JP6381050B2 - Insect repellent - Google Patents
Insect repellent Download PDFInfo
- Publication number
- JP6381050B2 JP6381050B2 JP2016171422A JP2016171422A JP6381050B2 JP 6381050 B2 JP6381050 B2 JP 6381050B2 JP 2016171422 A JP2016171422 A JP 2016171422A JP 2016171422 A JP2016171422 A JP 2016171422A JP 6381050 B2 JP6381050 B2 JP 6381050B2
- Authority
- JP
- Japan
- Prior art keywords
- repellent
- isobornylcyclohexanol
- insect repellent
- component
- insect
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
Links
- 239000000077 insect repellent Substances 0.000 title claims description 21
- 230000002940 repellent Effects 0.000 claims description 21
- 239000005871 repellent Substances 0.000 claims description 21
- BWVZAZPLUTUBKD-UHFFFAOYSA-N 3-(5,6,6-Trimethylbicyclo[2.2.1]hept-1-yl)cyclohexanol Chemical compound CC1(C)C(C)C2CC1CC2C1CCCC(O)C1 BWVZAZPLUTUBKD-UHFFFAOYSA-N 0.000 claims description 19
- 241000607479 Yersinia pestis Species 0.000 claims description 14
- 239000004480 active ingredient Substances 0.000 claims description 9
- 238000002360 preparation method Methods 0.000 description 12
- 239000000835 fiber Substances 0.000 description 10
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- 241000255581 Drosophila <fruit fly, genus> Species 0.000 description 6
- KFZMGEQAYNKOFK-UHFFFAOYSA-N Isopropanol Chemical compound CC(C)O KFZMGEQAYNKOFK-UHFFFAOYSA-N 0.000 description 6
- NEHNMFOYXAPHSD-UHFFFAOYSA-N citronellal Chemical compound O=CCC(C)CCC=C(C)C NEHNMFOYXAPHSD-UHFFFAOYSA-N 0.000 description 6
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- SBNFWQZLDJGRLK-RTWAWAEBSA-N (1R)-trans-phenothrin Chemical compound CC1(C)[C@H](C=C(C)C)[C@H]1C(=O)OCC1=CC=CC(OC=2C=CC=CC=2)=C1 SBNFWQZLDJGRLK-RTWAWAEBSA-N 0.000 description 1
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- FMTFEIJHMMQUJI-NJAFHUGGSA-N 102130-98-3 Natural products CC=CCC1=C(C)[C@H](CC1=O)OC(=O)[C@@H]1[C@@H](C=C(C)C)C1(C)C FMTFEIJHMMQUJI-NJAFHUGGSA-N 0.000 description 1
- OVSKIKFHRZPJSS-UHFFFAOYSA-N 2,4-D Chemical compound OC(=O)COC1=CC=C(Cl)C=C1Cl OVSKIKFHRZPJSS-UHFFFAOYSA-N 0.000 description 1
- PCFHYANYPQEMPU-UHFFFAOYSA-N 4-(2,2,3-trimethyl-5-bicyclo[2.2.1]heptanyl)cyclohexan-1-ol Chemical compound CC1(C)C(C)C2CC1CC2C1CCC(O)CC1 PCFHYANYPQEMPU-UHFFFAOYSA-N 0.000 description 1
- WRYLYDPHFGVWKC-SNVBAGLBSA-N 4-Terpineol Natural products CC(C)[C@]1(O)CCC(C)=CC1 WRYLYDPHFGVWKC-SNVBAGLBSA-N 0.000 description 1
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- LFQSCWFLJHTTHZ-UHFFFAOYSA-N Ethanol Chemical compound CCO LFQSCWFLJHTTHZ-UHFFFAOYSA-N 0.000 description 1
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Landscapes
- Agricultural Chemicals And Associated Chemicals (AREA)
Description
本発明は新規な昆虫忌避剤に関する。 The present invention relates to a novel insect repellent.
