Allergen reducer compositions, articles and methods
A deactivator, allergen technology, applied in the directions of surface active detergent compositions, detergent compositions, chemical instruments and methods, etc., can solve the problems of difficult to remove allergens, air filter heat or light damage, etc.
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example 1-6
[0044] Examples 1-6 and Comparative Examples 1-5: Testing different types of surfactants as active ingredients sex agent
[0045] The removal efficiency of Derp1 was measured by using the following samples: samples containing different compounds of formula 1 as active ingredients of allergen deactivators (Examples 1-6), samples without surfactant (Comparative Example 1), and samples containing Samples of other surfactants substituted with compounds of Formula 1 (Comparative Examples 2-5). Herein, the coating amount of the active ingredient in the sample is 1 g / m 2 .
[0046] The results are shown in Table 1:
[0047] Table 1
[0048]
[0049]
example 7-10
[0050] Examples 7-10: Testing Different Types of Organic Acids and EDTA Salts
[0051] Table 2 shows the results of measuring allergen deactivation by using Derf1 as a test allergen and an allergen deactivator comprising the following ingredients.
[0052] Table 2
[0053]
example 11-16 and comparative example 6
[0054] Examples 11-16 and Comparative Example 6: Test for room dust mite residues
[0055] The removal efficiency was measured by using the following materials: four types of house dust mite (Derp1, Derf1, Derp2 and Derf2) and an allergen deactivator containing disodium cetyl diphenyl ether disulfonate as active ingredient, wherein by changing the total Coating weight of active ingredient in the sample, i.e. 0.5, 1, 2, 3, 4 and 8 g / m 2 while testing. The results are shown in Table 3.
[0056] table 3
[0057]
[0058] As a result of testing, it was found that the allergen deactivating agents of the present disclosure exhibit superior allergen deactivating effects on Derp1, Derf1, Derp2, and Derf2 compared to untreated samples.
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