Washing-free cleaning agent for pets as well as preparation method and application of cleaning agent

By combining lysozyme and lactoferrin with ingredients such as dichlorobenzyl alcohol, a pet no-rinse cleaner has been prepared, solving the problems of poor sterilization and mite removal and ingredient residue in existing technologies, achieving highly efficient cleaning and pet-friendly results.

CN121370656APending Publication Date: 2026-01-23YIXIANG HEALTH TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202411605748.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2026-01-23

AI Technical Summary

Technical Problem

Existing pet cleaners have weak antibacterial and anti-mite effects, are not effective enough in cleaning, and are not gentle enough. They inevitably have problems with ingredient residue and toxicity from pet licking.

Method used

A pet shampoo-free cleaner with synergistic bactericidal and mite-killing properties is prepared by combining lysozyme, dichlorobenzyl alcohol, and lactoferrin with decyl glucoside, cocamidopropyl betaine, and hydrogenated castor oil. The cleaner is prepared by stirring and homogenizing.

Benefits of technology

It achieves highly efficient sterilization and mite removal, significantly improving cleaning effectiveness. At the same time, it is pet-friendly, with no harmful residues to pets' health. It dries quickly and leaves little residue, reducing irritation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a pet no-wash detergent as well as a preparation method and application thereof, and relates to the technical field of pet detergents. The cleaning-free detergent for the pets comprises the lysozyme, the dichlorobenzyl alcohol and the lactoferrin, the dichlorobenzyl alcohol is a powerful antifungal agent and also has a certain effect on killing mites, and the lysozyme is a bactericide carried by the pets and has a very strong killing effect on gram-positive bacteria. The lactoferrin is an immune component of a human body and can permeate cell walls of bacteria, the lysozyme, the lactoferrin and the dichlorobenzyl alcohol are compounded, so that the lysozyme, the lactoferrin and the dichlorobenzyl alcohol can be synergistically sterilized, the cleaning effect is good, the pet cleaning agent is friendly to pets, and when the pets lick after being cleaned, the residual lysozyme and the residual lactoferrin enter the body and can better care the health of the pets.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of pet cleaning agents, in particular to a pet leave-on cleaning agent and a preparation method and application thereof. BACKGROUND

[0002] With the increase of pet-keeping families, pet health has become a hot topic of concern for pet parents. Pet health cannot be separated from daily cleaning and care. Most families choose to clean pets by bathing them. However, for some young or timid pets, bathing may cause them stress, resulting in irreversible serious consequences. And based on the particularity of pet fur, they themselves secrete a protective layer of oil, and frequent bathing not only damages their own protective layer, but also causes them to be anxious due to changes in their own odor. Therefore, for pets that are not suitable for bathing, a leave-on mild pet cleaning agent is needed.

[0003] However, the pet cleaning agents in the prior art have weak bactericidal and acaricidal effects, poor cleaning effect, and are not mild enough, inevitably causing problems of ingredient residue and pet licking toxicity. SUMMARY

[0004] The present application aims to provide a pet leave-on cleaning agent and a preparation method and application thereof, which aims to solve the problems of weak bactericidal and acaricidal effects, poor cleaning effect, and not mild enough of the existing pet cleaning agents, and inevitably causing problems of ingredient residue and pet licking toxicity.

[0005] To achieve the above purpose, the present application provides a pet leave-on cleaning agent, comprising: lysozyme, dichlorobenzyl alcohol, lactoferrin.

[0006] In some embodiments, by mass percentage, it comprises: lysozyme 0.05-0.2%, dichlorobenzyl alcohol 0.05-0.2%, and lactoferrin 0.02-0.2%.

[0007] In some embodiments, by mass percentage, it further comprises: decyl glucoside 0.1-0.3%, cocamidopropyl betaine 0.1-0.3%, and hydrogenated castor oil 0.4-0.5%.

[0008] In some embodiments, by mass percentage, it further comprises: cationic silicone oil 0.008-0.01% and polyquaternium-7 0.008-0.02%.

[0009] In some embodiments, by mass percentage, it further comprises: propylene glycol 0.3-0.8% and the balance of water.

[0010] In some embodiments, in terms of mass percentage, the pet leave-on cleaner comprises: propylene glycol 0.5%, polyquaternium-70 0.01%, decyl glucoside 0.2%, cocamidopropyl betaine 0.2%, lysozyme 0.1%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.06%, lactoferrin 0.06%, and water is supplemented to 100%.