従来より、防虫剤として、虫除けスプレーまたは殺虫剤に含まれるN,N-ジエチル-m-トルアミド(DEET)もしくはピレスロイド系化合物(ピレストリン、シネリン、ジャスモリン、アレスリン、テトラメトリン、レスメトリン、フラメトリン、フェノトリン、ペルメトリン、シフェノトリン、ベラトリン、エトフェンプロックス、シフルトリン、テフルトリン、ビフェントリン、シラフルオフェン)が提案されているが、安全性、臭気などに問題があった。 Conventionally, as insect repellents, N, N-diethyl-m-toluamide (DEET) or pyrethroid compounds (pyrestrin, cinerine, jasmolin, allethrin, tetramethrin, resmethrin, flamethrin, phenothrin, permethrin, contained in insect repellent sprays or insecticides, Ciphenothrin, veratrine, etofenprox, cyfluthrin, tefluthrin, bifenthrin, silafluophene) have been proposed, but there were problems with safety and odor.
例えば、DEETは世界的に何十年と使用され続けているが低用量のDEETで神経系への影響があった事例があり、現在では小児(12歳未満)に使用させる場合には使用制限を設けている。(非特許文献1)。 For example, DEET has been used worldwide for decades, but there are cases of low dose DEET affecting the nervous system, and now it is restricted when used in children (under 12 years) Is provided. (Non-Patent Document 1).
また、DEETまたはピレスロイド系化合物は揮発性であり、例えば該成分を繊維構造物に付与した後、高温で熱処理すると、成分が蒸発して繊維上に残らないなどの問題がある。
一方、植物精油に含有される化合物(例えば、モノテルペン系化合物等)の中には、害虫忌避効果を発揮するものがあることが知られている。例えば、特許文献1には、害虫忌避成分(A)として、シトロネラールと、ターピネオール、メントール、リモネン、ゲラニオール、シトロネロール、カンフェン等から選ばれる1種又は2種以上とを含み、害虫忌避成分(A)中におけるシトロネラールの含有量が2〜10質量%である害虫忌避剤揮散組成物が開示されている。
Further, DEET or pyrethroid compounds are volatile. For example, when the component is applied to the fiber structure and then heat-treated at a high temperature, there is a problem that the component does not evaporate and remain on the fiber.
On the other hand, it is known that some compounds (for example, monoterpene compounds) contained in plant essential oil exhibit a pest repellent effect. For example, Patent Document 1 includes, as a pest repellent component (A), citronellal and one or more selected from terpineol, menthol, limonene, geraniol, citronellol, camphene, etc., and the pest repellent component (A) A pest repellent volatilization composition having a citronellal content of 2 to 10% by mass is disclosed.
また、特許文献2には、天然に存在する成分テルピネン−4−オールを有効成分とする衣料用防虫剤が、開示されている。
さらに、特許文献3には、β−フェニルエチルアルコールまたはそれとジヒドロジャスモン酸メチルを有効成分として含有する蚊忌避剤が開示されている。これらは、植物精油に含有される化合物、あるいは香料として利用されている化合物であり安全性は高いものの、揮発性が高いことで持続性に課題が残る場合がある。
Patent Document 2 discloses an insect repellent for clothing containing a naturally occurring component terpinen-4-ol as an active ingredient.
Furthermore, Patent Document 3 discloses a mosquito repellent containing β-phenylethyl alcohol or methyl dihydrojasmonate as an active ingredient. Although these are compounds contained in plant essential oils or compounds used as perfumes and are highly safe, there are cases where sustainability still remains due to high volatility.
例えば繊維製品、塗料、家庭用雑貨、壁材などに害虫忌避効果を求める場合、臭気が少なく、揮散性が低く、長期間の持続性が高い忌避剤が求められる。 For example, when pest repellent effects are sought for textile products, paints, household goods, wall materials, etc., repellents with low odor, low volatility and high long-term sustainability are required.
