JP7465388B2 - 天然温泉濃縮液の製造方法 - Google Patents
天然温泉濃縮液の製造方法 Download PDFInfo
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- JP7465388B2 JP7465388B2 JP2023074849A JP2023074849A JP7465388B2 JP 7465388 B2 JP7465388 B2 JP 7465388B2 JP 2023074849 A JP2023074849 A JP 2023074849A JP 2023074849 A JP2023074849 A JP 2023074849A JP 7465388 B2 JP7465388 B2 JP 7465388B2
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Description
ここで、本発明に係る天然温泉濃縮液は、好適にはナトリウム:100mg/L~200mg/L、 マグネシウム:2000mg/L~4000mg/L、シリカ:10mg/L~40mg/L、リン: 100mg/L~400mg/L、カリウム;1000mg/L~4000mg/L、カルシウム:100mg/L~500mg/L、チタン:500mg/L~1000mg/L、クロム;3mg/L~20mg/L、マンガン:50mg/L~200mg/L、鉄分;5000mg/L~30000mg/L、コバルト:2mg/L~10mg/L、銅;2mg/L~20mg/L、亜鉛;10mg/L~30mg/L、ゲルマニウム;10mg/L以下、セレン:1mg/L~10mg/L、モリブデン:5mg/L以下とから構成される。
本発明に係る天然温泉濃縮液は、より好適には、ナトリウム:170mg/L、 マグネシウム:3000mg/L、シリカ:28mg/L、リン: 300mg/L、カリウム;2500mg/L、カルシウム:400mg/L、チタン:860mg/L、クロム;8mg/L、マンガン:140mg/L、鉄分;10000mg/L、コバルト:4mg/L、銅;8mg/L、亜鉛;17mg/L、ゲルマニウム;1mg/L以下、セレン:5mg/L、モリブデン:0.5mg/L以下とするのが望ましい。
1.温泉成分分量:ミネラル分を塩類換算重量で20%以上含む。
2.温泉成分内訳:(1)アルミニウム、鉄、マグネシウム及びカリウムを多量に含む。
(2)リン、チタン、カルシウム、マンガン、ナトリウム、シリコン、コバルト、リチウム、銅、ニッケル、亜鉛、バリウムの大部分を含む。
(3)ヒ素、鉛、水銀、クロムを含まない。
(実施例1)
(実施例2)
(実施例3)
(実施例4)
1.天然温泉の成分増量分野における利用本発明の天然温泉濃縮液を家庭用風呂に例えば、50-5,000ppm水溶液を0.1ml/L程度希釈することによりさら湯をミネラル成分豊富な温泉に変換し保温、保湿効果を高め、水溶化したミネラルが経皮から浸透しミネラルの補給を行うことが可能である。これにより温泉を採掘したり、運搬を行うことなく場所を問わず温泉湯治を行うことが可能になる。
(実施例5)
(実施例7)
(実施例8)
(実施例9)
(実施例10)
本発明の天然温泉濃縮液を有利に使用できる微生物としては、ミドリムシやクロレラ、糀酵素、水耕栽培、路地栽培、温室栽培、土壌栽培を問わず、キュウリ、トマト、ナス、ピーマン、ネギ、ブロッコリー、エンドウ、インゲン、ゴボウ、カイワレ大根、ミツバ、ホーレン草、葉ネギ、イチゴ、スイカ、メロン等の野菜類;ミカン、ネーブル、ポンカン、ハッサク、桃、梨、柿、イチジク、ネクタリン、ブドウ、リンゴ等の果樹類;菊、バラ、デンファレ、オンシジウム、コチョウラン、ブーゲンビリア、黒木、モンステラ、ハイビスカス、アレカシア、黄金ガジュマル、幸福の木、カーネーション、ガーベラ、シクラメン、サイネリア、ジュリアン、ベゴニア、ストック、菜の花等の花卉類;芝、葉たばこ、茶、椎茸等が挙げられる。更には、野菜、果物の鮮度保持、及び花卉類の保命効果にも有用である。
(実施例11)
(実施例12)
(実施例13)
(実施例14)
(実施例15)
(実施例16)
(実施例17)
(実施例18)
(実施例19)
(実施例20)
(実施例21)
(実施例22)
Claims (3)
- 天然温泉成分とミネラルを含有する鉱物の無機酸処理物とを含む含金属酸性溶液であって、温泉液中の有機物並びに無機物とを含みこれらを酸化する特性を有することを特徴とする水中有機物並びに無機物酸化処理用天然温泉濃縮液の製造方法であって、
黒雲母の風化土壌を原土を掘削する工程と、
塩酸、硝酸、硫酸、酢酸、炭酸のいずれかを含む鉱酸を純水で希釈する工程と、
希釈した鉱酸で前記原土を撹拌する工程と、
酸と攪拌された原土は、原土峻別設備でより粒度の細かい原土に峻別する工程と、
原土峻別設備でより粒度の細かい原土に峻別される工程と、
峻別された原料がさらに原料ホッパーに貯蔵され、底開式のじょうご型の口から落下させて取り出されて抽出されて抽出槽に抽出される工程と、
ミネラル、水分、残留物は、濾液槽で、残留物が沈殿し、上澄みとしてミネラルと水分のミネラル混合液が貯液される工程からなり、
