Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Phytochemical Screening of Etlingera elatior (Torch Ginger) Cultivated on Different Dosage of Biochar

View through CrossRef
Objective: This study was carried out with an objective to investigate the impact of biochar on phytochemical composition in plant especially Etlingera elatior cultivated on different dosage of biochar. Methods: Etlingera elatior was cultivated on the pot with 20 cm diameter and 35 cm height. 3 replicates for pots of Etlingera elatior was cultivated and label as 0%, 5% and 20%. The ordinary farm soil without biochar (0%) as control, fertilized soil with biochar; 5% and 20%. In a net house and watered twice daily. The gas chromatography mass spectrometry analysis was performed by using a non-polar BPX-5 capillary column with an initial temperature of 50°C hold for five minutes and then increased to 300°C at a rate of 5.0°C per minutes and hold 10 minutes. The biochar samples were analysed using an ATR-FTIR equipped with diamond crystal, controlled by OMNIC software (Thermo Nicolet Analytical Instruments, Madison, WI). A flat tip powder press was used to achieve even distribution and contact. Results: The result showed significantly increased in the phytochemical composition with increase in the biochar concentration. At 0% phytol (13%), Hexadecanoic acid (9.76%), Neophytadiene (6.51%), coumarin (5.65%), precocene (5.27%) and caryophyllene (4.59%). At 5% are Dihydrocucurbitacin (13.69%), Niacinamide (11.02%), α-Limonene (10.01%), Phyrahen (9.23%), Phytol (7.24%) and Neophytadiene (5.75%) and at 20% Linoleic acid (39.98%), 2-pinen-4-ol (12.32%), Hexatriacontyl pentafluoropropionate (6.89%), Benzofuran (5.12%), Acethophenon (4.41%) and furfural (4.03%). Conclusion: Application of biochar on soil can increase nutrient availability and enhance the development of phytochemical composition in plants. Without biochar, the chemical composition Etlingera elatior extract was slighlyt low. At 5% and 20% biochar, some compounds are increasing and new were obtained compared to 0% biochar. Most of the compounds known to be secondary metabolite which are rich in medicinal values. Thus, biochar could be used to increase the quantity and quality of phytochemicals in plant especially medicinal plants.
Title: Phytochemical Screening of Etlingera elatior (Torch Ginger) Cultivated on Different Dosage of Biochar
Description:
Objective: This study was carried out with an objective to investigate the impact of biochar on phytochemical composition in plant especially Etlingera elatior cultivated on different dosage of biochar.
Methods: Etlingera elatior was cultivated on the pot with 20 cm diameter and 35 cm height.
3 replicates for pots of Etlingera elatior was cultivated and label as 0%, 5% and 20%.
The ordinary farm soil without biochar (0%) as control, fertilized soil with biochar; 5% and 20%.
In a net house and watered twice daily.
The gas chromatography mass spectrometry analysis was performed by using a non-polar BPX-5 capillary column with an initial temperature of 50°C hold for five minutes and then increased to 300°C at a rate of 5.
0°C per minutes and hold 10 minutes.
The biochar samples were analysed using an ATR-FTIR equipped with diamond crystal, controlled by OMNIC software (Thermo Nicolet Analytical Instruments, Madison, WI).
A flat tip powder press was used to achieve even distribution and contact.
Results: The result showed significantly increased in the phytochemical composition with increase in the biochar concentration.
At 0% phytol (13%), Hexadecanoic acid (9.
76%), Neophytadiene (6.
51%), coumarin (5.
65%), precocene (5.
27%) and caryophyllene (4.
59%).
At 5% are Dihydrocucurbitacin (13.
69%), Niacinamide (11.
02%), α-Limonene (10.
01%), Phyrahen (9.
23%), Phytol (7.
24%) and Neophytadiene (5.
75%) and at 20% Linoleic acid (39.
98%), 2-pinen-4-ol (12.
32%), Hexatriacontyl pentafluoropropionate (6.
89%), Benzofuran (5.
12%), Acethophenon (4.
41%) and furfural (4.
03%).
Conclusion: Application of biochar on soil can increase nutrient availability and enhance the development of phytochemical composition in plants.
Without biochar, the chemical composition Etlingera elatior extract was slighlyt low.
At 5% and 20% biochar, some compounds are increasing and new were obtained compared to 0% biochar.
Most of the compounds known to be secondary metabolite which are rich in medicinal values.
Thus, biochar could be used to increase the quantity and quality of phytochemicals in plant especially medicinal plants.

Related Results

Impact of biochar amendment on soil microbial biomass carbon enhancement under field experiments: a meta-analysis
Impact of biochar amendment on soil microbial biomass carbon enhancement under field experiments: a meta-analysis
Abstract Biochar is well-accepted as a viable climate mitigation strategy to promote agricultural and environmental benefits such as soil carbon sequestration and crop pr...
Keragaan pertumbuhan tanaman honje (Etlingera elatior) pada beberapa level kerapatan naungan
Keragaan pertumbuhan tanaman honje (Etlingera elatior) pada beberapa level kerapatan naungan
Honje (Etlingera elatior) adalah tanaman multifungsi yang telah digunakan untuk tujuan pertamanan, kuliner, obat-obatan dan bunga potong. Tujuan penelitian ini adalah untuk mengeta...
Prospek Komoditi Jahe di Sumatera Barat
Prospek Komoditi Jahe di Sumatera Barat
Ginger plants have recently been in the spotlight of businesspeople in Indonesia. Ginger has a myriad of benefits. Besides being used for cooking spices, ginger can also boost the ...
Formulasi Dan Uji Aktivitas Antibakteri Sediaan FootSpray Dari Ekstrak Etanol Daun Kecombrang (Etlingera Elatior (Jack))
Formulasi Dan Uji Aktivitas Antibakteri Sediaan FootSpray Dari Ekstrak Etanol Daun Kecombrang (Etlingera Elatior (Jack))
Di indonesia masalah yang sering ditemukan pada kaki dan menyebabkan banyak orang kurang percaya diri adalah bau kaki. Bakteri berkembang pada kaki karena kondisi kaki yang lembab....
A Fit-for-Purpose Biochar Index for Classifying Hard and Soft Biochars in Circular Carbon Storage Applications
A Fit-for-Purpose Biochar Index for Classifying Hard and Soft Biochars in Circular Carbon Storage Applications
As a multifunctional material for the circular bioeconomic applications and carbon storage, biochar is getting rapid attention. Addressing the lack of industrial application-orient...
What are the Implications for Public Policy in New Zealand regarding Biochar as a Climate Change Mitigation Tool?
What are the Implications for Public Policy in New Zealand regarding Biochar as a Climate Change Mitigation Tool?
<p>The past years have seen biochar appearing on the political radar as a potential greenhouse gas (GHG) mitigation tool. Biochar is a charcoal-like substance that is produce...
Do published field experiments inform the longevity of biochar in soil?
Do published field experiments inform the longevity of biochar in soil?
The efficiency of biochar application in soil carbon sequestration (SCS) is highly sensitive to biochar longevity. To predict biochar longevity at extended timescales, modelling is...
Use of biochar to enhance carbon sequestration in peatlands
Use of biochar to enhance carbon sequestration in peatlands
Although peatlands are a great store of terrestrial carbon they are only a small sink compared to other nature-based or technological approaches to carbon sequestration. So as to e...

Back to Top