[0011] The application also provides a preparation method of the pet leave-on cleaner.

[0012] The application also provides a preparation method of the pet leave-on cleaner, comprising:

[0013] In the process of stirring, hydrogenated castor oil PEG-40, dichlorobenzyl alcohol, lysozyme, and lactoferrin are sequentially mixed and heated to 40-60 DEG C, and a solution I is obtained after complete stirring and clarification;

[0014] Other raw materials are sequentially added into another container, and a solution II is obtained after complete mixing and stirring and clarification;

[0015] The solution I is added into the solution II, and stirring and homogenization are performed at 2000-4000 r / min to make the solution completely clear, so that the pet leave-on cleaner is obtained.

[0016] The application also provides application of the pet leave-on cleaner in preparation of a pet leave-on cleaning product.

[0017] In some embodiments, the pet leave-on cleaning product is any one of a pet wet wipe, a powder, a foam, and a liquid.

[0018] Compared with the prior art, the application has the following beneficial effects:

[0019] The pet leave-on cleaner provided by the application comprises lysozyme, dichlorobenzyl alcohol, and lactoferrin. Dichlorobenzyl alcohol is a strong antifungal agent and also has a certain effect on mite removal. Lysozyme is a bactericide for pets and has a strong killing effect on gram-positive bacteria. Lactoferrin is an immune component of the human body and can permeabilize the cell wall of bacteria. The application compounding lysozyme, lactoferrin, and dichlorobenzyl alcohol not only has a synergistic bactericidal effect and good cleaning effect, but also is friendly to pets. When the pet licks after cleaning, the residual lysozyme and lactoferrin enter the body to better protect the health of the pet. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly illustrate the technical solutions of the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiments. It should be understood that the following drawings only show some embodiments of the application, and therefore should not be regarded as a limitation on the scope of the application.

[0021] Figure 1 Graph of pet wash-off cleaner stain removal ability test results for the present application;

[0022] Figure 2 Graph of pet wash-off cleaner volatile performance test results for the present application. DETAILED DESCRIPTION

[0023] As used herein the terms "including", "containing", "having" or "comprising" are not intended to be limiting.

[0024] "Made from" is synonymous with "comprising". The terms "comprising", "including", "containing", "having" or any other open terminology indicating that the include elements not specifically listed are used herein to provide clarity to the specification and are intended be affixed the same scope as "including" or "comprising", as set forth in U.S. Patent Law.

[0025] The conjunctive term "consisting of" precludes any element, step, or ingredient not specifically named. If used in a claim, this phrase shall exclude any element not specified. When the phrase "consisting of is followed by a listing of elements, the phrase "consisting of shall be interpreted as specifying that the number of elements in the list is limited to exactly those elements specified and shall not be interpreted in any way to mean also "consisting only of" or "consisting essentially of.

[0026] When expressing amounts, concentrations, or other values or parameters of a range, preferably a range, or a series of upper preferred values and lower preferred values, it should be understood that all ranges formed by any pair of any upper limit or preferred value and any lower limit or preferred value, regardless of whether that range is explicitly disclosed, is specifically disclosed. For example, when a range "1 to 5" is disclosed, the described range should be interpreted to include ranges "1 to 4", "1 to 3", "1 to 2", "1 to 2 and 4 to 5", "1 to 3 and 5", etc. When numerical ranges are described herein, unless otherwise stated, the range is intended to include the endpoints and all integers and fractions within that range.

[0027] In these examples, the parts and percentages are by mass unless otherwise indicated.

[0028] "Mass parts" refers to a basic unit of measurement indicating the mass ratio relationship of multiple components, 1 part can represent any unit mass, such as 1g, 2.689g, etc. If we say that the mass parts of component A is a parts, and the mass parts of component B is b parts, it means that the mass ratio of component A to component B is a:b. Alternatively, it means that the mass of component A is aK and the mass of component B is bK (K is an arbitrary number, indicating a multiple factor). It should not be misunderstood that unlike mass parts, the sum of the mass parts of all components is not limited to 100 parts.

[0029] "and / or" is used to indicate that one or both of the described cases can occur, for example, A and / or B includes (A and B) and (A or B).

[0030] The present application provides a pet no-wash cleaner, comprising: lysozyme, dichlorobenzyl alcohol, lactoferrin.

