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The greatest innovation regarding Antarctic krill was not learning how to catch it; it was learning how to multiply its value.

Norway: the country that transformed an Antarctic catch into a global ingredients platform (Part 2 of 5)

WORLDWIDE
Tuesday, July 21, 2026, 00:10 (GMT + 9)

The greatest revolution in Antarctic krill did not occur in the ocean. It occurred in the bottom line.

  • For decades, the success of this fishery was measured by tons caught. Norway changed that logic. It demonstrated that the real business was not about fishing more, but about extracting more value from each ton caught. Thus, it built one of the most sophisticated value chains in the contemporary blue economy.
  • The 2024/25 season, in which the catch in Area 48 reached for the first time the operational level of 620,000 tons established by the Commission for the Conservation of Antarctic Marine Living Resources (CCAMLR), confirmed that the discussion no longer revolves solely around access to the resource. Leadership is beginning to be defined by who controls the technology, processing, logistics, and markets capable of transforming biomass into high-value products.

Second installment of a special five-part investigation on the transformation of Antarctic krill into a global strategic industry.

When leadership ceased to be measured in tons

The history of the Antarctic krill industry is usually told through catches, technological advances, or the addition of new vessels to the fleets operating in the Southern Ocean. However, this vision describes events but does not explain the transformation that definitively changed the course of this activity. The true revolution did not occur when landed volumes increased or when more modern vessels appeared. It occurred when a part of the industry understood that the most valuable resource was not the krill itself, but the capacity to transform each ton caught into products with a much higher economic value.

Source: Aker BioMarine

This change in perspective completely modified the rules of the business. For more than two decades, competitiveness was associated with a relatively simple idea: catching more meant producing more and, therefore, obtaining better results. It was a logic inherited from the Soviet expansion initiated in the 1970s, when huge factory fleets operated in Antarctic waters with the aim of supplying protein to a planned economy that conceived krill as a practically inexhaustible source of biomass. Success was measured in tons, and technological development was primarily oriented toward increasing extractive capacity.

The first installment of this investigation showed how that model allowed the creation of the largest experimental fishery ever developed on a marine resource and how its disappearance was a consequence of the collapse of the Soviet Union, rather than the depletion of the resource. The biomass was still present in the Southern Ocean, but the economic system that had sustained the activity ceased to exist. The industry then entered a transition phase during which numerous countries attempted to occupy the space left by the old Soviet fleet.

Source: AP

A new industrial model facing biological limitations

However, the competition that began to develop during the following years no longer responded to the same rules. Access to the resource remained important, but it was no longer sufficient. The real challenge consisted in building an industrial model capable of generating greater economic value from a biomass whose availability, in addition to being internationally regulated by the CCAMLR, presented a biological limitation that for decades had conditioned the development of the entire activity.

Antarctic krill (Euphausia superba) begins to degrade just a few minutes after being caught. Enzymes present in its organism rapidly trigger an autolysis process that deteriorates proteins, lipids, and other compounds of high commercial value. Consequently, the time elapsed between catch and processing became a determining factor for the quality of the final product. Unlike other industrial fisheries, where preservation allows the value of the resource to be maintained for relatively prolonged periods, in the case of krill, every minute lost represents a potential reduction in its economic value.

Click on the image to enlarge it Soure: PNAS.org

Understanding this limitation meant completely rethinking the business model. The question was no longer simply how many tons could be extracted from the ocean, but how to preserve the maximum biological value of each one of them. The catch ceased to be the ultimate goal and became the first step in a much more complex industrial chain, where immediate processing, logistics, scientific research, and the development of new ingredients acquired an equivalent —or even superior— importance to the harvesting activity itself.

Norway's competitive advantage

It was precisely in this scenario that Norway began to build a competitive advantage that would end up redefining the entire industry. While numerous operators continued to concentrate their investments on expanding catch capacity, Norwegian companies bet on integrating all links of the value chain into a single industrial model. The development of continuous on-board processing systems, the incorporation of technology designed to minimize the time between catch and product stabilization, the creation of specialized logistical platforms, and sustained investment in applied research allowed a traditional fishery to be transformed into a knowledge-based industry.

Source: Aker BioMarine

The consequence was much deeper than what catch figures reveal. Norway demonstrated that two operators could land the same volume of krill and yet obtain completely different economic results. The difference no longer depended on the resource, but on the capacity to convert it into ingredients destined for high-value-added markets, such as aquaculture, human nutrition, nutraceuticals, specialized pet food, or marine biotechnology.

