优质-酱油酿造新技术工艺配方汇编资料
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日本著名公司酱油制造技术概况


酱油是万能调味品:在日本,人们往往把酱油当做礼物送人,这足以说明酱油在日本人的日常生活中有着不可替代的位置也充分说明日本人讲究吃,商店和超市里琳琅满目、五花八门的酱油更是足以证明酱油对日本人来说是一种万能调味品,不但口味鲜美,而且营养价值很高。


日本有1400多家酱油企业,万字酱油是其中销量最大的一家,与其他四家大手酱油厂Yamasa酱油,Higeta酱油,东丸酱油,Marukin忠勇酱油合计占有日本国内市场份额的一半。这些酱油厂家的每个厂牌下都有很多种类的酱油,不可一概而论。日本酱油特点以大家熟悉的“龟甲万”,也叫万字酱油为例:利用严格挑选的原料,酿造出的酱油包含有300多种芳香成分,酸、甜、苦、咸、鲜五种口味浑然一体,这就是龟甲万酱油美味可口的秘密。随着龟甲万酱油在全世界的普及,大家发现酱油既适用于东方菜系,也适用于西餐。正因为如此,龟甲万酱油在世界上100多个国家深受好评,作为万能的调味品(all-purpose seasoning)闻名于世。万字酱油与中国本地品牌的区别:万字酱油采用的是纯酿造技术,与一般的中国酱油在原料和酿造工艺上有区别。首先是原料,万字酱油使用的是经过严格筛选和检测的大豆和小麦,而普通酱油使用的一般是大豆、小麦粉或麦糠。至于酿造工艺,万字酱油在酿造过程中依靠曲菌(麴菌)、乳酸菌和酵母等微生物的力量,通过严格的温度管理,在发酵罐内进行长达几个月的发酵。与此不同的是,一般的酱油采用发酵池发酵,发酵时间较短,也几乎没有乳酸菌和酵母等微生物的发酵过程。


万字酱油的色、香、味完全来自自然酿造。颜色自然清澄,呈现出明亮的红褐色,不添加焦糖色。内含300多种香气成分,呈现出只有日本本酿造酱油才有的独特香气。口味自然鲜美,无须添加味精。另外,通过严格的质量管理,万字酱油无须添加任何防腐剂。日本酱油的新技术研发日本酱油制造商在酱油方面不断研发新产品,并对现有的产品持续进。
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《Ionic Materials固态电池制造工艺配方精选汇编》

《Ionic Materials固态电池制造工艺配方精选汇编》

Ionic Materials 的固态电池技术具有显著的安全性和成本优势,未来有望在电动汽车、储能系统和消费电子产品中广泛应用。其技术路线和合作伙伴关系表明,Ionic Materials 正在加速固态电池的商业化进程,预计在2025-2027年实现大规模量产。

本资料收录了Ionic Materials最新专利技术工艺配方,资料详细地介绍了相关工艺、配方,是国内电池制造厂家新产品开发的重要参考资料。

【资料内容】生产工艺、配方
【出品单位】国际新技术资料网
【项目数量】81项
【资料语种】英文
【电  子 版】1980元(PDF文档 邮箱发送)
【联系电话】13141225688 梅兰(女士)

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Ionic Materials 的固态电池技术具有显著的安全性和成本优势,未来有望在电动汽车、储能系统和消费电子产品中广泛应用。其技术路线和合作伙伴关系表明,Ionic Materials 正在加速固态电池的商业化进程,预计在2025-2027年实现大规模量产。

本资料收录了Ionic Materials最新专利技术工艺配方,资料详细地介绍了相关工艺、配方,是国内电池制造厂家新产品开发的重要参考资料。

【资料内容】生产工艺、配方
【出品单位】国际新技术资料网
【项目数量】81项
【资料语种】英文
【电  子 版】1980元(PDF文档 邮箱发送)
【联系电话】13141225688 梅兰(女士)