[0031] Among them, dichlorobenzyl alcohol is a strong antifungal agent, and has a certain effect on mite removal. Lysozyme is a bactericide that pets carry, and has a strong killing effect on gram-positive bacteria. Lactoferrin is an immune component of the human body, which can make the cell wall of bacteria permeable. The present application complex of lysozyme, lactoferrin and dichlorobenzyl alcohol not only has synergistic bactericidal effect and good cleaning effect, but also is friendly to pets. When the pet licks after cleaning, the residual lysozyme and lactoferrin in the body can better protect the health of the pet.

[0032] In some embodiments, by mass percentage, it comprises: 0.05-0.2% lysozyme, 0.05-0.2% dichlorobenzyl alcohol, and 0.02-0.2% lactoferrin.

[0033] In some embodiments, by mass percentage, it further comprises: 0.1-0.3% decyl glucoside, 0.1-0.3% cocamidopropyl betaine, and 0.4-0.5% hydrogenated castor oil.

[0034] Among them, decyl glucoside and cocamidopropyl betaine are commonly used mild surfactants. After the hydrophobic end binds with dirt, the hydrophilic end dissolves in water and is adsorbed on the wet wipe. At the same time, hydrogenated castor oil is added to form large micelles and reduce skin irritation. In addition, dichlorobenzyl alcohol is insoluble in water, and the addition of the solubilizer hydrogenated castor oil can improve the solubility of dichlorobenzyl alcohol in water. Hydrogenated castor oil can wrap dichlorobenzyl alcohol in the hydrophobic core, which is unstable under physical friction. Dichlorobenzyl alcohol is released to kill bacteria and remove mites, and is volatile and not easy to remain.

[0035] In some embodiments, by mass percentage, it further comprises: 0.008-0.01% cationic silicone oil and 0.008-0.02% polyquaternium-7.

[0036] The cationic silicone oil and the polyquaternium-7 have a hair smoothing effect, and the surfactant can better penetrate into the hair to clean and care the hair comprehensively. After the pet cleaner of the application cleans the pet, the pet dries faster. The reason is that the three surfactants of decyl glucoside, cocamide propyl betaine and polyquaternium-7 reduce the surface tension of water, so that water is easy to evaporate and not easy to stay on the skin of the pet.

[0037] In some embodiments, in mass percentage, further comprising: 0.3-0.8% of propylene glycol and the balance of water.

[0038] The propylene glycol serves as a humectant, which can avoid too much dryness after cleaning.

[0039] The application further provides a preparation method of the pet leave-on cleaner.

[0040] The application further provides a preparation method of the pet leave-on cleaner, comprising:

[0041] In the process of stirring, hydrogenated castor oil PEG-40, dichlorobenzyl alcohol, lysozyme, lactoferrin are sequentially added and heated to 40-60°C (for example, it can be 40°C, 45°C, 50°C, 55°C, 60°C or any value between 40-60°C), and the solution I is obtained after stirring completely to be clear;

[0042] Other raw materials are sequentially added to another container, and the solution II is obtained after mixing and stirring completely to be clear and transparent;

[0043] The solution I is added to the solution II, and stirring and homogenization are performed at 2000-4000 r / min (for example, it can be 2000 r / min, 2100 r / min, 2500 r / min, 2800 r / min, 3000 r / min, 3300 r / min, 3500 r / min, 3800 r / min, 4000 r / min or any value between 2000-4000 r / min), so that the solution is completely clear, and the pet leave-on cleaner is obtained.

[0044] The application further provides the use of the pet leave-on cleaner in the preparation of a pet leave-on cleaning product.

[0045] In some embodiments, the pet leave-on cleaning product is any one of a pet wet wipe, a powder, a foam, and a liquid.

[0046] The existing no-wash cleaning products are mainly divided into powder, foam, liquid and wet wipes. The powder is directly sprinkled on the pet, which is easy to be unevenly sprinkled, resulting in local high concentration and irritation. The foam needs to be cleaned and then wiped off with a wet towel, which is not convenient. The liquid and wet wipes are directly air-dried after cleaning, which is convenient to use. The no-wash cleaning product of the present application is mainly liquid and pet wet wipe.

