D. Siswanti, N. Asri, M. Arlinda, A. Rochman, A. Syahidah
{"title":"Physiological Response of 'Segreng' Rice Plant (Oryza sativa L.) to Biogas Sludge at Wukirsari Village, Cangkringan, Sleman","authors":"D. Siswanti, N. Asri, M. Arlinda, A. Rochman, A. Syahidah","doi":"10.14421/BIOMEDICH.2018.71.21-26","DOIUrl":null,"url":null,"abstract":"Wukirsari Village, Cangkringan District is belong to Merapi Mountain’s slopes which located between the Gendol River and Yellow River. Nowadays, we faced the problem of anorganic fertilizer overused such as Urea, ZA, TSP/SP-36 and KCl in agriculture land. The effort to return the soil organic compound can be done by added some organic compounds or microbial bio -organic fertilizer. Sludge is fermented biodigester yield and it has lost its gas. The aim of this research was to understand the physiological response and optimum dose of biogas as planting medium to ‘Segreng’ Rice planted in the rice field of Wukirsari Village, Cangkringan District, Sleman Regency. This research was done on greenhouse scale and rice field scale. The treatment given on 0; 1; 1,5; 2 and 2,5 liters per 100 m 2 of rice field areas, and given on 0; 4; 8; 12; and 24 ml per 5 kg soil on polybags. Data were taken in three repetitions. The vegetative growth parameters included plant height, number of leaves, number of seedlings and chlorophyll content, while generative growth parameters measured included NRA levels, dried biomass including crown/stem, roots, filled grains, empty grains, and total weight and number of filled grains, empty rains, and the number of panicles. The result were tested with ONE WAY ANOVA (Analysis of Variance) with SPSS version 19 for Windows and followed by Duncan's Multiple Range Test with 95% significance level (α = 0.05). Generally, the result showed that biogas sludge can increase the vegetative and generative growth of rice plant ‘Segreng’ on polybag scale and rice field scale. The rice plant on polybag with 4 ml biogas sludge was significantly different on the vegetative growth and chlorophyll content, while the rice plant on polybag with 8 ml biogas sludge was significantly different on the generative growth and NRA levels.","PeriodicalId":8882,"journal":{"name":"Biology, Medicine, & Natural Product Chemistry","volume":"7 1","pages":"21-26"},"PeriodicalIF":0.0000,"publicationDate":"2018-04-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Biology, Medicine, & Natural Product Chemistry","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.14421/BIOMEDICH.2018.71.21-26","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Wukirsari Village, Cangkringan District is belong to Merapi Mountain’s slopes which located between the Gendol River and Yellow River. Nowadays, we faced the problem of anorganic fertilizer overused such as Urea, ZA, TSP/SP-36 and KCl in agriculture land. The effort to return the soil organic compound can be done by added some organic compounds or microbial bio -organic fertilizer. Sludge is fermented biodigester yield and it has lost its gas. The aim of this research was to understand the physiological response and optimum dose of biogas as planting medium to ‘Segreng’ Rice planted in the rice field of Wukirsari Village, Cangkringan District, Sleman Regency. This research was done on greenhouse scale and rice field scale. The treatment given on 0; 1; 1,5; 2 and 2,5 liters per 100 m 2 of rice field areas, and given on 0; 4; 8; 12; and 24 ml per 5 kg soil on polybags. Data were taken in three repetitions. The vegetative growth parameters included plant height, number of leaves, number of seedlings and chlorophyll content, while generative growth parameters measured included NRA levels, dried biomass including crown/stem, roots, filled grains, empty grains, and total weight and number of filled grains, empty rains, and the number of panicles. The result were tested with ONE WAY ANOVA (Analysis of Variance) with SPSS version 19 for Windows and followed by Duncan's Multiple Range Test with 95% significance level (α = 0.05). Generally, the result showed that biogas sludge can increase the vegetative and generative growth of rice plant ‘Segreng’ on polybag scale and rice field scale. The rice plant on polybag with 4 ml biogas sludge was significantly different on the vegetative growth and chlorophyll content, while the rice plant on polybag with 8 ml biogas sludge was significantly different on the generative growth and NRA levels.
仓克林安区乌克萨里村位于根多尔河和黄河之间的默拉皮山山坡上。目前,我国农业用地面临尿素、ZA、TSP/SP-36、KCl等无机肥料过度使用的问题。通过添加一些有机化合物或微生物有机肥来恢复土壤的有机化合物。污泥是发酵后的沼气池产物,它已经失去了它的气体。本研究旨在了解在Sleman县仓克林安区Wukirsari村稻田种植的“隔离”水稻的生理反应和最佳种植介质沼气用量。本研究在温室规模和稻田规模上进行。0的处理;1;1、5;2和2.5升每100米2稻田面积,并给予0;4;8;12;塑料袋上每5公斤土壤24毫升。数据分三次重复采集。营养生长参数包括株高、叶数、苗数和叶绿素含量,生殖生长参数包括NRA水平、干生物量(冠/茎、根、灌浆粒、空粒、灌浆粒总重、灌浆粒数、空粒数和穗数)。采用SPSS version 19 for Windows进行单因素方差分析(ONE WAY ANOVA),并采用Duncan多重极差检验,95%显著性水平(α = 0.05)。总体而言,在塑料袋尺度和稻田尺度上,沼气污泥能促进水稻植株的营养生长和生殖生长。4 ml沼液处理的水稻植株营养生长和叶绿素含量差异显著,8 ml沼液处理的水稻植株生殖生长和NRA水平差异显著。