テルペン系化合物の中には、例えばボルネオール、シトラール、シトロネラール、シトロネロール、リモネン、ゲラニオール、リナロール、メントール、テルピネオール、チモールなどが挙げられ、それぞれの成分で忌避効果が得られるが、揮発性が高いために繊維や雑貨などを加工する際の加熱時に、これらの残存率が低くなる。 Among the terpene compounds, for example, borneol, citral, citronellal, citronellol, limonene, geraniol, linalool, menthol, terpineol, thymol, etc., each component has a repellent effect, but because it is highly volatile During heating when processing fibers, sundries, etc., these residual rates are lowered.
一方、イソボルニルシクロヘキサノールは、従来からはんだ用のフラックスとして使用されており、金属の表面や溶けたはんだ表面の酸化膜や汚れを除去する表面洗浄作用を有していることが知られている。沸点308〜313℃と高く臭いも無臭に近い。 On the other hand, isobornylcyclohexanol has been conventionally used as a flux for solder, and is known to have a surface cleaning action to remove oxide film and dirt on the surface of metal and melted solder. Yes. The boiling point is 308-313 ° C, and the odor is almost odorless.
イソボルニルシクロヘキサノールは、サンダルウッド油代替品の開発の際に見出された物質のひとつであり、いくつかの異性体を含んでいる。特許文献4には、カンフェンとグアヤコールを、三フッ化ホウ素を用いて反応させ、次いでラネーニッケルを触媒として水素化して得られる物質について記載されている。これらは、イソボルニル、イソカンフィルまたはイソフェンキルが置換したシクロヘキサノールの混合物のかたちで、いくつかの商品名で市販されている。例えば、Givaudan社は商品名:SANDELAを、またRhodia社は商品名:IBCH-87を市販している。強いサンダル香を有する物質はイソカンフィルヘキサノールであることが知られている。(非特許文献2) Isobornyl cyclohexanol is one of the substances found in the development of sandalwood oil substitutes and contains several isomers. Patent Document 4 describes a substance obtained by reacting camphene and guaiacol using boron trifluoride and then hydrogenating using Raney nickel as a catalyst. These are marketed under several trade names in the form of a mixture of cyclohexanols substituted by isobornyl, isocamphyl or isofenquil. For example, Givaudan sells the product name: SANDELA, and Rhodia sells the product name: IBCH-87. A material with a strong sandal scent is known to be isocamphylhexanol. (Non-Patent Document 2)
特許文献5には、ミリスチン酸イソプロピルとボルニルシクロヘキサノールとの混合物を有効成分とする屋内塵性ダニ忌避剤が開示されている。ミリスチン酸イソプロピルとボルニルシクロヘキサノールとの混合物は、香料成分等として用いられる揮発性成分であり商業的にも入手することができることが記載されているが、二つの化合物の成分比が記載されているのみで、いずれの成分が主体であるか不明である。また、屋内塵性ダニ類に対する効果が示されているのみで、他の有害生物に対する効果は示唆されていない。 Patent Document 5 discloses an indoor dusty mite repellent containing a mixture of isopropyl myristate and bornylcyclohexanol as an active ingredient. It is described that a mixture of isopropyl myristate and bornylcyclohexanol is a volatile component used as a fragrance component and can be obtained commercially, but the component ratio of the two compounds is described. It is not clear which component is the main component. Moreover, only the effect with respect to indoor dust mites is shown, and the effect with respect to other pests is not suggested.
一方、イソボルニルシクロヘキサノールは、ほとんど臭気を有しない。日本テルペン化学社は、イソボルニルシクロヘキサノールが主成分の商品名:テルソルブMTPHを市販している。これは、ペースト用溶剤、レオロジー制御剤などに利用されている。しかしながら、イソボルニルシクロヘキサノールが昆虫の忌避効果を有することは知られていなかった。 On the other hand, isobornylcyclohexanol has almost no odor. Nippon Terpene Chemical Co., Ltd. markets the trade name: Tersolve MTPH whose main component is isobornylcyclohexanol. This is used in paste solvents, rheology control agents and the like. However, it has not been known that isobornylcyclohexanol has an insect repellent effect.
本発明の課題は、安全性が高く、持続性の高い昆虫忌避剤を提供することである。 An object of the present invention is to provide an insect repellent with high safety and high durability.