[0047] In some embodiments, the preparation method of the pet wet wipe is as follows: cutting a water-jet non-woven fabric, cotton cloth or the like carrier into a sheet, folding and fixing the shape, and the shape includes a common wet wipe single-layer square and a double-layer glove shape. The pet no-wash cleaner is sprayed according to a dry-wet mass ratio of 1:2.5-1:4.5, and the pet wet wipe is packaged by sealing with a film of extinction transparent OPP+aluminized VMPET+bright light transparent PE under sterile conditions.

[0048] The embodiments of the present application will be described in detail below with specific examples, but those skilled in the art will understand that the following examples are only for illustration of the present application and should not be regarded as limiting the scope of the present application. If the specific conditions are not specified in the examples, the conventional conditions or the conditions recommended by the manufacturer are used. If the reagents or instruments used are not specified by the manufacturer, they are all conventional products that can be purchased on the market.

[0049] Example 1

[0050] The components of the pet no-wash cleaner of Example 1 include, in mass percentage: propylene glycol 0.5%, M 550PR (polyquaternary ammonium salt-7) 0.01%, decyl glucoside 0.2%, cocamidopropyl betaine 0.2%, lysozyme 0.05%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.12%, lactoferrin 0.03%, and the rest is water to make up to 100%.

[0051] The preparation method of the pet no-wash cleaner of Example 1 includes: mixing and heating hydrogenated castor oil PEG-40, dichlorobenzyl alcohol, lysozyme and lactoferrin in sequence to 45℃ under stirring, and stirring until completely clear to form solution I. Other raw materials are added in sequence into another container, and stirred until completely clear and transparent to form solution II. Solution I is added into solution II, and stirred and homogenized (2000 r / min) to make the solution completely clear, which is the pet no-wash cleaner.

[0052] Example 2

[0053] The components of the pet leave-on cleaner of Example 2 include, in mass percent: propylene glycol 0.5%, M 550PR (polyquaternium-7) 0.01%, decyl glucoside 0.2%, cocamidopropyl betaine 0.2%, lysozyme 0.1%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.12%, lactoferrin 0.03%, with the remainder water to 100%. The method of preparation is the same as Example 1.

[0054] Example 3

[0055] The components of the pet leave-on cleaner of Example 3 include, in mass percent: propylene glycol 0.5%, M 550PR (polyquaternium-7) 0.01%, decyl glucoside 0.2%, cocamidopropyl betaine 0.2%, lysozyme 0.15%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.12%, lactoferrin 0.03%, with the remainder water to 100%. The method of preparation is the same as Example 1.

[0056] Example 4

[0057] The components of the pet leave-on cleaner of Example 4 include, in mass percent: propylene glycol 0.5%, M 550PR (polyquaternium-7) 0.01%, decyl glucoside 0.2%, cocamidopropyl betaine 0.2%, lysozyme 0.1%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.12%, lactoferrin 0.06%, with the remainder water to 100%. The method of preparation is the same as Example 1.

[0058] Example 5

[0059] The components of the pet leave-on cleaner of Example 5 include, in mass percent: propylene glycol 0.5%, M 550PR (polyquaternium-7) 0.01%, decyl glucoside 0.2%, cocamidopropyl betaine 0.2%, lysozyme 0.1%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.12%, lactoferrin 0.12%, with the remainder water to 100%. The method of preparation is the same as Example 1.

[0060] Example 6

[0061] The components of the pet leave-on cleaner of Example 6 include, by mass percent: propylene glycol 0.5%, M 550PR (polyquaternium-7) 0.01%, decyl glucoside 0.2%, cocamidopropyl betaine 0.2%, lysozyme 0.1%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.12%, lactoferrin 0.2%, with the remainder water to 100%. The method of preparation is the same as Example 1.

[0062] Example 7

[0063] The components of the pet leave-on cleaner of Example 7 include, by mass percent: propylene glycol 0.5%, M 550PR (polyquaternium-7) 0.01%, decyl glucoside 0.2%, cocamidopropyl betaine 0.2%, lysozyme 0.1%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.12%, lactoferrin 0.05%, with the remainder water to 100%. The method of preparation is the same as Example 1.

[0064] Example 8

[0065] The components of the pet leave-on cleaner of Example 8 include, by mass percent: propylene glycol 0.5%, M 550PR (polyquaternium-7) 0.01%, decyl glucoside 0.2%, cocamidopropyl betaine 0.2%, lysozyme 0.1%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.08%, lactoferrin 0.06%, with the remainder water to 100%. The method of preparation is the same as Example 1.

