GROWTH REVIVAL OF GREY OYSTER (PLEUROTUS PULMONARIUS) POWDER CULTURE MUSHROOM FROM THE EFFECT OF SPRAY DRYING TEMPERATURE

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY IIUM Engineering Journal Pub Date : 2024-01-01 DOI:10.31436/iiumej.v25i1.2748
Zarina Zakaria, Fatihah Aziz, Mohd Sharizan Md Sarip, N. H. Mohd Salleh
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Abstract

In mushroom cultivation, spawn is among the most important factors that ensure a successful production. Considering several drawbacks from both solid and liquid spawn in shelf life and preservation matters, it is suggested that the dry powder form of spawn is a good potential to explore. A study of powder culture formation using a spray dryer involved various inlet temperatures of 80 oC, 90 oC, 100 oC, 110 oC, 120 oC and 130 oC. The yield % of the dried powder culture was measured and it was found that 130 oC yielded the highest percentage of 50.33%. The lowest temperature yielded the lowest percentage. On the other hand, the lowest temperature of 80 oC revived the highest mycelium dry weight at 1.68 g which was obtained on the 10th day of the incubation periods. The revival ability was decreased with the increase of temperature. The study proved that the powder culture of P. pulmonarius was able to perform and revive whereby it holds a potential to be preserved over a longer period, which is beneficial for the mushroom cultivator. ABSTRAK: Dalam penanaman cendawan, benih yang baik adalah antara faktor penting yang memastikan penghasilan tinggi. Terdapat beberapa kelemahan daripada benih pepejal dan cecair dalam memastikan jangka hayat berpanjangan serta memastikan benih dalam keadaan berkualiti sepanjang masa. Oleh itu, penghasilan benih cendawan dalam bentuk serbuk kering sangat berpotensi untuk diterokai. Kajian mengenai penghasilan kultur serbuk menggunakan semburan kering telah melibatkan pelbagai suhu salur masuk seperti 80 oC, 90 oC, 100 oC, 110 oC, 120 oC dan 130 oC. Peratus penghasilan kultur serbuk kering telah diukur dan didapati pada suhu 130 oC menghasilkan peratusan tertinggi iaitu sebanyak 50.33%, manakala suhu terendah menghasilkan peratusan terendah. Sebaliknya, suhu terendah pada 80 oC menumbuhkan semula berat kering miselium dengan bacaan tertinggi iaitu sebanyak 1.68 g diperoleh pada hari ke-10 tempoh inkubasi. Keupayaan menumbuh berkurangan dengan peningkatan suhu. Kajian membuktikan bahawa kultur serbuk P. pulmonarius mampu berfungsi dan tumbuh semula di mana ianya berpotensi disimpan dalam tempoh lama, ini berfaedah kepada penanaman cendawan.
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从喷雾干燥温度的影响看灰蚝粉培养蘑菇的生长恢复
在蘑菇栽培中,菌种是确保成功生产的最重要因素之一。考虑到固态和液态菌种在保质期和保存问题上的一些缺点,有人认为干粉形式的菌种是一个很好的探索潜力。使用喷雾干燥机对粉末培养物的形成进行了研究,研究涉及不同的入口温度:80 摄氏度、90 摄氏度、100 摄氏度、110 摄氏度、120 摄氏度和 130 摄氏度。测量了干燥粉末培养物的产量百分比,发现 130 oC 的产量百分比最高,为 50.33%。最低温度产生的百分比最低。另一方面,在培养期的第 10 天,最低温度 80 摄氏度下的菌丝干重最高,为 1.68 克。随着温度的升高,菌丝的复苏能力下降。该研究证明,肺牛菌的粉末培养物能够发挥和恢复活性,因此有可能保存更长的时间,这对蘑菇栽培者来说是有益的。摘要在蘑菇栽培中,优良的种子是确保高产的重要因素之一。固体和液体种子在确保延长存活期和始终保证种子质量方面存在一些缺点。因此,以干粉形式生产蘑菇种子非常有潜力可挖。使用干鼓风生产粉末培养料的研究涉及不同的入口温度,如 80 oC、90 oC、100 oC、110 oC、120 oC 和 130 oC。对干粉培养的产量百分比进行了测量,发现 130 oC 的产量最高,达到 50.33%,而最低温度的产量最低。另一方面,80 摄氏度的最低温度可再生菌丝干重,在培养期的第 10 天读数最高,为 1.68 克。生长能力随着温度的升高而降低。这项研究证明,肺孢子菌的粉末培养物能够发挥作用并再生,有可能长期保存,这对真菌的培养是有益的。
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来源期刊
IIUM Engineering Journal
IIUM Engineering Journal ENGINEERING, MULTIDISCIPLINARY-
CiteScore
2.10
自引率
20.00%
发文量
57
审稿时长
40 weeks
期刊介绍: The IIUM Engineering Journal, published biannually (June and December), is a peer-reviewed open-access journal of the Faculty of Engineering, International Islamic University Malaysia (IIUM). The IIUM Engineering Journal publishes original research findings as regular papers, review papers (by invitation). The Journal provides a platform for Engineers, Researchers, Academicians, and Practitioners who are highly motivated in contributing to the Engineering disciplines, and Applied Sciences. It also welcomes contributions that address solutions to the specific challenges of the developing world, and address science and technology issues from an Islamic and multidisciplinary perspective. Subject areas suitable for publication are as follows: -Chemical and Biotechnology Engineering -Civil and Environmental Engineering -Computer Science and Information Technology -Electrical, Computer, and Communications Engineering -Engineering Mathematics and Applied Science -Materials and Manufacturing Engineering -Mechanical and Aerospace Engineering -Mechatronics and Automation Engineering
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