JP2006152038A - Concentrated liquid detergent composition - Google Patents

Concentrated liquid detergent composition Download PDF

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JP2006152038A
JP2006152038A JP2004341313A JP2004341313A JP2006152038A JP 2006152038 A JP2006152038 A JP 2006152038A JP 2004341313 A JP2004341313 A JP 2004341313A JP 2004341313 A JP2004341313 A JP 2004341313A JP 2006152038 A JP2006152038 A JP 2006152038A
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mass
viscosity
concentrated liquid
liquid detergent
detergent composition
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JP4681858B2 (en
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Fumihito Inageda
文仁 稲毛田
Mitsuo Sado
光男 佐渡
Tetsuo Kondo
哲郎 近藤
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Diversey IP International BV
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a concentrated liquid detergent composition which is excellent in detergency and viscosity stability due to temperature variation and is diluted for use by means of a dilution apparatus utilizing water pressure of a water supply system. <P>SOLUTION: The concentrated liquid detergent composition having a viscosity at 25°C of 10-200 mPa s comprises (A) 30-70 mass% of an alkylbenzene sulfonate having a 8-18C alkyl group, (B) 10-40 mass% of a polyoxyalkylalkylene-type surfactant in which ethylene oxide and/or propylene oxide in an average amount of 2-20 moles is added to a 8-18C primary or secondary alcohol, (C) 4-15 mass% of one or more selected from ethanol, propanol and isopropanol, (D) water, and (E) 1-5 mass% of a higher fatty acid alkanolamide. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、ホテル、レストラン、学校給食、社員食堂、食品加工工場、飲食店の厨房や作業場等における食器、調理器具、床等の業務用の洗浄剤として好適に用いられる業務用の濃縮液体洗浄剤組成物に関する。更に詳しくは、洗浄力が優れることはもとより、温度変化による粘度安定性に優れた、水道の水圧を利用した希釈装置で希釈して使用することを特徴とする、業務用の濃縮液体洗浄剤組成物に関する。   The present invention is a concentrated liquid cleaning for business use suitably used as a business cleaning agent for tableware, cooking utensils, floors, etc. in hotels, restaurants, school lunches, employee cafeterias, food processing factories, restaurant kitchens, workshops, etc. The agent composition. More specifically, the concentrated liquid detergent composition for business use is characterized by having excellent detergency as well as excellent viscosity stability due to temperature change and being diluted with a diluter using tap water pressure. Related to things.

従来、食器洗い用洗剤として用いられる中性洗浄剤組成物のうち、業務用のものは、界面活性剤成分濃度が10〜15質量%程度に調整したものを一斗缶(容量18リットル)やプラスチック製の容器に充填したものが主流であったが、容器の廃棄コストの高騰や環境に対する意識の高まり、洗剤の省スペース化の要望等から、近年、洗剤容器を減容化するとともに、洗剤を濃縮化することが主流になりつつある。   Conventionally, among neutral detergent compositions used as dishwashing detergents, those for commercial use are those prepared with a surfactant component concentration adjusted to about 10 to 15% by mass (capacity 18 liters) or plastic In most cases, however, the volume of detergent containers has been reduced, and the volume of detergent containers has been reduced in recent years due to rising costs for disposal of containers, increasing awareness of the environment, and demand for space-saving detergents. Concentration is becoming mainstream.

このような、濃縮化された洗浄剤組成物としては、例えば、直鎖アルキルベンゼンスルホン酸塩、ポリオキシエチレンアルキルエーテル、高級脂肪酸ジエタノールアミド、特定のアリールカルボン酸またはその塩もしくはエステルを、特定の割合で含有する、低温安定性及び色相安定性に優れた台所用濃縮液体洗浄剤組成物や(特許文献1参照)、特定のアルキルベンゼンスルホン酸塩、特定のポリオキシエチレン型界面活性剤を特定の割合で含有し、粘度低下剤として、エタノール、プロピレングリコール及びポリエチレングリコールから選ばれる1種以上を含有し、高級脂肪酸アルカノールアミドの含有量が特定量以下である、低温安定性及び色相安定性に優れた台所用濃縮液体洗浄剤組成物や(特許文献2参照)、直鎖アルキルベンゼンスルホン酸塩、ポリオキシエチレンアルキル硫酸エステル塩、ポリオキシエチレンアルキルエーテル、エタノール、プロピレングリコール、ポリプロピレングリコール及びポリエチレングリコールから選ばれる1種以上のハイドロトロープ剤、クエン酸、リンゴ酸、マレイン酸、フタル酸及びこれらの塩から選ばれる1種以上を特定の割合で含有する、低温安定性にすぐれ、水ぎれ性やすすぎ性の改善された台所用濃縮液体洗浄剤組成物が開示されている(特許文献3参照)。   Examples of such a concentrated detergent composition include, for example, linear alkylbenzene sulfonate, polyoxyethylene alkyl ether, higher fatty acid diethanolamide, a specific arylcarboxylic acid or a salt or ester thereof in a specific ratio. Concentrated liquid detergent composition for kitchen and excellent in low-temperature stability and hue stability (see Patent Document 1), specific alkylbenzene sulfonate, specific polyoxyethylene surfactant 1 or more selected from ethanol, propylene glycol and polyethylene glycol as a viscosity reducing agent, and the content of higher fatty acid alkanolamide is not more than a specific amount, and is excellent in low temperature stability and hue stability Concentrated liquid detergent composition for kitchens (see Patent Document 2), linear alkylbenzene One or more hydrotropes selected from sulfonate, polyoxyethylene alkyl sulfate, polyoxyethylene alkyl ether, ethanol, propylene glycol, polypropylene glycol and polyethylene glycol, citric acid, malic acid, maleic acid, phthalic acid And a concentrated liquid detergent composition for kitchen, which contains at least one selected from these salts in a specific ratio and has excellent low-temperature stability, improved water drainability and rinsability (Patent Documents) 3).

また、特定のスルフォン酸エタノールアミン塩からなる陰イオン界面活性剤、特定のポリオキシエチレンアルキルエーテルからなる非イオン界面活性剤、特定の脂肪酸アルカノールアミドからなる非イオン界面活性剤を特定の割合で含有し、その組成物中に水を含まない、粘度特性に優れた高濃度液体中性洗浄剤組成物や(特許文献4参照)、直鎖アルキルベンゼンスルホン酸カリウム、脂肪酸アルカノールアミド及び/又は高級アルコールのエチレンオキサイド付加物であるノニオン界面活性剤を特定の割合で含有し、エタノール、プロピレングリコール及びポリエチレングリコールの中の少なくとも1種並びに塩化ナトリウム及びベタイン型両性界面活性剤の中の少なくとも1種を特定の割合で含有する、高濃度であってもペースト状であったり、水に投入した時にゲル化したりすることがない高濃度中性液体洗浄剤組成物が開示されている(特許文献5参照)。   In addition, anionic surfactants consisting of a specific sulfonic acid ethanolamine salt, nonionic surfactants consisting of a specific polyoxyethylene alkyl ether, and nonionic surfactants consisting of a specific fatty acid alkanolamide in a specific ratio And a high-concentration liquid neutral detergent composition excellent in viscosity characteristics and containing no water (see Patent Document 4), potassium linear alkylbenzenesulfonate, fatty acid alkanolamide and / or higher alcohol. A nonionic surfactant that is an ethylene oxide adduct is contained in a specific ratio, and at least one of ethanol, propylene glycol, and polyethylene glycol and at least one of sodium chloride and betaine-type amphoteric surfactants are specified. Contained in a proportion, even at high concentrations, it is pasty Or Tsu, never or gel when introduced into water highly concentrated neutral liquid detergent composition is disclosed (see Patent Document 5).