In other words, leadership ceased to be measured solely by tons caught and began to be measured by the value generated from each ton.

This shift may seem like a simple technological evolution. In reality, it constitutes a much more profound transformation. It represents the transition from an extractive economy to a knowledge-based industrial economy. The catch remains essential, but it is no longer the center of the business. The true asset becomes the capacity to integrate science, technology, logistics, processing, and innovation within the same corporate strategy.

         

The 2024/25 season clearly illustrates this new scenario. During that campaign, catches in Area 48 reached for the first time the operational level of 620,000 tons established by the CCAMLR, confirming that the fishery has entered a new stage of maturity. From a historical perspective, the data constitutes a milestone for the international management of the resource. From an economic perspective, however, it conveys an even more relevant message: when volume growth begins to be constrained by catch limits and conservation criteria, competitiveness can no longer be based solely on extracting more biomass. From that moment on, growth depends, above all, on the capacity to generate more value from the same resource.

This is precisely the model that Norway developed over the last decades. And this is also the reason why today it occupies a leading position that far transcends the size of its fleet. Because the greatest innovation in Antarctic krill was not learning how to catch it. It was learning how to multiply its value.

Source: Aker BioMarine

Next installment

Special Report 03/2026

China: the silent construction of the second Antarctic krill giant

While Norway consolidated a model based on technological integration and value generation, China is developing a strategy of a different nature. Its objective is no longer solely to participate in the fishery, but to turn krill into a component of its food security, industrial expansion, and marine biotechnology policy.

The competition for leadership in Antarctic krill thus enters a new stage, where technological capacity will begin to coexist with long-term national strategies.

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🇯🇵 日本語 (Japanese Version)

ノルりェヌ南極の持獲物を䞖界の原材料プラットフォヌムぞず倉貌させた囜5郚構成の第2郚

南極オキアミの最倧の革呜は海掋で起きたのではない。収益蚈算曞の䞭で起きたのである。

䜕十幎もの間、この持業の成功は持獲トン数によっお枬定されおきた。ノルりェヌはその論理を倉えた。真のビゞネスは、より倚く持獲するこずではなく、持獲された各トンからより倚くの䟡倀を匕き出すこずにあるず蚌明したのである。こうしお、珟代のブルヌ゚コノミヌにおいお最も掗緎されたバリュヌチェヌンの䞀぀が構築された。

南極海掋生物資源保存委員䌚CCAMLRが蚭定した゚リア48の操業制限レベルである620,000トンに2024/25幎シヌズンで初めお達したこずは、議論がもはや資源ぞのアクセスだけを巡るものではないこずを裏付けた。リヌダヌシップは、バむオマスを高䟡倀補品ぞず転換できる技術、加工、物流、そしお垂堎を誰がコントロヌルするのかによっお定矩され始めおいる。

南極オキアミの䞖界的な戊略的産業ぞの倉貌に関する、5郚構成の特別調査の第2回目。

リヌダヌシップの基準がトン数でなくなったずき

南極オキアミ産業の歎史は、通垞、持獲量や技術の進歩、あるいは南倧掋で操業する船団ぞの新しい持船の導入から語られるこずが倚い。しかし、その芋方は出来事を蚘述しおはいるが、この掻動の方向性を決定づけた倉貌を説明しおはいない。真の革呜は、氎揚げ量が増加したずきや、より近代的な船舶が登堎したずきに起きたのではない。持獲された各トンをはるかに高い経枈䟡倀を持぀補品ぞず転換する胜力こそが、オキアミそのものよりも䟡倀のある資源であるず産業の䞀郚が理解したずきに起きたのである。

この芖点の倉化は、ビゞネスのルヌルを完党に倉えた。2幎以䞊の間、競争力は比范的単玔な考え方ず結び぀いおいた。より倚く持獲するこずは、より倚く生産するこずを意味し、したがっおより良い結果をもたらすずいうものである。それは1970幎代に始たった゜連の拡倧から受け継がれた論理であり、圓時は巚倧なファクトリヌ船団が南極海域で操業し、オキアミを事実䞊枯枇するこずのないバむオマス資源ずみなしお蚈画経枈にタンパク質を䟛絊するこずを目指しおいた。成功はトン数で枬られ、技術開発は䞻に抜出胜力の向䞊に向けられおいた。

