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Plant Protection Products

Effective crop protection is one of the cornerstones of food security, as it helps to reduce losses caused by weeds, diseases and pests. Plant protection products help farmers maintain healthy, robust crops by preventing the spread of harmful organisms and minimising the risk of reduced yields. Thanks to them, agricultural production is more stable and predictable, which benefits both producers and consumers.

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EXOwet R3823 Ready to use EXOwet R3823 is a ready-to-use mixture of non-ionic surfactants, formulated to improve water infiltration into the soil. It works by facilitating the penetration...
Composition
Mixtures
EXOwet R3823
EXOwet R3831 Ready to use EXOwet R3831 is a ready-to-use mixture of non-ionic surfactants, formulated to improve water infiltration into the soil. It works by facilitating the penetration...
Composition
Mixtures
EXOwet R3831
MCAA Flakes UP (Monochloroacetic acid) MCAA Flakes UP is a product of the highest purity available, in which the DCAA content does not exceed 90 ppm. It is intended for use primarily in pharmacy in processes...
Composition
Chlorine derivatives
CAS No.
79-11-8
MCAA Flakes UP  (Monochloroacetic acid)
MCAA 70% Solution HP (Monochloroacetic acid) MCAA 70% Solution HP is a high purity product characterised by DCAA levels suitable for most applications where properties such as colour (colourless, clear) and...
Composition
Chlorine derivatives
CAS No.
79-11-8
MCAA 70% Solution HP  (Monochloroacetic acid)
MCAA 70% Solution Tech. (Technical monochloroacetic acid) MCAA 70% Solution Tech. is a product characterised by DCAA levels not exceeding 1500 ppm. Monochloroacetic acid (MCAA) is highly reactive and is used as a raw material...
Composition
Chlorine derivatives
CAS No.
79-11-8
MCAA 70% Solution Tech.  (Technical monochloroacetic acid)
MCAA 70% Solution UP (Monochloroacetic acid) MCAA 70% Solution UP is a product of the highest purity available, in which the DCAA content does not exceed 90 ppm. It is intended for use primarily in pharmacy...
Composition
Chlorine derivatives
CAS No.
79-11-8
MCAA 70% Solution UP  (Monochloroacetic acid)
MCAA 75% Solution HP (Monochloroacetic acid) MCAA 75% Solution HP is a high purity product characterised by DCAA levels suitable for most applications where properties such as colour (colourless, clear) and...
Composition
Chlorine derivatives
CAS No.
79-11-8
MCAA 75% Solution HP  (Monochloroacetic acid)
MCAA 75% Solution Tech. (Technical monochloroacetic acid) MCAA 75% Solution Tech is a product characterised by DCAA levels not exceeding 1500 ppm. Monochloroacetic acid (MCAA) is highly reactive and is used as a raw material...
Composition
Chlorine derivatives
CAS No.
79-11-8
MCAA 75% Solution Tech.  (Technical monochloroacetic acid)
MCAA 75% Solution UP (Monochloroacetic acid) MCAA 75% Solution UP is a product of the highest purity available, in which the DCAA content does not exceed 90 ppm. It is intended for use primarily in pharmacy...
Composition
Chlorine derivatives
CAS No.
79-11-8
MCAA 75% Solution UP  (Monochloroacetic acid)
MCAA 80% Solution Tech. (Technical monochloroacetic acid) MCAA 80% Solution Tech. is a product characterised by DCAA levels not exceeding 1500 ppm. Monochloroacetic acid (MCAA) is highly reactive and is used as a raw material...
Composition
Chlorine derivatives
CAS No.
79-11-8
MCAA 80% Solution Tech.  (Technical monochloroacetic acid)
MCAA Flakes HP (Monochloroacetic acid) MCAA Flakes HP is a high purity product characterised by DCAA levels suitable for most applications where properties such as colour (colourless, clear) and purity...
Composition
Chlorine derivatives
CAS No.
79-11-8
MCAA Flakes HP (Monochloroacetic acid)
MCAA Flakes Tech. (Technical monochloroacetic acid) MCAA 80% Solution Tech. is a product characterised by DCAA levels not exceeding 1500 ppm. Monochloroacetic acid (MCAA) is highly reactive and is used as a raw material...
Composition
Chlorine derivatives
CAS No.
79-11-8
MCAA Flakes Tech.  (Technical monochloroacetic acid)
MCAA 80% Solution HP (Monochloroacetic acid) MCAA 80% Solution HP is a high purity product characterised by DCAA levels suitable for most applications where properties such as colour (colourless, clear) and...
Composition
Chlorine derivatives
CAS No.
79-11-8
MCAA 80% Solution HP  (Monochloroacetic acid)
Phosphorus oxychloride (POCl3) Phosphorus oxychloride is a colourless liquid with a strong, very characteristic odour. Hydrolysis very easily occurs, which is accompanied by the release of fumes,...
Composition
Inorganic phosphorus compounds
CAS No.
10025-87-3
Phosphorus oxychloride  (POCl<sub>3</sub>)
Phosphorus trichloride (PCl3) Phosphoric trichloride is a colourless, smoky liquid with a strong characteristic odour that may resemble hydrogen chloride. From a chemical point of view it is...
Composition
Inorganic phosphorus compounds
CAS No.
7719-12-2
Phosphorus trichloride  (PCl<sub>3</sub>)
POLIkol 1500 (PEG-32) POLIkol 1500 is a product belonging to the polyoxyethylene-glycol group - PEG with an average molecular weight of 1500 (INCI name: PEG-32). The commercial product...
Composition
Polyethylene glycols
CAS No.
25322-68-3
POLIkol 1500 (PEG-32)
POLIkol 2000 (PEG-45) POLIkol 2000 is a product belonging to the group of polyoxyethylene glycols (PEG with an average molecular weight of 2000), INCI name: PEG-45. The commercial product...
Composition
Polyethylene glycols
CAS No.
25322-68-3
POLIkol 2000 (PEG-45)
POLIkol 300 (PEG-6) POLIkol 300 belongs to the group of polyoxyethylene glycols (PEG with an average molecular weight of 300). INCI: PEG-6. The product is a colourless liquid well soluble...
Composition
Polyethylene glycols
CAS No.
25322-68-3
POLIkol 300 (PEG-6)
POLIkol 400 (PEG-8) POLIkol 400 belongs to the group of polyoxyethylene glycols (PEG with an average molecular weight of 400). INCI: PEG-8. The product is a colourless liquid, well...
Composition
Polyethylene glycols
CAS No.
25322-68-3
POLIkol 400 (PEG-8)
POLIkol 600 (PEG-12) POLIkol 600 belongs to the group of polyoxyethylene glycols (PEG with an average molecular weight of 600). INCI: PEG-12. The product is available as a high viscosity...
Composition
Polyethylene glycols
CAS No.
25322-68-3
POLIkol 600 (PEG-12)
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Classification of plant protection products