また、洗剤の希釈濃度を一定にするために水道の水圧を利用したアスピレーターにより洗剤を吸入し、水道水と混合希釈する装置が考え出されている。この装置は、水道配管の途中にオリフィス部と洗剤吸い込み口を設け、水道水がオリフィス部を通過する際に発生する負圧により、洗剤を吸い込み、この吸い込んだ洗剤を水道水と混合させて希釈するものであり、希釈倍率の調整は洗剤吸い込み口に適当な口径のチップを選択しセットして洗剤の吸い込み量を調整することにより行われている。   In order to keep the detergent dilution concentration constant, an apparatus has been devised in which detergent is inhaled by an aspirator using the tap water pressure and mixed with tap water. This device is provided with an orifice and a detergent suction port in the middle of the water pipe, and the detergent is sucked in by the negative pressure generated when the tap water passes through the orifice, and this sucked detergent is mixed with the tap water for dilution. The dilution ratio is adjusted by selecting and setting a tip having an appropriate diameter in the detergent suction port and adjusting the detergent suction amount.

特許第2981451号公報Japanese Patent No. 2981451 特許第3250981号公報Japanese Patent No. 3250981 特許第3279485号公報Japanese Patent No. 3279485 特許第3167616号公報Japanese Patent No. 3167616 特許第3012768号公報Japanese Patent No. 3012768

上記のような水道の水圧を利用した希釈装置を使用する場合には洗剤の原液の粘度が450mPa・s以上あると水圧では洗剤が少量しか供給されず30倍以下の使用希釈倍率の洗剤希釈液を得ることが困難である。さらに、温度による洗剤原液の粘度の上昇が大きいと洗剤が吸い込みにくくなり洗剤希釈倍率が一定しなくなる。   When using a dilution device that utilizes the water pressure of the water supply as described above, if the viscosity of the detergent stock solution is 450 mPa · s or more, only a small amount of detergent is supplied at the water pressure, and the detergent dilution liquid has a use dilution ratio of 30 times or less. Is difficult to get. Furthermore, if the viscosity of the detergent stock solution increases greatly due to temperature, the detergent is difficult to suck and the detergent dilution ratio is not constant.

上記特許文献1〜5においては、低温安定性や色相安定性の改善がなされているが、洗剤原液の粘度が高い点や、温度が低くなると粘度が上昇してしまう点など水道の水圧を利用した希釈装置で希釈して使用することには適さない。   In the above Patent Documents 1 to 5, although the low temperature stability and hue stability are improved, the water pressure of the tap water is used such that the viscosity of the detergent stock solution is high or the viscosity increases when the temperature is low. It is not suitable for use after diluting with a diluting apparatus.

本発明は、上記事情に鑑みなされたもので、洗浄力が優れることはもとより、温度変化による粘度安定性に優れた、水道の水圧を利用した希釈装置で希釈して使用することを特徴とする、食器、調理器具、床等の業務用の洗浄剤として好適に用いられる濃縮液体洗浄剤組成物を提供することをその目的とする。   The present invention has been made in view of the above circumstances, and is characterized in that it is used by diluting with a diluting device using water pressure of tap water, not only having excellent detergency but also excellent viscosity stability due to temperature change. It is an object of the present invention to provide a concentrated liquid detergent composition that is suitably used as a commercial detergent for tableware, cooking utensils, floors and the like.

本発明者らは、上記の目的を達成するべく鋭意検討を重ねた結果、アルキル基の炭素数が8〜18のアルキルベンゼンスルホン酸塩、炭素数8〜18の第1級又は第2級アルコールに平均で2〜20モルのエチレンオキシド又はプロピレンオキシドが付加したポリオキシアルキルアルキレン型界面活性剤、粘度低下剤としてエタノール、プロパノール、イソプロパノールから選ばれる1種以上及び水とを特定の割合で組み合わせることにより、洗浄力が優れており、貯蔵安定性が高く、温度変化による粘度安定性に優れた、水道の水圧を利用した希釈装置を使用することを特徴とする、食器、調理器具、床等の業務用の洗浄剤として好適な濃縮液体洗浄剤組成物が得られるという知見を得た。本発明はかかる知見に基づいて完成したものである。
すなわち、本発明は、以下の濃縮液体洗浄剤組成物を提供するものである。
As a result of intensive studies to achieve the above object, the present inventors have found that alkylbenzene sulfonates having 8 to 18 carbon atoms in the alkyl group and primary or secondary alcohols having 8 to 18 carbon atoms. By combining polyoxyalkylalkylene type surfactants with an average of 2 to 20 moles of ethylene oxide or propylene oxide, one or more selected from ethanol, propanol and isopropanol as viscosity reducing agents, and water at a specific ratio, For industrial use such as tableware, cooking utensils, floors, etc., characterized by using a diluting device that uses tap water pressure, which has excellent detergency, high storage stability, and excellent viscosity stability due to temperature changes The present inventors have found that a concentrated liquid cleaning composition suitable as a cleaning agent can be obtained. The present invention has been completed based on such findings.
That is, the present invention provides the following concentrated liquid detergent composition.