当該発明者は、安全性が高く、持続性の高い忌避剤を開発すべく、鋭意検討した結果、イソボルニルシクロヘキサノールが忌避効果を有することを見出し、本発明を完成した。 As a result of intensive studies to develop a repellent with high safety and high durability, the inventor found that isobornylcyclohexanol has a repellent effect and completed the present invention.
本発明に寄れば、イソボルニルシクロヘキサノールを有効成分とすることにより、それ自体は無臭で、持続性に優れた昆虫忌避剤を提供することができる。 According to the present invention, by using isobornylcyclohexanol as an active ingredient, it is possible to provide an insect repellent that is odorless and excellent in sustainability.
本発明において用いられ得るイソボルニルシクロヘキサノールは、テルペン系化合物の誘導体であり、蚊や、衣類害虫などの昆虫に対して忌避性が高いものの、人体に対しては安全性が高い。 Isobornylcyclohexanol that can be used in the present invention is a derivative of a terpene compound and has high repellent properties against insects such as mosquitoes and clothing pests, but is highly safe against human bodies.
本発明の有効成分であるイソボルニルシクロヘキサノールは、それ自体を溶剤などとして使用するために市販されている化合物である。したがって、市販品を使用することもできる。また、公知の合成香料であるイソカンフィルシクロヘキサノールの副生成物としても知られている。当該合成香料の量的な主成分はイソボルニルシクロヘキサノールであることが知られており、これを分離精製することもできる。また、たとえば西独国特許第834593号に記載の方法など公知の製造方法に従って合成することもできる。 Isobornylcyclohexanol, which is an active ingredient of the present invention, is a commercially available compound for use as a solvent or the like. Therefore, a commercial item can also be used. It is also known as a by-product of isocamphylcyclohexanol, a known synthetic fragrance. It is known that the quantitative main component of the synthetic fragrance is isobornylcyclohexanol, which can be separated and purified. Moreover, it can also synthesize | combine according to well-known manufacturing methods, such as the method of the West German patent 835593, for example.
本発明の忌避剤は、イソボルニルシクロヘキサノールを通常の昆虫忌避剤に使用される担体や成分等と組合せ、製剤化することにより調製される。 The repellent of the present invention is prepared by combining isobornylcyclohexanol with a carrier, a component, etc. used in a normal insect repellent and formulating it.
例えば、本発明の昆虫忌避剤は、イソボルニルシクロヘキサノールをそのまま、あるいはこれを溶剤に溶解または可溶化して、液体製剤とすることができる。溶剤としては、アルコール類、グリコール類、炭化水素類、グリコールエーテル類、水などを用いることができる。本発明の有効成分が一様に分散するよう、必要に応じて界面活性剤、増粘剤などを加えて調整することができる。この液体製剤は、そのまま容器に入れた製剤としたり、吸い上げ芯で吸い上げて揮散させる液芯型製剤としたり、浸透透過性フィルムを有する容器に入れフィルムを通して揮散させる製剤としたり、ゲル化剤を加えてゲル製剤とすることもできる。対象物によっては、液体製剤を直接対象物に塗布、含浸したり、スプレー製剤として対象物に散布することも可能である。 For example, the insect repellent of the present invention can be made into a liquid preparation by isobornylcyclohexanol as it is or by dissolving or solubilizing it in a solvent. As the solvent, alcohols, glycols, hydrocarbons, glycol ethers, water and the like can be used. A surfactant, a thickener, etc. can be added and adjusted as necessary so that the active ingredient of the present invention is uniformly dispersed. This liquid preparation can be used as it is in a container, or as a liquid-core preparation that is sucked up by a suction core and volatilized, or into a container having an osmotic permeability film and volatilized through the film, or a gelling agent is added. Gel preparation. Depending on the object, it is possible to apply and impregnate the liquid preparation directly on the object, or to spray the liquid preparation onto the object as a spray preparation.