前記天然温泉濃縮液は、ナトリウム:100mg/L~200mg/L、 マグネシウム:2000mg/L~4000mg/L、シリカ:10mg/L~40mg/L、リン: 100mg/L~400mg/L、カリウム;1000mg/L~4000mg/L、カルシウム:100mg/L~500mg/L、チタン:500mg/L~1000mg/L、クロム;3mg/L~20mg/L、マンガン:50mg/L~200mg/L、鉄分;5000mg/L~30000mg/L、コバルト:2mg/L~10mg/L、銅;2mg/L~20mg/L、亜鉛;10mg/L~30mg/L、ゲルマニウム;10mg/L以下、セレン:1mg/L~10mg/L、モリブデン:5mg/L以下とから構成する水中有機物並びに無機物酸化処理用天然温泉濃縮液の製造方法。 - 天然温泉成分とミネラルを含有する鉱物の無機酸処理物とを含む含金属酸性溶液であって、温泉液中の有機物並びに無機物とを含みこれらを酸化する特性を有することを特徴とする水中有機物並びに無機物酸化処理用天然温泉濃縮液からなるウイルス不活化剤の製造方法であって、
黒雲母の風化土壌を原土を掘削する工程と、
塩酸、硝酸、硫酸、酢酸、炭酸のいずれかを含む鉱酸を純水で希釈する工程と、
希釈した鉱酸で前記原土を撹拌する工程と、
酸と攪拌された原土は、原土峻別設備でより粒度の細かい原土に峻別する工程と、
原土峻別設備でより粒度の細かい原土に峻別される工程と、
峻別された原料がさらに原料ホッパーに貯蔵され、底開式のじょうご型の口から落下させて取り出されて抽出されて抽出槽に抽出される工程と、
ミネラル、水分、残留物は、濾液槽で、残留物が沈殿し、上澄みとしてミネラルと水分のミネラル混合液が貯液される工程からなり、
前記天然温泉濃縮液は、ナトリウム:100mg/L~200mg/L、 マグネシウム:2000mg/L~4000mg/L、シリカ:10mg/L~40mg/L、リン: 100mg/L~400mg/L、カリウム;1000mg/L~4000mg/L、カルシウム:100mg/L~500mg/L、チタン:500mg/L~1000mg/L、クロム;3mg/L~20mg/L、マンガン:50mg/L~200mg/L、鉄分;5000mg/L~30000mg/L、コバルト:2mg/L~10mg/L、銅;2mg/L~20mg/L、亜鉛;10mg/L~30mg/L、ゲルマニウム;10mg/L以下、セレン:1mg/L~10mg/L、モリブデン:5mg/L以下とから構成されるウイルス不活化剤の製造方法。 - 天然温泉成分とミネラルを含有する鉱物の無機酸処理物とを含む含金属酸性溶液であって、温泉液中の有機物並びに無機物とを含みこれらを酸化する特性を有することを特徴とする水中有機物並びに無機物酸化処理用天然温泉濃縮液からなる液肥の製造方法であって、
黒雲母の風化土壌を原土を掘削する工程と、
塩酸、硝酸、硫酸、酢酸、炭酸のいずれかを含む鉱酸を純水で希釈する工程と、
希釈した鉱酸で前記原土を撹拌する工程と、
酸と攪拌された原土は、原土峻別設備でより粒度の細かい原土に峻別する工程と、
原土峻別設備でより粒度の細かい原土に峻別される工程と、
峻別された原料がさらに原料ホッパーに貯蔵され、底開式のじょうご型の口から落下させて取り出されて抽出されて抽出槽に抽出される工程と、
ミネラル、水分、残留物は、濾液槽で、残留物が沈殿し、上澄みとしてミネラルと水分のミネラル混合液が貯液される工程からなり、
前記天然温泉濃縮液は、ナトリウム:100mg/L~200mg/L、 マグネシウム:2000mg/L~4000mg/L、シリカ:10mg/L~40mg/L、リン: 100mg/L~400mg/L、カリウム;1000mg/L~4000mg/L、カルシウム:100mg/L~500mg/L、チタン:500mg/L~1000mg/L、クロム;3mg/L~20mg/L、マンガン:50mg/L~200mg/L、鉄分;5000mg/L~30000mg/L、コバルト:2mg/L~10mg/L、銅;2mg/L~20mg/L、亜鉛;10mg/L~30mg/L、ゲルマニウム;10mg/L以下、セレン:1mg/L~10mg/L、モリブデン:5mg/L以下とから構成される液肥の製造方法。
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WO2013073644A1 (ja) | 2011-11-14 | 2013-05-23 | 塚原 順子 | 多種類のミネラルを含む複合康機能性食品 |
JP2013116871A (ja) | 2011-12-05 | 2013-06-13 | Tsutomu Kubo | 超ミネラル水の製造方法 |
JP6218031B2 (ja) | 2013-12-16 | 2017-10-25 | 大王製紙株式会社 | 吸収性物品 |
JP7238004B2 (ja) | 2021-03-17 | 2023-03-13 | 本田技研工業株式会社 | 車体前部構造 |
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