1.(A)アルキル基の炭素数が8〜18のアルキルベンゼンスルホン酸塩30〜70質量%、(B)炭素数8〜18の第1級又は第2級アルコールに平均で2〜20モルのエチレンオキシド及び/又はプロピレンオキシドが付加したポリオキシアルキルアルキレン型界面活性剤10〜40質量%、(C)粘度低下剤としてエタノール、プロパノール、イソプロパノールから選ばれる1種以上を4〜15質量%及び(D)水を含有し、且つ、(A)成分と(B)成分との合計含有量が、60質量%以上で、JIS Z 8803「単一円筒形回転粘度計による粘度測定方法」による25℃における粘度が10〜200mPa・sであり、水道の水圧を利用した希釈装置で使用されることを特徴とする濃縮液体洗浄剤組成物。
2.さらに、(E)高級脂肪酸アルカノールアミドを1〜5質量%含有することを特徴とする上記1の濃縮液体洗浄剤組成物。
3.上記(A)成分がアルキルベンゼンスルホン酸アミン塩である上記1又は2の濃縮液体洗浄剤組成物。
4.上記アルキルベンゼンスルホン酸アミン塩がアルキルベンゼンスルホン酸イソプロピルアミン塩である上記3の濃縮液体洗浄剤組成物。
5.組成物の5℃における粘度と25℃における粘度との差が250mPa・s以下であることを特徴とする上記1〜4の濃縮液体洗浄剤組成物。
1. (A) 30 to 70% by mass of an alkylbenzene sulfonate having 8 to 18 carbon atoms in the alkyl group, and (B) 2 to 20 mol of ethylene oxide on average in a primary or secondary alcohol having 8 to 18 carbon atoms and 10 to 40% by mass of a polyoxyalkylalkylene surfactant to which propylene oxide is added, (C) 4 to 15% by mass of one or more selected from ethanol, propanol and isopropanol as viscosity reducing agents and (D) water And the total content of the component (A) and the component (B) is 60% by mass or more, and the viscosity at 25 ° C. according to JIS Z 8803 “viscosity measurement method using a single cylindrical rotational viscometer” It is 10-200 mPa * s, and is used with the dilution apparatus using the water pressure of a tap water, The concentrated liquid cleaning composition characterized by the above-mentioned.
2. Furthermore, (E) 1-5 mass% of higher fatty acid alkanolamide is contained, The said 1 concentrated liquid cleaning composition characterized by the above-mentioned.
3. The concentrated liquid detergent composition according to 1 or 2 above, wherein the component (A) is an alkylbenzenesulfonic acid amine salt.
4). 4. The concentrated liquid detergent composition according to 3 above, wherein the alkylbenzenesulfonic acid amine salt is an alkylbenzenesulfonic acid isopropylamine salt.
5. 4. The concentrated liquid detergent composition as described in any one of 1 to 4 above, wherein the difference between the viscosity at 5 ° C. and the viscosity at 25 ° C. is 250 mPa · s or less.

本発明の濃縮液体洗浄剤組成物は、アルキル基の炭素数が8〜18のアルキルベンゼンスルホン酸塩(A成分)と、炭素数8〜18の第1級又は第2級アルコールに平均で2〜20モルのエチレンオキシド又はプロピレンオキシドが付加したポリオキシアルキルアルキレン型界面活性剤(B成分)と、粘度低下剤としてエタノール、プロパノール、イソプロパノールから選ばれる1種以上(C成分)と、水(D成分)とを特定の割合で組み合わせることにより、洗浄力が優れることはもとより、温度変化による粘度安定性に優れた効果を発揮し、水道の水圧を利用した希釈装置で30倍以下に希釈して使用されることを可能とした。また、本発明の濃縮液体洗浄剤組成物は、食器、調理器具、床等の業務用の洗浄剤として好適に用いることができる。   The concentrated liquid detergent composition of the present invention is an alkylbenzene sulfonate (component A) having 8 to 18 carbon atoms in the alkyl group and a primary or secondary alcohol having 8 to 18 carbon atoms on the average. Polyoxyalkylalkylene type surfactant (B component) to which 20 moles of ethylene oxide or propylene oxide are added, one or more (C component) selected from ethanol, propanol and isopropanol as viscosity reducing agents, and water (D component) In combination with a specific ratio, it exhibits excellent detergency as well as excellent viscosity stability due to temperature change, and is diluted to 30 times or less with a diluter using water pressure of tap water. Made it possible. Moreover, the concentrated liquid cleaning composition of this invention can be used suitably as business-use cleaning agents, such as tableware, a cooking appliance, a floor.

本発明の濃縮液体洗浄剤組成物(以下、「本組成物」ということがある。)は、必須成分として、上記(A)成分、(B)成分、(C)成分、(D)成分を含有している。   The concentrated liquid cleaning composition of the present invention (hereinafter sometimes referred to as “the present composition”) includes the above components (A), (B), (C), and (D) as essential components. Contains.

本発明に用いられる(A)成分は、洗浄力を確保するために配合されるもので、アルキル基の炭素数が8〜18のアルキルベンゼンスルホン酸塩が用いられる。上記(A)成分のアルキルベンゼンスルホン酸としては直鎖アルキルベンゼンスルホン酸が好ましい。上記(A)成分の塩としては、具体的には、ナトリウム塩、カリウム塩、アンモニウム塩、モノエタノールアミン塩、ジエタノールアミン塩、トリエタノールアミン塩、イソプロパノールアミン塩、イソプロピルアミン塩等が挙げられる。なお、上記直鎖アルキルベンゼンスルホン酸塩は、直鎖アルキルベンゼンスルホン酸と、水酸化ナトリウム、水酸化カリウム、モノエタノールアミン、ジエタノールアミン、トリエタノールアミン、イソプロパノールアミン、イソプロピルアミン等のアルカリ性を呈する物質との反応により得られるものであり、本組成物中に初めから直鎖アルキルベンゼンスルホン酸塩の形で配合してもよく、本組成物中に直鎖アルキルベンゼンスルホン酸を配合した後に、上記アルカリ性を呈する物質を加えて中和塩を形成させてもよい。なお、この(A)成分は、1種または2種以上を組み合わせて用いられる。   (A) component used for this invention is mix | blended in order to ensure detergency, and the alkylbenzenesulfonate whose carbon number of an alkyl group is 8-18 is used. As the alkylbenzene sulfonic acid of the component (A), linear alkyl benzene sulfonic acid is preferable. Specific examples of the salt of the component (A) include sodium salt, potassium salt, ammonium salt, monoethanolamine salt, diethanolamine salt, triethanolamine salt, isopropanolamine salt, isopropylamine salt and the like. The linear alkyl benzene sulfonate is a reaction between a linear alkyl benzene sulfonic acid and an alkaline substance such as sodium hydroxide, potassium hydroxide, monoethanolamine, diethanolamine, triethanolamine, isopropanolamine, and isopropylamine. In the present composition, it may be blended from the beginning in the form of a linear alkylbenzene sulfonate, and after blending the linear alkylbenzene sulfonic acid in the composition, the substance exhibiting alkalinity is added. In addition, neutralized salts may be formed. In addition, this (A) component is used 1 type or in combination of 2 or more types.

さらに、上記(A)成分は粘度安定性の点から、アルキルベンゼンスルホン酸アミン塩であることが好ましい。具体的にはアルキルベンゼンスルホン酸モノエタノールアミン塩、アルキルベンゼンスルホン酸ジエタノールアミン塩、アルキルベンゼンスルホン酸トリエタノールアミン塩、アルキルベンゼンスルホン酸イソプロパノールアミン塩、アルキルベンゼンスルホン酸イソプロピルアミン塩等が挙げられる。なかでもアルキルベンゼンスルホン酸イソプロピルアミン塩が特に好ましい。   Furthermore, the component (A) is preferably an alkylbenzenesulfonic acid amine salt from the viewpoint of viscosity stability. Specific examples include alkylbenzenesulfonic acid monoethanolamine salt, alkylbenzenesulfonic acid diethanolamine salt, alkylbenzenesulfonic acid triethanolamine salt, alkylbenzenesulfonic acid isopropanolamine salt, and alkylbenzenesulfonic acid isopropylamine salt. Of these, alkylbenzenesulfonic acid isopropylamine salt is particularly preferable.