目录

1NONAQUEOUS ELECTROLYTIC SOLUTION AND NONAQUEOUS ELECTROLYTIC SOLUTION BATTERY INCLUDING NONAQUEOUS ELECTROLYTIC SOLUTIONTAMAI USAMI KAHO [JP]
NAKAZAWA EIJI [JP]
2NONAQUEOUS ELECTROLYTE, AND NONAQUEOUS ELECTROLYTE BATTERY USING THE NONAQUEOUS ELECTROLYTENISHIO KOICHI
3NONAQUEOUS ELECTROLYTE AND NONAQUEOUS ELECTROLYTE BATTERY COMPRISING THE NONAQUEOUS ELECTROLYTEFUKAMIZU KOJI
KAWAKAMI DAISUKE
ABE TAIKI
4NONAQUEOUS ELECTROLYTE SECONDARY BATTERYNISHIO KOICHI [JP]
KIM JUNGMIN [JP]
5NONAQUEOUS ELECTROLYTE FOR SECONDARY BATTERY AND NONAQUEOUS-ELECTROLYTE SECONDARY BATTERY EMPLOYING THE SAMEFUJII TAKASHI [JP]
OHASHI YOUICHI [JP]
KINOSHITA SHINICHI [JP]
6NONAQUEOUS ELECTROLYTE SOLUTION, AND NONAQUEOUS ELECTROLYTE BATTERY USING THE SAMENAKAZAWA EIJI
OHASHI YOICHI
KOTADO MINORU
7NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERY INCLUDING NON-AQUEOUS ELECTROLYTEFUKAMIZU KOJI
8NONAQUEOUS ELECTROLYTE, NONAQUEOUS ELECTROLYTE SECONDARY BATTERY, AND ENERGY DEVICEWATARAI ATSUSHI [JP]
NAKAZAWA EIJI [JP]
SAWA SHUHEI [JP]
9NON-AQUEOUS ELECTROLYTE, AND NON-AQUEOUS ELECTROLYTE BATTERY USING SAID NON-AQUEOUS ELECTROLYTENISHIO KOICHI [JP]
NOZAWA RYO [JP]
KAWAKAMI DAISUKE [JP]
10NONAQUEOUS ELECTROLYTE SOLUTION AND NONAQUEOUS ELECTROLYTE BATTERY USING SAMENAKAZAWA EIJI [JP]
OOHASHI YOICHI [JP]
KOTATO MINORU [JP]
MITSUI TAKAMICHI [JP]
AOSHIMA TAKAYUKI [JP]
NAKAMURA TAKESHI [JP]
11NON-AQUEOUS ELECTROLYTE BATTERY USING NON-AQUEOUS ELECTROLYTENISHIO KOICHI
12Non-Aqueous Electrolyte and Non-Aqueous Electrolyte Battery Using SameFUKAMIZU KOJI [JP]
MIYOSHI KAZUHIRO [JP]
13NONAQUEOUS ELECTROLYTE, NONAQUEOUS ELECTROLYTE BATTERY CONTAINING NONAQUEOUS ELECTROLYTE, AND COMPOUNDTAMAI (USAMI) KAHO
14NON-AQUEOUS ELECTROLYTE SOLUTION AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY EMPLOYING THE SAMESAWA SHUHEI [JP]
KOTATO MINORU [JP]
SHIMA KUNIHISA [JP]
SHIGEMATSU YASUYUKI [JP]
ONUKI MASAMICHI [JP]
TAKIGUCHI KANAKO [JP]
15Nonaqueous Electrolytic Solution and Nonaqueous Electrolytic Solution BatteryNAKAZAWA EIJI [JP]
KAWAKAMI DAISUKE [JP]
16SOLID STATE BIPOLAR BATTERYZIMMERMAN MICHAEL A [US]
LEISING RANDY [US]
17LIQUID CRYSTAL POLYMER BATTERY ENCLOSURE MATERIALZIMMERMAN MICHAEL A [US]
LEISING RANDY [US]
18NON-AQUEOUS ELECTROLYTE, NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY COMPRISING THAT NON-AQUEOUS ELECTROLYTE, AND COMPOUNDNISHIO KOICHI
KAWAKAMI DAISUKE
19NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERY EQUIPPED THEREWITHMIYOSHI KAZUHIRO
20NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERY CONTAINING THAT NON-AQUEOUS ELECTROLYTEFUKAMIZU KOJI
KAWAKAMI DAISUKE
21NON-AQUEOUS ELECTROLYTE SECONDARY BATTERYNAKAZAWA EIJI [JP]
OOHASHI YOUICHI [JP]
WATARAI ATSUSHI [JP]
22NONAQUEOUS ELECTROLYTE SECONDARY BATTERYNAKANISHI TAKAHIRO
23NONAQUEOUS ELECTROLYTE SOLUTION, NONAQUEOUS ELECTROLYTE BATTERY COMPRISING SAID NONAQUEOUS ELECTROLYTE SOLUTION, AND COMPOUNDTAMAI USAMI KAHO [JP]
24NONAQUEOUS ELECTROLYTE SOLUTION AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERYNAKAZAWA EIJI
SHIRATORI KAZUYA
25NONAQUEOUS ELECTROLYTIC SOLUTION AND NONAQUEOUS ELECTROLYTIC SOLUTION SECONDARY BATTERY USING SAMEYOSHIDA HIROAKI [JP]
SHIGEMATSU YASUYUKI [JP]
KOTATO MINORU [JP]
26NON-AQUEOUS ELECTROLYTE BATTERY CONTAINING NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTENISHIO KOICHI
YASO YUSUKE
27NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERY USING THE SAMENISHIO KOICHI
28NON-AQUEOUS ELECTROLYTIC SOLUTION AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY USING THE SAMEYOSHIDA HIROAKI [JP]
KAWAKAMI DAISUKE [JP]
FUKAMIZU KOJI [JP]
29Nonaqueous Electrolytic Solution and Nonaqueous Electrolytic Solution BatteryNAKAZAWA EIJI [JP]
TAMAI KAHO [JP]
30Nonaqueous Electrolytic Solution and Nonaqueous Electrolytic Solution BatteryNAKAZAWA EIJI [JP]
ABE TAIKI [JP]
31NONAQUEOUS ELECTROLYTE AND NONAQUEOUS ELECTROLYTE BATTERY INCLUDING THE SAMETAMAI (USAMI) KAHO
32NONAQUEOUS ELECTROLYTE, NONAQUEOUS ELECTROLYTE BATTERY INCLUDING THE SAME, AND COMPOUNDTAMAI KAHO
33NON-AQUEOUS ELECTROLYTE, AND NON-AQUEOUS ELECTROLYTE BATTERY USING THAT NON-AQUEOUS ELECTROLYTENOZAWA RYO
34NON-AQUEOUS ELECTROLYTE, AND NON-AQUEOUS ELECTROLYTE BATTERY USING THAT NON-AQUEOUS ELECTROLYTENISHIO KOICHI
35NON-AQUEOUS ELECTROLYTE, AND NON-AQUEOUS ELECTROLYTE BATTERY USING THE SAMEKAWAKAMI DAISUKE
36COMPOSITE SOLID-STATE BATTERY CELLHOFFERT WESLEY [US]
ROJAS ADRIANA A [US]
LAUGHMAN DAVID M [US]
BUANNIC LUCIENNE [US]
JOHNSON DEREK C [US]
SISK BRIAN [US]
37NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY AND METHOD FOR PRODUCING SAMEHONDA TATSUHIKO [JP]
38NONAQUEOUS ELECTROLYTE SOLUTION AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERY HAVING THE SAMENISHIO KOICHI
YAMAGUCHI AKIRA
39NONAQUEOUS ELECTROLYTE SOLUTION, NONAQUEOUS ELECTROLYTE SECONDARY BATTERY HAVING THE SAME, AND COMPOUNDKURIHARA YOSHINORI
YASO YUSUKE
KIDO DAIKI
SETOGUCHI HIROYUKI
KIMURA NOBUHISA
40METHOD FOR PRODUCING LITHIUM FLUOROSULFONATE, LITHIUM FLUOROSULFONATE, NONAQUEOUS ELECTROLYTIC SOLUTION, AND NONAQUEOUS ELECTROLYTIC SOLUTION SECONDARY BATTERYKAWAKAMI DAISUKE [JP]
