JP2020000884A - 清浄組成物およびこれを含むデバイス - Google Patents
清浄組成物およびこれを含むデバイス Download PDFInfo
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- JP2020000884A JP2020000884A JP2019143148A JP2019143148A JP2020000884A JP 2020000884 A JP2020000884 A JP 2020000884A JP 2019143148 A JP2019143148 A JP 2019143148A JP 2019143148 A JP2019143148 A JP 2019143148A JP 2020000884 A JP2020000884 A JP 2020000884A
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- Prior art keywords
- cleaning composition
- hexahydro
- malodor
- methyl
- composition
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Abstract
【解決手段】本発明は、清浄組成物、および悪臭低減組成物を含み、粘度が約1mPa・s〜約50,000mPa・sの組成物を含む、清浄組成物を含むデバイス、およびこのような組成物の製造方法および使用方法に関する。開示される悪臭低減組成物は、清浄組成物の香りを過度に妨害せず、これらの技術を含むデバイス、およびこのような清浄組成物およびデバイスで処理された芳香を放つ場所または芳香を放たない場所の香りを過度に妨害しない。
【選択図】なし
Description
適切な悪臭低減材料の非限定的なセットを以下の表に提示する。使用を簡単にするために、表1〜3のそれぞれの材料は、「番号」に示されたそれぞれの表の列にみられる数識別子が割り当てられる。表4は、表1の部分的なセットであり、表5は、表2の部分的なセットであり、表6は、表3の部分的なセットであり、表4、5および6は、それぞれ表1〜3にみられる数識別子と同じ数識別子を使用する。
プレインズボロ、NJ、米国のFirmenich Inc.ニューヨーク、NYのInternational Flavor and Fragrance Inc.米国;Takasago Corp.テターボロ、NJ USA;Takasago Corp.テターボロ、NJ USA;Sigma−Aldrich/SAFC Inc.カールスバッド,CA USA;およびBedoukian Research Inc.ダンベリー,CT USA。
清浄組成物であって、粘度が、約1mPa・s〜約50,000mPa・s、好ましくは、約1mPa・s〜約2000mPa・s、最も好ましくは、約1mPa・s〜約400mPa・sであり、pHが、約3〜約10、好ましくは、約4〜約8、最も好ましくは、約5〜約8であり、前記清浄組成物が、清浄組成物全体の重量を基準として、
(a)総量が約0.0001%〜約2%、好ましくは、約0.0001%〜約1.5%、さらに好ましくは、約0.001%〜約1%、最も好ましくは、約0.007%〜約0.7%の1種類以上の悪臭低減材料、好ましくは、1〜約75種類の悪臭低減材料、さらに好ましくは、1〜約50種類の悪臭低減材料、さらに好ましくは、1〜約35種類の悪臭低減材料、最も好ましくは、1〜約20種類の悪臭低減材料であって、前記悪臭低減材料は、それぞれ、MORVが少なくとも0.5、好ましくは、0.5〜10、さらに好ましくは、1〜10、最も好ましくは、1〜5であり、好ましくは、前記悪臭低減材料は、それぞれ、Universal MORVを有するか、または、前記総量の悪臭低減材料は、Blocker Indexが3未満、さらに好ましくは、約2.5未満、さらになお好ましくは、約2未満、さらになお好ましくは、約1未満、最も好ましくは、0であり、および/または、Blocker Indexの平均が3〜約0.001である、悪臭低減材料;および
(b)約0.01%〜約3%、好ましくは、約0.4%〜約1%、さらに好ましくは、約0.1%〜約0.5%、最も好ましくは、約0.1%〜約0.3%の可溶化剤であって、好ましくは、前記可溶化剤は界面活性剤、溶媒およびこれらの混合物からなる群から選択され、好ましくは
(i)好ましくは、前記界面活性剤は、非イオン性界面活性剤を含み;
(ii)好ましくは、前記溶媒は、アルコール、ポリオールおよびこれらの混合物を含む、可溶化剤;
(c)場合により、補助成分を含む、清浄組成物
が開示される。