また、(A)成分の配合量は、本組成物中に、30〜70質量%の範囲に設定される。この量が30質量%未満では洗浄力に乏しく、また70質量%を超えて配合しても、洗浄力の向上効果は飽和となる上、粘度安定性に乏しくなる。なかでも、洗浄力と粘度安定性の点から、40〜60質量%の範囲が好ましい。   Moreover, the compounding quantity of (A) component is set to the range of 30-70 mass% in this composition. If this amount is less than 30% by mass, the detergency is poor, and even if it exceeds 70% by mass, the effect of improving the detergency becomes saturated and the viscosity stability becomes poor. Especially, the point of 40-60 mass% is preferable from the point of a detergency and viscosity stability.

本発明に用いられる(B)成分としては、炭素数8〜18の第1級又は第2級アルコールに平均で2〜20モルのエチレンオキシド及び/又はプロピレンオキシドが付加したポリオキシアルキルアルキレン型界面活性剤が用いられる。この(B)成分は、洗浄力と粘度安定性を確保する目的で配合され、1種又は2種以上を組み合わせて用いられる。
これらのうち、洗浄力の点から、ポリオキシエチレンアルキルエーテルが好ましく、特に、炭素数が8〜15の直鎖又は分岐鎖のアルコールに、エチレンオキサイドを4〜15モル付加したものが好ましい。
As the component (B) used in the present invention, a polyoxyalkylalkylene type surface activity in which an average of 2 to 20 moles of ethylene oxide and / or propylene oxide is added to a primary or secondary alcohol having 8 to 18 carbon atoms. An agent is used. This (B) component is mix | blended in order to ensure detergency and viscosity stability, and is used 1 type or in combination of 2 or more types.
Among these, from the viewpoint of detergency, polyoxyethylene alkyl ether is preferable, and in particular, one obtained by adding 4 to 15 mol of ethylene oxide to a linear or branched alcohol having 8 to 15 carbon atoms is preferable.

また、(B)成分の配合量は、本組成物中に、10〜40質量%の範囲に設定される。この量が10質量%未満では洗浄力に乏しく、また40質量%を超えて配合すると、粘度安定性に乏しくなる。なかでも、洗浄力と粘度安定性の点から20〜40質量%の範囲が好ましい。   Moreover, the compounding quantity of (B) component is set to the range of 10-40 mass% in this composition. When this amount is less than 10% by mass, the detergency is poor, and when it exceeds 40% by mass, the viscosity stability becomes poor. Especially, the range of 20-40 mass% is preferable from the point of a detergency and viscosity stability.

また(A)成分及び(B)成分の合計配合量は60質量%以上であることが好ましい。
60%未満では濃縮液体洗浄剤として高希釈倍率に希釈して使用しても十分な洗浄力を得られるという効果が乏しいからである。なかでも、60〜90質量%が好ましい。
Moreover, it is preferable that the total compounding quantity of (A) component and (B) component is 60 mass% or more.
This is because if it is less than 60%, a sufficient cleaning power can be obtained even when used as a concentrated liquid detergent diluted at a high dilution ratio. Especially, 60-90 mass% is preferable.

本発明に用いられる(C)成分としては粘度低下剤としてエタノール、プロパノール、イソプロパノールから選ばれる1種以上が用いられる。この(C)成分は、1種又は2種以上を組み合わせて用いられる。なかでもエタノールを用いることが好ましい。   As (C) component used for this invention, 1 or more types chosen from ethanol, propanol, and isopropanol as a viscosity reducing agent are used. This (C) component is used 1 type or in combination of 2 or more types. Of these, ethanol is preferably used.

また、(C)成分の配合量は、本組成物中に、4〜15質量%の範囲に設定される。この量が4質量%未満では粘度低下効果に乏しく、また15質量%を超えて配合しても粘度低下効果の向上は期待できず、また、コスト的に不利となる。なかでも、4〜10質量%の範囲が好ましい。   Moreover, the compounding quantity of (C) component is set to the range of 4-15 mass% in this composition. If this amount is less than 4% by mass, the effect of reducing the viscosity is poor, and if it exceeds 15% by mass, the improvement of the viscosity reducing effect cannot be expected, and the cost is disadvantageous. Especially, the range of 4-10 mass% is preferable.

本発明に用いられる(D)成分である水としては、純水、イオン交換水、軟水、蒸留水、水道水等が挙げられる。これらは、単独で用いても、2種以上を組み合わせて用いてもよい。なかでも、経済性の点から、水道水、イオン交換水が好ましく用いられる。なお、上記「水」は、本発明の硬表面用中性洗浄剤組成物を構成する各成分に由来する結晶水や水溶液の形で含まれる水と、直鎖アルキルベンゼンスルホン酸と水酸化ナトリウム、水酸化カリウム、モノエタノールアミン、ジエタノールアミン、トリエタノールアミン、イソプロパノールアミン、イソプロピルアミン等のアルカリとの中和反応からの水と、外から加えられる水との総和であり、組成物全体が100%となるよう配合される。   Examples of the water (D) used in the present invention include pure water, ion exchange water, soft water, distilled water, and tap water. These may be used alone or in combination of two or more. Of these, tap water and ion-exchanged water are preferably used from the viewpoint of economy. The above-mentioned “water” is water contained in the form of crystal water or aqueous solution derived from each component constituting the neutral detergent composition for hard surface of the present invention, linear alkylbenzene sulfonic acid and sodium hydroxide, It is the sum of water from the neutralization reaction with alkali such as potassium hydroxide, monoethanolamine, diethanolamine, triethanolamine, isopropanolamine, isopropylamine, and water added from the outside, and the total composition is 100%. Formulated to be

また、本発明の濃縮液体洗浄剤組成物の原液は、水道の水圧を利用した希釈装置を使用する場合に洗剤の原液の粘度が450mPa・s以上あると水圧では洗剤が少量しか供給されず30倍以下の使用希釈倍率の洗剤希釈液が得られないことから、25℃における粘度(JIS Z 8803「単一円筒形回転粘度計による粘度測定方法」に基づく)が10〜200mPa・sの範囲になることが好ましい。   In addition, the stock solution of the concentrated liquid detergent composition of the present invention is such that when a dilution apparatus using the water pressure of tap water is used and the viscosity of the stock solution of the detergent is 450 mPa · s or more, only a small amount of detergent is supplied at the water pressure. Since a detergent diluent having a working dilution ratio of less than 2 times cannot be obtained, the viscosity at 25 ° C. (based on JIS Z 8803 “viscosity measurement method using a single cylindrical rotational viscometer”) is in the range of 10 to 200 mPa · s. It is preferable to become.

