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Nutrient content of super liquid fertilizer (SLF) from dairy sludge waste and the potential as a biopesticide | ||
International Journal of Recycling Organic Waste in Agriculture | ||
مقاله 2، دوره 12، شماره 2، شهریور 2023، صفحه 155-164 اصل مقاله (537.53 K) | ||
نوع مقاله: Original Article | ||
شناسه دیجیتال (DOI): 10.30486/ijrowa.2022.1941081.1344 | ||
نویسندگان | ||
Yendri Junaidi* ؛ Wahyu Windari؛ Fitria Nur Aini | ||
Departement of Animal Science, Politeknik Pembangunan Pertanian Malang, Ministry of Agriculture, Republic of Indonesia | ||
چکیده | ||
Purpose The current use of pesticides and chemical fertilizers harms the environment, alternative substitutions using organic materials are needed. One of them is utilizing the dairy industry sludge waste to become a Super Liquid Fertilizer (SLF). This study aimed to analyze the nutrient quality of SLF (a dairy industry sludge waste that was added to some the microbial activators). Method The types of microbes and the number of nutrients in pure sludge were identified, followed by composed SLF and applied to the larvae of Spodoptera litura to see the pathogenicity. Data were analyzed using SPSS.26 software. Results The types of microbes that exist in the pure sludge waste of the dairy industry are dominated by Pseudomonas bacteria, as much as 50%. The nutrient content of SLF is appropriate to Indonesia’s national standard for liquid organic fertilizer. Analysis of varian (ANOVA) analysis shows that the addition of activator microbe at P3 is the best. The number of microbes in SLF is significantly different (P < 0.05) at each treatment, where P3 is the best treatment. The pathogenicity of SLF is also good, as evidenced by the motility of the Spodoptera litura reaching 98% in the P5 treatment for 96 hours. Conclusion This research has succeeded in producing SLF with the nutritional value of nutrients that are close to the Indonesian Ministry of Agriculture. The number of bacterial colonies in SLF is more than 106 CFU/mL, especially in the P3 treatment. SLF can kill Spodoptera litura caterpillars in a time period of 46 hours. | ||
تازه های تحقیق | ||
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کلیدواژهها | ||
Organic fertilizer؛ Super liquid fertilizer (SLF)؛ Dairy sludge waste؛ Biopesticide | ||
مراجع | ||
Ardiyanto W, Jazilah S (2019) Pengaruh macam pupuk organik cair (POC) dan saat pemberian terhadap pertumbuhan dan produksi Cabai Merah (Capsicum annuum L). Biofarm J Ilmiah Pertanian 14 (2). http://dx.doi.org/10.31941/biofarm.v14i2.792
Ashekuzzaman SM, Forrestal P, Richards K, Fenton O (2019) Dairy industry derived wastewater treatment sludge: Generation, type and characterization of nutrients and metals for agricultural reuse. J Cleaner Production 230:1266–1275. https://doi.org/10.1016/j.jclepro.2019.05.025
Bittman S, Liu A, Hunt DE, Forge TA, Kowalenko CG, Chantigny MH, Buckley K (2012) Precision placement of separated dairy sludge improves early phosphorus nutrition and growth in corn (Zea mays L.). J Environmental Quality 41(2):582–591. https://doi.org/10.2134/jeq2011.0284
Galitskaya P, Akhmetzyanova L, Selivanovskaya S (2016) Biochar-carrying hydrocarbon decomposers promote degradation during the early stage of bioremediation. Biogeosciences 13(20): 5739–5752. https://doi.org/10.5194/bg-13-5739-2016
García R, Báez AP (2012) Atomic absorption spectrometry (AAS), Atomic Absorption Spectroscopy, 1. Ciudad Universitaria. Mexico City. Mexico, pp 1–13
Griego VM, Spence KD (1978) Inactivation of Bacillus thuringiensis spores by ultraviolet and visible light. Applied and Environmental Microbiology 35(5):906–910. https://doi.org/10.1128/aem.35.5.906-910.1978
Hamilton JT, Attia FL (1977) Effects of mixtures of Bacillus thuringiensis and pesticides on Plutella xylostella and the parasite Thyraeella collaris. J Economic Entomology 70(1):146–148. https://doi.org/10.1093/jee/70.1.146
Huang J, Liu Z, Li S, Xu B, Gong Y, Yang Y, Sun H (2016) Isolation and engineering of plant growth promoting rhizobacteria Pseudomonas aeruginosa for enhanced cadmium bioremediation. J General and Applied Microbiology 62(5):258-265. https://doi.org/10.2323/jgam.2016.04.007
Indonesian Ministry of Agriculture (2019) Peraturan Menteri Pertanian Nomor 01 Tahun 2019 tentang Pendaftaran Pupuk Organik, Pupuk Hayati, dan Pembenah Tanah. Jakarta, Indonesia
Ishak HD, Plowes R, Sen R, Kellner K, Meyer E, Estrada DA, Dowd SE, Mueller UG (2011) Bacterial diversity in Solenopsis invicta and Solenopsis geminata ant colonies characterized by 16S amplicon 454 pyrosequencing. Microbial Ecology 61(4):821–831. https://doi.org/10.1007/S00248-0 10-9793-4