また、本発明の昆虫忌避剤は、担体に担持させて固体製剤とすることもできる。担体としては、セルロース、レーヨン、ポリエチレン、ポリプロピレン、ポリエステル、ポリウレタン、羊毛、タルク、クレー、素焼き、陶磁器粉などからなる粉末、顆粒、錠剤、シート、マット、フェルト、スポンジ、板、紙、織布、不織布、フィルム状などの多孔性または非多孔性担体を用いることができる。担持の方法としては、滴下、散布、噴霧などによる含浸、塗布、印刷、練り混みなどを挙げることができる。 In addition, the insect repellent of the present invention can be supported on a carrier to form a solid preparation. Carriers include cellulose, rayon, polyethylene, polypropylene, polyester, polyurethane, wool, talc, clay, unglazed powder, ceramic powder, etc., granules, tablets, sheets, mats, felts, sponges, boards, paper, woven fabrics, A porous or non-porous carrier such as a nonwoven fabric or a film can be used. Examples of the supporting method include impregnation by dripping, spraying, spraying, application, printing, kneading and the like.
本発明の昆虫忌避剤の調製に当たっては、必要に応じて、ピレスロイド系化合物など他の防虫剤とともに使用することができる。また、必要に応じて、防カビ剤、酸化防止剤、紫外線吸収剤等の任意成分を加えることもできる。さらに、香料を適宜加えれば、微香を有する防虫剤や快い香りをもつ防虫剤を得ることもできる。 In preparing the insect repellent of the present invention, it can be used together with other insect repellents such as pyrethroid compounds as necessary. Moreover, arbitrary components, such as an antifungal agent, antioxidant, a ultraviolet absorber, can also be added as needed. Furthermore, if a fragrance | flavor is added suitably, the insect repellent which has a fine fragrance | flavor and the pleasant fragrance can be obtained.
本発明の昆虫忌避剤が適用され得る昆虫としては、衛生害虫、不快害虫、農業害虫として知られるものの内、昆虫に分類されるものである。より具体的には、例えばアカイエカ、コガタアカイエカ、チカイエカ、ネッタイイエカなどイエカ属、ネッタイシマカ、ヒトスジシマカなどヤブカ属、シナハマダラカなどハマダラカ属などを含む蚊類、イエバエ、サシバエなどイエバエ科、ヒメイエバエなどヒメイエバエ科、ケブカクロバエなどクロバエ科、シマバエ科、キイロショウジョウバエなどショウジョウバエ科、ツェツェバエ科、ノミバエ科、センチニクバエなどニクバエ科などを含むハエ類、オオチョウバエ、ホシチョウバエなどのチョウバエ類、セスジユスリカ、アカムシユスリカなどのユスリカ類の飛翔害虫が挙げられる。これら飛翔害虫にはたとえばコガタアカイエカ、ヒトスジシマカ、ネッタイシマカ、サシバエ、ツェツェバエなどの吸血性昆虫もしくは刺咬性害虫と呼ばれ病原体を媒介することが知られるものを含んでいる。また、イガ、コイガなどヒロズコガ科、ノシメマダラメイガなどメイガ科などのガ類が挙げられ、これらのガ類はその幼虫が衣料害虫として知られている。また、ヒメカツオブシムシ、ヒメマルカツオブシムシなどカツオブシムシ科、ゾウムシ科、コクヌスト科、シバンムシ科の甲虫類が挙げられる。これらは、食品、農作物などの食害をなすものとして知られており、カツオブシムシ科の甲虫ではさらに衣料品に対する食害をなすものもある。 The insects to which the insect repellent of the present invention can be applied are classified as insects among those known as sanitary pests, unpleasant pests, and agricultural pests. More specifically, for example, mosquitoes, including mosquitoes such as Culex mosquitoes, Culex mosquitoes, Chichaeka, Aedesia, etc. Flies such as Drosophilidae, Drosophila such as Drosophilidae, Drosophila, Drosophila, Fleafidae, Drosophila such as Scarlet flies, butterflies such as Drosophila and Drosophila, Chironomidae, Chironomidae Can be mentioned. These flying pests include, for example, blood-sucking insects or biting pests such as the mosquito mosquito, Aedes albopictus, Aedes albopictus, flies and tsetse flies that are known to mediate pathogens. In addition, moths such as moths and moths such as common moths and moths such as Nomememadarameiga are included, and these larvae are known as clothing pests. In addition, beetles of the cutworm beetle family, weevil family, scorpion family, and hornworm family are included, such as Himekatsuobushimushi and Himemarukatsubushimushi. These are known to cause food damage, such as crops, and some of the beetles of the cutworm beetle also cause food damage to clothing.