そして、本発明の濃縮液体洗浄剤組成物には、洗剤希釈液の泡立ちが少なく、洗浄時には泡立たせる目的で、(E)成分として、高級脂肪酸アルカノールアミドを配合することができる。   In the concentrated liquid detergent composition of the present invention, a higher fatty acid alkanolamide can be blended as the component (E) for the purpose of causing the detergent diluent to be less foamed and foaming during cleaning.

本発明に用いられる(E)成分のとしては、例えば、パーム核油脂肪酸モノエタノールアミド、ヤシ油脂肪酸モノエタノールアミド(1:1型)、ラウリン酸モノエタノールアミド、ミリスチン酸モノエタノールアミド、ステアリン酸モノエタノールアミド、イソステアリン酸モノエタノールアミド、オレイン酸モノエタノールアミド、ヤシ油脂肪酸モノエタノールアミド(1:2型)、パーム核油脂肪酸ジエタノールアミド、ヤシ油脂肪酸ジエタノールアミド(1:1型)、ラウリン酸ジエタノールアミド、ミリスチン酸ジエタノールアミド、ステアリン酸ジエタノールアミド、イソステアリン酸ジエタノールアミド、オレイン酸ジエタノールアミド、ヤシ油脂肪酸ジエタノールアミド(1:2型)、又はこれらのアルキル基にアルキレンオキサイドが付着したもの等が挙げられる。これらは、1種又は2種以上を組み合わせて用いてもよい。上記脂肪酸アルカノールアミドのなかでも、泡立ちの点から、ヤシ油脂肪酸ジエタノールアミド(1:1型)が好ましく用いられる。   Examples of the component (E) used in the present invention include palm kernel oil fatty acid monoethanolamide, coconut oil fatty acid monoethanolamide (1: 1 type), lauric acid monoethanolamide, myristic acid monoethanolamide, stearic acid. Monoethanolamide, isostearic acid monoethanolamide, oleic acid monoethanolamide, coconut oil fatty acid monoethanolamide (1: 2 type), palm kernel oil fatty acid diethanolamide, coconut oil fatty acid diethanolamide (1: 1 type), lauric acid Diethanolamide, myristic acid diethanolamide, stearic acid diethanolamide, isostearic acid diethanolamide, oleic acid diethanolamide, coconut oil fatty acid diethanolamide (type 1: 2), or alkylene in these alkyl groups Kisaido the like such as those attached. You may use these 1 type or in combination of 2 or more types. Among the above fatty acid alkanolamides, coconut oil fatty acid diethanolamide (1: 1 type) is preferably used from the viewpoint of foaming.

この(E)成分の配合量は、本組成物中に、1〜5質量%の範囲に設定されることが好ましい。この量が1質量%未満では泡立ちに乏しく、また5質量%を超えて配合すると、泡立ちが過剰である。なかでも、泡立ちの点から、1〜3質量%の範囲が好ましい。   It is preferable that the compounding quantity of this (E) component is set to the range of 1-5 mass% in this composition. If this amount is less than 1% by mass, foaming is poor, and if it exceeds 5% by mass, foaming is excessive. Especially, the range of 1-3 mass% is preferable from the point of foaming.

また、本発明の濃縮液体洗浄剤組成物の原液は、水道の水圧を利用した希釈装置を使用する場合に洗剤の原液の粘度が450mPa・s以上あると水圧では洗剤が少量しか供給されず30倍以下の使用希釈倍率の洗剤希釈液が得られないことから、低温時でも使用可能とするため、5℃における粘度(JIS Z 8803「単一円筒形回転粘度計による粘度測定方法」に基づく)と25℃における粘度の差が250mPa・s以下であることが好ましく、差が少ないほどさらに好ましい。   In addition, the stock solution of the concentrated liquid detergent composition of the present invention is such that when a dilution apparatus using the water pressure of tap water is used and the viscosity of the stock solution of the detergent is 450 mPa · s or more, only a small amount of detergent is supplied at the water pressure. Since a detergent dilution solution with a use dilution ratio of less than 2 times cannot be obtained, the viscosity at 5 ° C. (based on JIS Z 8803 “viscosity measurement method using a single cylindrical rotational viscometer”) to enable use even at low temperatures The viscosity difference at 25 ° C. is preferably 250 mPa · s or less, and the smaller the difference, the more preferable.

本発明の濃縮液体洗浄剤組成物の原液は、手洗いに供することができるようにするため、pHが6〜8の範囲に調整される。pHの調整は、必要に応じ、アルカリ性を呈する物質と酸性を呈する物質とを適量添加することにより行う。なお、「適量」とは、組成物の原液のpHを、所望の値に調整する量をいう。
pHの調整に用いられるアルカリ性を呈する物質としては、水酸化ナトリウム,水酸化カリウム等の水酸化アルカリ金属塩、炭酸ナトリウム,重炭酸ナトリウム,炭酸カリウム等の炭酸塩、ケイ酸ナトリウム,ケイ酸カリウム等のケイ酸塩、ホウ酸ナトリウム等のホウ酸塩、クエン酸ナトリウム等の有機酸塩、モノエタノールアミン,ジエタノールアミン等のアミン、アンモニア等が用いられ、また、pHの調整に用いられる酸性を呈する物質としては、塩酸,硫酸等の無機酸、クエン酸,酢酸等の有機酸等が用いられる。
The stock solution of the concentrated liquid detergent composition of the present invention is adjusted to a pH of 6 to 8 so that it can be used for hand washing. The pH is adjusted by adding an appropriate amount of an alkaline substance and an acidic substance as necessary. The “appropriate amount” means an amount for adjusting the pH of the composition stock solution to a desired value.
Examples of alkaline substances used for pH adjustment include alkali metal hydroxides such as sodium hydroxide and potassium hydroxide, carbonates such as sodium carbonate, sodium bicarbonate and potassium carbonate, sodium silicate and potassium silicate, etc. Silicates, borate salts such as sodium borate, organic acid salts such as sodium citrate, amines such as monoethanolamine and diethanolamine, ammonia, etc., and acidic substances used for pH adjustment As such, inorganic acids such as hydrochloric acid and sulfuric acid, and organic acids such as citric acid and acetic acid are used.

本発明の濃縮液体洗浄剤組成物には、本発明の効果を妨げない範囲で、所望により、ニトリロトリ酢酸,エチレンジアミンテトラ酢酸,クエン酸又はそれらの塩等の水質軟化剤、保湿剤、pH緩衝剤、殺菌剤、防腐剤、防黴剤、酸化防止剤、香料、染料、ハイドロトロープ剤、アミンオキサイド等の上記(A)〜(D)成分及び上記(E)成分に該当しない界面活性剤等の任意成分を適宜配合することができる。   In the concentrated liquid detergent composition of the present invention, water softeners such as nitrilotriacetic acid, ethylenediaminetetraacetic acid, citric acid or their salts, humectants, pH buffering agents, etc., as long as they do not interfere with the effects of the present invention. , Fungicides, antiseptics, antifungal agents, antioxidants, fragrances, dyes, hydrotropes, amine oxides and the like (A) to (D) and surfactants not corresponding to the above (E) An arbitrary component can be mix | blended suitably.