Keoleian GA, Spitzley DV (1999) Guidance for improving life‐cycle design and management of milk packaging. J Industrial Ecology 3(1):111–126. https://doi.org/10.1162/108819899569322
Kim DS, Cook RJ, Weller DM (1997) Bacillus sp. L324-92 for biological control of three root diseases of wheat grown with reduced tillage. Phytopathology 87(5):551–558. https://doi.org/10.1094/PHYTO.1997.87.5.551
Komarawidjaja W (2007) Peran mikroba aerob dalam pengolahan limbah cair tekstil. J Teknologi Lingkungan 8(3):223-228. https://doi.org/10.29122/jtl.v8i3.429
Kwon SW, Kim JS, Park IC, Yoon SH, Park DH, Lim CK, Go SJ (2003) Pseudomonas koreensis sp. nov., Pseudomonas umsongensis sp. nov. and Pseudomonas jinjuensis sp. nov., novel species from farm soils in Korea. Int J Systematic and Evolutionary Microbiology 53(1):21–27. https://doi.org/10.1099/ijs.0.02326-0
Lopez-Mosquera ME, Moiron C, Carral E (2000) Use of dairy-industry sludge as fertiliser for grasslands in northwest Spain: Heavy metal levels in the soil and plants. Resources, Conservation and Recycling 30(2):95–109. https://doi.org/10.1016/S0921-3449(00)00058-6
Lucy J, Raharjo PF, Elvina E, Florencia L, Susanti AI, Pinontoan R (2019) Clot Lysis Activity of Bacillus subtilis G8 Isolated from Japanese Fermented Natto Soybeans. Applied Food Biotechnology 6 (2): 101–109. https://doi.org/10.22037/afb.v6i2.22479
Lutze R, Engelhart M (2020) Comparison of CSTR and AnMBR for anaerobic digestion of WAS and lipid-rich flotation sludge from the dairy industry. Water Resources and Industry 23:100122. https://doi.org/10.1016/j.wri.2019.100122
Mintarsih TH (2006) Panduan inspeksi penaatan pengelolaan lingkungan industri pengolahan susu. Asisten Deputi Urusan Pengendalian Pencemaran Agroindustri. Deputi MENLH Bidang Pengendalian Pencemaran, Kementerian Negara Lingkungan Hidup. Jakarta, Indonesia
Mohan SV, Sistla S, Guru RK, Prasad KK, Kumar CS, Ramakrishna SV, Sarma PN (2003) Microbial degradation of pyridine using Pseudomonas sp. and isolation of plasmid responsible for degradation. Waste Management 23(2):167–171. https://doi.org/10.1016/S0956-053X(02)00150-2
Porwal HJ, Mane AV, Velhal SG (2015) Biodegradation of dairy effluent by using microbial isolates obtained from activated sludge. Water Resources and Industry 9:1–15. https://doi.org/10.1016/j.wri.2014.11.002
Pranata AS (2010) Meningkatkan hasil panen dengan pupuk organik. AgroMedia. Jakarta, Indonesia
Raj A, Khess N, Pujari N, Bhattacharya S, Das A, Rajan SS (2012) Enhancement of protease production by Pseudomonas aeruginosa isolated from dairy effluent sludge and determination of its fibrinolytic potential. Asian Pacific J Tropical Biomedicine 2(3):1845–1851. https://doi.org/10.1016/S2221-1691(12)60506-1
Rasdiana SRS (2016) Pengaruh formulasi Bacillus subtilis terhadap intensitas serangan bipolaris maydis pada Tanaman Jagung (Zeamays L.). Universitas Islam Negeri Alauddin Makassar. Makasar, Indonesia
Salaki CL, Tarore D (2018) Prospek pemanfaatan biopestisida bakteri entomopatogenik isolat lokal sebagai agen pengendali hayati hama tanaman sayuran. Eugenia 19(1):1-7. https://doi.org/10.35791/eug.24.2.2018.28788
Sari AA, Amriani F, Akhmad RIS, Pambudi MR, Pamungkas RP, Muryanto M (2018) Adsorption of acid red and acid orange with adsorbent from bioethanol black liquor sludge. AIP Conference Proceedings 2024 (1):1-7. https://doi.org/10.1063/1.5064293
Sulistyono E, Kkadan SK, Maretha MV, Tavares WDS, Sirait BA, Sinulingga NGHB, Tarigan M, Duran A (2020) First report, morphological and molecular identification of Spodoptera species (Lepidoptera, Noctuidae) on Acacia crassicarpa (Fabaceae) in Sumatra, Indonesia. J Lepidopterists’ Society 74(3):176–182. https://doi.org/10.18473/lepi.74i3.a4
Suryani Y, Bahri S (2015) Pemanfaatan ulang efluen industri pengolahan susu sebagai air irigasi untuk tanaman padi. J Irigasi 10(2):83–96. http://dx.doi.org/10.31028/ji.v10.i2.83-96
Vanittanakom N, Loeffler W, Koch U, Jung G (1986) Fengycin-a novel antifungal lipopeptide antibiotic produced by Bacillus subtilis F-29-3. J Antibiotics 39(7):888–901. https://doi.org/10.7164/antibiotics.39.888
Walkley A, Black IA (1934) An examination of the degtjareff method for determining soil organic matter, and a proposed modification of the chromic acid titration method. Soil Science 37(1):29–38. https://doi.org/10.1097/00010694-193401000-00003
Wu D, Johnson JJ, Federici BA (1994) Synergism of mosquitocidal toxicity between CytA and CrylVD proteins using inclusions produced from cloned genes of Bacillus thuringiensis. Molecular Microbiology 13(6):965–972. https://doi.org/10.1111/j.1365-2958.1994.tb00488.x
Yachya A (2017) Pengaruh air limbah industri susu terhadap pertumbuhan dan hasil tanam tanaman Bawang Merah (Allium cepa L.). J Biota 3(1):11–20. https://doi.org/10.19109/Biota.v3i1.1103
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