この調査の第1回目では、そのモデルがいかにしお海掋資源においお開発された最倧の実隓的持業の創出を可胜にしたか、そしおその消倱が資源の枯枇ではなく、むしろ゜ビ゚ト連邊の厩壊の結果であったかを瀺した。バむオマスは䟝然ずしお南倧掋に存圚しおいたが、その掻動を支えおいた経枈システムが消滅したのである。その埌、産業は移行期に入り、倚くの囜が旧゜連船団の残した空癜を埋めようず詊みた。

生物孊的限界に盎面する新たな産業モデル

しかし、その埌の数幎間に展開され始めた競争は、もはや同じルヌルには埓わなかった。資源ぞのアクセスは䟝然ずしお重芁であったが、それだけでは十分ではなくなった。真の課題は、CCAMLRによっお囜際的に芏制されおいるだけでなく、䜕十幎もの間、掻動党䜓の発展を制玄しおきた生物孊的限界を持぀バむオマスから、より高い経枈䟡倀を生み出すこずができる産業モデルを構築するこずであった。

南極オキアミEuphausia superbaは、持獲されおからわずか数分で劣化が始たる。その䜓内に存圚する酵玠が自己融解プロセスを急速に匕き起こし、タンパク質や脂質、その他の商業䟡倀の高い化合物を劣化させる。その結果、持獲から加工たでの経過時間が最終補品の品質を決定する決定的な芁因ずなった。保存によっお資源の䟡倀を比范的長期にわたっお維持できる他の工業持業ずは異なり、オキアミの堎合、倱われた毎分が経枈䟡倀の朜圚的な䜎䞋を意味する。

この限界を理解するこずは、ビゞネスモデルを完党に再考するこずを意味した。問題はもはや、海掋から䜕トン抜出できるかだけではなく、その䞀トン䞀トンの最倧の生物孊的䟡倀をいかに保存するかぞず倉わった。持獲は最終目的ではなくなり、より耇雑な産業チェヌンの第䞀歩ずなった。そこでは、即時の加工、物流、科孊的研究、そしお新芏原材料の開発が、抜出掻動そのものず同等、あるいはそれ以䞊の重芁性を持぀ようになった。

ノルりェヌの競争優䜍性

たさにこの舞台で、ノルりェヌは産業党䜓を再定矩するこずになる競争優䜍性を構築し始めた。倚くの事業者が持獲胜力の拡倧に投資を集䞭し続ける䞭、ノルりェヌ䌁業はバリュヌチェヌンのすべおのリンクを䞀぀の産業モデルに統合するこずに賭けた。掋䞊連続加工システムの開発、持獲から補品安定化たでの時間を最小限に抑えるために蚭蚈された技術の導入、専門的な物流プラットフォヌムの構築、そしお応甚研究ぞの持続的な投資により、䌝統的な持業を知識ベヌスの産業ぞず倉貌させるこずに成功した。

その結果は、持獲量デヌタが瀺すよりもはるかに深いものであった。ノルりェヌは、2぀の事業者が同じ量のオキアミを氎揚げしたずしおも、完党に異なる経枈結果を埗られるこずを蚌明した。違いはもはや資源にあるのではなく、それを逊殖、人間の栄逊、ニュヌトラシュヌティカルズ健康食品、ペットフヌド専門分野、あるいは海掋バむオテクノロゞヌずいった高付加䟡倀垂堎向けの原材料に転換する胜力にかかっおいた。

換蚀すれば、リヌダヌシップはもはや持獲トン数だけで枬られるのではなく、各トンから生み出される䟡倀によっお枬られ始めたのである。

この倉化は単玔な技術の進歩に芋えるかもしれない。しかし実際には、それははるかに深い倉貌を意味しおいる。抜出型経枈から、知識ベヌスの産業経枈ぞの移行である。持獲は䟝然ずしお䞍可欠であるが、もはやビゞネスの䞭心ではない。真の資産は、科孊、技術、物流、加工、そしおむノベヌションを同䞀の䌁業戊略内に統合する胜力ずなる。

2024/25幎シヌズンはこの新たなシナリオを明確に瀺しおいる。このキャンペヌン期間䞭、゚リア48における持獲量はCCAMLRが蚭定した操業制限レベルである620,000トンに初めお達し、持業が新たな成熟段階に入ったこずを裏付けた。歎史的な芳点から芋れば、このデヌタは資源の囜際管理における画期的な出来事である。しかし、経枈的な芳点から芋れば、それはさらに重芁なメッセヌゞを䌝えおいる。雇甚の拡倧が持獲制限や保存基準によっお制玄され始めるずき、競争力はもはや単により倚くのバむオマスを抜出するこずだけに䟝存するこずはできない。その瞬間から、成長はなによりも、同じ資源からより倚くの䟡倀を生み出す胜力に䟝存するこずになる。

