首页 / 专利分类库 / 肥料;肥料制造 / 氮肥 / 含有其他硝酸盐的肥料
序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
121 A method for producing calcium nitrate granules JP2001580811 2001-05-02 JP2003531804A 2003-10-28 エイゲラー,ヨハネス,ペトラス,ギュスベルト; モリス,ウィルフレッド,ロイ; ラビエ,ディルク,レニアー,ヘンドリック
This invention relates to a method for producing calcium nitrate granules. A calcium nitrate melt is sprayed into a re-circulating bed of a first fluidized bed granulator, wherein the re-circulating bed is supplied with air that has been conditioned and heated to a temperature of between 60° C. and 100° C. Calcium nitrate granulates formed in the granulator are introduced to a primary cooler in the form of a second fluidized bed where the granules are cooled to from 50° C. to 60° C. by conditioned air. The granules are sorted in a sorter and then cooled in a secondary cooler to a temperature of less than 40° C. before being bagged. The granules so produced are hard and dry and do not break down easily during handling.
122 Hydroponic soil culture method JP25109399 1999-09-06 JP2001069856A 2001-03-21 USUI MAKIO; HIDAKA HIROSHI; HIRAKI MASAHIRO; NAKAYAMA MICHINORI
PROBLEM TO BE SOLVED: To provide a hydroponic soil culture method which can improve the yields and qualities of crops. SOLUTION: This hydroponic soil culture method is a culture method that an aqueous fertilizer solution is supplied to the rhizosphere regions of crops planted in soil. Therein, the concentration of the fertilizer in the aqueous fertilizer solution is ≤1 wt.%, and nitrogen in the fertilizer is nitrogen in the form of a nitrate. The concentration of the nitrate form nitrogen in the aqueous fertilizer solution is ≤300 ppm as nitrogen atom. COPYRIGHT: (C)2001,JPO
123 Preparation for application on water surface JP2000144767 2000-05-17 JP2000319106A 2000-11-21 NISHI YASUSHI; SATO ATSUSHI; GOSHIMA TOSHIO; ITO SEISHI
PROBLEM TO BE SOLVED: To obtain a preparation for application on a water surface capable of uniformly applying an agrochemical active ingredient over the whole surface of a paddy field, and having controlled release of thereof. SOLUTION: This mixed agrochemical preparation for application on a water surface, having release-promoting activities of the agrochemical active ingredient and good in floating and traveling properties is obtained by allowing a granular nucleus to carry or to be coated with a mixed composition by using a mixture. The granular nucleus has <1 apparent specific gravity and about 500-1,400 particle diameter, and is obtained by previously coating a fired pumice with a water-soluble polymer. The mixed composition consists of a powdery composition comprising mefenacet or fentrazamide of a hardly water-soluble agrochemical active ingredient, a dialkyl sulfosuccinate salt and another surfactant, and an agrochemical bulk composition comprising imazosulfuron of a slightly water-soluble or easily water-soluble agrochemical active ingredient, a wax or a polyethylene, and a hydrophobic silica. The mixture comprises a sorbitan (or a sorbitol) fatty acid ester of a polyoxyethylene and other oily surfactants.
124 Liquid composite fertilizer and its production JP22343994 1994-09-19 JPH0891976A 1996-04-09 ARAFUKA HIROTOSHI
PURPOSE: To produce a liquid composite fertilizer free from defects of a conventional liquid composite fertilizer, and having excellent rapid effect and at the same time slow acting and long lasting properties. CONSTITUTION: This liquid composite fertilizer is composed of the three components of nitrogen, phosphoric acid and potassium together with gelatin and bone meal of bovine or pig as organic nitrogen and phosphoric acid components. The bone meal is dissolved in a mixed liquid of phosphoric acid, water and a concentrated nitric acid. The obtained solution is added with a mixed solution of phosphoric acid, water and gelatin to obtain an acidic solution of bone meal. The acidic solution of bone meal is neutralized with a caustic potash aqueous solution or by replacing the caustic potash aqueous solution partly or entirely with an aqueous ammonia in the neutralization. The contents of the three components of nitrogen, phosphoric acid and potassium of the obtained liquid composite fertilizer are each adjusted to a necessary value by adding an aqueous ammonia or optionally a phosphoric salt, a potassium salt, a minor component or another additive.