661、663、668、671、673、674、675、676、677、678、679、680、681、682、683、684、686、691、692、693、694、696、697、698、700、702、704、706、707、708、709、710、711、712、713、714、715、716、717、718、719、720、721、722、723、724、725、726、727、730、731、733、735、736、738、741、742、746、748、750、752、754、757、758、763、764、766、767、768、769、770、771、772、774、775、776、778、781、782、786、788、791、792、800、802、803、804、805、806、807、814、821、824、826、827、828、829、831、833、834、837、839、840、849、850、852、856、864、865、866、868、869、870、871、872、873、876、877、878、879、881、884、885、886、890、892、893、894、897、905、908、912、913、914、916、919、920、922、923、924、925、926、927、928、929、930、933、937、939、941、942、943、945、946、947、948、950、951、953、954、955、959、962、965、967、969、973、974、976、978、980、982、985、988、993、998、1000、1003、1006、1007、1008、1009、1010、1012、1016、1020、1021、1022、1023、1024、1025、1026、1027、1028、1029、1031、1032、1033、1035、1036、1037、1038、1042、1043、1045、1046、1047、1053、1057、1059、1060、1062、1063、1064、1065、1066、1067、1070、1072、1073、1075、1077、1078、1082、1083、1085、1089、1090、1091、1093、1095、1097、1099、1102、1104、1105、1107、1111、1113、1116、1117、1120、1121、1125、1126、1129、1131、1135、1136、1137、1138、1139、1140、1142、1143、1144、1145、1146、1147、1148、1149、表2の材料2、23、141、185、227、230、246、248、343、359、565、631、659、674、678、679、715、758、1028、1097およびこれらの混合物からなる群から選択され、さらに好ましくは、前記材料は、表4の材料7、14、39、48、183、199、206、212、215、229、260、261、281、329、335、353、360、441、484、487、488、501、566、567、569、570、573、574、603、616、621、624、627、632、663、680、684、694、696、708、712、714、726、750、764、775、776、788、804、872、919、927、933、978、1007、1022、1024、1027、1029、1035、1038、1060、1089、1107、1129、1131、1136、1137、1140、1142、1143、1144、1145、1148、1149、表5の材料248からなる群から選択され、最も好ましくは、前記材料は、表4の材料261、680、788、1129、1148、1149およびこれらの混合物からなる群から選択される。
(a)好ましくは、前記潤滑剤は、炭化水素、さらに好ましくは、2個以上の分岐を含む炭化水素を含む潤滑剤からなる群から選択される材料を含み、
(b)好ましくは、四級アミン部分を含む化合物は、少なくとも10個の炭素原子を含む。
カウンタートップ、テーブルおよび床を洗浄するために一般的に用いられるような本発明の組成物を、硬質表面洗浄剤と共に使用してもよい。適切な床洗浄液は、本譲受人によって、WetJetの名称で交換可能な容器に入れて販売される。洗浄溶液は、特に、同一譲受人の米国特許第6,814,088号の教示に従って製造されてもよい。使い捨ての床シートと組み合わせて、容器を、床洗浄設備と共に使用し、床洗浄設備から分注されてもよい。適切なスプレー設備も、本譲受人によって、WetJetの名称で販売される。適切な容器およびそのための備品は、同一譲受人の米国特許第6,386,392号および/または第7,172,099号の教示に従って製造されてもよい。床洗浄設備は、共有されているUS 2013/0319463号の教示に従って、蒸気を分注してもよい。または、再充填可能な容器を利用してもよい。
本発明の目的には必須でないが、以下に例示される補助剤の非限定的なリストは、本発明の組成物に使用するのに適しており、例えば、本発明の特定の態様に望ましく組み込まれ、混合物の相安定性を補助または向上させるために、布地への清浄組成物の移動を補助または向上させるために、生物学的汚染物質による清浄組成物の分解を防ぐために、さらなる利点を付け加えるために、または、香料、着色料、染料などの場合にように、組成物の審美性を変えてもよい。このような追加成分の正確な性質およびそれを組み込む濃度は、組成物の物理形態および使用される作業の性質に依存する。適切な補助材料としては、限定されないが、pH緩衝剤、可溶化助剤、抗菌剤、防腐剤、湿潤剤、溶媒、香料または他の成分が挙げられる。