YAMAGUCHI RYO [JP]
TOKUDA HIROYUKI [JP]
TAKEHARA MASAHIRO [JP]
41NONAQUEOUS ELECTROLYTE SOLUTION AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERY HAVING THE SAMENOZAWA RYO
42NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY CONTAINING SAID NON-AQUEOUS ELECTROLYTEFUKAMIZU KOJI
KAWAKAMI DAISUKE
43NONAQUEOUS ELECTROLYTIC SOLUTION AND NONAQUEOUS ELECTROLYTIC SOLUTION BATTERYNAKAZAWA EIJI [JP]
ABE TAIKI [JP]
TAMAI KAHO [JP]
44NON-AQUEOUS ELECTROLYTE SOLUTION, AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERYWATANABE AIKO [JP]
NAKAZAWA EIJI [JP]
45Nonaqueous Electrolyte Solution and Nonaqueous-Electrolytic-Solution BatteryNAKAZAWA EIJI [JP]
46NON-AQUEOUS LIQUID ELECTROLYTE AND NON-AQUEOUS LIQUID ELECTROLYTE SECONDARY BATTERYFUJII TAKASHI [JP]
SHIMA NORIKO [JP]
OHASHI YOUICHI [JP]
KINOSHITA SHINICHI [JP]
47NON-AQUEOUS ELECTROLYTE SOLUTION AND NON-AQUEOUS ELECTROLYTE BATTERY CONTAINING NON-AQUEOUS ELECTROLYTE SOLUTIONYAEGASHI RYO
OHASHI YOICHI
NISHIO KOICHI
48NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERYWATANABE AIKO
49NON-AQUEOUS ELECTROLYTE FOR LITHIUM ION SECONDARY BATTERY AND NON-AQUEOUS ELECTROLYTE LITHIUM ION SECONDARY BATTERYWATANABE AIKO
50NON-AQUEOUS ELECTROLYTE SECONDARY BATTERYWATANABE AIKO
51LITHIUM ION SECONDARY BATTERY AND MANUFACTURING METHOD THEREOFSHIMAMOT KEI
FUKUNAGA TAKAO
SUGIYAMA HIDEYUKI
MASUDA WATARU
FUJITA HIROTERU
HIGUCHI MUNETAKA
52NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERYHONDA TATSUHIKO [JP]
TOKUDA HIROYUKI [JP]
KAWAKAMI DAISUKE [JP]
YAMAGUCHI RYO [JP]
53NONAQUEOUS ELECTROLYTE AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERY COMPRISING NONAQUEOUS ELECTROLYTENOZAWA RYO
YAMAGUCHI AKIRA
54NONAQUEOUS ELECTROLYTE AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERY HAVING NONAQUEOUS ELECTROLYTENOZAWA RYO
55LITHIUM METAL BATTERY WITH SOLID POLYMER ELECTROLYTEZIMMERMAN MICHAEL A [US]
LEISING RANDOLPH [US]
56ALKALINE BATTERY CATHODE WITH SOLID POLYMER ELECTROLYTEZIMMERMAN MICHAEL A [US]
GAVRILOV ALEXEI B [US]
57NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERYNAKAZAWA EIJI [JP]
ABE TAIKI [JP]
58SOLID ION CONDUCTING POLYMER, CATHODE COMPRISING SAME, AND BATTERYZIMMERMAN MICHAEL A
LEISING RANDOLPH
GAVRILOV ALEXEI B
SMITH KRIS
TEOLI ANDY
59Lithium secondary battery and non-aqueous electrolyte solution used thereinMIYAGI HIDEKAZU
KATO RYUICHI
YOKOMIZO MASAKAZU
UONO HIROYUKI
MATSUMOTO KAZUSHI
SATO TOMOHIRO
MINORU KOTATO
NAKAJIMA TAKAYUKI