本発明の濃縮液体洗浄剤組成物は、水道の水圧を利用した希釈装置を使用して5〜3000倍に希釈して使用することができるが、特に30倍以下の希釈倍率の洗剤希釈液を得ることが可能となった。   The concentrated liquid detergent composition of the present invention can be used by diluting 5 to 3000 times using a diluting device utilizing the water pressure of tap water, and in particular, a detergent diluent having a dilution ratio of 30 times or less. It became possible to get.

本発明の濃縮液体洗浄剤組成物は、例えば、ホテル、レストラン、学校給食、社員食堂、食品加工工場、飲食店の厨房や作業場等において、手洗いによる硬表面の洗浄、特に、食器・調理器具の洗浄に好適に用いることができる。洗浄は、通常、水道の水圧を利用した希釈装置を使用して、シンク等に原液を1000〜2000倍に希釈した洗剤水溶液を調製して被洗浄物を浸漬させて手洗いするか、水道の水圧を利用した希釈装置を使用して、原液を30倍以下に希釈した洗剤水溶液を調製してスポンジ等にしみこませて手洗いする方法を用いる。
さらに、本発明の濃縮液体洗浄剤組成物は、水道の水圧を利用しない機械式の希釈装置にも用いることができる。
また、本発明の濃縮液体洗浄剤組成物は、上記の厨房、作業場、台所等における床、壁、作業台、棚等の硬表面の洗浄にも好適に用いることができる。
The concentrated liquid detergent composition of the present invention is used for cleaning hard surfaces by hand washing, particularly in dishes, cooking utensils, for example, in hotels, restaurants, school meals, employee cafeterias, food processing factories, restaurant kitchens, and workplaces. It can be suitably used for washing. Washing is usually performed by using a diluting device that utilizes tap water pressure to prepare a detergent aqueous solution in which the stock solution is diluted 1000 to 2000 times in a sink or the like and immersing the object to be cleaned, or by hand washing or tap water pressure. Using a diluting apparatus utilizing the above, a method of preparing a detergent aqueous solution in which the stock solution is diluted 30 times or less and soaking it in a sponge or the like is used for hand washing.
Furthermore, the concentrated liquid detergent composition of the present invention can also be used in a mechanical dilution device that does not utilize tap water pressure.
Moreover, the concentrated liquid cleaning composition of this invention can be used suitably also for washing | cleaning of hard surfaces, such as a floor, a wall, a workbench, and a shelf in said kitchen, a workplace, a kitchen.

以下、本発明の濃縮液体洗浄剤組成物について、実施例と比較例により本発明を詳細に説明する。なお、本発明はこれらに限定されるものではない。   Hereinafter, the concentrated liquid cleaning composition of the present invention will be described in detail with reference to examples and comparative examples. The present invention is not limited to these.

後記の表1〜6に示す実施例1〜16及び比較例1〜14の濃縮液体洗浄剤組成物を調製し、各種試験に供した。なお、表中の各成分の数値は、各成分の純分含有量(質量%)である。各組成物は、pH調整剤として水酸化ナトリウムを用いて、その適量を添加して、組成物のpHが6〜8になるようにpHの調整を行っているが、成分(A)〜(E)、pH調整剤及び任意成分の和は全体で100質量%となっている。   The concentrated liquid detergent compositions of Examples 1 to 16 and Comparative Examples 1 to 14 shown in Tables 1 to 6 below were prepared and used for various tests. In addition, the numerical value of each component in a table | surface is pure content (mass%) of each component. Each composition uses sodium hydroxide as a pH adjusting agent, and an appropriate amount thereof is added to adjust the pH so that the composition has a pH of 6 to 8. The components (A) to ( E) The sum of the pH adjusting agent and the optional components is 100% by mass as a whole.

そして、得られた各種濃縮液体洗浄剤組成物において、pH、粘度、希釈倍率、洗浄力の各試験項目について、以下の試験方法と判定基準により評価し、その結果を後記の表1〜6に併せて示した。   And in the various concentrated liquid detergent compositions obtained, each test item of pH, viscosity, dilution rate, and detergency was evaluated by the following test methods and criteria, and the results are shown in Tables 1 to 6 below. Also shown.

(1)pH
JIS Z 8802:1984「pH測定方法」に基づいて各組成物原液の25℃におけるpHを測定した。
(1) pH
Based on JIS Z 8802: 1984 “pH measurement method”, the pH of each composition stock solution at 25 ° C. was measured.

(2)粘度
JIS Z 8803「単一円筒形回転粘度計による粘度測定方法」に基づいて各組成物原液の5℃と25℃の各温度における粘度を測定した。
(2) Viscosity Viscosity of each composition stock solution at 5 ° C. and 25 ° C. was measured based on JIS Z 8803 “Method of measuring viscosity with a single cylindrical rotational viscometer”.

(3)粘度安定性
上記の方法で測定した5℃と25℃の粘度の差を求め以下の基準により判定した。
〔判定基準〕
◎:粘度の差が200未満
○:粘度の差が200以上250以下
×:粘度の差が250を超える
(3) Viscosity stability The difference in viscosity between 5 ° C. and 25 ° C. measured by the above method was determined and judged according to the following criteria.
[Criteria]
◎: Difference in viscosity is less than 200 ○: Difference in viscosity is 200 or more and 250 or less ×: Difference in viscosity is over 250

(4)希釈倍率
水圧希釈装置(KNIGHT社製/商品名:MX−101 1GPM)にチップを装着しないで、水道の水圧0.2MPa及び0.4MPaの条件下、5℃と25℃の各温度に調製した各組成物を上記希釈装置で希釈した希釈液を採取し、得られた希釈液に対して消費された各組成物原液の重量測定により希釈倍率を測定した。
(4) Dilution ratio Each temperature of 5 ° C. and 25 ° C. under conditions of tap water pressure of 0.2 MPa and 0.4 MPa without attaching a chip to a water pressure diluting device (manufactured by KNIGHT / trade name: MX-101 1GPM). A dilution obtained by diluting each composition prepared in the above using the diluting apparatus was collected, and the dilution ratio was measured by measuring the weight of each composition stock solution consumed with respect to the obtained dilution.

