Technologies and Data Analytics to Manage Grain Quality On-Farm—A Review

Author:

Walker Cassandra K.12ORCID,Assadzadeh Sahand1ORCID,Wallace Ashley J.1ORCID,Delahunty Audrey J.1ORCID,Clancy Alexander B.1ORCID,McDonald Linda S.1ORCID,Fitzgerald Glenn J.12ORCID,Nuttall James G.12ORCID,Panozzo Joe F.12ORCID

Affiliation:

1. Agriculture Victoria Research, Grains Innovation Park, Horsham, VIC 3400, Australia

2. Centre for Agricultural Innovation, School of Agriculture and Food, Faculty of Science, The University of Melbourne, Parkville, VIC 3010, Australia

Abstract

Grains intended for human consumption or feedstock are typically high-value commodities that are marketed based on either their visual characteristics or compositional properties. The combination of visual traits, chemical composition and contaminants is generally referred to as grain quality. Currently, the market value of grain is quantified at the point of receival, using trading standards defined in terms of visual criteria of the bulk grain and chemical constituency. The risk for the grower is that grain prices can fluctuate throughout the year depending on world production, quality variation and market needs. The assessment of grain quality and market value on-farm, rather than post-farm gate, may identify high- and low-quality grain and inform a fair price for growers. The economic benefits include delivering grain that meets specifications maximizing the aggregate price, increasing traceability across the supply chain from grower to consumer and identifying greater suitability of differentiated products for high-value niche markets, such as high protein product ideal for plant-based proteins. This review focuses on developments that quantify grain quality with a range of spectral sensors in an on-farm setting. If the application of sensor technologies were expanded and adopted on-farm, growers could identify the impact and manage the harvesting operation to meet a range of quality targets and provide an economic advantage to the farming enterprise.

Funder

Victorian Grains Innovation Partnershi

Publisher

MDPI AG

Subject

Agronomy and Crop Science

Reference126 articles.

1. Elevated CO2 affects plant nitrogen and water-soluble carbohydrates but not in vitro metabolisable energy;Panozzo;J. Agron. Crop Sci.,2019

2. A Web-Based Calculator for Estimating the Profit Potential of Grain Segregation by Protein Concentration;Martin;Agron. J.,2013

3. Wheat grain storage at moisture milling: Control of protein quality and bakery performance;Meneghetti;J. Food Process. Preserv.,2019

4. Delahunty, A., Perry, E., Wallace, A., and Nuttall, J. (2019, January 25–29). Frost response in lentil. Part 1. Measuring the impact on yield and quality. Proceedings of the 19th Australian Agronomy Conference, Wagga Wagga, NSW, Australia.

5. Can nitrogen fertiliser maintain wheat (Triticum aestivum) grain protein concentration in an elevated CO2 environment?;Walker;Soil Res.,2017

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