これこそが、ノルりェヌが過去数十幎にわたり開発しおきたモデルである。そしおこれこそが、同囜が今日、自囜の船団の芏暡をはるかに超える䞻導的な地䜍を占めおいる理由でもある。なぜなら、南極オキアミにおける最倧のむノベヌションは、その捕り方を孊んだこずではなかったからである。その䟡倀を䜕倍にも高める方法を孊んだこずだったのである。

次回予告

特別報告 03/2026

䞭囜静かに構築される南極オキアミの第2の巚人

ノルりェヌが技術統合ず䟡倀創出に基づくモデルを確固たるものにする䞀方で、䞭囜は異なる性質の戊略を展開しおいる。その目暙は、単に持業に参加するこずだけでなく、オキアミを自囜の食料安党保障、産業拡倧、そしお海掋バむオテクノロゞヌ政策の構成芁玠ぞず倉えるこずにある。

南極オキアミのリヌダヌシップを巡る競争は、こうしお新たな段階に入り、技術的胜力が長期的な囜家戊略ず共存し始めるこずになる。


🇚🇳 简䜓䞭文 (Simplified Chinese Version)

挪嚁将南极捕捞物蜬化䞺党球原料平台的囜家五郚分之第二郚分

南极磷號最倧的䞀场革呜并非发生圚海掋而是发生圚损益衚䞊。

几十幎来衡量这䞀枔䞚成功的标准䞀盎是捕捞吚数。挪嚁改变了这䞀逻蟑。它证明了真正的䞚务䞍圚于捕捞曎倚而圚于从捕捞 advisory 的每吚䞭提取曎倚价倌。通过这种方匏它构建了圓代蓝色经济䞭最先进的价倌铟之䞀。

圚 2024/25 航季48区块 的捕捞量銖次蟟到了由 南极海掋生物资源养技委员䌚CCAMLR讟定的 620,000吚 的可操䜜系统级别这证实了讚论已䞍再仅仅囎绕资源获取展匀。领富力匀始由谁控制胜借将生物莚蜬化䞺高价倌产品的技术、加工、物流和垂场来决定。

这是䞀项关于南极磷號蜬变䞺党球战略产䞚的五郚分特别调查的第二篇报道。

圓领富力䞍再以吚数衡量

南极磷號产䞚的历史通垞是从捕捞量、技术进步或圚 南倧掋 运营的船队䞭加入新枔船的角床来讲述的。然而这种视角只描述了事件华未胜解释圻底改变该掻劚方向的蜬变。真正的革呜并非发生圚卞鱌量增加或曎现代化的船舶出现时。它发生圚行䞚的䞀郚分人意识到最宝莵的资源䞍是磷號本身而是将捕捞的每吚蜬化䞺具有曎高经济价倌产品的胜力。

这种观念的蜬变完党改变了商䞚规则。圚过去的 二十倚幎 里竞争力䞀盎䞎䞀䞪盞对简单的想法联系圚䞀起捕捞曎倚意味着生产曎倚从而获埗曎奜的䞚绩。这是继承自 1970幎代 匀始的苏联扩匠的逻蟑圓时庞倧的加工船队圚南极海域䜜䞚旚圚向计划经济䟛应蛋癜莚将磷號视䞺几乎取之䞍尜的生物莚来源。成功以吚数衡量技术匀发䞻芁富向提高提取胜力。

本调查的第䞀篇报道展瀺了该暡型劂䜕促成了圚䞀项海掋资源䞊匀发出有史以来最倧的实验性枔䞚以及它的消倱劂䜕是 苏绎埃瀟䌚䞻义共和囜联盟苏联解䜓的结果而非资源的枯竭。生物莚䟝然存圚于 南倧掋䜆支撑该掻劚的经济䜓系已䞍倍存圚。随后该产䞚进入了䞀䞪过枡阶段讞倚囜家试囟填补旧苏联船队留䞋的空癜。

面对生物孊限制的新工䞚暡型

然而圚接䞋来的几幎里匀始发展的竞争䞍再遵埪盞同的规则。获取资源固然重芁䜆已䞍再足借。真正的挑战圚于构建䞀䞪工䞚暡型胜借从生物莚䞭创造曎高的经济价倌而该生物莚的䟛应䞍仅受到 CCAMLR 的囜际监管还存圚着数十幎来制纊敎䞪掻劚发展的生物孊限制。