本発明の清浄組成物は、緩衝剤を含んでいてもよく、緩衝剤は、カルボン酸、またはマレイン酸のようなジカルボン酸、クエン酸またはポリアクリル酸のような多塩基酸であってもよい。この酸は立体的に安定していてもよく、所望のpHを維持するために、本発明の組成物で使用してもよい。緩衝剤は、トリエタノールアミンのような塩基、またはクエン酸ナトリウムのような有機酸塩を含んでいてもよい。本発明の清浄組成物のpHは約3〜約8、あるいは約4〜約7、あるいは約5〜約8、あるいは約6〜約8、あるいは約6〜約7、あるいは約7、あるいは約6.5であってもよい。
本発明の清浄組成物は、無色透明の溶液を生成するために、過剰な疎水性有機材料、特に、ある種の本発明の悪臭低減材料、香料材料、さらに、組成物に加えてもよいが、組成物に容易に溶解しない任意成分(例えば、害虫忌避剤、酸化防止剤など)を可溶化するために、可溶化助剤を含んでもよい。好適な可溶化助剤は、非起泡性または低起泡性界面活性剤のような界面活性剤である。好適な界面活性剤は、非イオン性界面活性剤、カチオン性界面活性剤、両性界面活性剤、双極性界面活性剤、およびこれらの混合物である。
本発明の清浄組成物は、空気中または無生物表面上の微生物を減少させる化合物を有効量含んでもよい。抗菌性化合物は、ヒトの皮膚またはペットと接触した室内表面(カウチ、枕、ペットの寝具およびカーペッ等)の上に典型的に存在するグラム陰性およびグラム陽性の菌および真菌に有効である。このような微生物種は、肺炎杆菌(Klebsiella pneumoniae)、黄色ブドウ球菌(Staphylococcus aureus)、黒カビ(Aspergillus niger)、肺炎杆菌(Klebsiella pneumoniae)、化膿レンサ球菌(Streptococcus pyogenes)、豚コレラ菌(Salmonella choleraesuis)、大腸菌(Escherichia coli)、毛瘡白癬菌(Trichophyton mentagrophytes)および緑膿菌(Pseudomonas aeruginosa)を含む。ある実施形態において、抗菌性化合物は、H1−N1、ライノウイルス、RSウイルス、1型ポリオウイルス、ロタウイルス、A型インフルエンザ、1型および2型単純ヘルペス、A型肝炎およびヒトコロナウイルスのようなウイルスにも有効である。
本発明の清浄組成物は防腐剤を含んでもよい。防腐剤は、本発明中に、所定期間にわたって腐敗を防ぐか、または、不注意にも入り込んでしまった微生物の増殖を防ぐのに十分であるが、清浄組成物の臭気中和性能に寄与するのに十分ではない量で含まれる。換言すれば、防腐剤は、微生物によって生じる臭気を消す目的で組成物を堆積させる表面上の微生物を殺す抗菌性化合物として使用されているのではない。むしろ、清浄組成物の貯蔵寿命を長くする目的で、清浄組成物の腐敗を防ぐために防腐剤が用いられる。
典型的には、本発明の組成物に含まれる最低濃度の水溶性クアットは、組成物の合計重量を基準として、少なくとも約0.01重量%、好ましくは、少なくとも約0.05重量%、さらに好ましくは、少なくとも約0.1重量%、さらになお好ましくは、少なくとも約0.2重量%である。典型的には、組成物に含まれる最大濃度の水溶性四級剤は、組成物の合計重量を基準として、約20%まで、好ましくは、約10%未満、さらに好ましくは、約3%未満である。典型的には、水溶性四級剤は、組成物中に約0.2%〜約1.0%の量で存在する。
本発明の油成分は、マイクロエマルションによって組成物に組み込まれる実質的に水不溶性の材料を表す。前記油成分は、非香料原材料であり、非悪臭低減材料である。典型的には、組成物に含まれる油成分の最小濃度は、少なくとも約0.001%、好ましくは、少なくとも約0.005%、さらに好ましくは、少なくとも約0.01%であり、典型的には、油成分の最大濃度は、約5%まで、好ましくは、約3%未満、さらに好ましくは、1.5未満であり;典型的な濃度は、約0.05%〜約1%の範囲である。油成分は、単一成分または混合物であってもよく、通常は、ある種の有益剤を組成物に組み込むことを表し、例えば、非限定的な例は、柔軟性またはしわ低減/開放の利益を与える。典型的には、油成分は、置換または非置換の炭化水素などを含む。噴霧製品のために、組成物への組み込みを容易にし、乾燥したときにノズルが詰まる可能性を減らすために、油成分または混合物が室温で液体であることが好ましい。
本発明の清浄組成物は水性キャリアを含んでもよい。使用される水性キャリアは、蒸留水、脱イオン水または水道水であってもよい。水は、水溶液である組成物に任意の量で存在していてもよい。ある実施形態において、水は、前記清浄組成物の約85%〜99.5%、または約90%〜約99.5%、または約92%〜約99.5%、または約95%の量で存在していてもよい。少量の低分子量一価アルコール(例えば、エタノール、メタノールおよびイソプロパノール)またはポリオール(例えば、エチレングリコールおよびプロピレングリコール)を含有する水も有用な場合がある。しかし、揮発性低分子量一価アルコール(例えば、エタノールおよび/またはイソプロパノール)は、これらの揮発性有機化合物が、燃焼性の問題および環境汚染の問題の両方に寄与し得るため、限定されるべきである。少量の低分子量一価アルコールが、本発明の組成物中に存在する場合、香料およびある種の防腐剤のための安定化剤としてのこれらのアルコールの添加に起因して、一価アルコールの濃度は、清浄組成物の1重量%〜約5重量%、または約6重量%未満、または約3重量%未満、または約1重量%未満であってもよい。