[0066] Example 9

[0067] The components of the pet leave-on cleaner of Example 9 include, by mass percent: propylene glycol 0.5%, M 550PR (polyquaternium-7) 0.01%, decyl glucoside 0.2%, cocamidopropyl betaine 0.2%, lysozyme 0.1%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.06%, lactoferrin 0.06%, with the remainder water to 100%. The method of preparation is the same as Example 1.

[0068] Comparative Example 1

[0069] The components of the pet leave-on cleaner of Comparative Example 1 include, by mass percent: propylene glycol 0.5%, M 550PR (polyquaternium-7) 0.01%, decyl glucoside 0.2%, cocamidopropyl betaine 0.2%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.06, with the remainder water to 100%. The method of preparation is the same as Example 1.

[0070] Comparative Example 2

[0071] The components of the pet leave-on cleaner of Comparative Example 2 include, by mass percent: propylene glycol 0.5%, M 550PR (polyquaternium-7) 0.01%, decyl glucoside 0.2%, cocamidopropyl betaine 0.2%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.06%, lysozyme 0.1%, with the remainder water to 100%. The method of preparation is the same as Example 1.

[0072] Comparative Example 3

[0073] The components of the pet leave-on cleaner of Comparative Example 3 include, by mass percent: propylene glycol 0.5%, M 550PR (polyquaternium-7) 0.01%, decyl glucoside 0.2%, cocamidopropyl betaine 0.2%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.06%, lactoferrin 0.06%, with the remainder water to 100%. The method of preparation is the same as Example 1.

[0074] Comparative Example 4

[0075] The components of the pet leave-on cleaner of Comparative Example 4 include, by mass percent: propylene glycol 0.5%, decyl glucoside 0.2%, cocamidopropyl betaine 0.2%, lysozyme 0.1%, cationic silicone oil 0.01%, M 550PR (polyquaternium-7) 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.06%, lactoferrin 0.05%, with the remainder water to 100%. The method of preparation is the same as Example 1.

[0076] Comparative Example 5

[0077] The components of the pet leave-on cleaner of Comparative Example 5 include, by mass percent: propylene glycol 0.5%, M 550PR (polyquaternium-7) 0.01%, cocamidopropyl betaine 0.2%, lysozyme 0.1%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.06%, lactoferrin 0.05%, with the remainder water to 100%. The method of preparation is the same as Example 1.

[0078] Comparative Example 6

[0079] The components of the pet leave-in cleaner of Comparative Example 6 include, by mass percentage: propylene glycol 0.5%, M 550PR (polyquaternary ammonium salt-7) 0.01%, decyl glucoside 0.2%, lysozyme 0.1%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.06%, lactoferrin 0.05%, and the rest is water supplemented to 100%. The preparation method is the same as that of Example 1.

[0080] Comparative Example 7

[0081] The components of the pet leave-in cleaner of Comparative Example 7 include, by mass percentage: propylene glycol 0.5%, lysozyme 0.1%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.06%, lactoferrin 0.05%, and the rest is water supplemented to 100%. The preparation method is the same as that of Example 1.

[0082] The components of the pet leave-in cleaner of each of the examples and comparative examples are shown in Table 1.

[0083] Table 1 Components of the pet leave-in cleaner of each of the examples and comparative examples

[0084]

[0085] Test Example 1 Bacteriostatic and mite-removing effect test

[0086] The bacteriostatic and mite-removing effect tests were respectively performed on the pet leave-in cleaners of the above Examples 1 to 9 and Comparative Examples 1 to 3. Test scheme: the bacteriostatic test was tested according to the bacteriostatic rate method of GB15979-2024, and the mite-removing test was tested according to the full killing method in the Test Method and Evaluation of Anti-mite and Mite-removing Performance of Household Cleaning Products, and the test results are shown in Tables 2 and 3.

