This is an outdated version published on 2026-02-10. Read the most recent version.

Modification of Polystyrene Box for Cabbage Storage Using Dry Ice as a Cooling Media

Authors

  • Bagus Made Brahmanda Diputra Program Studi Teknik Pertanian dan biosistem, Fakultas Teknologi Pertanian, Universitas Udayana, Badung, Bali, Indonesia
  • Ida Bagus Putu Gunadnya Program Studi Teknik Pertanian dan biosistem, Fakultas Teknologi Pertanian, Universitas Udayana, Badung, Bali, Indonesia
  • I Putu Gede Budisanjaya Program Studi Teknik Pertanian dan biosistem, Fakultas Teknologi Pertanian, Universitas Udayana, Badung, Bali, Indonesia

DOI:

https://doi.org/10.24843/JBETA.2021.v09.i02.p08

Keywords:

Cooling, dry ice, fresh cabbage, polystyrene box, model box, cooling

Abstract

Research had been carried out to modify polystyrene box as fresh cabbage delivery box using dry ice as a cooling medium. The research aims were to find out the most suitable model box to maintain the freshness of the vegetables. Modified polystyrene box was made by separating the box into two compartments, one compartment for placing dry ice, and another compartment for storing the fresh cabbage. The box was modified into five types which consisted of two types of the box where the cooling medium was placed below the fresh vegetable, while for the rest, the cooling medium was placed above the vegetable. The tests were performed for 7 hours with the hourly observation that consisted of the temperature surrounding the model box, temperature inside the box, and temperature of the center of the fresh cabbage. Other conducted measurements were the weight of dry ice used during cold storage, weight loss of fresh cabbage, visual observation on the deterioration of the fresh cabbage, and energy equilibrium calculation. Placing dry ice below the fresh cabbage caused the center temperature of the fresh cabbage to far above the recommended storing temperature, 0oC, while placing the cooling medium above the vegetable gave a negative impact on the vegetable where the center temperature of the fresh cabbage was below 0oC for the two types of model boxes, except for the fifth type box where dry ice was placed in a basin made of zink plate. Based on energy calculation it was revealed that almost more than 75% of cooling energy was used to overcome the surrounding cooling load. It was found that the most suitable model box for storing the fresh cabbage was the fifth type.

References

Acedo Jr., A.L. 2010. Postharvest Technology for

Leafy Vegetables. AVRDC-The World

Vegetable Center, Shanhua.

ASHRAE. 2014. 2014 ASHRAE Handbook:

Refrigeration SI Edition. American Society

of Heating, Refrigerating and Air

Conditioning Engineers, Inc., Atlanta.

ASHRAE. 2006. 2006 ASHRAE Handbook:

Refrigeration

Inch-Pound

American

Refrigerating

Society

and

of

Edition.

Heating,

Air-Conditioning

Engineers, Inc., Atlanta.

BPS. 2020. Provinsi Bali dalam Angka 2020.

Badan Pusat Statistik, Denpasar.

Cantwell, M. dan T. Suslow. 2006. Cabbages

(Round

and

Recommendations

Chinese

for

types):

maintaining

postharvest quality. UC Davis Postharvest

Technology Research Information Center.

Chakraverty,

A.,

A.S. Mujumdar, G.S.V.

Raghavan, H.S. Ramaswamy. 2003.

Handbook of Postharvest Technology:

Cereal, Fruits, Vegetables, Tea, and Spice.

Marcel Dekker, Inc., New York.

Cengel, Y.A. 2002. Heat Transfer A Practical

Approach. McGraw-Hill, New York.

FAO. 2011. Global Food Losses and Food Waste:

Extent, Causes, and Prevention. FAO, Roma.

Kitinoja, L. dan J.F. Thompson. 2010. Pre-cooling

systems for small-scale producers. Stewart

Postharvest Rev. 6:1–14.

Muin, A. 2017. Sistem lemari pendingin sayuran

sederhana dengan media es batu. Jurnal

Desiminasi Teknologi. 5(2),146-151

Montgomery, D.C. dan G.C. Runger. 2014. Applied

Statistics and Probability for Engineers.

John Wiley & Sons, Inc., Hoboken, New

Jersey.

Putra, I.S. 2014. Studi kelayakan pengadaan mobile

coolbox

dalam rangka mendukung

pengembangan eksport kubis. J Social

Economic Arigulcure and Agribusiness.

3(2):-.

Prusky, D. 2011. Reduction of the incidence of

postharvest qulity losses, and future

prospects. Food Sec. 3:463-474.

Sagas, E.Y., F. Wenur, L.C.Ch.E. Lengkey. 2015.

Kajian

penggunaan kotak pendingin

menggunakan hancuran es untuk distribusi

pak choi (Brassica rapa). Cocos. 6(15):-.

Sheel, S. 2014. Logisteics in Packaging, Storage

and

Transportation

of

Horticultural

Produces: Perspective Bangladesh. Paper

presented in the International Conference

on

“Logistics

and

Supply

Chain Management in Food Industry, 2014 " .

January, 25 2014, Bangladesh University

of Engineering and Technology (BUET),

Dhaka.

Takaendengan, V., I. Longdong dan F. Wenur.

2015. Kajian perubahan mutu kubis

(Brassica oleracea var gran 11) dalam

kemasan plastik selama penyimpanan.

Cocos. 6(17):-.

Toledo, R.T. 2007. Fundamentals of Food Process

Engineering. Springer Science+Business

Media, LLC, New York.

Vigneault C., J. Thompson, S. Wu, K.P.C. Hui dan

D.I. LeBlanc. 2009. Transportation of fresh

horticultural

produce.

Postharvest

Technologies for Horticultural Crops. 2:1

24.

Wisnuwardhani, P., Lestari, D. A. H., & Santoso,

H. (2015). Motivasi Konsumen Membeli

Kubis Segar di Pasar Pasir Gintung Bandar

Lampung. Jurnal Ilmu-Ilmu Agribisnis,

3(2).

Published

2021-09-29 — Updated on 2026-02-10

Versions

How to Cite

Diputra, B. M. B., Gunadnya, I. B. P., & Budisanjaya, I. P. G. (2026). Modification of Polystyrene Box for Cabbage Storage Using Dry Ice as a Cooling Media . Jurnal BETA (Biosistem Dan Teknik Pertanian), 9(2), 212–222. https://doi.org/10.24843/JBETA.2021.v09.i02.p08 (Original work published September 29, 2021)

Issue

Section

Articles

Most read articles by the same author(s)

<< < 1 2 3 4 5 6 7 > >>