bcゲーム 入金ボーナスhokubai Develops Environmentally Friendly Rechargeable Carbon-zinc Hybrid Battery

OSAKA, Japan, Feb. 20, 2020 /Kyodo JBN/ --

bcゲーム 入金ボーナスhokubai Co., Ltd.

bcゲーム 入金ボーナスhokubai Develops Environmentally Friendly Rechargeable Carbon-zinc Hybrid Battery

bcゲーム 入金ボーナスhokubai Co., Ltd. (hereinafter "bcゲーム 入金ボーナスhokubai") has developed a novel rechargeable zinc battery by combining activated carbon with a "zinc battery separator" and "zinc anode" developed with the use of its unique technology. This new rechargeable zinc battery is made of resource-rich and non-toxic materials such as water, carbon and zinc, and there is no fear of burning because it is a water-based battery. In addition, this battery has excellent output performance and low-temperature performance. Although the extension of battery life has been a challenging issue for rechargeable zinc batteries, bcゲーム 入金ボーナスhokubai’s novel separator/zinc anode technology has achieved a long life of 10,000 cycles or more.

Logo:/prwfile/release/M104641/202002176870/bcゲーム 入金ボーナスrwbcゲーム 入金ボーナスI4im_32917kJ6.jpg

bcゲーム 入金ボーナスteries, rechargeable batteries that use zinc for the negative electrode, have very long history that even Volta and Edison also had studied. In contrast to lithium-ion batteries which are small and lightweight, rechargeable bcゲーム 入金ボーナスteries focus on safety. The characteristics of bcゲーム 入金ボーナスteries are the high safety of using an aqueous electrolyte solution like a lead-acid battery, high environmental friendliness without the use of toxic materials such as lead, and elemental advantages without using rare metals. Therefore, rechargeable bcゲーム 入金ボーナスteries are expected to play a primary role in next-generation storage batteries.

However, the biggest weakness of bcゲーム 入金ボーナスteries has been their charge-discharge cycle life. The major cause is that a short circuit between the positive electrode and the negative electrode occurs when needle-like zinc metal crystals grow toward the positive electrode during repeated charging and discharging. For this reason, it has been considered common knowledge that zinc anodes can be used for primary batteries but not for secondary batteries.

Fig. 1: Schematic diagram of conventional separator and bcゲーム 入金ボーナスhokubai-developed separator

/prwfile/release/M104641/202002176870/bcゲーム 入金ボーナスrwbcゲーム 入金ボーナスI1im_FZYZxzoT.jpg

Fig. 2: Photo of bcゲーム 入金ボーナスhokubai’s separator developed for zinc battery

/prwfile/release/M104641/202002176870/bcゲーム 入金ボーナスrwbcゲーム 入金ボーナスI2fl_b1wL97a9.jpg

Therefore, bcゲーム 入金ボーナスhokubai has succeeded in suppressing this short circuit due to needle-like zinc metal crystals by developing the novel separator with original structure using mineral powder (Figures 1 and 2). In addition, the company has also developed the novel zinc negative electrode that can suppress deterioration due to repeated charging and discharging. By combining the separator and zinc negative electrode with activated carbon as the positive electrode, bcゲーム 入金ボーナスhokubai has developed the new rechargeable carbon-zinc hybrid battery.

This hybrid battery is assembled from a positive electrode of an electric double-layer capacitor and a zinc electrode of electrochemical reaction (Figure 3). The hybrid battery has the advantages of an electric double-layer capacitor (EDLC), such as high power and long cycle life, and overcomes the low capacity of an EDLC by using battery materials as zinc anode.

Since the zinc anode has high energy density, it is possible to make the anode thinner, and by mounting more activated carbon in the empty space, the hybrid battery can achieve 5 to 10 times the electric capacity of an EDLC with the same volume. Therefore, the hybrid battery can achieve the same capacity performance as lead-acid batteries.

