实验实施例1所示,与单独用丙炔氟草胺或化合物[I]处理的区域比较,以本发明组合物处理的区域协同产生了优良的除草效果。并且对小麦没有损害。
实验实施例2
在每个直径9cm、高7cm的塑料罐中装满高原土,然后播种花生。第二天,将丙炔氟草胺WDG(含有51%丙炔氟草胺的水分散颗粒剂,商品名:Valor SX,美国Valent生产)和含有化合物[I]的乳状浓缩液(将化合物[I]溶解于含有吐温20(表面活性剂,聚氧乙烯失水山梨醇单月桂酸酯)的丙酮中制成)的混合物用指定量的水稀释,并以小型喷雾器均匀地施用于土壤的表面上。
经处理的植物生长在温室中。施用21天后检查除草活性和对作物的植物毒性。结果见表2。
表2
如实验实施例2所示,本发明的组合物对花生没有或几乎没有损害。
实验实施例3
在每个宽32cm、深22cm、高8cm的塑料罐中装满高原土,然后植入莎草块茎。第二天,将丙炔氟草胺WDG(含有51%丙炔氟草胺的水分散颗粒剂,商品名:Valor SX,美国Valent生产)、含有化合物[I]的乳状浓缩液(将化合物[I]溶解于含有吐温20(表面活性剂,聚氧乙烯失水山梨醇单月桂酸酯)的丙酮中制成)及其混合物用指定量的水稀释,并以小型喷雾器均匀地施用于土壤的表面上。
经处理的植物生长在温室中。施用21天后检查除草活性和对作物的植物毒性。结果见表3。
表3
如实验实施例3所示,与单独用丙炔氟草胺或化合物[I]处理的区域比较,以本发明组合物处理的区域协同产生了优良的除草效果。
实验实施例4
在每个宽32cm、深22cm、高8cm的塑料罐中装满高原土,然后移植入西红柿,并播种马唐和反枝苋。第二天,将丙炔氟草胺WDG(含有51%丙炔氟草胺的水分散颗粒剂,商品名:Valor SX,美国Valent生产)和含有化合物[I]的乳状浓缩液(将化合物[I]溶解于含有吐温20(表面活性剂,聚氧乙烯失水山梨醇单月桂酸酯)的丙酮中制成)的混合物用指定量的水稀释,并以小型喷雾器均匀地施用于土壤的表面上。
经处理的植物生长在温室中。施用21天后检查除草活性和对蔬菜的植物毒性。结果见表4。
表4
如实验实施例4所示,以本发明组合物处理的区域产生了优良的除草效果。此外没有发现对西红柿的损害。
实验实施例5
在每个宽17cm、深12cm、高7cm的塑料罐中装满高原土,然后移植入黄瓜,并播种稗草、龙葵和马齿苋。第二天,将丙炔氟草胺WDG(含有51%丙炔氟草胺的水分散颗粒剂,商品名:Valor SX,美国Valent生产)和含有化合物[I]的乳状浓缩液(将化合物[I]溶解于含有吐温20(表面活性剂,聚氧乙烯失水山梨醇单月桂酸酯)的丙酮中制成)的混合物用指定量的水稀释,并以小型喷雾器均匀地施用于土壤的表面上。
经处理的植物生长在温室中。施用21天后检查除草活性和对蔬菜的植物毒性。结果见表5。
表5
如实验实施例5所示,以本发明组合物处理的区域产生了优良的除草效果。此外没有发现对黄瓜的损害。
实验实施例6
在每个直径21cm、高20cm的塑料罐中装满高原土,然后植入马铃薯,并播种稗草、马唐和裂叶牵牛。第二天,在上述塑料罐的土壤表面,按照表6给出的指定量分别人工施用丙炔氟草胺颗粒剂(含有0.25%丙炔氟草胺的颗粒剂,商品名:Broad Star,美国Valent生产)、含有0.9%化合物[I]的颗粒剂(根据制剂实施例9制备)和丙炔氟草胺颗粒剂与含有化合物[I]的颗粒剂的混合物。
施用14天后检查除草活性和对蔬菜的植物毒性。结果见表6。
表6
如实验实施例6所示,以本发明组合物处理的区域协同产生了优良的除草效果。此外没有发现对马铃薯的损害。
实验实施例7
在宽约46cm、深约31cm、高约26cm的塑料容器中装满高原土,然后植入葡萄(品种:Delaware),并播种稗草、马唐和反枝苋。在上述塑料罐的土壤表面,按照指定量分别人工施用丙炔氟草胺颗粒剂(含有0.25%丙炔氟草胺的颗粒剂,商品名:Broad Star,美国Valent生产)和含有0.9%化合物[I]的颗粒剂(根据制剂实施例9制备)的混合物。
施用14天后检查除草活性和对葡萄的植物毒性。结果见表7。
表7
如实验实施例7所示,以本发明组合物处理的区域产生了优良的除草效果。此外没有发现对葡萄的损害。
实验实施例8
在宽约46cm、深约31cm、高约26cm的塑料容器中装满高原土,然后植入栗子树(品种:Gin-yose),并播种稗草、马唐和反枝苋。在上述塑料罐的土壤表面,按照指定量分别人工施用丙炔氟草胺颗粒剂(含有0.25%丙炔氟草胺的颗粒剂,商品名:Broad Star,美国Valent生产)和含有0.9%化合物[I]的颗粒剂(根据制剂实施例9制备)的混合物。
施用14天后检查除草活性和对栗子的植物毒性。结果见表8。
表8
如实验实施例8所示,以本发明组合物处理的区域产生了优良的除草效果。此外没有发现对栗子的损害。
本发明使得以低剂量控制农田、菜地、林地、非耕作的土地等中的各种杂草成为可能。
Claims (7)
2.根据权利要求1的除草组合物,其中丙炔氟草胺∶化合物[I]的重量比为1∶0.2-1∶10。
4.根据权利要求3的控制杂草的方法,其中丙炔氟草胺∶化合物[I]的重量比为1∶0.2-1∶10。
5.根据权利要求3或4的控制杂草的方法,其中所述杂草在农田、菜地、林地或非耕作的土地中。
6.根据权利要求3或4的控制杂草的方法,其中所述杂草在农田里。
7.根据权利要求3或4的控制杂草的方法,其中所述杂草在麦田里。
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KR20070106419A (ko) | 2007-11-01 |
CN101061803A (zh) | 2007-10-31 |
KR101345571B1 (ko) | 2013-12-30 |
US20070254810A1 (en) | 2007-11-01 |
AU2007201719A1 (en) | 2007-11-15 |
BRPI0702643B1 (pt) | 2016-03-29 |
ES2315166B1 (es) | 2009-12-11 |
AR060819A1 (es) | 2008-07-16 |
FR2900313A1 (fr) | 2007-11-02 |
GB2437490A (en) | 2007-10-31 |
ZA200703384B (en) | 2008-07-30 |
CA2585082A1 (en) | 2007-10-28 |
US7598207B2 (en) | 2009-10-06 |
BRPI0702643A (pt) | 2007-12-18 |
ES2315166A1 (es) | 2009-03-16 |
GB2437490B (en) | 2009-07-29 |
GB0707908D0 (en) | 2007-05-30 |
DE102007019785A1 (de) | 2007-10-31 |
FR2900313B1 (fr) | 2009-12-18 |
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