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WarRin Protocol: A point-to-point anonymous privacy communication system

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Dr.WarRin

www.bitcointalk.org

Summary

This white paper provides an explanation of the WarRin protocol and related blockchain, point-to-point, network value, transport protocol, and encryption algorithms. The limited space will highlight the WRC allocation scheme and purpose of the WarRin Protocol Token, which is important for achieving the WRC’s stated objectives.  This white paper is for informational purposes only and is not a promise of final implementation details. Some details may change during the development and testing phases. 

1.  Introduction

Traditional centralized communication systems such as WeChat,WhatsApp, FacebookMessage,Google  Allo,Skype face a range of problems, including government surveillance, privacy breaches, and inadequate security, and the WarRin protocol proposes apoint-to-pointencrypted communications system that leveragesblockchain technology, combined  with Double Ratc het algorithms, pre-keys, and extended X3DH handshakes. The WarRin Protocol uses The Generalized Directional Acyclic Graph  and Curve25519,AES-256,  and HMAC-SHA256  as the pronamor, allowing each account to have its own unique account chain, providing unlimited instant communication between points and unlimited scalability, anonymity, integrity, consistency, and asynchronousness. 

2. WarRin Protocol communication system

2.1 Two types of communication

The Waring Protocol communication system divides chat channels into two types.

Image

Two modes of communication

  • General Chat mode: Using point-to-point encrypted communication, the service side has access to the key and can log in via multiple devices. 
  • Secret Chat mode: Encrypted communication using point-to-point can only be accessed through two specific devices. 

The design combines some of the advantages of raiBlocks    multi-chain construction with IOTA/Byteball  DAG, which we call the Waring protocol. With improvements, we have given the WarRin protocol greater throughput and faster processing power while ensuring the security of the ledger, and network nodes can store the ledger in less space and search their communications accounts quickly in the ledger.  When two users communicate, third parties contain content that neither manager can access. When a user is chatting in secret, the message contains multimedia that can be designated as a self-destruct message, and when the message is read by the user, the message is automatically destroyed within the specified time. Once the message expires, it disappears on the user’s device. 

2.2 How chat history is encrypted

2.2.1 MTProto  Transport Protocol

Image

MTProto transport protocol

The WarRin communication system draws on RaiBlocks’ multi-chain structure for point-to-point communication. Each account has its own chain that records the sending and receiving behavior of the account. For example, in Figure 1,   there are 7  accounts, each with 7 chain records of the account sending and receiving communications. On the graph, horizontal coordinates represent the timeline, and portrait coordinates represent the index of the account. 

Transferring information from one account to another requires two transactions: one to send a communication from the sender’s transfer content, and one to receive information to add that content to the content of the receiving account. Whether in a send-side account or a receiving account, a PoW proof of work with the previous communication content Hash is required to add new communications to the account.  In the account chain, poWwork proves to be an anti-spam communication tool that can be done in seconds. In a single account chain, the Hash field of the previous block is known to pre-generate the PoW required for subsequent blocks. Therefore, as long as the time between the two communications is greater than the time required to generate the PoW, the user’s transaction will be completed instantaneously. 

In such a design, only the receiving end of the communication is required for settlement. The receiving end places the received communication signature on the account chain, which is called accepted communication. Once accepted, the receiving end then broadcasts the communication to the ledger of the other nodes. However, there may be situations where the receiving end is not online or is subject to a DoS   attack, which prevents the receiving end from putting the receiving side communication on the account chain, which we call uncommoted transactions. The X symbol in Figure 1 represents an open transaction sent from Account 2 to Account 5.  

Image

Obviously, because only the sending and receiving sides of the communication are required to settle, such communication is very lightweight, all traffic can be transmitted in a UDP package and processed very quickly. At the same time, all communications in an account are kept in one chain, with great integrity, and the ledger can be trimmed to a minimum. Some nodes are not interested in spending resources to store the full communication history of the account;   They are only interested in the current communications for each account. When an account communicates, its accumulated information is encoded, and these nodes only need to keep track of the latest blocks so that historical data can be discarded while maintaining correctness. Such communication is only possible if the sending and receiving sides trust each other and are not the final settlement of the entire network consensus. There is a security risk in the absence of trust on the sending and receiving ends, or in situations where the receiving end is attacked by DoS without the sender’s knowledge. 