[0087] Table 2 Bacteriostatic rate test results

[0088] Number Escherichia coli Staphylococcus aureus Candida albicans Example 1 99.70% 60.00% 62.5% Example 2 >99.9% >99.9% 59.46% Example 3 >99.9% >99.9% 63.31% Example 4 >99.9% >99.9% 74.19% Example 5 >99.9% >99.9% 40.00% Example 6 >99.9% >99.9% 69.35% Example 7 >99.9% >99.9% 69.66% Example 8 >99.9% >99.9% 74.89% Example 9 >99.9% >99.9% 93.45% Comparative Example 1 63.74% 52.70% 49.03% Comparative Example 2 >99.9% 94.11% 52.12% Comparative Example 3 80.64% 88.00% 90.46%

[0089] Table 3 Mite-removing rate test results

[0090]

[0091] According to Table 2, Example 9 is the best ratio, and the bacteriostatic performance against the three kinds of bacteria is good. According to the results of Comparative Example 2 and Comparative Example 1, the addition of lysozyme greatly improves the bacteriostatic performance against Escherichia coli and Staphylococcus aureus. According to the results of Comparative Example 3 and Comparative Example 2, the addition of lactoferrin greatly improves the bacteriostatic performance of the system against Candida albicans.

[0092] The results of Comparative Example 1 to Example 9 show that the increase of lysozyme can improve the antibacterial property of the system on Staphylococcus aureus, but has no effect on Candida albicans; when the content of lactoferrin is higher or lower than 0.06%, the antibacterial property of the system is decreased. When the content of lactoferrin is 0.06%, the decrease of the content of dichlorobenzyl alcohol increases the antibacterial rate. When the content of dichlorobenzyl alcohol in Examples 4-7 is 0.12%, the increase of the content of lactoferrin increases the antibacterial rate on Candida albicans first and then decreases. It is analyzed that both dichlorobenzyl alcohol and lactoferrin have antifungal effect, and the combination of them has poor effect. It is speculated that dichlorobenzyl alcohol may be combined with a certain site of lactoferrin. When the content of lactoferrin is increased, dichlorobenzyl alcohol is combined too much, which causes the change of protein conformation and limits the antibacterial effect of itself. It is speculated that lactoferrin and dichlorobenzyl alcohol interact within a certain concentration range, which affects the antibacterial property of the system. Only through the matching of the scheme, the antibacterial effect of the system can be ensured, otherwise the system is unstable.

[0093] Test Example 2: Stain removal ability test

[0094] Clean the clean surface, divide it into 5 parts, use lipstick to smear 5 clean surfaces respectively, and let it stand naturally for 2 min. Take a photo, then wipe it with the pet leave-in cleaner of Example 9 and Comparative Examples 4 to 7 respectively for 30 s, take a photo after drying, compare the cleanliness degree of the before and after photos (as shown in Figure 1 ), and calculate the removal rate (as shown in Table 4). The stain removal ability of Example 9 is the best.

[0095] Table 4: Lipstick removal rate of the pet leave-in cleaner of Example 9 and Comparative Examples 4 to 7

[0096] Example 9 Comparative Example 4 Comparative Example 5 Comparative Example 6 Comparative Example 7 Erase rate 92.89% 65.85% 57.62% 58.91% 45.29%

[0097] Test Example 3: Volatility test

[0098] Use artificial animal hair to replace pet fur, divide it into 5 parts with equal mass, pour the pet leave-in cleaner of Example 9 and Comparative Examples 4 to 7 with equal mass, weigh and record, test the weight of each part at 0, 1, 2, 4, 8 and 12 min, calculate the volatility, and obtain the time-volatility curve.

[0099] As shown in Figure 2 , the volatility of the system is the best when the three surfactants of M 550PR (polyquaternary ammonium salt-7), decyl glucoside and cocamidopropyl betaine are combined, and the combination of any two cannot achieve good effect. It is speculated that the combination of the three surfactants forms large micelles, reduces the surface tension of water, accelerates the evaporation of water, and dries quickly.

[0100] Test Example 3: Irritation and acute oral toxicity test

[0101] Three kinds of competitive products with good sales in the market were purchased, and the irritability was tested according to the method in SN / T2329-2009, and the acute oral toxicity was tested according to the method in the Disinfection Technical Standard.

[0102] The irritability results are shown in Table 5, and the acute oral toxicity test results are shown in Table 6.

[0103] Table 5 Irritability results

[0104] Example 9 Competitor 1 Competitor 2 Competitor 3 IS value 2.96 7.68 5.87 4.34 Irritation Mild irritation Moderate irritation Moderate irritation Mild irritation

[0105] Table 6 Mouse acute oral toxicity test results of the pet leave-on cleaner of Example 9

[0106]

[0107] According to Table 5, the irritability is the lowest under the optimal ratio of the scheme. According to Table 6, 20 mice do not have obvious poisoning symptoms within the 14-day observation period, no death occurs, and no obvious abnormalities are found in the autopsy at the end of the test. According to the Disinfection Technical Standard (2002 edition), the mouse acute oral median lethal dose LD50>5000 mg / kg body weight is determined: it is practically non-toxic.