Fig. 3: Hybrid structure of physical and chemical batteries

/prwfile/release/M104641/202002176870/bcゲーム 入金ボーナスrwbcゲーム 入金ボーナスI5fl_1zOA5x6W.jpg

Moreover, the rechargeable carbon-zinc hybrid battery can be charged and discharged even at low temperatures below -20 C, while keeping the high output of the capacitor. Many other batteries are difficult to charge, especially at low temperatures, because the rate of chemical reactions is closely related to temperature. On the other hand, the reaction of this battery using a zinc electrode is very fast, enabling high-speed charging and discharging from low to high temperatures (-20 C to 90 C) like an EDLC.

However, the cycle life of the hybrid battery depends on the performance of the zinc anode because of needle-like zinc metal crystals growing. Regarding the charge/discharge cycle life of rechargeable zinc batteries, the self-developed novel separator/zinc anode technology has achieved a long life of 10,000 cycles or more. The use of the novel separator/zinc anode developed by bcゲーム 入金ボーナスhokubai’s original technology has already achieved the charge/discharge life of 10,000 cycles or more, which is more than 100 times that of a lead-acid battery that reaches a life of about several hundred cycles. Therefore, it is expected to be used in applications, such as in-vehicle batteries where conventional lead-acid batteries are used, and new applications such as power storage of renewable energy are expected in the future.

The "rechargeable carbon-zinc hybrid battery" and "zinc battery separator" (Fig. 2) will be exhibited at a bcゲーム 入金ボーナスhokubai booth at Battery Japan 2020, which will be held at Aomi Hall, Tokyo Big Sight, from February 26 (Wed.) to 28 (Fri.).

About bcゲーム 入金ボーナスhokubai Co., Ltd.:

Since 1941, bcゲーム 入金ボーナスhokubai has grown up its business with unique catalyst technology. bcゲーム 入金ボーナスhokubai has supplied, for example, ethylene oxide, acrylic acid, automobile catalysts, process catalysts and so on. Among all, its global market share of superabsorbent polymer is the largest in the world now. bcゲーム 入金ボーナスhokubai is a global chemical company operating under its corporate mission "Providing affluence and comfort to people and society with our unique technology."

http://www.shokubai.co.jp/en/

本bcゲーム 入金ボーナスは発表元が入力した原稿をそのまま掲載しております。また、bcゲーム 入金ボーナスへのお問い合わせは発表元に直接お願いいたします。

bcゲーム 入金ボーナス添付画像

Fig. 1: Schematic diagram of conventional separator and bcゲーム 入金ボーナスhokubai-developed separator

| Small | Normal |
| Big | Original |

Fig. 2: Photo of bcゲーム 入金ボーナスhokubai’s separator developed for zinc battery

| Small | Normal |
| Original |

Fig. 3: Hybrid structure of physical and chemical batteries

| Small | Normal |
| Original |

| Small | Normal |
| Big | Original |

このbcゲーム 入金ボーナスには、報道機関向けの情報があります。

bcゲーム 入金ボーナス会員登録を行うと、広報担当者の連絡先や、イベント・記者会見の情報など、報道機関だけに公開する情報が閲覧できるようになります。

bcゲーム 入金ボーナス受信に関するご案内

このbcゲーム 入金ボーナスを配信した企業・団体

  • ※購読している企業の確認や削除はbcゲーム リチャージspan>bcゲームで行なってください
  • SNSでも最新のbcゲーム 入金ボーナス情報をいち早く配信中

    過去に配信したbcゲーム 入金ボーナス

    カテゴリ検索

    アクセスランキング

    お客様の声・活用事例

    汐留PR塾

    動画で見るbcゲーム 入金ボーナス

    広報初心者のための
    bcゲーム 入金ボーナスの書き方
    共同通信社グループのノウハウをもとにbcゲーム 入金ボーナスの基本的なポイントを解説!
    記者ハンドブック第14版
    文書を書くすべての人におすすめです!
    電子書籍も発売中!
    共同通信リアルタイムニュース
    メディアに提供している記事をそのまま閲覧できる広報部門必見のニュース配信サービス
    共同通信リアルタイムニュース
    © 2024 Kyodo News PR Wire