We have observed that although each account has a separate chain, the entire ledger can be expressed in the form of a WarRin object. As shown in Figure 2, this is represented by the WarRin astros trading on all accounts in Figure 1.  

Image

The first unit in the WarRin object is the Genesis unit, the next six cells represent the allocation of the initial token, and the other units correspond to the communication transactions between the account chains. We use the symbol a/b to represent a communication transaction, where the sender is a andthe recipient is b. The last  4/1 unit in Figure 2 is the last communication corresponding to Figure 1  – sending communication from account 4 to account 1. A transaction in Figure 1 is a confirmation of the latest block or the latest communication on the account chains of both parties to the communication, reflected in Figure 2 as a reference to the latest units of the account chains of both parties to the communication. Take unit 4/1, for example, where the latest  block on account 4 was the receiving block for 2/4  trades and the newest block on  account 1 was the send block for 1/5 trade. So on the DAG, the 4/1 cell refers to the 2/4 cell and the 1/5 cell. 

The WarRin protocol uses triangular shrapned storage technology to crack impossible triangles in the blockchain through the shrapghine technology, with extensive node engagement and decontalination  while maintaining high throughput and security:

  • Complete shraping of blockchain status;
  • Secure and low-cost cross-synth trading;
  • Completely random witness selection;
  • Flexible and efficient configuration

Complete decentralization ensures absolute security and scalability of the standard chain.

(Figures   above show seven Ling-shaped objects:2/1 one;3/2  one… )

2.2.2 Curve25519 Elliptic Curve Encryption Algorithm

Curve25519,  proposed by Daniel Bernstein, is anelliptic  curve algorithm for the exchange of The Montgomery Curve’s Difi Herman keys. 

Montgomery Curve Curve Mathematical Expression: 图片图片

Curve25519 Curve Mathematical Expression:图片

Curve25519  encryption     algorithms are    图片 used for standard private and public keys, and the private keys used for Curve25519  图片 encryption algorithms are typically defined as secret 图片 indices, corresponding to 图片public  keys, coordinate points, which are usually sufficient to perform ECDH (elliptical) and symmetrical  elliptic curve encryption algorithms. If one party wants to send information to the other party and the other party has the 图片 public 图片and private keys, perform the following 图片calculation:

Generate a one-time random secret 图片图片   图片 index, calculated using Montgomery, because the message is a symmetrical password encrypted using 256-bit  sharing, such as AES  using a 256-bit integer 图片 one-time public key,  as akey, and 256-bit integer is a 图片prefix to encrypted information. Once a party to   图片图片图片the public 图片key receives this message, it can start by calculating , that is ,图片the receiver recovers the shared secret and 图片is able to decrypt the rest of the information. 

3. Incentives

On the basis of the WarRin agreement, by adding the incentive layer, we can effectively avoid the whole network being attacked and eliminate spam. As long as honest nodes control most of the calculations, for an attacker, the network is robust because of its simplicity of structure, and nodes need little coordination to work at the same time. They do not need to be authenticated because information is not sent to a location. 

3.1 WRC Certificate

WRC issued a total of 2,500,000 pieces and continued to increment according to the WoRin gain function. 

3.1.1 WoRin Gain Function

Image
Image

3.1.2 WoRin gain function control table

The WoRin gain function is compared to the table
Number of layers /F Growth factor /I WRC circulation
[1,50] 0.002 334918.8057
[51,100] 0.002 780024.2108
[101,150] 0.004 1177129.617
[151,200] 0.006 1487860.923
[201,250] 0.01 1722637
[251,300] 0.016 1894309.216
[301,400] 0.03 2101623.789
[401,500] 0.06 2217555.464
[501,1000] 0.1 2450712.257
[1001,2000] 0.12 2557457.3

According 图片to the Gain function, the 图片larger the number of layers, 图片the greater the growth rate, the faster each layer is filled, and the 图片greater the circulation. 

3.2 Allocation

Image

WarRin protocol node distribution

3.2.1 Node allocation

Set the initial price  图片  图片图片to 0.02,the layer where the first node is located is , according to the equation of the iso-difference column, there is , so that the 图片node token is assigned to the piece, for the price of 图片 the layer where the node 图片is located, there is a 图片图片set. 

