Non-centrifugal cane sugar (NCS) is the second most important Colombian agribusiness in social importance. However, the sugar cane industry is facing some challenges caused by the controversial nutritional and safety attributes of NCS. Some Colombian NCS producers employ natural mucilages as clarifiers; but the uncontrolled application of these components has caused a risk of extinction in the mucilage source plants. Other producers employ acrylamide as a clarifier. Health consequences have generated concerns from the consumers and demanded control from the food authorities. Efforts are being made to develop a standard manufacturing methodology to increase NCS productivity and improve its quality, hygiene, and storability. The application of better clarifiers, which provide the best clarifying activity and minimize the toxicity while conserving NCS's natural attributes, is one of the outstanding challenges as well. This study is a proposal which looks for sustainable, natural, nontoxic, and economical clarifiers for the Colombian NCS producers.
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http://dx.doi.org/10.1016/j.foodchem.2021.130657 | DOI Listing |
Environ Sci Pollut Res Int
May 2024
Departamento de Ingeniería Química, Instituto de Biotecnología y Agroindustria, Universidad Nacional de Colombia, 170003, Manizales, Caldas, Colombia.
Lignocellulosic biomass is widely available in the world. However, a consensus has yet to be established to evaluate the biomass valorization alternatives. The chemical composition is the primary technical limitation in selecting a transformation route to obtain value-added products.
View Article and Find Full Text PDFSugar Tech
September 2022
Corporación Colombiana de Investigación Agropecuaria-AGROSAVIA, Km 14 Vía Mosquera-Bogotá, Mosquera, 250047 Cundinamarca Colombia.
Unlabelled: Food science innovation depends on consumers' needs and is currently seeking functional food with health effects. Non-centrifugal cane sugar (NCS) is known for its potential health effects, but there is a lack of holistic analysis on technological advancement and socio-economic and market trends for decision-making in the development of the technology. The aim of this article was to analyse the research trends, recent patents, and market trends and niches for NCS to structure an NCS technological roadmap.
View Article and Find Full Text PDFFood Chem
January 2022
Escuela de Matemáticas y Estadística, Universidad Pedagógica y Tecnológica de Colombia, PO150003, Tunja, Colombia.
Non-centrifugal cane sugar (NCS) is the second most important Colombian agribusiness in social importance. However, the sugar cane industry is facing some challenges caused by the controversial nutritional and safety attributes of NCS. Some Colombian NCS producers employ natural mucilages as clarifiers; but the uncontrolled application of these components has caused a risk of extinction in the mucilage source plants.
View Article and Find Full Text PDFAntioxidants (Basel)
June 2021
Department of Biomedical Engineering, School of Engineering, Universidad de Los Andes, Carrera 1 No. 18A-12, 111711 Bogotá, Colombia.
Non-centrifugal cane sugar (NCS) is a traditional sweetener in most sugarcane regions of the world. In Colombia, this product has a socio-economic importance due to the extensive cultivation area and the high consumption rate per capita. NCS traditional processing involves consecutive stages of thermal processing that begin with juice extraction, clarification, evaporation, and finish with syrup crystallization into a solid commercial product, identified as NCS.
View Article and Find Full Text PDFFood Addit Contam Part A Chem Anal Control Expo Risk Assess
September 2021
Department of Food Science, School of Food Engineering, University of Campinas, UNICAMP, Campinas, Brazil.
A liquid chromatography tandem mass spectrometry method (LC-MS/MS) preceded by a rapid and simple QuEChERS-based sample preparation was developed and validated for the determination of acrylamide in non-centrifugal sugar (NCS), a solid product obtained from sugarcane juice without centrifugation, up to a concentration greater than 90 ºBrix. Adequate linearity in calibration curves, analytical selectivity and sensitivity were achieved. A limit of detection (LOD) and a limit of quantitation (LOQ) of 10 and 20 µg kg, respectively, were obtained.
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