Bay leaf essential oils inhibited microbial growth and exerted potential preservation effects on tofu

Cattle manure contains high organic matter, so that this material is commonly used as plant nutrients in a form of organic fertilizer. In order to get a better understanding on the use of cow manure, the objectives of this research are (1) to determine the influence of liquid waste and solid livesto...

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Main Authors: Alwani Hamad, Asmiyenti Djaliasrin Djalil, Eka Yuliani Saputri, Nur Yulianingsih, Dwi Hartanti
Format: Article
Language:English
Published: Universitas Brawijaya, Fakultas Teknologi Pertanian 2020-12-01
Series:Advances in Food Science, Sustainable Agriculture, and Agroindustrial Engineering
Subjects:
Online Access:https://afssaae.ub.ac.id/index.php/afssaae/article/view/81
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author Alwani Hamad
Asmiyenti Djaliasrin Djalil
Eka Yuliani Saputri
Nur Yulianingsih
Dwi Hartanti
author_facet Alwani Hamad
Asmiyenti Djaliasrin Djalil
Eka Yuliani Saputri
Nur Yulianingsih
Dwi Hartanti
author_sort Alwani Hamad
collection DOAJ
description Cattle manure contains high organic matter, so that this material is commonly used as plant nutrients in a form of organic fertilizer. In order to get a better understanding on the use of cow manure, the objectives of this research are (1) to determine the influence of liquid waste and solid livestock as fertilizer on soil quality and (2) to study the effect of both liquid and solid fertilizer on coffee plant growth. In this research, Completely Randomized Design (CRD) was employed as a research design, while data analysis was conducted using ANOVA. The F statistical test was applied to measure whether all independent variables could influence the dependent variable by using 5% and 1% (Alpha) degrees. The results showed that one time application of livestock wastewater improved C-organic chemical properties, N, P, CEC, Ca and Mg while soil chemical properties of pH, K, Na decreased. Two times application of livestock liquid fertilizer treatment improved soil chemical properties pH, N total, Ca, Mg and saturation bases. As for solid waste, one time treatment increased chemical properties of pH, C organic, N total, Ca and saturation of the base. The two times treatment could improve soil chemical properties of pH, N. total, P, Ca, Mg, base number and base saturation. Liquid waste fertilizer also found to provide significant effect on plant height and coffee plants quality. Additionally, (3) solid waste (compost) was found to have a significant effect on plant height, plant height rate and number of buds.
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spelling doaj.art-7bad46447dd643d1940bfc1c32d5a8b42022-12-21T19:50:54ZengUniversitas Brawijaya, Fakultas Teknologi PertanianAdvances in Food Science, Sustainable Agriculture, and Agroindustrial Engineering2622-59212020-12-0132465210.21776/ub.afssaae.2020.003.02.2Bay leaf essential oils inhibited microbial growth and exerted potential preservation effects on tofuAlwani Hamad0Asmiyenti Djaliasrin Djalil 1Eka Yuliani Saputri 2Nur Yulianingsih3Dwi Hartanti4Universitas Muhammadiyah PurwokertoUniversitas Muhammadiyah Purwokerto IndonesiaUniversitas Muhammadiyah Purwokerto IndonesiaUniversitas Muhammadiyah Purwokerto IndonesiaUniversitas Muhammadiyah Purwokerto IndonesiaCattle manure contains high organic matter, so that this material is commonly used as plant nutrients in a form of organic fertilizer. In order to get a better understanding on the use of cow manure, the objectives of this research are (1) to determine the influence of liquid waste and solid livestock as fertilizer on soil quality and (2) to study the effect of both liquid and solid fertilizer on coffee plant growth. In this research, Completely Randomized Design (CRD) was employed as a research design, while data analysis was conducted using ANOVA. The F statistical test was applied to measure whether all independent variables could influence the dependent variable by using 5% and 1% (Alpha) degrees. The results showed that one time application of livestock wastewater improved C-organic chemical properties, N, P, CEC, Ca and Mg while soil chemical properties of pH, K, Na decreased. Two times application of livestock liquid fertilizer treatment improved soil chemical properties pH, N total, Ca, Mg and saturation bases. As for solid waste, one time treatment increased chemical properties of pH, C organic, N total, Ca and saturation of the base. The two times treatment could improve soil chemical properties of pH, N. total, P, Ca, Mg, base number and base saturation. Liquid waste fertilizer also found to provide significant effect on plant height and coffee plants quality. Additionally, (3) solid waste (compost) was found to have a significant effect on plant height, plant height rate and number of buds.https://afssaae.ub.ac.id/index.php/afssaae/article/view/81bay leafessential oilnatural preservativetofuwater extract
spellingShingle Alwani Hamad
Asmiyenti Djaliasrin Djalil
Eka Yuliani Saputri
Nur Yulianingsih
Dwi Hartanti
Bay leaf essential oils inhibited microbial growth and exerted potential preservation effects on tofu
Advances in Food Science, Sustainable Agriculture, and Agroindustrial Engineering
bay leaf
essential oil
natural preservative
tofu
water extract
title Bay leaf essential oils inhibited microbial growth and exerted potential preservation effects on tofu
title_full Bay leaf essential oils inhibited microbial growth and exerted potential preservation effects on tofu
title_fullStr Bay leaf essential oils inhibited microbial growth and exerted potential preservation effects on tofu
title_full_unstemmed Bay leaf essential oils inhibited microbial growth and exerted potential preservation effects on tofu
title_short Bay leaf essential oils inhibited microbial growth and exerted potential preservation effects on tofu
title_sort bay leaf essential oils inhibited microbial growth and exerted potential preservation effects on tofu
topic bay leaf
essential oil
natural preservative
tofu
water extract
url https://afssaae.ub.ac.id/index.php/afssaae/article/view/81
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AT asmiyentidjaliasrindjalil bayleafessentialoilsinhibitedmicrobialgrowthandexertedpotentialpreservationeffectsontofu
AT ekayulianisaputri bayleafessentialoilsinhibitedmicrobialgrowthandexertedpotentialpreservationeffectsontofu
AT nuryulianingsih bayleafessentialoilsinhibitedmicrobialgrowthandexertedpotentialpreservationeffectsontofu
AT dwihartanti bayleafessentialoilsinhibitedmicrobialgrowthandexertedpotentialpreservationeffectsontofu