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18篇 您的检索式:作者名="Boonkerd"
    题名 作者 年代 出处 被引量
1畜禽粪便厌氧发酵的产气特点及其发酵物养分的变化动态显示文摘为弄清不同畜禽粪便的产气特点及其发酵物养分含量的变化,利用高效曲流布料发酵池厌氧发酵,对其进行了研究。结果表明:猪粪、鸡粪和牛粪干粪便的产气时间分别为150、90和90 d,产气量分别为250、150和70 m3,最大甲烷含量分别为76.1%、79.9%和62.0%。发酵物养分含量变化,3种粪便厌氧发酵后养分含量的变化趋势一致,发酵物中大多数氮以氨态氮形式存在,NH4+浓度在水解阶段后随着发酵进程递增,NO3-浓度呈下降趋势。发酵过程中养分不断被消化和溶解,沼液中所有养分含量呈增加趋势,而沼渣中养分含量呈减少趋势,但沼液中的磷含量较低。李裕荣 刘永霞 赵泽英 李莉婕 彭志良 孙长青 岳延滨 童倩倩 Nantakom Boonkerd Sodchol Wonprasaid 2012西南农业学报2012,25,6:21
2畜禽粪便产沼发酵液对水培蔬菜生长及养分吸收的影响显示文摘探明不同畜禽废弃物产沼发酵液进行蔬菜水培的可行性,为产沼发酵液在有机农作物生产中的合理应用提供参考,以蕹菜和叶用莴苣为材料研究不同电导率的猪粪、鸡粪和牛粪产沼发酵液对水培蔬菜生长及养分吸收的影响。结果表明:①蕹菜和叶用莴苣2种作物在猪粪和鸡粪发酵营养液中生长较好,且以电导率2.5 mS/cm猪粪发酵营养液生长最好,其次是电导率为1.5mS/cm的鸡粪发酵营养液,由于牛粪发酵营养液的氮素含量较低,不适宜作营养液进行蔬菜水培。②蕹菜和叶用莴苣在电导率为2.5 mS/cm的猪粪发酵营养液中的鲜重最高,分别为10.70 g/株和62.11 g/株;在电导率为1.5 mS/cm的鸡粪发酵营养液中的鲜重最高,分别为12.36 g/株和28.21g/株;在猪、鸡、牛粪3种发酵营养液中,以猪粪发酵营养液的水培效果最佳。李裕荣 刘永霞 孙长青 彭志良 赵泽英 李莉婕 岳延滨 童倩倩 Nantakorn Boonkerd Sodchol Wonprasaid 2013西南农业学报2013,26,6:9
3Selection of Yeast Strains Containing β-Glucosidase for Improving Wine Aroma显示文摘Chokchai Wanapu Patcharapom Sripunya Nantakom Boonkerd 2012Journal of Agricultural Science and Technology(B)2012,2,6:3
4Effect of plant growth promoting rhizobacteria (PGPR) inoculation on microbial community structure in rhizosphere of forage corn cultivated in Thailand显示文摘Pongdet Piromyou Bancha Buranabanyat Piyada Tantasawat Panlada Tittabutr Nantakorn Boonkerd Neung Teaumroong 2010European Journal of Soil Biology2010,,1:2
5Capillary clcctrophorcsis for the determination of vitamins of the B group in pharmaceutical preparations显示文摘BOONKERD S DETAEVERNIER M R MICHOTFE Y 1994Journal of Chromatography A1994,670,:1
6Prediction of the chlo robutyl rubber/natural rubber blend properties using a genet ic algorithm and artificial neural network显示文摘Li Lin Choi Y J Boonkerd K 2013Rubber Chem istry and Technology2013,86,2:1
7Proteomic analysis of differentially expressed proteins in Penaeus vannamei hemocytes upon Taura syndrome virus infection显示文摘Chongsatja P O Bourchookarn A Lo C F Thong- boonkerd V KrittanaiC 2007Proteomics2007,7,19:1
8Effect of plant growth promoting rhizobacteria (PGPR) inoculation on microbial community structure in rhizosphere of forage corn cultivated in Thailand显示文摘Pongdet Piromyou Bancha Buranabanyat Piyada Tantasawat Panlada Tittabutr Nantakorn Boonkerd Neung Teaumroong 2010European Journal of Soil Biology2010,,1:1
9Iron-deficiency specifically limits nodule development inpeanut inoculated with Bradyrhizobium sp显示文摘O’Hara G W Dilworth M J Boonkerd N 1988New Phy-tol1988,108,1:1
10Development and eval- uation of a linear regression method for the prediction of maximal ehiral separation of basic drug raeemates by cylodextm-mediated 显示文摘Van Eeekhaut Ann Boonkerd Suchitra 2000Journal of Chromatography A2000,1126,12:1
11Prediction of the chlorobutyl rubber/natural rubber blend properties using a genetic algorithm and artificial neural network显示文摘Li L Choi YJ Boonkerd K 2013Rubber Chemistry and Technology2013,86,2:1
12Urinary trefoil factor 1 is a novel potent inhihitor of calcium oxalate crystal growth and aggregation 显示文摘THON(_ BOONKERD V 2008Urol2008,179,16:1
13Natural abundance of 15N in tropical plants with emphasis on tree legumes 显示文摘Yoneyama T Muraoka T Murakami T Boonkerd N 1993Plant and Soil1993,153,:1
14Class 1 integron containing metallo beta-lactamase gene blalMP-1 in carbapenem-resistant Pseudomonas aeruginosa in Thailand显示文摘Boonkerd N Pibalpakdi P Tiloklurs M 2009J Infect Chemother2009,15,4:1
15Cassava as a Cheap Source of Carbon for Rhizobial Inoculant Production using an Amylase-producing Fungus and a Glycerol-producing Yeast显示文摘Panlada Tittabutr Waraporn Payakapong Neung Teaumroong Nantakorn Boonkerd 2005World Journal of Microbiology and Biotechnology (-)2005,,6:1
16Selection of arbuscular mycorrhizal fungi for citrus growth promotion and Phytophthora suppression显示文摘Watanarojanapom N Boonkerd N Wongkaew S et ol 2011Scientia Horticulturae2011,128,4:1
17Class 1 integron contsining metallo beta-lactamase gene blaIMP-1in carbapenem-resistant pseudomonas aeruginosa in Thailand显示文摘Boonkerd N Pibalpakdi P Tiloklurs M 0,,04:1
18Iron-deficiency Specifically Limits Nodule Development in Peanut Inoculated with Bradyrhizobium sp显示文摘OHARA G W DILWORTH M J BOONKERD N 1988New Phytol1988,108,:1
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