For example, the number of tiers in which the  98th  node is located is Tier 13,  and the price of Tier 13 is 0.214,the tokens assigned by Tier 98 are 图片

3.2.2 Total number of address assignments

Each node occupies one address, and the total number of 图片addresses is

4. The use

WRC is the native pass-through of the WarRin protocol, andWRC will assign to Genesis nodes according to the above allocation scheme, which together form the entire network, andWRC can be used in the following scenarios, including but not limited to:

Pay the network’s gas charges, i.e. for transferring money and invoking smart contracts;

System Staking tokens, used for node elections and token issues;

The capital is lent to the validator in exchange for the amount of the reward;

Voting rights for system proposals;

The means of payment for apps developed  on WoRin Services;

WoRin Storage is a means of payment on the decentralization storage;

WoRin DNS domain name and WoRin  WWW website means of payment;

WoRin Proxy agents hide the means of payment for body and IP addresses;

WoRin Proxy penetrates payment methods reviewed by local ISPs

……

5. Conclusions

Metcalfe’s Law states that thevalue of a network is equal to the square of the number of nodes within the network, and that the value of the network is directly related to the square of the number of connected users. That is 图片( the 图片value factor, the number of 图片users.)  That is, the greater the number of users on a network, the greater the value of the entire network and each computer within that network. The WarRin protocol also follows this law, and when the number of nodes reaches a certain level, the entire network becomes more robust. 

References

[1] K. Birman, Reliable Distributed Systems: Technologies, Web Services and

Applications, Springer, 2005.

[2] V. Buterin, Ethereum: A next-generation smart contract and de- centralized

application platform, https://github.com/ethereum/wiki/wiki/White-Paper,  2013.

[3] M. Ben-Or, B. Kelmer, T. Rabin, Asynchronous secure  computa-  tions  with

optimal resilience, in Proceedings of the thirteenth annual ACM symposium on

Principles of distributed computing, p. 183–192. ACM, 1994.

[4] M. Castro, B. Liskov, et al., Practical byzantine fault tolerance, Proceedings of the

Third Symposium on Operating Systems Design and Implementation (1999), p. 173–

186, available at http://pmg.csail.mit.edu/papers/osdi99.pdf.

[5] EOS. IO, EOS. IO technical white paper,

https://github.com/EOSIO/Documentation/blob/master/TechnicalWhitePaper.md,

2017.

[6] D. Goldschlag, M. Reed, P. Syverson, Onion Routing for  Anony-  mous  and

Private Internet Connections, Communications of the ACM, 42, num. 2 (1999),

http://www.onion-router.net/Publications/CACM-1999.pdf.

[7] L. Lamport, R. Shostak, M. Pease, The byzantine  generals  problem, ACM

Transactions on Programming Languages and Systems, 4/3 (1982), p. 382–401.

[8] S. Larimer, The history of BitShares,

https://docs.bitshares.org/bitshares/history.html, 2013.

[9] M. Luby, A. Shokrollahi, et al.,  RaptorQ  forward error correction scheme for

object delivery, IETF RFC 6330, https://tools.ietf.org/html/rfc6330,  2011.

[10] P. Maymounkov, D. Mazières,  Kademlia: A peer-to-peer  infor-  mation  system

based on the XOR metric, in IPTPS ’01 revised pa- pers from the First International

Workshop on Peer-to-Peer Systems, p. 53–65, available at

http://pdos.csail.mit.edu/~petar/papers/ maymounkov-kademlia-lncs.pdf, 2002.

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Press Release

TaxTec Development Head Raises Red Flag Framework for AI Deployment in Highly Regulated Fintech

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London, United Kingdom, July 21st, 2026, FinanceWire

Austen Little, Head of Product Development at withholding tax reclamation experts TaxTec, has released a summary guidance note on the deployment of AI in highly regulated financial services applications.

The guidance draws on TaxTec’s historical and recent product and service development experience to highlight several areas of risk when using or implementing artificial intelligence in capital markets financial services. Mr Little’s guidance note builds on advice from authorities such as the OECD [1], The World Economic Forum [2] and the International Monetary Fund [3], amongst others, urging caution over the risks of machine learning in financial services processes and decision making.

