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Last Updated: Apr 25, 2025 | Study Period: 2024-2030
A systemic herbicide called picloram is employed to control woody plants generally. Moreover, a variety of broad-leaved weeds are controlled by it, but most grasses are resistant.
Picloram, a herbicide in the pyridine family, is a chlorinated derivative of picolinic acid. Picloram can be applied to cut surfaces, sprayed on foliage, injected into plants, or put at the plant's base where it will seep down to the roots.
Picloram is circulated throughout the plant after being absorbed by the leaves, stem, or roots. Picloram-containing herbicides come in a wide range of brand names.
Under the trade name Tordon, Dow Chemicals and Dow AgroSciences sell herbicides that contain it. Picloram is only mildly harmful to the skin and moderately toxic to the eyes.
Picloram has never been known to cause human intoxication, hence it is impossible to define the symptoms of acute exposure. The most enduring herbicide in its family is called picloram.
As it does not stick to soil, it may seep into groundwater, where it has already been found. It is primarily broken down by bacteria in soil and water.
Aquatic life exhibits relatively little potential for picloram to accumulate. When using dung as fertiliser, gardeners should make sure the animal source hasn't grazed on hay that has been treated with picloram because the excrement still has broadleaf-killing potential.
The Occupational Safety and Health Administration has determined a permissible exposure limit for occupational exposures over an eight-hour work shift of 15 mg/m3 for total exposure and 5 mg/m3 for respiratory exposure.
A systemic herbicide called picloram is used to manage woody and herbaceous plants with deep roots in rights-of-way, forestry, rangelands, pastures, and minor grain crops.
Forestry is the area to which it is applied most heavily, followed by grassland and rangeland. Picloram acid has no applications outside of production.
Picloram-containing herbicides come in a wide range of brand names. Under the trade name Tordon, Dow Chemicals and Dow AgroSciences sell herbicides that contain it.
The Global Picloram Market accountedfor $XX Billion in 2022 and is anticipated to reach $XX Billion by 2030, registering a CAGR of XX% from 2024 to 2030.
With titanium oxide (TiO2) present in the presence of sunshine, the photocatalytic degradation of picloram (4-amino-3,5,6-trichloro-2-pyridinecarboxylic acid), a common acidic herbicide, was studied.
Picloram underwent complete photocatalytic breakdown in under a minute when exposed to TiO2, however under sunlight without TiO2 there was barely any degradation.
During the photocatalytic degradation of picloram, the effects of several parameters, including TiO2 dose, solution starting pH, light intensity, reaction temperature, and irradiation time, were discovered.
The degradation of total organic carbon (TOC) in the photocatalytic process served as evidence that picloram had mineralized.
The Langmuir-Hinshelwood model and the reaction rate constant were used to determine the pseudo-first order kinetics of photocatalytic degradation.
After finishing the photocatalytic destruction of picloram, the end products were erected as chloride ion, ammonium ion, nitrate ion, and CO2.
During the breakdown of picloram, the intermediate products could not be identified by the GC-MS. In light of the frontier electron density and the point charge at each atom of the picloram molecule, a hypothesised mechanism for the degradation of picloram was made.
The use of sunshine in the photocatalytic degradation process could prove to be a practical way to clean wastewater contaminated with picloram.
Sl no | Topic |
1 | Market Segmentation |
2 | Scope of the report |
3 | Abbreviations |
4 | Research Methodology |
5 | Executive Summary |
6 | Introduction |
7 | Insights from Industry stakeholders |
8 | Cost breakdown of Product by sub-components and average profit margin |
9 | Disruptive innovation in the Industry |
10 | Technology trends in the Industry |
11 | Consumer trends in the industry |
12 | Recent Production Milestones |
13 | Component Manufacturing in US, EU and China |
14 | COVID-19 impact on overall market |
15 | COVID-19 impact on Production of components |
16 | COVID-19 impact on Point of sale |
17 | Market Segmentation, Dynamics and Forecast by Geography, 2024-2030 |
18 | Market Segmentation, Dynamics and Forecast by Product Type, 2024-2030 |
19 | Market Segmentation, Dynamics and Forecast by Application, 2024-2030 |
20 | Market Segmentation, Dynamics and Forecast by End use, 2024-2030 |
21 | Product installation rate by OEM, 2023 |
22 | Incline/Decline in Average B-2-B selling price in past 5 years |
23 | Competition from substitute products |
24 | Gross margin and average profitability of suppliers |
25 | New product development in past 12 months |
26 | M&A in past 12 months |
27 | Growth strategy of leading players |
28 | Market share of vendors, 2023 |
29 | Company Profiles |
30 | Unmet needs and opportunity for new suppliers |
31 | Conclusion |
32 | Appendix |