125 Production of calcium nitrate-urea adduct JP2991593 1993-01-26 JPH05339086A 1993-12-21 ANTONIO KURISUPORUDEI
PURPOSE: To provide a method for producing calcium nitrate-urea adduct as a particulate freely fluidic solid in which respective particles have homogenous mechanical characteristics. CONSTITUTION: Calcium nitrate-urea adduct is produced by the following steps that molten urea and calcium nitrate and mixed (a), the resulting solution is fed to a tarbodryer 6 (b), the resulting molten salt is fed to a granulator drum 11 (c) and the calcium nitrate-urea adduct is recovered (d). COPYRIGHT: (C)1993,JPO
126 JPS5919909B2 - JP11225973 1973-10-08 JPS5919909B2 1984-05-09 MAEDA SHOTARO; SHIMIZU KOZO; NAGASHIMA KENJI
127 Method and apparatus for producing ammonium nitrate lime JP5707478 1978-05-12 JPS54153161A 1979-12-03 OKUTABIAN MORARU; BENERA PANII; NEKURAI POPOBUICHI; KONSUTANTEIN PITEISU; GEORUGE MAKABEIYU; BUESHIRU ANESEKU
128 JPS5420430B2 - JP7490872 1972-07-25 JPS5420430B2 1979-07-23
129 Composition contained urea * its preparating method and its using method JP15775178 1978-12-22 JPS5491471A 1979-07-19 ANDORIYUU RUISU; RICHIYAADO MITSUCHIERU SUREITA
130 Liquid fertilizer JP15086575 1975-12-18 JPS5275571A 1977-06-24 NAKAYAMA KIYOSHI; YAMAUCHI SUSUMU; KURODA NORIYASU
131 JPS49131848A - JP4846573 1973-05-02 JPS49131848A 1974-12-18
132 液肥の製造方法 JP2018100361 2018-05-25 JP2019202920A 2019-11-28 大場 和彦; 薄田 篤生; 下高 敏彰
【課題】硝酸態窒素を多く含む肥効の高い液肥を製造する方法を提供すること。
【解決手段】下汚泥残渣の脱水ろ液に対してオゾン処理を施すオゾン処理工程と、オゾン処理された脱水ろ液を菌体を用いて処理する菌体処理工程と、を有することを特徴とする液肥の製造方法である。
【選択図】図3
133 マンガン含有原料の酸化物からの有価金属の回収 JP2015538059 2013-10-18 JP6182216B2 2017-08-16 ドリンカード,ウィリアム,エフ.; ウェルナー,ハンス,ジェイ.; ニクソン,ウィリアム,エム.
134 硝酸アンモニウムを含む安定化された組成物 JP2014224125 2014-11-04 JP5913527B2 2016-04-27 クウィーダー,ジェームズ・エイ; ウィリアムス,リチャード・ジェイ
135 マンガン含有原料の酸化物からの有価金属の回収 JP2015538059 2013-10-18 JP2016500760A 2016-01-14 ドリンカード,ウィリアム,エフ.; ウェルナー,ハンス,ジェイ.; ニクソン,ウィリアム,エム.
海中採鉱によって回収される団塊などのマンガン含有原料を処理するための改良された方法であって、そのような原料をアンモニアと反応させて、無機酸を用いて浸出させることを含み、また、そのような団塊から、有価成分、特にマンガン、コバルト、ニッケル、鉄、銅、チタン、バナジウム、セリウム、及びモリブデンを回収する方法である。また、硝酸産物を生産する方法も開示している。
136 Artificial soil medium JP2014032792 2014-02-24 JP2014193148A 2014-10-09 YAMADA RIE
PROBLEM TO BE SOLVED: To provide an artificial soil medium capable of reducing accumulation of nitric acid in a cultivated plant body and promoting growth of the cultivated plant.SOLUTION: There is provided an artificial soil medium 100 containing nitrate nitrogen and molybdenum, and the medium consists of artificial soil particles containing nitrate nitrogen and molybdenum, and at least one type of microelement selected from a group consisting of iron, copper, zinc, manganese, boron, chlorine and silicate. The particle contains the molybdenum as molybdate, content of nitrate nitrogen is 0.05 to 10 wt.%, content of molybdenum is 0.01 to 0.50 wt.%, and content of nitrate nitrogen and molybdenum is set to 1:6 to 1:0.0006 in molar ratio.
137 Free-flowing solid fertilizer composition that is soluble and solubilizing, and their preparation JP2008557899 2007-03-08 JP5600242B2 2014-10-01 ヨセフ,アレクサンダー; オレン,ヤコヴ; ヤギル,イェアー
138 Method for producing a granulated nitrogen fertilizer JP2004174903 2004-06-14 JP4480477B2 2010-06-16 博志 佐々木; 普志 坂下; 拓司 直川
139 Mixed fertilizer JP31388897 1997-11-14 JP4014705B2 2007-11-28 正太郎 前田
140 Soil ameliorating fertilizer, and plant cultivation method using the same JP2006309618 2006-11-15 JP2007091591A 2007-04-12 HAYASHI SATOSHI; YOKOYAMA MICHIHIDE
<P>PROBLEM TO BE SOLVED: To provide a soil ameliorating fertilizer having excellent soil amelioration effect and promoting the growth of a plant, and a plant cultivation method using the soil ameliorating fertilizer. <P>SOLUTION: The soil ameliorating fertilizer consists of a carbon material prepared by bringing carbonized material 9 obtained by carbonizing a raw material 5 of plant origin into contact with an acid solution 12 and imparting an anion adsorption function to the material, or contains the carbon material. <P>COPYRIGHT: (C)2007,JPO&INPIT
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