南极磷號Euphausia superba圚捕捞后仅几 分钟 就䌚匀始降解。其䜓内存圚的酶䌚迅速匕发自䜓溶解过皋砎坏蛋癜莚、脂莚和其他具有高商䞚价倌的化合物。因歀从捕捞到加工之闎流逝的时闎成䞺了决定最终产品莚量的关键因玠。䞎其他工䞚枔䞚其保鲜技术允讞圚盞对蟃长的时闎内绎持资源价倌䞍同就磷號而蚀倱去的每䞀 分钟 郜代衚着其经济价倌的朜圚折损。

理解这䞀限制意味着芁完党重新思考商䞚暡匏。问题䞍再仅仅是可以从海掋䞭提取倚少吚而是劂䜕保留每䞀吚的最倧生物孊价倌。捕捞䞍再是最终目标而成䞺了䞀䞪曎倍杂的工䞚铟条的第䞀步圚这䞪铟条䞭即时加工、物流、科孊研究和新原料匀发获埗了䞎捕捞掻劚本身同等、甚至曎高的重芁性。

挪嚁的竞争䌘势

正是圚这种背景䞋挪嚁 匀始建立起最终将重新定义敎䞪行䞚的竞争䌘势。圓讞倚运营商继续将投资集䞭圚扩倧捕捞胜力䞊时挪嚁公叞选择将价倌铟的所有环节敎合到䞀䞪单䞀的工䞚暡型䞭。船蜜连续加工系统的匀发、旚圚将捕捞䞎产品皳定化之闎的时闎猩短至最䜎限床的技术匕入、䞓䞚化物流平台的创建以及对应甚研究的持续投资䜿埗将䌠统枔䞚蜬变䞺基于知识的产䞚成䞺可胜。

其结果比捕捞数字所胜䜓现的芁深刻埗倚。挪嚁 证明了 䞀家 运营商可以卞蜜盞同䜓积的磷號华获埗完党䞍同的经济结果。差匂䞍再取决于资源而取决于将其蜬化䞺面向高附加倌垂场原料的胜力劂氎产养殖、人类营养、膳食补充剂、䞓䞚宠物食品或海掋生物技术。

换句话诎领富力䞍再仅仅通过捕捞吚数来衡量而是匀始通过每吚产生的价倌来衡量。

这种蜬变看䌌只是䞀䞪简单的技术挔变。实际䞊它构成了䞀䞪曎䞺深刻的蜬变。它代衚了从提取型经济向基于知识的工䞚经济的跚越。捕捞䟝然必䞍可少䜆已䞍再是䞚务的栞心。真正的资产变成了圚同䞀䌁䞚战略䞭敎合科孊、技术、物流、加工和创新的胜力。

2024/25 航季枅晰地描绘了这䞀新情景。圚该航季䞭48区块 的捕捞量銖次蟟到了由 CCAMLR 讟定的 620,000吚 的可操䜜系统级别证实了该枔䞚已进入新的成熟阶段。从历史的角床看这䞀数据是该资源囜际管理的䞀䞪里皋碑。然而从经济的角床看它䌠蟟了䞀䞪曎䞺重芁的信号圓产量的增长匀始受到捕捞限制和养技标准的制纊时竞争力䟿再也无法仅仅基于提取曎倚生物莚。从那䞀刻起增长䞻芁取决于圚盞同资源䞊创造曎倚价倌的胜力。

这正是 挪嚁 圚过去几十幎䞭匀发的暡型。这也是䞺什么它今倩所占据的领富地䜍远远超越了其船队规暡的原因。因䞺南极磷號最倧的创新䞍是孊䌚劂䜕捕捞它。而是孊䌚劂䜕将其价倌倍增。

䞋篇预告

特别报告 03/2026

䞭囜默默厛起的南极磷號第二倧巚倎

圚 挪嚁 巩固了基于技术敎合和价倌创造的暡型的同时䞭囜 正圚匀发䞀种䞍同性莚的战略。其目标䞍再仅仅是参䞎枔䞚而是将磷號蜬变䞺其粮食安党、工䞚扩匠和海掋生物技术政策的组成郚分。

南极磷號领富力的竞争由歀进入了䞀䞪新阶段技术胜力将匀始䞎长期囜家战略并存。

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