Mr Little highlights the fact that many financial markets processes, many of which are in the throes of regulatory digitalization, still present challenges for effective AI deployment, including:

  • Data quality issues – especially where processes are international and span multiple legislatures
  • The rate of digital evolution of the sector and changing regulatory regimes
  • The requirements for ‘explainability’ of client decisions (risk, approvals, entitlements)
  • The nature and scale of ‘harms’ possibly resulting from AI agent mistakes, and their likely impact on financial institutions
  • The AI-generated tension between financial services risk appetite and client service standards/reputation
  • Data governance and privacy considerations in data-hungry AI-driven world

Striking a balanced argument, however, Mr Little’s guidance note also highlights where the power and efficiency of AI can be safely deployed and generate substantial value. He points out specific examples from the world of withholding tax reclamation in order to give precise examples that readers can recognize and which are drawn from TaxTec’s real life experience. These include:

  • Document management
  • Data extraction
  • Data quality enhancement
  • Research assistance
  • Workflow management
  • Status monitoring
  • Analytics & forecasting

Readers wishing to download their copy of the TaxTec guidance note on AI in capital markets financial services should visit: https://taxtec.com/news/artificial-intelligence-fintech-development/.

About TaxTec

Founded in 2023, TaxTec is revolutionizing tax recovery for institutional investors and their agents. Utilizing the latest AI-enabled digital technology, their highly automated global tax recovery proposition and client-centric service model maximize reclaim opportunities for their clients across all major markets. TaxTec clients recover more tax at a lower cost, enhancing their investment returns.

1. OECD, Supervision of artificial intelligence in finance: Challenges, policies and practices, 27 January 2026 https://www.oecd.org/en/publications/supervision-of-artificial-intelligence-in-finance_92743dc1-en.html

2. World Economic Forum, The AI Playbook for Financial Services: Insight Report, June 2026 https://reports.weforum.org/docs/WEF_The_AI_Playbook_for_Financial_Services_2026.pdf

3. IMF eLibrary, Regulatory Considerations Regarding Accelerated Use of AI in Securities Markets, 24 December 2025 https://www.elibrary.imf.org/view/journals/005/2025/016/article-A001-en.xml

Contact

Sarah Nurgat
ThoughtSpark Ltd
sarah@thoughtsparkagency.com

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Press Release

Maple’s syrupUSD tokens arrive on 1inch, widening access to on-chain institutional lending

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Dubai, UAE, July 21st, 2026, FinanceWire

  • 1inch now supports Maple’s syrupUSDC and syrupUSDT, giving users and builders another route into tokenized lending positions 
  • At launch, 1inch supports syrupUSDC and syrupUSDT on Ethereum, with more chain integrations coming in the future
  • 1inch provides routing and swap infrastructure only; minting, redeeming and lending stay with Maple

1inch, a leading DeFi ecosystem, today announced its integration of Maple’s syrupUSDC and syrupUSDT, two tokens tied to onchain institutional lending. As a routing and swap layer for the tokens, 1inch makes them tradable across its dApp and Swap API.

Maple is an onchain digital asset manager that connects institutional borrowers with lenders. Borrowers take stablecoin loans against overcollateralized crypto, while lenders supply USDC or USDT and receive syrupUSDC or syrupUSDT, tokens that represent their position in Maple’s lending system. Those tokens currently see around $8.5 billion in monthly transfer volume, highlighting the demand for infrastructure capable of supporting RWA markets at scale.

At launch, 1inch supports syrupUSDC and syrupUSDT on Ethereum, with more chain integrations coming in the future. On 1inch.com, users can access the tokens through Swap, Trade or Terminal. Through the 1inch Swap API, builders and institutional teams can integrate Maple swaps directly. Minting, redeeming and lending remain with Maple, while 1inch provides the routing and swap infrastructure.

RWA token liquidity can be fragmented across venues, chains and pools. 1inch routing facilitates efficient access to available liquidity and supports intent-based execution. For users moving between stablecoins and syrup tokens, this means less manual route hunting and a simpler path to execution.

“Tokenized private credit is one of the clearest signs that real-world assets are moving onchain for good, and syrupUSDC and syrupUSDT are among the most active tokens in that category,” said Sergej Kunz, co-founder of 1inch. “Our role is to remove the friction when swapping assets and enable users to move them freely. That’s the infrastructure 1inch has spent years building.”