SUZUKI HITOSHI
OSHIMA HIROYUKI
60NONAQUEOUS ELECTROLYTE SOLUTION AND NONAQUEOUS ELECTROLYTE BATTERYHONDA TATSUHIKO
TOKUDA HIROYUKI
ABE TAIKI
61NON-AQUEOUS ELECTROLYTE SOLUTION AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY INCLUDING NON-AQUEOUS ELECTROLYTE SOLUTIONNOZAWA RYO
KAWAKAMI DAISUKE
HORIE SHUMPEI
62NONAQUEOUS ELECTROLYTIC SOLUTION SECONDARY BATTERY AND NONAQUEOUS ELECTROLYTIC SOLUTIONNISHIO KOICHI [JP]
SAWA SHUHEI [JP]
63ALUMINUM NEGATIVE ELECTRODE AND BATTERY HAVING SOLID POLYMER ELECTROLYTEMICHAEL A ZIMMERMAN
ALEXEI B GAVRILOV
LIU TING
KEITH SMITH
64NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERYNAKAZAWA EIJI
65NONAQUEOUS ELECTROLYTE AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERYWATANABE AIKO
66NONAQUEOUS ELECTROLYTIC SOLUTION SECONDARY BATTERYWATANABE AIKO [JP]
MARU NAOTO [JP]
67NONAQUEOUS ELECTROLYTE SOLUTION AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERY USING THE SAMENAKAZAWA EIJI
YAMAGUCHI AKIRA
68BATTERY ELECTRODE WITH SOLID POLYMER ELECTROLYTE AND AQUEOUS SOLUBLE BINDERZIMMERMAN MICHAEL A [US]
LEISING RANDOLPH [US]
69NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY AND POWER STORAGE DEVICETOKUDA HIROYUKI
TAKEHARA MASAHIRO
70NON-AQUEOUS ELECTROLYTE FOR SECONDARY BATTERIES AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY USING THE SAMEKATO RYUICHI
KOTADO MINORU
71LITHIUM ION SECONDARY BATTERY AND METHOD FOR MANUFACTURING THE SAMESHIMAMOT KEI
FUKUNAGA TAKAO
SUGIYAMA HIDEYUKI
MASUDA WATARU
FUJITA HIROTERU
HIGUCHI MUNETAKA
72NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERYTOKUDA HIROYUKI
73NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERY USING THE SAMEFUKAMIZU KOJI
NAKAZAWA EIJI
74SOLID ELECTROLYTE HIGH ENERGY BATTERYZIMMERMAN MICHAEL A [US]
75ALKALINE METAL-AIR BATTERY CATHODEZIMMERMAN MICHAEL A [US]
GAVRILOV ALEXEI B [US]
KELSEY G STEPHEN [US]
SMITH KEITH [US]
76ALKALINE BATTERY CATHODE WITH SOLID POLYMER ELECTROLYTEZIMMERMAN MICHAEL A
GAVRILOV ALEXEI B
77NONAQUEOUS ELECTROLYTE SOLUTION AND NONAQUEOUS ELECTROLYTE BATTERYNAKAZAWA EIJI [JP]
78ALKALINE METAL-AIR BATTERY CATHODEZIMMERMAN MICHAEL A [US]
GAVRILOV ALEXEI B [US]
KELSEY G STEPHEN [US]
SMITH KEITH [US]
79BATTERY WITH POLYVALENT METAL ANODEZIMMERMAN MICHAEL A [US]
GAVRILOV ALEXEI B [US]
80SOLID STATE BIPOLAR BATTERYZIMMERMAN MICHAEL A
LEISING RANDY
81ALKALINE METAL-AIR BATTERY CATHODEZIMMERMAN MICHAEL A [US]
GAVRILOV ALEXEI B [US]
KELSEY G STEPHEN [US]
SMITH KEITH [US]



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