また清浄組成物は、快楽効果を供給するだけの(すなわち、悪臭を中和しないが、快い香りは供給する)香料原材料を含んでもよい。適切な香料は、米国特許第6,248,135号に開示され、その全体が参考として本明細書に組み込まれる。例えば、清浄組成物は、悪臭を中和するための揮発性アルデヒドと快楽をもたらす香料アルデヒドの混合物を含んでよい。
本発明の組成物は、処理された基材からの香料成分の堆積および放出を安定化し、高める1つ以上の香料移動技術を含んでいてもよい。このような香料移動技術を使用し、処理された基材から香料が放出する寿命を長くすることもできる。香料移動技術、特定の香料移動技術を製造する方法、およびこの種の香料移動技術の使用は、米国特許出願公開第2007/0275866(A1)号に開示されている。
本発明の組成物を、大気または不活性表面(例えば、布地清浄剤としての布地表面)に揮発性物質を運ぶためのデバイスに使用してもよい。このようなデバイスを、種々の様式で構築してもよい。
混合物、限定されないが、最終製品(例えば、消費成否に)から悪臭低減材料を分離し、GC−MSおよび/またはNMRを含む分析方法によって同定してもよい。
直径40mmの平行な鋼鉄板と、500μmのギャップサイズを用い、TA instruments(ニューキャッスル、DE、USA)製のAR 550レオメーター/粘度計を用い、粘度を測定する。20s-1での高い剪断粘度は、対数剪断速度を0.1s-1〜25s-1まで21℃で3分間かけて変えることによって得られる。
試験する芳香混合物中の各PRMについて、飽和蒸気圧(VP)値を計算する。個々のPRMのVPは、Advanced Chemistry Development Inc.(ACD/Labs)(トロント、カナダ)から入手可能なVP Computational Model、バージョン14.02(Linux)を用いて計算され、torrの単位で表される25°でのVP値を与える。ACD/実験室の蒸気圧モデルは、ACD/実験室モデルの装置の一部である。
試験する芳香混合物中の各PRMについて、オクタノール/水の分配係数のlof値(logP)を計算する。個々のPRMのlogP値は、Advanced Chemistry Development Inc.(ACD/Lab)(トロント、カナダ)から入手可能なConsensus logP Computational Model、バージョン14.02(Linux)を用いて計算され、無単位のlogP値が得られる。ACD/LabのConsensus logP Computational Modelは、ACD/実験室モデルの装置の一部である。
本明細書に記載するコンピュータによる値試験方法に関与する計算を行うために、必要な最初の情報は、試験する芳香中の各PRMの属性、芳香の割合としての重量%、モル%を含み、芳香組成物中のすべてのPRMが計算に含まれる。さらに、これらのPRMそれぞれについて、本明細書に記載する分子記述子の作成のための試験方法に従って決定されるように、分子構造、種々のコンピュータによって誘導される分子記述子の値も必要である。
(1)MACCS Structure−Data File(SDFファイルまたはSMILESファイルとも呼ばれる)の形態で、1つ以上の芳香成分の分子構造をアセンブリングする。
(2)バージョン1.0.1.3のwinMolconnプログラムを用い、適切なコンピュータで実施し、上述のSDFファイルまたはSMILESファイルを入力として用い、このプログラムから入手可能な分子記述子全体を計算する。
a.winMolconnの出力は、ASCIIテキストファイルの形態であり、典型的には、スペース区切りされており、入力ファイルのそれぞれの構造について、第1の列に構造識別子を含み、残りの列にそれぞれの分子記述子を含んでいる。
(3)スプレッドシートソフトウエアプログラムまたはある種の他の適切な技術を用い、テキストファイルを列に分ける。分子記述子のラベルは、得られた表の第1列にみつかる。
(4)分子記述子のラベルによって特定され、それぞれのモデルに必要な入力に対応する記述子の列を発見し、抽出する。
a.winMolconn分子記述子のラベルは、ケースセンシティブであることを注記しておく。
1.)入力分子記述子の値は、以下の4つの式において、上の方法によって決定されるような値である。
a)MORV=−8.5096+2.8597×(dxp9)+1.1253×(knotpv)−0.34484×(e1C2O2)−0.00046231×(idw)+3.3509×(idcbar)+0.11158×(n2pag22)
b)MORV=−5.2917+2.1741×(dxvp5)−2.6595×(dxvp8)+0.45297×(e1C2C2d)−0.6202×(c1C2O2)+1.3542×(CdCH2)+0.68105×(CaasC)+1.7129×(idcbar)
c)MORV=−0.0035+0.8028×(SHCsatu)+2.1673×(xvp7)−1.3507×(c1C1C3d)+0.61496×(c1C1O2)+0.00403×(idc)−0.23286×(nd2)