“Our focus at Maple is building institutional-grade lending that performs onchain, but access is what turns that into adoption,” said Sid Powell, co-founder and CEO of Maple. “Working with 1inch gives users and builders a direct, efficient route into syrupUSDC and syrupUSDT on Ethereum. We manage the credit and deployment strategies; 1inch makes the tokens effortless to trade.”

Users can access on 1inch and explore Maple tokens across supported networks.

This content is for general information purposes only and does not constitute financial, investment, tax, or legal advice and is not a recommendation to buy or sell any particular digital asset or to employ any specific investment strategy.

Not available in the US and other restricted jurisdictions.

About 1inch

1inch accelerates decentralized finance with a seamless crypto trading experience for 27M users. Beyond being the top platform for low-cost, efficient token swaps with $100M+ in daily trades, 1inch offers a range of innovative tools, including a secure self-custodial wallet, a portfolio tracker for managing digital assets, a dedicated business portal giving access to its cutting-edge technology, and even a debit card for easy crypto spending. By continuously innovating, 1inch is simplifying DeFi for everyone. 

Website | 1inch Business | 1inch Network | Follow on X | Explore Blog

About Maple

Maple, founded in 2019, is one of the largest onchain institutional asset management platforms with decades of traditional finance and crypto experience. Maple combines capital markets expertise with DeFi innovation to power a suite of offerings, including secured lending and structured products. As a leader in decentralized finance and institutional crypto markets, Maple has built a global asset management ecosystem focused on innovation and accessibility. Maple is pioneering the future of onchain asset management. For more information, visit maple.finance.

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Head of PR
Dominic Cox
1inch
d.cox@1inch.com

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Press Release

Nanjing Luma Machinery Launches Upgraded High-Torque Dual-Shaft Shredder Line Worldwide

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Custom shredding machines for tire, metal & plastic recycling, proven cost-cutting 25% at Sao Paulo Brazil waste tire recycling plant

Nanjing, China, 21st Jul 2026 – Nanjing Luma Machinery Equipment Co., Ltd., an established industrial shredder manufacturer founded in 2015, today announced the global launch of its upgraded full line of industrial shredding solutions, led by its heavy-duty dual-shaft shredder series.

The upgraded product line integrates wear-resistant interchangeable alloy blades, low-speed high-torque dual-shaft drive systems and automated hydraulic spiral feeding controls, directly solving global recyclers’ top pain points: low throughput, frequent blade replacement and frequent jamming downtime across tire recycling, scrap metal processing, plastic reclamation, construction waste and agricultural residue treatment. The flagship tire shredder model stably handles 10+ tons of whole truck, OTR and passenger tires daily, with customizable output tonnage from 3 tons to 20 tons based on client factory demands.

The series has already been successfully deployed in a waste tire recycling project in Sao Paulo, Brazil, boosting the client’s processing capacity by 40 percent. With this launch, the company seeks to expand its presence across South America, Southeast Asia and other global markets. All products are available for global ordering effective immediately.

Core Technical Features

The upgraded shredder line incorporates four key design upgrades, refined based on 11 years of industrial equipment manufacturing experience:

High-torque dual-shaft shredding technology

The low-speed, high-torque dual-shaft structure crushes intact steel-belted tires, heavy scrap metal and rigid construction debris in one pass, eliminating secondary pre-cutting procedures and cutting extra labor costs for recycling factories.

Replaceable high-wear alloy blades

Alloy blades undergo cryogenic heat treatment, boosting wear resistance by 65% and extending service cycles by over 2 times compared with standard blades. Quick disassembly design shortens blade replacement downtime by 70%, compatible with tire, metal, plastic, wood and construction waste shredder equipment.

Spiral feed and hydraulic control system

The integrated spiral feed structure and hydraulic system improve feeding efficiency and reduce material jamming risks, supporting stable continuous operation for heavy-duty shredder units.

High-precision shaft and heavy-duty chassis 

Precision-machined cutter shafts and fully welded steel chassis ensure equipment stability under high-load conditions, extending overall machine service life.

Field-Proven Performance in Brazil Project

The heavy-duty dual-shaft tire shredder was deployed at a waste tire recycling facility in Sao Paulo, Brazil, for a client processing passenger, truck and construction machinery tires.

After installation, the client’s daily tire processing volume increased by roughly 40 percent, while overall operating costs dropped by 25 percent. The equipment has run without major malfunctions during continuous operation, and its uniform shredding output improves efficiency of downstream steel wire separation and rubber granule production.