イソボルニルシクロヘキサノールを用いた昆虫忌避剤の調製は、例えば、液体製剤または固体製剤とすればよい。製剤化に当たってイソボルニルシクロヘキサノールの使用量は、特に制約されるものではないが、一般的には、1製剤当り0.01〜50重量%が好ましい。 The insect repellent preparation using isobornylcyclohexanol may be a liquid preparation or a solid preparation, for example. In the formulation, the amount of isobornylcyclohexanol used is not particularly limited, but is generally preferably 0.01 to 50% by weight per formulation.
本発明の忌避剤はそれ自体が無臭であり適宜副資材と組み合わせることで任意の形態で使用することができる。 The repellent of the present invention itself is odorless and can be used in any form by being appropriately combined with auxiliary materials.
例えば、皮膚外用剤としてスプレー剤、塗布剤、貼付剤とすることができる。家庭用衛生材用品として、芳香消臭剤、抗菌剤などと組み合わせて、固体又は液体の揮散剤、スプレー、清掃用液剤などとすることもできる。園芸用品としてスプレーなどとして使用することもできる。前記の使用方法については、本発明の昆虫忌避剤を添加する他には、それぞれ一般に行われる方法に従って製造することができる。 For example, as a skin external preparation, it can be used as a spray, a coating agent, or a patch. As household hygiene products, solid or liquid volatilizers, sprays, cleaning liquids, and the like can be used in combination with aromatic deodorants and antibacterial agents. It can also be used as a spray for gardening supplies. About the said usage method, in addition to adding the insect repellent of this invention, it can manufacture in accordance with the method generally performed, respectively.
さらには、繊維、木材、紙、セラミック材料などに固定化して昆虫忌避効果を付加した、衣料、建築材料、壁紙、装飾品などとすることもできる。これらの固定化方法は液剤の含浸、吹き付け、マイクロカプセル化しての付着させる方法など公知の方法を使用することができる。 Furthermore, it can also be used as clothing, building materials, wallpaper, ornaments, etc., which are fixed on fibers, wood, paper, ceramic materials, etc. and have an insect repellent effect. As these immobilization methods, known methods such as liquid agent impregnation, spraying, microencapsulation and the like can be used.
以下、実施例により本発明をさらに詳細に説明する。なお、本例中の忌避率、あるいは喫食阻害率をそれぞれ次の方法により求めた。 Hereinafter, the present invention will be described in more detail with reference to examples. In addition, the avoidance rate in this example or the eating inhibition rate was calculated | required by the following method, respectively.
(1)ヒトスジシマカの忌避率
被験者の手に厚手の木綿製軍手を填めた上にさらに木綿製内履き手袋を重ねて填め、その上に30×30cmの検体を巻き付け、できるだけ皺にならないように輪ゴムでとめる。
ヒトスジシマカを放った28×28×28cmの全面ナイロンゴース貼りのケージに手首から先を3分間挿入し、1分毎に3回、検体の上に止まった供試虫の数を数え累積飛来数とする。
(1) Repelling rate of Aedes albopictus
Put a thick cotton work gloves on the subject's hand, and then put a cotton inner gloves on top of it, wrap a 30 x 30 cm specimen on it, and fasten it with a rubber band so that it does not become as wrinkled as possible.
Insert the tip of the wrist into a 28 x 28 x 28 cm nylon goose-clad cage that has released human striped mosquitoes for 3 minutes, and count the number of test insects that have stopped on the specimen three times a minute. To do.