(5)洗浄力
ガラス製の140mLのマヨネーズ瓶に汚れ(サラダ油:牛脂=1:1)約1gを塗布し、汚れの付着重量を測定した。次に未使用のスポンジに上記(3)希釈装置を使用しての希釈倍率の測定を行った各組成物希釈液を1g量り取り、手でスポンジを10回揉み、各組成物希釈液を全体になじませる。このスポンジを用いて上記にて作成した汚れの付着したマヨネーズ瓶を洗浄し、その後すすぎ乾燥させる。この操作を10個の汚れの付着したマヨネーズ瓶に対して繰り返し、乾燥後の汚れの落ち具合を重量で量り、次式により洗浄率を求めた。
洗浄率(%)=(洗浄力試験により除去された汚れの重量)/(洗浄力試験前に付着していた汚れの重量)×100
上記の洗浄率が90%以上のマヨネーズ瓶の個数を数え、以下の基準により判定した。
〔判定基準〕
○:洗浄率90%以上のマヨネーズ瓶が5個以上
×:洗浄率90%以上のマヨネーズ瓶が5個未満
(5) Detergency About 1 g of dirt (salad oil: beef tallow = 1: 1) was applied to a 140 mL mayonnaise bottle made of glass, and the adhesion weight of the dirt was measured. Next, weigh out 1 g of each composition dilution obtained by measuring the dilution ratio using the above (3) diluting device to an unused sponge, and rub the sponge 10 times by hand, Familiarize yourself. Using this sponge, the above-prepared mayonnaise bottle is washed and then rinsed and dried. This operation was repeated for 10 mayonnaise bottles with dirt attached, the degree of dirt removal after drying was weighed, and the washing rate was determined by the following equation.
Detergency (%) = (weight of dirt removed by detergency test) / (weight of dirt adhered before detergency test) × 100
The number of mayonnaise bottles having a washing rate of 90% or more was counted and judged according to the following criteria.
[Criteria]
○: 5 or more mayonnaise bottles with a washing rate of 90% or more X: Less than 5 mayonnaise bottles with a washing rate of 90% or more

なお、以下の表1〜6に示す成分の詳細は以下の通りである。
*LAS−イソプロピルアミン
:直鎖アルキルベンゼンスルホン酸イソプロピルアミン塩(ハンツマン社製/商品名:NANSA YS94)
*LAS−イソプロパノールアミン
:直鎖アルキルベンゼンスルホン酸(テイカ社製/商品名:Teikapower L121)のイソプロパノールアミン塩
*LAS−TEA
:直鎖アルキルベンゼンスルホン酸(テイカ社製/商品名:Teikapower L120D)のトリエタノールアミン塩
*LAS−Na
:直鎖アルキルベンゼンスルホン酸(テイカ社製/商品名:Teikapower L121)のナトリウム塩
*ポリオキシエチレンアルキルエーテル1
:炭素数12〜14の直鎖アルコールのエチレンオキサイド9モル付加物(日本触媒社製/商品名:ソフタノール90)
*ポリオキシエチレンアルキルエーテル2
:炭素数13のオキソアルコールのエチレンオキサイド8モル付加物(BASF社製/商品名:ルテンゾールTO8)
*ポリオキシエチレンアルキルエーテル3
:炭素数9〜11の直鎖アルコールのエチレンオキサイド8モル付加物(シェルジャパン社製/商品名:ネオドール91−8T)
*ポリオキシエチレンアルキルエーテル4
:炭素数12〜14の直鎖アルコールのエチレンオキサイド7モル付加物(日本触媒社製/商品名:ソフタノール70)
*高級脂肪酸アルカノールアミド1
:ヤシ油脂肪酸ジエタノールアミド(1:1型)(旭電化工業社製/商品名:アデカソールCOA)
*高級脂肪酸アルカノールアミド2
:ヤシ油脂肪酸ジエタノールアミド(1:2型)(旭電化工業社製/商品名:アデカソールCO)
*高級脂肪酸アルカノールアミド3
:パーム核油脂肪酸ジエタノールアミド(川研ファインケミカル社製/商品名:アミゾールKD−3)
In addition, the detail of the component shown to the following Tables 1-6 is as follows.
* LAS-Isopropylamine: Linear alkylbenzene sulfonic acid isopropylamine salt (manufactured by Huntsman / trade name: NANSA YS94)
* LAS-isopropanolamine: Isopropanolamine salt of linear alkylbenzene sulfonic acid (manufactured by Teika / Trade name: Teikapower L121) * LAS-TEA
: Triethanolamine salt of a linear alkylbenzene sulfonic acid (manufactured by Teika / Trade name: Teikapower L120D) * LAS-Na
: Sodium salt of linear alkylbenzene sulfonic acid (manufactured by Teika / Trade name: Teikapower L121)
* Polyoxyethylene alkyl ether 1
: C12-C14 linear alcohol ethylene oxide 9 mol adduct (manufactured by Nippon Shokubai Co., Ltd./trade name: Softanol 90)
* Polyoxyethylene alkyl ether 2
: 13 moles of ethylene oxide 8 mol adduct of oxo alcohol having 13 carbon atoms (BASF / trade name: Rutensol TO8)
* Polyoxyethylene alkyl ether 3
: C9-C11 linear alcohol ethylene oxide 8 mol adduct (manufactured by Shell Japan Co., Ltd./trade name: Neodol 91-8T)
* Polyoxyethylene alkyl ether 4
: C12-C14 linear alcohol ethylene oxide 7 mol adduct (manufactured by Nippon Shokubai Co., Ltd./trade name: Softanol 70)
* Higher fatty acid alkanolamide 1
: Coconut oil fatty acid diethanolamide (1: 1 type) (Asahi Denka Kogyo Co., Ltd./Brand name: Adekasol COA)
* Higher fatty acid alkanolamide 2
: Coconut oil fatty acid diethanolamide (1: 2 type) (Asahi Denka Kogyo Co., Ltd./trade name: Adekasol CO)
* Higher fatty acid alkanolamide 3
: Palm kernel oil fatty acid diethanolamide (manufactured by Kawaken Fine Chemical Co., Ltd./Brand name: Amisole KD-3)

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上記表1〜6の結果から、実施例1品〜16品は、25℃における粘度が10〜200mPaであり、粘度安定性に優れ、水道の水圧を利用した希釈装置で30倍以下に希釈することが可能で、希釈液による洗浄力において良好な性能を有することがわかる。   From the results of Tables 1 to 6, the products of Examples 1 to 16 have a viscosity at 25 ° C. of 10 to 200 mPa, excellent viscosity stability, and are diluted to 30 times or less with a diluting device using water pressure of tap water. It can be seen that it has good performance in detergency with the diluent.

一方、比較例1は、特許文献2記載の実施例26品に相当するものであり、20℃における粘度は390mPa・sで、25℃における粘度が275mPa・sである。このため25℃における粘度が200mPa・sを超えており、粘度安定性に劣り、5℃において水道の水圧を利用した希釈装置で30倍以下に希釈することができず、温度変化に伴い安定した希釈倍率の希釈液が得られない。   On the other hand, Comparative Example 1 corresponds to the product of Example 26 described in Patent Document 2, and the viscosity at 20 ° C. is 390 mPa · s, and the viscosity at 25 ° C. is 275 mPa · s. For this reason, the viscosity at 25 ° C. exceeds 200 mPa · s, is inferior in viscosity stability, and cannot be diluted to 30 times or less with a diluting device using the water pressure of tap water at 5 ° C., and is stable with temperature change. Dilution solution with dilution ratio cannot be obtained.