Product Portfolio and Customization Services

Luma offers a full range of industrial shredder models, including metal shredders, plastic shredders, rubber shredders, construction waste shredders, wood shredders, small shredders and spiral shredders, plus matching shredder blades, chassis and cutter shaft components.
Beyond standard models, the company provides tailored shredding solutions based on client material properties, required output capacity and site layout. Services cover full system design, equipment assembly, remote installation guidance and operator training.

Global Compliance Standards

All Nanjing Luma shredder equipment is manufactured under ISO 9001:2015 full quality control system and carries complete CE certification per EU Machinery Directive 2006/42/EC for global EU market access. All electrical, hydraulic and mechanical safety structures comply with Brazil NR-12 industrial machinery safety standards, Indonesia SNI, Thailand TISI and other mainstream regional certification norms for South American & Southeast Asian recycling markets. Full certification documents, safety operation manuals and conformity declarations are delivered with every machine shipment.

“The global launch of our upgraded dual-shaft shredder line reflects our focus on delivering reliable, cost-effective waste processing solutions to clients worldwide,” said Jiangshui Tao, general manager of Nanjing Luma Machinery Equipment Co., Ltd.“We aim to support more businesses in improving recycling efficiency and advancing circular economy goals, while expanding our global service footprint.”

“Our R&D team optimized every core component based on real-world project feedback, from blade material to control system logic,” said Heping Xia , technical director at Nanjing Luma Machinery Equipment Co., Ltd.“These upgrades directly address the most common pain points our clients report: jamming, fast blade wear and unstable long-term operation.”

Industry Context

According to Grand View Research, the global industrial waste recycling equipment market is projected to reach $12.8 billion by 2030, driven by tightening national waste disposal regulations, bans on illegal waste tire stockpiling, and surging demand for reclaimed rubber, scrap steel and recycled plastic materials across manufacturing and construction sectors.

In South America, Brazil introduced strict national waste tire management laws in 2023, mandating full centralized recycling of end-of-life truck and construction tires and imposing heavy fines for illegal landfilling. The policy pushes local recyclers to upgrade high-efficiency shredding systems, creating strong sustained demand for heavy-duty tire shredders. Meanwhile, Southeast Asian countries including Vietnam, Indonesia and Thailand are accelerating waste recycling infrastructure construction, leading to year-on-year growth in orders for industrial shredding machinery.

Future Plans

Looking ahead, Luma will continue investing in R&D for industrial shredding technology, expanding its product range to cover more niche material processing needs.

The company also plans to build localized spare parts warehouses and sign regional authorized service partners across Brazil, Vietnam and Indonesia within the next two years, to deliver faster after-sales service, on-site machinery maintenance and real-time local-language technical guidance for global recycling clients. Nanjing Luma will also attend major regional waste recycling expos including Brazil FEIRA RECICLAGEM each year to provide on-site equipment demonstration and customized solution consultation for Latin American recyclers.

Media and Business Inquiries

Global tire, metal and plastic recycling factory owners looking for high-efficiency shredding equipment for South America or Southeast Asian production lines can contact Luma’s dedicated overseas sales team directly via WhatsApp to receive free customized capacity design drawings, equipment quotation and Brazil local compliance solution documents.

About Nanjing Luma Machinery Equipment Co., Ltd.

Nanjing Luma Machinery Equipment Co., Ltd. was founded in 2015, with its production base located in Mingjue Industrial Park, Lishui District, Nanjing, China. The company specializes in manufacturing industrial shredders and waste recycling equipment.

Its 3,000-square-meter factory has two production lines covering assembly, welding and quality inspection, with an additional 1,000-square-meter warehouse for finished products and spare parts. The company serves more than 1,000 clients across China, Brazil, Vietnam, Indonesia and Thailand.
Luma’s core mission is to provide efficient, reliable and safe shredder equipment that helps clients boost production efficiency, reduce labor costs and support sustainable waste recycling.

Media Contact

Organization: Nanjing Luma Machinery Equipment Co., Ltd.

Contact Person: Yang Jianghao

Website: http://www.njlmshredder.com/

Email: Send Email

Contact Number: +8618655514968

City: Nanjing

Country:China

Release id:47331

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