試験は、無処理検体を巻き付けた場合の無処理区累積飛来数を計数した後、約20分間供試虫を休ませ、処理検体を巻き付けた場合の処理区累積飛来数を計数する。
忌避率の計算は以下の式を用いた。
In the test, after counting the number of untreated specimens accumulated, the test insects are rested for about 20 minutes, and when the specimen is wrapped, the number of treated areas accumulated is counted.
The following formula was used for calculation of the repelling rate.
忌避率(%)={(無処理検体の累積飛来数-処理検体の累積飛来数)/無処理検体の累積飛来数}×100 Repelling rate (%) = {(cumulative number of untreated samples−cumulative number of treated samples) / cumulative number of untreated samples} × 100
(実施例1)
イソボルニルシクロヘキサノール(日本テルペン(株)製)をイソプロピルアルコールに溶かした溶液中に、ポリエステル繊維を浸漬させた。繊維に対して忌避成分が0.1重量%となるように、室温で乾燥した。忌避率は、51%だった。
Example 1
Polyester fibers were immersed in a solution of isobornylcyclohexanol (manufactured by Nippon Terpene Co., Ltd.) in isopropyl alcohol. It dried at room temperature so that a repellent component might be 0.1 weight% with respect to a fiber. The repellent rate was 51%.
(実施例2)
実施例1と同様に、繊維に対して忌避成分が0.5重量%含有する繊維を調製した。忌避率は、81%だった。
(Example 2)
In the same manner as in Example 1, a fiber containing 0.5% by weight of a repellent component was prepared. The repellent rate was 81%.
(実施例3)
実施例1と同様に、繊維に対して忌避成分が1.0重量%含有する繊維を調製した。忌避率は、89%だった。
(Example 3)
In the same manner as in Example 1, a fiber containing 1.0% by weight of a repellent component with respect to the fiber was prepared. The repellent rate was 89%.
(2)ヒメカツオブシムシ幼虫の喫食阻害率
内径約4.1cm、深さ約1.6cmのガラスシャーレに、供試虫25個体と直径約4cmに切った検体を入れ、金網を貼った蓋をしたものを試験容器とした。市販のポリプロピレン製密閉容器(容積約5L)に、調湿用の飽和食塩水を入れた容器と供に試験容器を納め、25℃の恒温器内に設置し、6週間後に検体の喫食量と供試虫の生死を観察した。尚、試験開始時と終了後の環境湿度の違いによる試験布の重量の変化を補正するために、供試虫を入れない未処理布を準備した。
(2) Feeding inhibition rate of Himetsuobushimushi larvae A glass petri dish with an inner diameter of about 4.1 cm and a depth of about 1.6 cm, with 25 specimens and specimens cut to about 4 cm in diameter, covered with a wire netting lid A test container was obtained. Place the test container in a commercially available polypropylene sealed container (volume: approx. 5L) with a saturated saline solution for humidity control, and place it in a thermostatic chamber at 25 ° C. The life and death of the test insects were observed. In addition, in order to correct | amend the change of the weight of the test cloth by the difference in environmental humidity at the time of the test start and after completion | finish, the untreated cloth which does not put a test insect was prepared.
検体の重量変化率=終了後の基準区の重量/初期の基準区の重量
補正喫食量=初期重量×重量変化率−終了時重量
喫食阻害率(%)={(無加工生地の喫食量-加工生地の喫食量)/無加工生地の喫食量}×100
Weight change rate of specimen = weight of reference zone after completion / weight corrected eating amount of initial reference zone = initial weight × weight change rate−weight at termination eating inhibition rate (%) = {(eat amount of unprocessed dough− Processed dough) / Unprocessed dough} × 100
(実施例5)
イソボルニルシクロヘキサノール(日本テルペン(株)製)をイソプロピルアルコールに溶かした溶液中に、ウール布を浸漬させた。繊維に対して忌避成分が0.2重量%となるように、室温で乾燥した。喫食阻害率は、66.0%だった。
(Example 5)
A wool cloth was immersed in a solution of isobornylcyclohexanol (manufactured by Nippon Terpene Co., Ltd.) in isopropyl alcohol. It dried at room temperature so that a repellent component might be 0.2 weight% with respect to a fiber. The eating inhibition rate was 66.0%.
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