Growth performance and mineral analysis of Pleurotus ostreatus from various agricultural wastes mixed with rubber tree sawdust in Malaysia

https://doi.org/10.1016/j.biteb.2021.100873Get rights and content

Highlights

Development of P. ostreatus was compared by using various agricultural wastes.

The highest total average yield of P. ostreatus was 207.96 g/bag on 50% SB + 50% SR.

All heavy metal content was not detected in the first mushroom harvested.

Approximately 50% of SR could be reduced in P. ostreatus mushroom cultivation.

The utilization of agricultural wastes can solve environmental pollution issue.

Abstract

This study aims to contrast the impacts of various agricultural wastes on the development, yield and mineral content of P. ostreatus. All substrates were added 5% by weight dry wheat bran and 1.5% by weight dry calcium carbonate and sterilized at 100 °C for 8 h using a sterilization chamber. The best substrate to obtain a greater total weight of fresh mushrooms and biological efficiency was 50% SB + 50% SR (207.87 g/bag; 78.44%) with mycelial growth at 26 ± 2 days. All of the agricultural wastes used in this study have abundant potassium (K) content as it is the mineral element needed for the mushroom growth. Therefore, the potassium (K) was the maximum macroelement in concentration as compared to other nutrients and all heavy metal content were not detected in the first fresh mushroom harvested. Therefore, SB seemed to be a better alternative material to grow P. ostreatus.

Abbreviations

PVC
Polyvinyl Chloride
SR
Rubber Tree Sawdust
SB
Sugarcane Bagasse
EB
Empty Fruit Bunch
PF
Palm Press Fibre
OPF
Oil Palm Frond
CC
Corncob
B. E.
Biological Efficiency
XRF
X-ray Fluorescence
ICPMS
Inductively Coupled Plasma Mass Spectrometry
Na
Sodium
K
Potassium
Mg
Magnesium
Ca
Calcium
P
Phosphorus
Fe
Iron
Mn
Manganese
Zn
Zinc
Cd
Cadmium
Pb
Lead
Cu
Copper
FAO
Food and Agriculture Organization
WHO
World Health Organization
CHNS Analysis
Carbon, Hydrogen, Nitrogen, Sulphur Analysis

Keywords

Agricultural wastes
Growth performance
Pleurotus ostreatus
Mineral Composition
View Abstract