[0108] In summary, the pet cleaner of the present application uses lysozyme and lactoferrin in combination, and is assisted by dichlorobenzyl alcohol, which synergistically kills bacteria and removes mites, and can solve the problem of weak bacteriostatic and mite removal effect of existing pet cleaners.

[0109] Meanwhile, the pet cleaner of the present application uses lysozyme and lactoferrin in combination, simulates the pet's own sterilization and immunity, is harmless to lick, and can also improve immunity. The assisted dichlorobenzyl alcohol is wrapped by castor oil, releases mite removal and sterilization after rubbing, volatilizes fast, is not easy to remain, and has high safety. The pet cleaner of the present application is non-toxic after cleaning the pet's hair.

[0110] The pet cleaner of the present application uses cationic silicone oil and M 550PR to make the hair soft, so that the cleaner is more easily penetrated into the deep layer of the hair, and uses three kinds of surfactants, namely, decyl glucoside, cocamide propyl betaine and polyquaternium-7, to form large micelles, reduce the surface tension of water, accelerate the volatilization of water, and dry quickly, so that the pet's hair can be prevented from being wet after cleaning.

[0111] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.

[0112] Furthermore, to the extent that the terms "comprises", "comprising", "includes", "including" or "has" or "having" are used in the detailed description and claims, such terms are intended to be inclusive in a manner similar to that of the terms "comprises" or "comprising", "includes" or "including" or "has" or "having" when used in the detailed description and claims herein. Additionally, the terms "first", "second", "third", "fourth", "fifth" and "sixth" are used merely as labels, and are not intended to impose numerical requirements on their objects.

Claims

1. A pet no-rinse cleaner, characterized in that, include: Lysozyme, dichlorobenzyl alcohol, lactoferrin.

2. The pet rinsing cleaner according to claim 1, characterized in that, By mass percentage, it includes: lysozyme 0.05-0.2%, dichlorobenzyl alcohol 0.05-0.2%, and lactoferrin 0.02-0.2%.

3. The pet rinsing cleaner according to claim 2, characterized in that, It also includes, by mass percentage: 0.1-0.3% decyl glucoside, 0.1-0.3% cocamidopropyl betaine, and 0.4-0.5% hydrogenated castor oil.

4. The pet rinsing cleaner according to claim 3, characterized in that, It also includes, by mass percentage: 0.008-0.01% cationic silicone oil and 0.008-0.02% polyquaternium-7.

5. The pet no-rinse cleaner according to claim 4, characterized in that, It also includes, by mass percentage: 0.3-0.8% propylene glycol and the balance water.

6. The pet no-rinse cleaner according to claim 5, characterized in that, By weight percentage, it includes: propylene glycol 0.5%, polyquaternium-7 0.01%, decyl glucoside 0.2%, cocamidopropyl betaine 0.2%, lysozyme 0.1%, cationic silicone oil 0.01%, hydrogenated castor oil PEG-40 0.5%, dichlorobenzyl alcohol 0.06%, lactoferrin 0.06%, and water to 100%.

7. The method for preparing the pet no-rinse cleaner according to any one of claims 1 to 6, characterized in that, The raw materials are mixed to obtain the pet no-rinse cleaner.

8. The method for preparing the pet no-rinse cleaner according to claim 5 or 6, characterized in that, include: During the stirring process, hydrogenated castor oil PEG-40, dichlorobenzyl alcohol, lysozyme and lactoferrin are mixed sequentially and heated to 40-60℃. After stirring until clear, solution I is obtained. In a separate container, add the other ingredients in sequence, and mix and stir until clear and transparent to obtain solution II; Add solution I to solution II, stir and homogenize at 2000-4000 r / min until the solution is completely clear to obtain the pet no-rinse cleaner.

9. The use of the pet rinsing agent according to any one of claims 1 to 6 in the preparation of pet rinsing products.

10. The application according to claim 9, wherein the pet no-rinse cleaning product is any one of pet wipes, powder, foaming agent, or liquid.