Plant protection products (PPPs) are preparations used in agriculture designed to protect crops from all harmful organisms or to prevent the action of such organisms, in order to ensure healthy plant growth and produce high-quality yields. In practice, plant protection products fall into three main groups, which can be categorised according to the type of threat they combat as follows:

  • Herbicides – phytotoxic chemical compounds used to control weeds. They eliminate unwanted vegetation, thereby reducing competition for water, sunlight and nutrients, thus increasing yields. Depending on their mode of action, herbicides are classified as selective or non-selective. Selective herbicides (e.g. MCPA, MCPP-P, 2,4-D) destroy only a specific group of weeds (in this case dicotyledons) without harming monocotyledons. Non-selective herbicides (e.g. glyphosate), on the other hand, destroy all plants they come into contact with.
  • Fungicides – used to prevent, control or eradicate diseases caused by fungi and fungus-like organisms. They work by inhibiting spore germination, hyphal growth or the life processes of pathogens. Their aim is to maintain plant health and protect crops from losses caused by fungal diseases. They may act by contact, i.e. remain on the plant’s surface and control fungi there (e.g. copper, sulphur), or systemically by penetrating plant tissues and destroying the mycelium inside the plant (e.g. triazoles).
  • Insecticides – are chemical substances designed to control insects at various stages of development (eggs, larvae, adults) that feed on crops. Insecticides can act in three ways:
    • contact – insects die upon direct contact with the active substance (e.g. deltamethrin),
    • gastrointestinal – the pests die as a result of consuming a part of the plant on which the active substance was present (e.g. spinosad),
    • systemically – the active ingredients circulate in the plant’s sap, killing insects feeding within the tissues (e.g. acetamiprid).

In addition, products are used to control other types of pests:

  • Molluscicides – designed to control snails. The most popular are metaldehyde and iron phosphate, which are scattered in granule form; these are readily eaten by snails and subsequently cause their death through dehydration and disruption of the nervous system.
  • Nematocides – designed to control nematodes, applied to the soil.
  • Acaricides – used to control mites.

