Other substances
The "Other substances" category includes active ingredients of plant protection products that do not fit into the classic definitions of herbicides, fungicides, or insecticides based on their chemical properties or mechanism of action. These are often naturally occurring compounds, biostimulants, or specific biological process regulators.
What the section contains
Acequinocyl
Acetic acid
Acetic acid
Acrinathrin
Active chlorine generated from sodium chloride by electrolysis
Afidopyropen
Agrobacterium radiobacter strain K84
Agrotis segetum granulosis virus
Akanthomyces muscarius strain Ve6
Alachlor
Aldicarb
Aldrin
Alkyl mercury compounds
Alkyldimethylbenzyl ammonium chloride
Alkyloxyl and aryl mercury compounds
Allethrin
Alpha-pinene
Aluminium ammonium sulphate
Aluminium phosphide
Aluminium potassium sulphate dodecahydrate
Aluminium silicate (kaolin)
Ametryn
Amino acids (mix)
Amitraz
Amitrole
Ammonium bituminosulfonate
Ammonium carbonate
Ammonium sulphamate
Ampelomyces quisqualis strain AQ10
Anethole
Anilazine
Anilofos
Aqueous extract from the germinated seeds of sweet Lupinus albus
Aschersonia aleyrodis
Asomate
Asphalts
Asulam
Asulam sodium
Aureobasidium pullulans (strains DSM 14940 and DSM 14941)
Azaconazole
Azadirachtin
Azafenidin
Azamethiphos
Aziprotryne
Azocyclotin
Bacillus amyloliquefaciens strain AH2
Bacillus amyloliquefaciens strain D747
Bacillus amyloliquefaciens strain FZB24
Bacillus amyloliquefaciens strain FZB42
Bacillus amyloliquefaciens strain IT-45
Bacillus amyloliquefaciens strain MBI 600
Bacillus amyloliquefaciens strain QST 713
Bacillus pumilus strain QST 2808
Bacillus sphaericus
Bacillus subtilis strain IAB/BS03
Bacillus subtilis strain IBE 711
Bacillus thuringiensis subsp. Aizawai strain ABTS-1857
Bacillus thuringiensis subsp. Aizawai strain GC-91
Bacillus thuringiensis subsp. israelensis strain AM65-52
Bacillus thuringiensis subsp. Kurstaki strain ABTS-351
Products in this section · 12
Other substances
Their mechanism of action varies from directly inhibiting pathogen metabolic pathways to activating the plant's systemic acquired resistance. Some substances in this group act as specific enzyme synthesis inhibitors without being classified as traditional pesticides.
Individual representatives of this group act as antitranspirants or surfactants that alter the surface tension of the spray solution to improve the penetration of other active agents. Their role in the agroecosystem lies in modifying the physiological state of crops or environmental conditions.
The effectiveness of such products strongly depends on the plant growth stage and hydrothermal conditions during application. Unlike traditional pesticides, many "other substances" have a narrower spectrum of action and less pronounced acute toxicity.
This group requires a deep understanding of crop physiology, as improper application can lead to unpredictable changes in plant metabolism. The use of these products must always be justified by a clear diagnosis of the field's status.
The spectrum of targets for this group of substances is extremely diverse and covers both the control of harmful organisms and the management of growth processes. They are used against phytopathogens, insect pests, and weeds under special, specific conditions.
They are applied to a wide range of crops: from cereals to vegetable and orchard plantations. They are often used in integrated pest management (IPM) systems to reduce the overall pesticide load on the environment.
Frequent use occurs when it is necessary to correct plant stress conditions caused by drought, frost, or pesticide phytotoxicity. They are also effective as adjuvant agents when applying tank mixtures.
An important direction is their use in organic farming, where classic synthetic pesticides are prohibited. A number of substances are used for desiccation or pre-harvest treatments to improve crop quality.
To achieve results, it is crucial to follow recommendations regarding the spray solution concentration, as many substances act as stimulants in small doses and as inhibitors when the rate is exceeded.
Application timing is determined solely by the specific product's regulations, as there is no single instruction for the entire group. It is necessary to focus on the crop's phenophase and the pest threshold.
Application rates depend on the product form and method of application — whether foliar spraying, seed treatment, or soil application. For most substances, it is permissible to perform no more than 1-2 treatments per growing season.
When preparing tank mixtures, it is important to conduct a compatibility test, as many "other substances" have specific pH levels or formulations that may react with other components.
The pre-harvest interval varies within a wide range; however, for products in this category, it is usually shorter than for highly toxic chemicals. Nevertheless, disregarding established timelines is not allowed.
It is recommended to carry out treatments in the early morning or late evening in the absence of strong wind and direct sunlight. This minimizes the risk of active substance evaporation and increases its efficiency.
Safety precautions when working with this group of substances include the use of personal protective equipment for the respiratory tract, skin, and mucous membranes. Despite potentially lower toxicity, ignoring safety rules is not acceptable.
It is forbidden to mix products without checking for chemical compatibility, as this may lead to precipitation, loss of biological activity, or phytotoxicity. Storage should be in the original packaging in a cool place.
When disposing of packaging and leftover spray solution, it is necessary to follow current legislation regarding the handling of agrochemicals. Avoid getting products into water bodies and areas inhabited by beneficial entomophages.
Restrictions also apply to crop rotation: some substances may affect the development of subsequent crops in the field. Always read the product label carefully before starting work in the field.
If the operator shows signs of poisoning or allergic reactions, work should be stopped immediately, and a doctor should be consulted, providing information about the active substance from the label.