d)MORV=−0.9926 − 0.03882×(SdO) + 0.1869×(Ssp3OH)+2.1847×(xp7)+0.34344×(e1C3O2)−0.45767×(c1C2C3)+0.7684×(CKetone)
式(a)は、悪臭であるトランス−3−メチル−2−ヘキセン酸(カルボン酸系の悪臭)を減らすことにおける材料の有効性に関係する。
式(b)は、悪臭であるトリメチルアミン(アミン系の悪臭)を減らすことにおける材料の有効性に関係する。
式(c)は、悪臭である3−メルカプト−3−メチルヘキサン−1−オール(チオール系の悪臭)を減らすことにおける材料の有効性に関係する。
式(d)は、悪臭であるスカトール(インドール系の悪臭)を減らすことにおける材料の有効性に関係する。
2.)本明細書の目的のために、材料のMORVは、式(1)(a)〜(1)(d)からの最も高いMORV値である。
3.)上の式(1)(a)〜(1)(d)からのすべてのMORV値が0.5より大きい場合、その材料は、Universal MORVを有する。
本発明の消費製品で使用するのに適したブロッカー材料は、香りの検知を妨害せずに悪臭を減らすという能力について選択される。材料の選択は、臭気の強さをランク付けするための2つの参照スケールから試験サンプル材料に2つの指数を割り当てることによって行われる。この2つの参照スケールは、Fragrance Fidelity Index(FFI)スケールとBlocker Index(BI)スケールである。FFIは、試験サンプル材料が、別の香料と合わせたときに緩衝し得る検知可能な臭気を付与する能力をランク分けしており、BIは、試験サンプル材料が悪臭の検知を減らす能力をランク分けしている。FFIおよびBIの参照スケールについて、試験サンプルに指数を割り当てるための2つの方法を以下に与える。
FFI参照スケールについて、試験サンプルにFFIを割り当てるための方法の第1の工程は、FFI参照見本を作成することである。このスケールのための見本は、きれいな布地見本を既知の量の既知の濃度のエチルバニリン溶液で処理することによって作られる。この試験のための布地見本は、EMCからPC50/50として注文される白いポリコットン編み地(10センチメートル×10センチメートル(4インチ×4インチ))の見本である。供給業者は、最初に見本を作成するように指示され、この作成は、香料を含まない洗剤で2回洗浄し、3回すすぐことを含む。
50%/50% EtOH/水を、25ppm、120ppm、1000ppmの濃度で希釈剤として用い、エチルバニリンの3種類の溶液を製造する。3種類の溶液13μLをそれぞれピペットできれいな見本の中央に置き、見本の中央部に直径約1cmの溶液を得た。これにより、見本にピペットで置かれた溶液の濃度に基づき、3種類の異なる臭気レベルの官能スケールを作成する。換気フードの中で30分間乾燥させた後、見本をアルミホイル箔で包み、処理した見本に臭気が混入するのを防ぐ。きれいな未処理の見本も、FFIスケールの臭気強度について、最も低い参照固定点として含まれる。FFI参照スケール見本は、0.5〜12時間以内に使用し、12時間後には廃棄すべきである。グレーダーが試験サンプルを評価するとき、見本をスケール固定点として使用し、表7に示されるようなFragrance Fidelity Index(FFI)を割り当てる。
きれいな見本を13μLの既知の濃度の試験サンプル材料で処理し、きれいな見本の上に約1cmの溶液を得る。参照見本と同様に、試験サンプル材料見本を換気フードの中で30分間乾燥させ、次いで、汚染を防ぐためにアルミニウム箔で包む。試験材料見本およびFFI参照見本は、互いに2時間以内に製造すべきである。試験材料見本は、0.5〜12時間以内に使用し、12時間後には廃棄しなければならない。
少なくとも2の香気判定者/専門的なグレーダーを用い、試験サンプルにFFIグレードを割り当てる。香気判定者/専門的なグレーダーは、見本を、鼻の中央部を覆うように鼻から2.5センチメートル(1インチ)の位置に保持し、試験サンプルを布地の上にピペットで置くことによって試験サンプル見本の臭いをかぎ、次いで、FFI参照スケール固定見本を参照として使用し、試験サンプルにFFIグレードを割り当てる。試験サンプル見本に、表9に示されるFFIスケールについて、FFIグレードまたはいくつかの数を割り当てる。試験サンプル材料が、3より大きなグレードに割り当てられる場合、その試験材料は、ブロッカー材料ではなく、または、低い濃度で悪臭ブロッカー機能を有するかどうかを決定するために、材料濃度を下げ、再評価する必要がある。
BI参照スケールについて、試験サンプルにBIを割り当てるための方法の第1の工程は、BI参照見本を作成することである。このスケールのための見本は、きれいな布地見本を既知の量の既知の濃度のイソ吉草酸溶液で処理することによって作られる。この試験のための布地見本は、EMCからPC50/50として注文される白いポリコットン編み地(10センチメートル×10センチメートル(4インチ×4インチ))の見本である。供給業者は、最初に見本を作成するように指示され、この作成は、香料を含まない洗剤で2回洗浄し、3回すすぐことを含む。
