Farida Fathul
Study Program of Animal Nutrition and Feed Technology, Department of Animal Husbandry, Faculty of Agriculture, University of Lampung

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The Effectiveness of Azolla microphylla Flour Supplementation in Rations on Body Weight, Total Blood Plasma Protein and Total Microbial Contamination of Broiler Carcasses Ratna Ermawati; Muhammad Mirandy Pratama Sirat; Madi Hartono; Farida Fathul; Fitria Tsani Farda
JURNAL ILMIAH PETERNAKAN TERPADU Vol 11, No 1 (2023)
Publisher : DEPARTMENT OF ANIMAL HUSBANDRY, FACULTY OF AGRICULTURE, UNIVERSITY OF LAMPUNG

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.23960/jipt.v11i1.p65-81

Abstract

The purpose of this study was to determine the effectiveness of Azolla microphylla  flour supplementation in broiler feed rations on body weight, total blood plasma protein and total broiler carcass microbial contamination. The study was conducted for 6 months (May-October 2022) in the broiler cage unit at the Integrated Field Laboratory, Faculty of Agriculture, University of Lampung. This experimental study used four treatments and five replications. Each replicate consisted of five Cobb CP 707broiler strains, bringing a total of 100 broilers. Giving Azolla microphylla flour as a supplement is added to the feed ration with different doses according to broiler body weight, namely P0: ration without Azolla microphylla flour supplementation (control); P1: ration supplemented with 2.5% Azolla microphylla flour; P2 5%; P3 7.5%. Sampling of carcasses and blood serum of 29-day-old broilers was 1 broiler per replication with a total of 20 samples. Samples were sent to the Lampung Veterinary Center to be analyzed for total meat microbial contamination (total plate count) and total plasma protein in blood serum. Data from the test results are arranged in a simple tabular form to be analyzed descriptively. The conclusion of this study wassupplementation with 5% Azolla microphyllaflour in rations were effective to increase body weight gain, maintain total blood plasma protein within the normal range, and maintain total broiler carcass microbial contamination within safe limits for consumption.
Physical and Chemical Quality of Corn Husks with Ammoniation, Biofermentation and Ammonia Fermentation Processing Fitria Tsani Farda; Liman Liman; Erwanto Erwanto; Muhtarudin Muhtarudin; Muhammad Mirandy Pratama Sirat; Farida Fathul; Doni Ramadhan
JURNAL ILMIAH PETERNAKAN TERPADU Vol 11, No 3 (2023)
Publisher : DEPARTMENT OF ANIMAL HUSBANDRY, FACULTY OF AGRICULTURE, UNIVERSITY OF LAMPUNG

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.23960/jipt.v11i3.p201-214

Abstract

This study aimed to evaluate the processing of ammoniated, biofermented and amorphous corn husks on physical quality, dry matter, ash content, crude protein (CP), ether extract (EE), crude fiber (CF), and nitrogen free extract (NFE). This study used a completely randomized design (CRD) which consisted of 4 treatments and 4 replications. The treatments given were P1: untreated corn husks (control), P2: ammoniated corn husks (2% urea), P3: fermented corn husks (5% Aspergillus niger), and P4: amofered corn husks (2% urea + 5% Aspergillus niger). The variables observed included physical quality and nutrient content (dry matter, ash, crude protein, ether extract, crude fiber, and nitrogen free extract). The data obtained  analyzed using Analysis of Variety and followed by Duncan's Multiple Range Test (DMRT). The results of the study had a significant effect on the physical quality, dry matter, ash, crude protein, ether extract, crude fiber and nitrogen free extract (P<0,05), but had no effect (P>0,05) on the ash content. Amopheric processing has the best effect on physical quality, crude protein and crude fiber content of corn husks. Fermentation processing gives the best effect on ether extract and nitrogen free extract.