PubMed Health⌕ Search

PubMed · 10778909

Herbicide formulations.

Abstract

BACKGROUND: Herbicides comprise nearly half of the 5 billion pounds of pesticide active ingredients used worldwide annually. The active ingredient must be formulated with other ingredients to allow mixing, dilution, application, and stability. Liquid commercial formulations for spray foliar application include water-soluble liquids, emulsifiable concentrates, suspension concentrates or "flowables," and gels. Dry formulations that are mixed with water for spray application include wettable powders and water-dispersible granules. Granules are broadcast directly out of the bag. The carrier in liquid formulations is either water or an organic solvent or oil. The general chemical class of the carrier may be deduced based on the solubility characteristics of the active ingredient. Cosolvents may be necessary to optimize solubility and stability. Surfactants are nearly universally present in herbicide formulations or added prior to application. They aid uniform spreading of the spray droplet on the leaf and penetration of its waxy cuticle by the active ingredient. In solvent-based formulations, surfactants permit a stable oil-in-water emulsion to form when diluted with water for actual use. New surfactant systems are currently of intense competitive importance. Other formulation ingredients include pH adjusters, buffers, milling aids, antifoaming agents, acid scavengers, dyes, suspending agents, preservatives, dispersants, emulsifiers, densifiers, antifreeze, and crystal promoters. In highly regulated environments, the other formulation components in pesticides are receiving scrutiny. In the US, the EPA's strategy has been to categorize currently used formulation ingredients into 4 lists based on their toxicology profiles. The ultimate outcome is to have all inert ingredients on List 4, Minimal Risk. List 4 ingredients are generally regarded as safe or have current use patterns that do not pose an unreasonable risk of adverse effect to public health or the environment.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

R L Tominack. 2000. Herbicide formulations.. https://doi.org/10.1081/clt-100100927

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Alternative statistical parameter for high-throughput screening assay quality assessment.

High-throughput screening is an essential process in drug discovery. The ability to identify true active compounds depends on the high quality of assays and proper analysis of data. The Z factor, presented by Zhang et al. in 1999, provides an easy and useful summary of assay quality and has been a widely accepted standard. However, as data analysis has undergone much improvement recently, the assessment of assay quality has not evolved in parallel. In this article, the authors study the implications of Z factor values under different conditions and link the Z factor with the power of discovering true active compounds. They discuss the different interpretations of Z factor depending on error distributions and advocate direct analysis of power as assay quality assessment. They also propose that in estimating assay quality parameters, adjustments in data analysis should be taken into account. Studying the power of identifying true "hits" gives a more direct interpretation of assay quality and may provide guidance in assay optimization on some occasions.

Chemistry, Pharmaceutical↗

Nonaqueous capillary electrophoresis in pharmaceutical analysis.

This review presents different solvents and electrolytes commonly used as BGEs in NACE for the analysis of pharmaceutical compounds. Most NACE applications carried out since 1998 for the analysis of compounds of pharmaceutical interest are presented in four tables: (i) analysis of drugs and related substances, (ii) analysis of chiral substances, (iii) analysis of phytochemical extracts and (iv) analysis of drugs in biological fluids. These selected examples are used to illustrate the interest in NACE versus conventional aqueous CE.

Chemistry, Pharmaceutical↗

Recent progress in capillary ITP.

ITP has been attracting constant attention for many years due to its principal capability to concentrate trace analytes by several orders of magnitude. In the current capillary format, it is able to concentrate trace analytes diluted to several microliters of an original sample into concentrated zones having volumes in the range of picoliters. Due to this reason, ITP holds an important position in many current multistage and multidimensional separation schemes. This article links up previous reviews on the topic and summarizes the progress of analytical capillary ITP since 2002. Almost 100 papers are reviewed that include methodological novelties, instrumental aspects, and analytical applications. Papers using ITP and/or isotachophoretic principles as part of multistage and/or multidimensional separation schemes are also included.

Chemistry, Pharmaceutical↗