50%/50%のEtOH/水を希釈剤として用い、0.08%イソ吉草酸の1種類の溶液を製造する。BIスケールは、悪臭を適用していない1つのきれいな見本を含む。3種類の他の見本は、それぞれ、異なる体積の0.08%イソ吉草酸が適用される。1つのきれいな見本には、2μLの0.08%イソ吉草酸溶液をピペットで置き、次の見本には5μLの0.08%イソ吉草酸溶液をピペットで置き、最後のきれいな見本には、20μLのイソ吉草酸をピペットで置く。これらの溶液は、見本の中央部にピペットで置かれる。これにより、見本にピペットで置かれた0.08%イソ吉草酸溶液の体積に基づき、3種類の異なる臭気レベルの官能スケールを作成する。換気フードの中で30分間乾燥させた後、見本をアルミホイル箔で包み、処理した見本に臭気が混入するのを防ぐ。きれいな未処理の見本も、BIスケールの臭気強度について、最も低い参照固定点として含まれる。BI参照スケール見本は、0.5〜12時間以内に使用し、12時間後には廃棄すべきである。グレーダーが試験サンプルを評価するとき、見本をスケール固定点として使用し、表12に示されるようなBlocker Index(BI)を割り当てる。
BIを評価するために、試験材料を悪臭のする見本に適用し、試験材料の悪臭をどのようにブロックするかを決定する。悪臭のついた見本は、きれいな見本を20μLの0.08%イソ吉草酸溶液で処理することによって作られる。イソ吉草酸で処理された悪臭のついた見本を換気フード中、30分間乾燥させる。悪臭のついた見本を乾燥させた後、既知の濃度の試験材料溶液(1ppm〜100ppm)を、悪臭のついた見本にピペットで置く。試験材料溶液を、イソ吉草酸溶液を適用し、直径約1cmのスポットを作った場所の上から試験材料溶液を適用する。BI参照見本と同様に、イソ吉草酸+試験材料見本を換気フードの中で30分間乾燥させ、次いで、汚染を防ぐためにアルミニウム箔で包む。イソ吉草酸+試験材料の見本およびBI参照見本は、互いに2時間以内に製造すべきである。イソ吉草酸+試験材料見本は、参照見本と同様に1〜12時間で塩得しなければならない。BIを決定するために、時には、試験材料を約1〜約100ppmのいくつかのレベルで評価する必要がある。
少なくとも2の香気判定者/専門的なグレーダーを用い、試験サンプルにBIグレードを割り当てる。専門的なグレーダーは、見本を、鼻の中央部を覆うように鼻から2.5センチメートル(1インチ)の位置に保持し、試験サンプルを布地の上にピペットで置くことによってイソ吉草酸/試験材料見本の臭いをかぎ、次いで、BI参照スケール固定見本を参照として使用し、イソ吉草酸/試験材料見本にBIグレードを割り当てる。試験サンプル見本に、表のBIスケールについて、BIグレードまたはいくつかの数を割り当てる。イソ吉草酸+試験材料見本の周囲がBI参照スケールで3より大きい場合には、この材料がブロッカーではなく、ブロッカー機能を達成するために、試験材料の濃度を下げる必要があることを示す。
悪臭制御化合物が、低い濃度で優れた悪臭制御を与えるという好ましい挙動の非限定例を以下にいくつか示す。これらの非限定的なデータは、悪臭がブロックされ、マスキングされているのではないさらなる匹敵するデータを与える。
以下の実施例は、悪臭制御化合物が高濃度で臭気ブロッキング(BI>2.5)を示すことができなかった場合に、もっと低い濃度で合格するかどうかを再試験すべきであることを示す。
本発明において、嗅覚によって気づくことができるようになる前に、ブレンドは、もっと割合が高い生成物の組成物で有用であるため、ブレンドは、もっと強力な悪臭低減を可能にする。以下は、悪臭低減化合物の非限定例である。
以下の悪臭低減悪臭低減組成物を、列挙した成分を合わせることによって製造する。すべての成分は、全悪臭低減組成物の重量パーセントである。
悪臭低減組成物を含有する、布地清浄組成物として使用するための液体組成物の例
実施例4に示される組成物を利用して、悪臭低減組成物を用いて布地清浄噴霧組成物を調製する。
Claims (12)
- 空気または布地清浄組成物であって、粘度が、約1mPa・s〜約50,000mPa・sであり、前記清浄組成物が、清浄組成物全体の重量を基準として、
(a)総量の0.0001%〜0.07%の1〜20種類の悪臭低減材料であって、1,1,2,3,3−ペンタメチル−1,2,3,5,6,7−ヘキサヒドロ−4H−インデン−4−オン;3a,4,5,6,7,7a−ヘキサヒドロ−1H−4,7−メタノインデン−6−イルアセテート;1−((2−(tert−ブチル)シクロヘキシル)オキシ)ブタン−2−オール;2−(8−イソプロピル−6−メチルビシクロ[2.2.2]オクタ−5−エン−2−イル)−1,3−ジオキソラン;(E)−オキサシクロヘキサデカ−13−エン−2−オン;(Z)−シクロオクタ−4−エン−1−イルメチルカーボネート;7−メチルオクチルアセテート;ドデカン酸エチル;4,5−エポキシ−4,11,11−トリメチル−8−メチレンビシクロ(7.2.0)ウンデカン;1,3,4,6,7,8α−ヘキサヒドロ−1,1,5,5−テトラメチル−2H−2,4α−メタノフタレン−8(5H)−オン;8,8−ジメチル−3a,4,5,6,7,7a−ヘキサヒドロ−1H−4,7−メタノインデン−6−イルプロピオネート;(Z)−ノナ−6−エン−1−オール;(E)−デカ−4−エナール;(1−メチル−2−((1,2