FUMIGANT COMPOSITION FOR PEST CONTROL
20220071207 · 2022-03-10
Inventors
- Menghsiao MENG (Taichung City, TW)
- Shu-Mei DAI (Taichung City, TW)
- Wei-Ming LEU (Taichung City, TW)
- Cheng-Cheng LEE (Taichung City, TW)
- Ying-Tong LIN (Yunlin County, TW)
- Sheng HUANG (Tainan City, TW)
Cpc classification
International classification
Abstract
The invention discloses a fumigant composition for pest control comprising a chemical compound represented by formula (I) or/and a pesticidally acceptable reagent. By administering an effective amount of the fumigant composition for pest control disclosed in the invention into a closed space is capable of effectively killing a variety of pests, and will not have a considerable health impact on human and harm to the environment; given an appropriate operation is taken.
Claims
1. A method of killing pest comprises administering an effective amount of a fumigant composition for pest control into a closed space and at least one pest will be killed in the space; wherein he composition for pest control including a chemical compound of formula (I): ##STR00009## wherein: X is oxygen or sulfur; Y is hydrogen or methyl group; Z is methyl or ethyl group.
2. The method of killing pest as claimed in claim 1, wherein the chemical compound of formula (I) is 2,5-dimethylfuran, 2,5-dimethylthiophene, 2-methylfuran, 2-methylthiophene, 2-ethylfuran or 2-ethylthiophene.
3. The method of killing pest as claimed in claim 1, wherein the fumigant composition for pest control further comprises a pesticidally acceptable reagent.
4. The method of killing pest as claimed in claim 1, wherein the fumigant composition for pest control is a fumigant.
5. The method of killing pest as claimed in claim 1, wherein the fumigant composition for pest control is an emulsion.
6. The method of killing pest as claimed in claim 1, wherein the pests are selected from a group consisting of insects, mites and nematodes.
7. The method of killing pest as claimed in claim 1, wherein the effective amount of the fumigant composition for pest control is more than 18 mg of the chemical compound of formula (I) per thousand cubic centimeters of space.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
DETAILED DESCRIPTION OF THE INVENTION
[0025] The invention discloses a fumigant composition for pest control comprising at least one chemical compound represented by the following formula (I) as an active ingredient:
##STR00002##
[0026] wherein:
[0027] X is oxygen or sulfur;
[0028] Y is hydrogen or methyl group;
[0029] Z is methyl or ethyl group.
[0030] The chemical compound represented by formula (I) is a highly volatile liquid. According to the Material Safety Data Sheet provided by the manufactures and publicly accessible chemical information websites, such as PubChem, the active ingredient disclosed in the invention is a low-toxic substance compared to phosphine, which means that the active ingredient is relatively safer to the human body or other mammals, and there is no known hazard to the environment.
[0031] Specifically, the chemical compound represented by formula (I) is 2,5-dimethylfuran, 2,5-dimethylthiophene, 2-methylfuran, 2-methylthiophene, 2-ethylfuran or 2-ethylthiophene, as shown in table 1 below.
TABLE-US-00001 TABLE 1 structural formula of each of the chemical compounds Chemical name Structural formula Molecular formula 2,5-dimethylfuran
[0032] Furthermore, in order to increase the ways of use and adapt to different environmental conditions, the fumigant composition for pest control disclosed in the invention further comprises a pesticidally acceptable reagent, such as an organic chemical substance or a solvent. For example, the pesticidally acceptable reagent is dimethyl sulfoxide, glycerin, surfactant, or water, which can be formulated with the chemical compound of formula (I) disclosed in the invention according to a predetermined ratio and made into an emulsion.
[0033] The chemical compound of formula (I) disclosed in the invention has different median lethal concentrations (LC.sub.50) for pest insects. Therefore, an effective dosage of the fumigant composition for pest control disclosed in the invention will also vary with factors of place of use, method of use, and object of use. Taking rice weevil (Sitophilus oryzae) as an example, the LC.sub.50 of 2,5-dimethylfuran is 29-43 mg/dm.sup.3/2 hours; the LC.sub.50 of 2,5-dimethylthiophene is 40-90 mg/dm.sup.3/2 hours; the LC.sub.50 of 2-ethylfuran is 66-78 mg/dm.sup.3/2 hours; the LC.sub.50 of 2-ethylthiophene is 10-13 mg/dm.sup.3/2 hours; the LC.sub.50 of 2-methylfuran is 127-155 mg/dm.sup.3/2 hours; and the LC.sub.50 of 2-methylthiophene is 21-30 mg/dm.sup.3/2 hours. The effective dosage or LC.sub.50 of the chemical compound of formula (I) in the fumigant composition for pest control disclosed in the invention will vary with the application condition, the reagent used in combination, or the corresponding pests. However, variation of the effective dosage or LC.sub.50 of the active ingredient can be achieved by a person having ordinary skill in the art to which the invention pertains through the disclosure of the invention, and therefore shall fall within the protected scope of the invention.