また、比較例2品〜7品は、本発明の組成物から、それぞれ上記(A)成分、(B)成分又は(C)成分を欠いたものであり、それぞれ洗浄力や粘度安定性に劣ることがわかる。上記(A)成分と(B)成分の合計配合量が60質量%未満である比較例8品及び(A)成分の配合量が30質量%未満である比較例9品は希釈液の洗浄力において劣る。上記(A)成分を70質量%を超えて配合された比較例10品、(B)成分が10質量%未満である比較例11品、(B)成分が40質量%を超えて配合された比較例12品、(C)成分が4質量%未満である比較例13品のいずれも粘度安定性に劣り、5℃における洗浄力に劣ることがわかる。   In addition, Comparative Examples 2 to 7 are the compositions of the present invention, each lacking the component (A), the component (B), or the component (C), and are inferior in detergency and viscosity stability, respectively. I understand that. The eight comparative examples in which the total blending amount of the component (A) and the component (B) is less than 60% by mass and the nine comparative examples in which the blending amount of the component (A) is less than 30% by mass are detergency of the diluent. Is inferior. 10 comparative examples blended in excess of 70% by weight of the component (A), 11 comparative examples in which the component (B) was less than 10% by weight, and the component (B) was blended in excess of 40% by weight. It can be seen that both the Comparative Example 12 product and the (C) Component 13 Comparative Example 13 product having less than 4% by mass have poor viscosity stability and poor detergency at 5 ° C.

Claims (5)

(A)アルキル基の炭素数が8〜18のアルキルベンゼンスルホン酸塩30〜70質量%、(B)炭素数8〜18の第1級又は第2級アルコールに平均で2〜20モルのエチレンオキシド及び/又はプロピレンオキシドが付加したポリオキシアルキルアルキレン型界面活性剤10〜40質量%、(C)粘度低下剤としてエタノール、プロパノール、イソプロパノールから選ばれる1種以上を4〜15質量%及び(D)水を含有し、且つ、(A)成分と(B)成分との合計含有量が、60質量%以上で、JIS Z 8803「単一円筒形回転粘度計による粘度測定方法」による25℃における粘度が10〜200mPa・sであって、水道の水圧を利用した希釈装置で使用されることを特徴とする濃縮液体洗浄剤組成物。   (A) 30 to 70% by mass of an alkylbenzene sulfonate having 8 to 18 carbon atoms in the alkyl group, and (B) 2 to 20 mol of ethylene oxide on average in a primary or secondary alcohol having 8 to 18 carbon atoms and 10 to 40% by mass of a polyoxyalkylalkylene surfactant to which propylene oxide is added, (C) 4 to 15% by mass of one or more selected from ethanol, propanol and isopropanol as viscosity reducing agents and (D) water And the total content of the component (A) and the component (B) is 60% by mass or more, and the viscosity at 25 ° C. according to JIS Z 8803 “viscosity measurement method using a single cylindrical rotational viscometer” A concentrated liquid detergent composition, which is 10 to 200 mPa · s and is used in a diluting device utilizing water pressure of tap water. さらに、(E)高級脂肪酸アルカノールアミドを1〜5質量%含有することを特徴とする請求項1記載の濃縮液体洗浄剤組成物。   The concentrated liquid detergent composition according to claim 1, further comprising (E) 1 to 5% by mass of a higher fatty acid alkanolamide. 上記(A)成分がアルキルベンゼンスルホン酸アミン塩である請求項1又は2のいずれか一項に記載の濃縮液体洗浄剤組成物。   The concentrated liquid detergent composition according to claim 1, wherein the component (A) is an alkylbenzenesulfonic acid amine salt. 上記アルキルベンゼンスルホン酸アミン塩がアルキルベンゼンスルホン酸イソプロピルアミン塩である請求項3記載の濃縮液体洗浄剤組成物。   The concentrated liquid detergent composition according to claim 3, wherein the alkylbenzenesulfonic acid amine salt is an alkylbenzenesulfonic acid isopropylamine salt. 組成物の5℃における粘度と25℃における粘度との差が250mPa・s以下であることを特徴とする請求項1〜4のいずれか一項に記載の濃縮液体洗浄剤組成物。   The concentrated liquid detergent composition according to any one of claims 1 to 4, wherein the difference between the viscosity at 5 ° C and the viscosity at 25 ° C of the composition is 250 mPa · s or less.
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010229385A (en) * 2008-11-21 2010-10-14 Kao Corp Bottled liquid detergent
EP2559749A1 (en) * 2010-04-12 2013-02-20 Shiseido Company, Ltd. Concentrated liquid detergent composition and process for production thereof
CN115368978A (en) * 2022-06-30 2022-11-22 纳爱斯浙江科技有限公司 Concentrated detergent with high-power dilution and thickening performance and preparation method thereof

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH05500524A (en) * 1989-06-29 1993-02-04 バッカイ インタナショナル,インコーポレイテッド Improved aqueous cleaning and degreasing compositions
JPH07316589A (en) * 1994-05-30 1995-12-05 Teshima Kaken:Kk Highly concentrated neutral liquid detergent composition
JPH083587A (en) * 1994-06-27 1996-01-09 Teshima Kaken:Kk Neutral liquid detergent composition having high concentration
JPH11500768A (en) * 1995-02-23 1999-01-19 エコラブ・インコーポレイテッド Dispensing device and dispensing method for viscous use solution

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH05500524A (en) * 1989-06-29 1993-02-04 バッカイ インタナショナル,インコーポレイテッド Improved aqueous cleaning and degreasing compositions
JPH07316589A (en) * 1994-05-30 1995-12-05 Teshima Kaken:Kk Highly concentrated neutral liquid detergent composition
JPH083587A (en) * 1994-06-27 1996-01-09 Teshima Kaken:Kk Neutral liquid detergent composition having high concentration
JPH11500768A (en) * 1995-02-23 1999-01-19 エコラブ・インコーポレイテッド Dispensing device and dispensing method for viscous use solution

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010229385A (en) * 2008-11-21 2010-10-14 Kao Corp Bottled liquid detergent
EP2559749A1 (en) * 2010-04-12 2013-02-20 Shiseido Company, Ltd. Concentrated liquid detergent composition and process for production thereof
EP2559749A4 (en) * 2010-04-12 2013-12-25 Shiseido Co Ltd Concentrated liquid detergent composition and process for production thereof
CN115368978A (en) * 2022-06-30 2022-11-22 纳爱斯浙江科技有限公司 Concentrated detergent with high-power dilution and thickening performance and preparation method thereof
CN115368978B (en) * 2022-06-30 2023-09-12 纳爱斯浙江科技有限公司 Concentrated detergent with high-power dilution and thickening performance and preparation method thereof

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