,2−トリメチルビシクロ[3.1.0]ヘキサン−3−イル)メチル)シクロプロピル)メタノール;2,6−ジ−tert−ブチル−4−メチルフェノール;(E)−3,7−ジメチルオクタ−2,6−ジエン−1−イルパルミテート;3−メチル−5−フェニルペンタン−1−オール;3−(3,3−ジメチル−2,3−ジヒドロ−1H−インデン−5−イル)プロパナール;2,2,6,6,7,8,8−ヘプタメチルデカヒドロ−2H−インデノ[4,5−b]フラン;(R,Z)−1−(2,6,6−トリメチルシクロヘキサ−2−エン−1−イル)ペンタ−1−エン−3−オン;(E)−3,7−ジメチルオクタ−1,3,6−トリエン;1−(5,5−ジメチルシクロヘキサ−1−エン−1−イル)ペンタ−4−エン−1−オン;(E)−シクロヘキサデカ−5−エン−1−オン;2−イソプロピル−5−メチルフェノール;およびこれらの混合物からなる群から選択される悪臭低減材料と、
(b)0.01%〜3%の可溶化剤と、
(c)1つ以上の香料原材料であって、前記清浄組成物が、1:20,000〜3000:1の前記悪臭低減材料の部分対香料の部分の重量比率を有する香料原材料と、
(d)90%〜99.5%の水
を含む、空気または布地清浄組成物。 - 前記総量の悪臭低減材料は、Blocker Indexが3未満であり、および/またはBlocker Indexの平均が3〜0.001である、請求項1に記載の清浄組成物。
- 前記悪臭低減材料は、それぞれ、MORVが少なくとも0.5である、請求項1に記載の清浄組成物。
- 前記悪臭低減材料は、それぞれ、MORVが少なくとも0.5である、請求項2に記載の清浄組成物。
- 前記総量の悪臭低減材料は、Fragrance Fidelity Indexの平均が3〜0.001であるか、または、前記総量の悪臭低減材料中の悪臭低減材料は、それぞれ、Fragrance Fidelity Indexが3未満である、請求項1に記載の清浄組成物。
- 請求項1に記載の清浄組成物であって、前記組成物は、少なくとも12個の炭素原子を含むイソアルカン、四級アミン部分を含む化合物、潤滑剤、さらなる溶媒グリコール、アルコール、シリコーン、防腐剤、抗菌剤、pH調整剤、キャリア、昆虫忌避剤、金属塩、シクロデキストリン、機能性ポリマー、消泡剤、酸化防止剤、酸化剤、キレート化剤、およびこれらの混合物からなる群から選択される補助成分を含む、清浄組成物。
- 請求項1に記載の清浄組成物であって、1,1,2,3,3−ペンタメチル−1,2,3,5,6,7−ヘキサヒドロ−4H−インデン−4−オン;3a,4,5,6,7,7a−ヘキサヒドロ−1H−4,7−メタノインデン−6−イルアセテート;1−((2−(tert−ブチル)シクロヘキシル)オキシ)ブタン−2−オール;2−(8−イソプロピル−6−メチルビシクロ[2.2.2]オクタ−5−エン−2−イル)−1,3−ジオキソラン;(E)−オキサシクロヘキサデカ−13−エン−2−オン;(Z)−シクロオクタ−4−エン−1−イルメチルカーボネート;7−メチルオクチルアセテート;ドデカン酸エチル;4,5−エポキシ−4,11,11−トリメチル−8−メチレンビシクロ(7.2.0)ウンデカン;1,3,4,6,7,8α−ヘキサヒドロ−1,1,5,5−テトラメチル−2H−2,4α−メタノフタレン−8(5H)−オン;8,8−ジメチル−3a,4,5,6,7,7a−ヘキサヒドロ−1H−4,7−メタノインデン−6−イルプロピオネート;(Z)−ノナ−6−エン−1−オール;(E)−デカ−4−エナール;(1−メチル−2−((1,2,2−トリメチルビシクロ[3.1.0]ヘキサン−3−イル)メチル)シクロプロピル)メタノール;2,6−ジ−tert−ブチル−4−メチルフェノール;(E)−3,7−ジメチルオクタ−2,6−ジエン−1−イルパルミテート;3−メチル−5−フェニルペンタン−1−オール;3−(3,3−ジメチル−2,3−ジヒドロ−1H−インデン−5−イル)プロパナール;2,2,6,6,7,8,8−ヘプタメチルデカヒドロ−2H−インデノ[4,5−b]フラン;(R,Z)−1−(2,6,6−トリメチルシクロヘキサ−2−エン−1−イル)ペンタ−1−エン−3−オン;(E)−3,7−ジメチルオクタ−1,3,6−トリエン;1−(5,5−ジメチルシクロヘキサ−1−エン−1−イル)ペンタ−4−エン−1−オン;(E)−シクロヘキサデカ−5−エン−1−オン;2−イソプロピル−5−メチルフェノール;およびこれらの混合物からなる群から選択される、総量の0.0001%〜0.07%の3〜20種類の悪臭低減材料を含む、清浄組成物。