[0034] Further, by administering an effective amount of the fumigant composition for pest control into a closed space is capable of killing a variety of pests in a short time. The pests include mites, nematodes, and insects; and the insects include, but not limited to, rice weevil (Sitophilus oryzae), sweet potato weevil (Cylas formicarius), German cockroach (Blattella germanica), and diamondback moth (Plutella xylostella).
[0035] For example, using the fumigant composition for pest control disclosed in the invention comprising more than 18 mg of the chemical compound of formula (I) in every thousand cubic centimeters (1 liter) of space is capable of killing a variety of pests within 2 hours.
[0036] Hereinafter, in order to further illustrate the technical features and efficacies of the invention, several examples in conjunction with the figures will be used for detailed description as follows.
[0037] The poisoning ability index used in the following examples is the internationally commonly used median lethal concentration (LC.sub.50), which refers to a dosage required to kill 50% of a group of tested insects. The main test method is to include a number of tested insect (adults or larvae) and the examined chemical at a wide range of dosage in a 1-liter airtight transparent containers for a period of time. Afterward, the airtight containers were opened for ventilation, and the dead insects in the containers were counted. The linear regression between the mortality, expressed as probability unit, and the log dosage was analyzed using the software Priprobit v1.63, from which the value of LC.sub.50 could be obtained.
Example 1: Fumigant Toxicity Test (1)
[0038] Take several 1-liter airtight transparent containers marked with different doses of 2,5-dimethylfuran, then put 30 insects into each of the transparent containers and add 2,5-dimethylfuran with marked doses (0, 18, 45, 90, 180 mg/dm.sup.3), respectively, into each of the transparent containers. Place the containers at room temperature (˜24° C.) for 2 hours, and then quantitate the dead insects in each of the transparent containers. The results are shown in
[0039] From the results shown in
[0040] The results shown in
Example 2: Fumigant Toxicity Test (2)
[0041] Put 30 adult insects of rice weevil (Sitophilus oryzae) into each of a group of 1-liter transparent containers, on which the name of tested chemical and the predetermined dosage are marked. Wherein, the chemicals to be tested include 2,5-dimethylfuran, 2,5-dimethylthiophene, 2-methylfuran, 2-methylthiophene, 2-ethylfuran and 2-ethylthiophene. The airtight containers, which contain the insect and chemical, are left at room temperature of about 24° C. for 2 hours. Afterward, the containers are opened for ventilation, and the dead rice weevils (Sitophilus oryzae) in each of the containers are counted. The linear regression between mortality and log dosage is analyzed using the software Priprobit v1.63, from which the lethal concentrations 50% (LC.sub.50) and 95% (LC.sub.95) are calculated. The results are shown in
[0042] From the results in
TABLE-US-00002 TABLE 2 Lethal concentration 50% (LC.sub.50) and 95% (LC.sub.95) of the different chemical compounds toward rice weevil (Sitophilus oryzae) Number of tested LC.sub.50 [95% CI] LC.sub.95 [95% CI] Chemicals insect (mg/dm.sup.3) (mg/dm.sup.3) 2-methylfuran 420 140.1 [127.7-154.6] 329.7 [274.3-434.6] 2-ethylfuran 420 72.1 [67.0-77.6] 146.5 [128.1-177.2] 2,5 -dimethylfuran 630 36.3 [29.3-42.7] 111.6 [89.6-157.7] 2-methylthiophene 420 25.8 [21.7-29.5] 54.6 [45.9-72.5] 2-ethylthiophene 420 11.7 [10.6-12.9] 20.6 [18.2-25.1] 2,5-dimethylthiophene 420 63.8 [40.4-89.2] 135.3 [94.4-830.7]
[0043] Based on the combined results of example 1 and example 2, it can be known that 2,5-dimethylfuran, 2,5-dimethylthiophene, 2-methylfuran, 2-methylthiophene, 2-ethylfuran and 2-ethylthiophene have similar abilities to kill insects, which is sufficient to prove that the chemical compound represented by formula (I) disclosed in the invention has the ability to kill insects with extensive effects, and can be used as the active ingredient of the fumigant composition for pest control.
[0044] It is to be understood that the above description is only the embodiments and examples of the invention and is not used to limit the present invention, and changes in accordance with the concepts of the present invention may be made without departing from the spirit of the present invention. For example, the equivalent effects produced by various transformations, variations, modifications and applications made to the configurations or arrangements shall still fall within the scope covered by the appended claims of the present invention.