Active ingredients in plant protection products

Active ingredients (active substances) form the foundation of effective plant protection. They are responsible for controlling pests, diseases and weeds, ensuring healthy plant growth and high yields. Plant protection products use active ingredients, which can be divided into synthetic and natural, reflecting both their source and how they act in the environment. Synthetic substances are chemical compounds designed in the laboratory, often with a precisely targeted mode of action, high efficacy and durability, making them the basis of many modern herbicides, fungicides and insecticides. Active ingredients of natural origin, on the other hand, are derived from living organisms or natural minerals – they include, among others, plant extracts, microorganisms and their metabolites, and mineral compounds. Active ingredients of natural origin are valued for their greater selectivity and lower environmental impact, which means they are increasingly becoming an alternative to synthetic products.

Chemical raw materials for the production of plant protection products in the PCC Group’s portfolio

The PCC Group’s range for use in plant protection products includes chemical raw materials and intermediates. These include, amongst others, high-purity phosphorus-based compounds in the form of phosphorus oxychloride (POCl3 ) and phosphorus trichloride (PCl3 ), used as substrates for the synthesis of certain active substances (e.g. glyphosate).

Monochloroacetic acid (MCAA) is an intermediate used in the manufacture of herbicides such as 2,4-­ -dichlorophenoxyacetic acid (2,4-­ D), 2,4,5-trichlorophenoxyacetic acid (2,4,5-­ T), phosphonates (e.g. glyphosate), 2-­ -methyl­ -4-­ -phenoxyacetic acid (MCPA) or intermediates for their production such as chloroacetyl chloride (CAC) and trichloroacetyl chloride (TCAC), or insecticides such as thiophosphoric acid esters (e.g. dimethoate).

The PCC Group also produces chlorine – an important raw material in the industrial manufacture of insecticides – and benzene chlorides, including paradichlorobenzene (PDCB). This compound sublimates on contact with air, releasing a strong odour, which is why it is used in insect repellents.

PCC Group surfactants in plant protection products

Alongside active substances, which provide biocidal activity against harmful organisms, co-formulants – including surfactants – are extremely important components of plant protection products, as they influence the performance properties of spray solutions. The PCC Group’s portfolio includes a wide range of surfactants, which can be successfully used in plant protection products as emulsifiers, wetting agents, dispersants or humectants.

Emulsification is one of the most important functions of surfactants in plant protection product formulations. Some plant protection products contain oils and organic solvents (formulations such as EC, OD, EW, SE and CS), the presence of which makes it difficult to mix the preparations with water. To facilitate this process, it is necessary to use emulsifiers which, thanks to their hydrophilic-hydrophobic structure, enable the spontaneous formation of emulsions during the preparation of the spray mixture by dispersing the hydrophobic phase particles in water. The emulsifying products offered by the PCC Group primarily comprise the EXOemul series, i.e. surfactant blends used, among other things, for emulsifying herbicide formulations (e.g. containing fluroxypyl), insecticides (e.g. containing abamectin) and fungicides (e.g. containing bromuconazole, tebuconazole) of the EC type: EXOemul A3, EXOemul EM260. Products from the non-ionic surfactant groups will also work well for this purpose: ROKAcety from the R series and ROKAnole, as well as anionic surfactants such as EXOfos (particularly for EC, EW, SE and CS formulations) or SULFOROKAnole for SE and EW formulations.

Wetting agents enhance the action of dispersants, facilitate the spreading of spray droplets across the plant surface and ensure even application. Their action is essential in both water-based formulations such as SL, SC and FS, and those based on water and organic solvents (SE, CS), as well as in powder formulations such as SP, SG, WP, WG and WS. Non-ionic surfactants are suitable as wetting agents: ethoxylated fatty alcohols from the ROKAnol group (D, DB, GA, ID, IT, K, L, LP, NL, O series), EO/PO copolymers from the ROKAmer group (including the G series) and specialised blends from the EXOwet series.

The role of dispersants and co-dispersants is to ensure the even distribution of solid particles in agrochemical formulations, preventing their agglomeration and sedimentation. They are used in SC, FS, OD, SE, CS, WP, WG and WS formulations. The PCC Group’s portfolio includes both steric dispersants, which stabilise formulations thanks to large, branched molecules that create a spatial barrier (ROKAcety R series, ROKwinole, ROKwiny and ROKAnole TSP), as well as electrosteric dispersants, which, in addition to steric interactions, cause electrostatic repulsion due to the surface charge present in the molecule (products from the SULFOROKAnol, EXOfos and Rodys groups).

The role of humectants is to retain moisture on the leaf surface and prevent droplets from drying out too quickly, which helps to increase the uptake of active ingredients. This allows the active ingredient to remain effective on the plant for a longer period. The presence of humectants is essential in SL, SC and CS formulations. The PCC Group’s portfolio includes POLIkole, a range of ethylene glycol polymers with varying molecular weights (POLIkole 200, 300, 400, 600, 800 and 1000), which are ideal for this purpose.