- 請求項1に記載の清浄組成物であって、1,1,2,3,3−ペンタメチル−1,2,3,5,6,7−ヘキサヒドロ−4H−インデン−4−オン;3a,4,5,6,7,7a−ヘキサヒドロ−1H−4,7−メタノインデン−6−イルアセテート;1−((2−(tert−ブチル)シクロヘキシル)オキシ)ブタン−2−オール;2−(8−イソプロピル−6−メチルビシクロ[2.2.2]オクタ−5−エン−2−イル)−1,3−ジオキソラン;(E)−オキサシクロヘキサデカ−13−エン−2−オン;(Z)−シクロオクタ−4−エン−1−イルメチルカーボネート;7−メチルオクチルアセテート;ドデカン酸エチル;4,5−エポキシ−4,11,11−トリメチル−8−メチレンビシクロ(7.2.0)ウンデカン;1,3,4,6,7,8α−ヘキサヒドロ−1,1,5,5−テトラメチル−2H−2,4α−メタノフタレン−8(5H)−オン;8,8−ジメチル−3a,4,5,6,7,7a−ヘキサヒドロ−1H−4,7−メタノインデン−6−イルプロピオネート;(Z)−ノナ−6−エン−1−オール;(E)−デカ−4−エナール;(1−メチル−2−((1,2,2−トリメチルビシクロ[3.1.0]ヘキサン−3−イル)メチル)シクロプロピル)メタノール;2,6−ジ−tert−ブチル−4−メチルフェノール;(E)−3,7−ジメチルオクタ−2,6−ジエン−1−イルパルミテート;3−メチル−5−フェニルペンタン−1−オール;3−(3,3−ジメチル−2,3−ジヒドロ−1H−インデン−5−イル)プロパナール;2,2,6,6,7,8,8−ヘプタメチルデカヒドロ−2H−インデノ[4,5−b]フラン;(R,Z)−1−(2,6,6−トリメチルシクロヘキサ−2−エン−1−イル)ペンタ−1−エン−3−オン;(E)−3,7−ジメチルオクタ−1,3,6−トリエン;1−(5,5−ジメチルシクロヘキサ−1−エン−1−イル)ペンタ−4−エン−1−オン;(E)−シクロヘキサデカ−5−エン−1−オン;2−イソプロピル−5−メチルフェノール;およびこれらの混合物からなる群から選択される、総量の0.0001%〜0.07%の4〜20種類の悪臭低減材料を含む、清浄組成物。
- 請求項1に記載の清浄組成物であって、1,1,2,3,3−ペンタメチル−1,2,3,5,6,7−ヘキサヒドロ−4H−インデン−4−オン;3a,4,5,6,7,7a−ヘキサヒドロ−1H−4,7−メタノインデン−6−イルアセテート;1−((2−(tert−ブチル)シクロヘキシル)オキシ)ブタン−2−オール;2−(8−イソプロピル−6−メチルビシクロ[2.2.2]オクタ−5−エン−2−イル)−1,3−ジオキソラン;(E)−オキサシクロヘキサデカ−13−エン−2−オン;(Z)−シクロオクタ−4−エン−1−イルメチルカーボネート;7−メチルオクチルアセテート;ドデカン酸エチル;4,5−エポキシ−4,11,11−トリメチル−8−メチレンビシクロ(7.2.0)ウンデカン;1,3,4,6,7,8α−ヘキサヒドロ−1,1,5,5−テトラメチル−2H−2,4α−メタノフタレン−8(5H)−オン;8,8−ジメチル−3a,4,5,6,7,7a−ヘキサヒドロ−1H−4,7−メタノインデン−6−イルプロピオネート;(Z)−ノナ−6−エン−1−オール;(E)−デカ−4−エナール;(1−メチル−2−((1,2,2−トリメチルビシクロ[3.1.0]ヘキサン−3−イル)メチル)シクロプロピル)メタノール;2,6−ジ−tert−ブチル−4−メチルフェノール;(E)−3,7−ジメチルオクタ−2,6−ジエン−1−イルパルミテート;3−メチル−5−フェニルペンタン−1−オール;3−(3,3−ジメチル−2,3−ジヒドロ−1H−インデン−5−イル)プロパナール;2,2,6,6,7,8,8−ヘプタメチルデカヒドロ−2H−インデノ[4,5−b]フラン;(R,Z)−1−(2,6,6−トリメチルシクロヘキサ−2−エン−1−イル)ペンタ−1−エン−3−オン;(E)−3,7−ジメチルオクタ−1,3,6−トリエン;1−(5,5−ジメチルシクロヘキサ−1−エン−1−イル)ペンタ−4−エン−1−オン;(E)−シクロヘキサデカ−5−エン−1−オン;2−イソプロピル−5−メチルフェノール;およびこれらの混合物からなる群から選択される、総量の0.0001%〜0.07%の5〜20種類の悪臭低減材料を含む、清浄組成物。
- 請求項1〜9に記載の清浄組成物を含むデバイスであって、前記デバイスは、トリガー式噴霧器、手動のエアロゾル噴霧器、自動エアロゾル噴霧器、芯を含有するデバイス、ファンデバイスおよびサーマルドロップオンデマンドデバイスからなる群から選択される、デバイス。
- 悪臭を制御する方法であって、悪臭を含む場所および/または悪臭を発生しそうな場所と、請求項1〜10のいずれか一項に記載の組成物およびその混合物からなる群から選択される組成物とを接触させることを含む方法。
- 前記接触させる工程が、前記場所と、十分な量の請求項1〜9のいずれか一項に記載の組成物とを接触させ、前記場所の計画された表面積1平方メートルあたり、0.1ミリグラム(mg)〜10,000mgの前記総量の悪臭低減材料を有する前記悪臭を与えることを含む、請求項11に記載の方法。
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Patent Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH06220495A (ja) * | 1993-01-25 | 1994-08-09 | Lion Corp | 液体漂白剤組成物 |
| JPH1017894A (ja) * | 1996-07-04 | 1998-01-20 | Kao Corp | 液体漂白剤組成物 |
| JP2002336337A (ja) * | 2001-05-14 | 2002-11-26 | Lion Corp | 消臭防汚剤 |
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