ELABORATION AND RESEARCHES OF HICHLY EFFECTIVE INSTALLATION FOR VIBRO-BLOWING DEHYDRATION OF DISPERSIVE WASTE OF FOOD PRODUCTIONS

Author:

Sevostyanov Ivan1,Ivanchuck Yaroslav2,Kravets Svetlana1

Affiliation:

1. Vinnytsia National Agrarian University

2. Vinnytsia National Technical University

Abstract

There are schemes of equipment for dehydration of damp dispersive waste of food productions (spirit grain, beer pallets, beet pulp, coffee and barley slag) analyzed in this article. These wastes at the majority of food enterprises of Ukraine are poured out onto the ground and that leads to environment pollution. However, in case of dehydration of these wastes to humidity 20 – 25%, they can be used as valuable additions to agricultural forages or as high-energy fuels. Thus, the problems of waste utilization and protection of nature from pollutions are resolved simultaneously. Besides, the enterprise gets a profit from the sales of forage additions or fuel. The known equipment for mechanical dehydration, for example, the screw-presses and the decanter centrifuges, provides the waste final humidity no less 74 – 76%, therefore waste demand of an additional drying after the dehydration at this equipment. That brings to a significant increase of energy expenses. An application of the vibro-blowing dehydration at the installations with the hydraulic pulse drive provides waste final humidity 20 – 25%, but these installations are complex by design, have big dimensions and high cost. A drying in pulverizing or in vacuum dryers is most power-consuming dehydration method (expenses of energy - 740 ÷ 2248 kW h/ ton of dehydrated waste). Equipment for the chemical and biological dehydration is the large multiple-unit complexes with low specific productivity. Therefore, article authors offer a scheme of the installation with the combined unbalanced and hydraulic drive that has a relatively simple design, compact dimensions, high reliability and at the same time, in correspondence with the authors’ estimation, will provide necessary, above indicated humidity. Also equations for determination of the main working parameter – the pressure in the press-form of the proposed installation are presented in the article.

Publisher

Vinnytsia National Agrarian University

Reference12 articles.

1. Sevostianov, I. V. (2020). Tekhnolohiia ta obladnannia dlia vibroudarnoho znevodnennia volohykh dyspersnykh materialiv : monohrafiia [Technology and equipment for vibro-blowing dehydration of damp dispersive materials : monograph]. Vinnytsia: VNAU. [in Ukrainian].

2. Antipov, S. T., Kretov, I. T., Ostrikov, A. N. (2001). Mashiny i apparaty pishhevyh proizvodstv. Kn. 1. [Machines and apparatus of food productions. Vol. 1]. Moskow: Vysshaya shkola [in Russian].

3. Sevostianov, I. V. Polishchuk, O. V., Slabkyi, A. V. (2015). Rozrobka ta doslidzhennia ustanovky dlia dvokomponentnoho vibroudarnoho znevodnennia vidkhodiv kharchovykh vyrobnytstv [Elaboration and research of installation for two-component vibro-blowing dehydration of food productions waste], Vostochno-evropeiskyi zhurnal peredovykh tekhnolohyi. 5/7 (77), 40–46 [in Ukrainian].

4. Sevostianov, I. V., Lutsyk, V. L. (2017) Ustanovka dlia bahatostadiinoho znevodnennia vidkhodiv kharchovykh vyrobnytstv [Installation for multistage dehydration of food productions waste], 1, 105–113 [in Russian].

5. Antipov, S. T., Kretov, I. T., Ostrikov, A. N. (2001) Mashiny i apparaty pishhevyh proizvodstv. Kn. 2 [Machines and apparatus of food productions. Vol. 2] Moskow: Vysshaya shkola [in Russian].

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