Potential Valorization of Organic Waste Streams to Valuable Organic Acids through Microbial Conversion: A South African Case Study

Author:

Njokweni Sesethu Gift,Steyn AnnicaORCID,Botes Marelize,Viljoen-Bloom MarindaORCID,van Zyl Willem HeberORCID

Abstract

The notion of a “biobased economy” in the context of a developing country such as South Africa (SA) necessitates the development of technologies that utilize sustainable feedstocks, have simple and robust operations, are feasible at small scale and produce a variety of valuable bioproducts, thus fitting the biorefinery concept. This case study focuses on the microbial production of higher-value products from selected organic waste streams abundant in the South African agricultural sector using microbes adapted to utilize different parts of biomass waste streams. A ruminant-based carboxylate platform based on mixed or undefined anaerobic co-cultures of rumen microorganisms can convert the carbohydrate polymers in the lignocellulosic part of organic waste streams to carboxylic acids that can be upgraded to biofuels or green chemicals. Furthermore, yeast and fungi can convert the simpler carbohydrates (such as the sugars and malic acid in grape and apple pomace) to ethanol and high-value carboxylic acids, such as lactic, fumaric, succinic and citric acid. This review will discuss the combinational use of the ruminal carboxylate platform and native or recombinant yeasts to valorize biomass waste streams through the production of higher-value organic acids with various applications.

Funder

National Research Foundation

Publisher

MDPI AG

Subject

Physical and Theoretical Chemistry,Catalysis

Reference233 articles.

1. CO2 emissions, energy consumption, income and foreign trade: A South African perspective

2. Chemicals from biomass: technological versus environmental feasibility. A review

3. Bioenergy Atlas of South Africa—Synopsis Report;Hugo,2016

4. Detection, quantification and monitoring of Prosopis in the Northern Cape Province of South Africa using remote sensing and GIS;Van den Berg;S. Afr. J. Geomat.,2013

5. Invasive alien plants in South Africa: How well do we understand the ecological impacts?;Richardson;S. Afr. J. Sci.,2004

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