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Remote International Chemist Jobs (NOW HIRING)

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Minimum of Bachelor's degree in a scientific discipline (e.g., biology, chemistry, engineering ... This may require timely interface with domestic and international suppliers. * Serves as Person-in ...

Patent Attorney - Chemical

New York, NY ยท Remote

$120K - $190K/yr

This is a fully remote, U.S.-based opportunity for candidates working in Eastern, Central, or ... S. and international patent applications involving chemical and related technologies. * Work ...

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Manager, Sourcing, Indirect, Americas

OR ยท On-site +1

$100K - $125K/yr

We call it chemistry with a purpose, better every day. At Kemira, we foster a collaborative and ... A challenging position in an international environment with the opportunity to make a significant ...

Manager, Sourcing, Indirect, Americas

OR ยท Remote

$100K - $125K/yr

We call it chemistry with a purpose, better every day. At Kemira, we foster a collaborative and ... A challenging position in an international environment with the opportunity to make a significant ...

Remote /home office-based position, based in NY or NJ. RESPONSIBILITIES: * Present and sell Company ... Bachelor's degree in chemistry or related technical field and at least 3+ years of personal care ...

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How much do remote international chemist jobs pay per hour?

As of Sep 7, 2026, the average hourly pay for remote international chemist in the United States is $31.50, according to ZipRecruiter salary data. Most workers in this role earn between $24.76 and $36.06 per hour, depending on experience, location, and employer.

What is a remote international chemist?

Remote International Chemists are chemistry professionals who conduct research, analyze substances, or develop products while working remotely for organizations that may be based in different countries. They use digital tools to collaborate with global teams, perform data analysis, and communicate findings. This role often requires adapting to various international standards and regulations, as well as effective virtual communication skills. Remote International Chemists may work in fields such as pharmaceuticals, environmental science, or materials development.

How does a remote international chemist typically collaborate with global teams and manage cross-border projects?

As a Remote International Chemist, you will frequently collaborate with colleagues and partners across different countries and time zones. This often involves using digital communication tools such as video conferencing, collaborative lab data platforms, and project management software to coordinate experiments, share findings, and ensure compliance with varying international regulations. Flexibility and clear communication are essential, as you may need to accommodate diverse cultural perspectives and regulatory requirements. Regular virtual meetings and documentation help maintain project alignment and ensure smooth progress toward shared goals.

What are the key skills and qualifications needed to thrive as a remote international chemist, and why are they important?

To thrive as a Remote International Chemist, you need a strong background in chemistry, laboratory techniques, and analytical methods, typically supported by a relevant degree such as a BSc or MSc in Chemistry. Familiarity with laboratory information management systems (LIMS), chemical analysis software, and international regulatory standards is crucial. Strong problem-solving, effective communication, and the ability to collaborate across different cultures and time zones are valuable soft skills. These competencies ensure accurate scientific work, regulatory compliance, and seamless teamwork in a globally distributed environment.

What is the difference between Remote International Chemist vs Remote Pharmaceutical Chemist?

AspectRemote International ChemistRemote Pharmaceutical Chemist
Required CredentialsBachelor's or Master's in Chemistry, relevant certificationsBachelor's or Master's in Chemistry, pharmaceutical certifications
Work EnvironmentGlobal companies, research labs, consulting firmsPharmaceutical companies, biotech firms, research labs
Industry UsageResearch, quality control, consultingDrug development, quality assurance, regulatory compliance
Search & Comparison IntentUnderstanding roles across industries, remote work optionsSpecialized pharmaceutical roles, industry-specific tasks

The Remote International Chemist and Remote Pharmaceutical Chemist share similar educational backgrounds and work environments, often involving research and quality control. However, the International Chemist typically works across various industries and global companies, while the Pharmaceutical Chemist focuses specifically on drug development and pharmaceutical regulations. Both roles require relevant chemistry credentials, but their industry focus and job functions differ.

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Cities with the most Remote International Chemist job openings:

What are the most commonly searched types of International Chemist jobs?

The most popular types of International Chemist jobs are:

What states have the most Remote International Chemist jobs?

States with the most job openings for Remote International Chemist jobs include:

What job categories do people searching Remote International Chemist jobs look for?

The top searched job categories for Remote International Chemist jobs are:

Infographic showing various Remote International Chemist job openings in the United States as of August 2026, with employment types broken down into 85% Full Time, 13% Part Time, and 2% Contract. Highlights an 87% Physical, 3% Hybrid, and 10% Remote job distribution, with an average salary of $65,525 per year, or $31.5 per hour.

Direct Lithium Extraction & Brine-Processing Specialist - GCM-4

Axyde Analytics

Reno, NV โ€ข On-site, Remote

$150 - $300/hr

Full-time

Posted 12 days ago


Job description

Direct Lithium Extraction & Brine-Processing Specialist - GCM-4
Location: Remote - anchored to Reno, Nevada
Engagement: Contingent consulting/project-based assignment
Anticipated compensation: $150-$300 per hour or a negotiated fixed price for a defined work package
Travel: International travel may be required
Opportunity: USTDA Global Critical Minerals Project Scoping Services
Position Summary
Axyde Analytics is assembling a multidisciplinary expert cadre for a time-sensitive proposal to the U.S. Trade and Development Agency. If Axyde receives the award, USTDA may request support evaluating prospective international mining, mineral-processing, refining, infrastructure and critical-mineral supply-chain projects.
For GCM-4, Axyde is seeking a senior specialist with substantial, directly evidenced experience in direct lithium extraction and lithium-bearing brine processing, including one or more of the following:
  • Adsorption and ion-sieve technologies
  • Ion exchange
  • Membrane-based separation
  • Solvent extraction
  • Electrochemical lithium recovery
  • Selective precipitation and impurity removal
  • Brine pretreatment, concentration and polishing
  • DLE pilot testing, scale-up and commercial-readiness assessment

This is a deliberately narrow technical requirement. The specialist may work within a broader team addressing hydrogeology, resource development, water management, infrastructure, markets, finance and environmental risk, but selection for GCM-4 will be based primarily on demonstrated depth in DLE and brine processing.
This is not a general lithium, battery, hydrogeology, mining, chemical-engineering or business-development position. General lithium-sector experience will not substitute for directly relevant DLE or brine-processing experience.
Potential Responsibilities
Depending on the assignment, the specialist may:
  • Evaluate brine chemistry and its compatibility with proposed DLE technologies.
  • Review lithium concentration, magnesium-to-lithium ratios, calcium, boron, sulfate, silica and other impurity considerations.
  • Assess adsorption, ion-sieve, ion-exchange, membrane, solvent-extraction, electrochemical or hybrid DLE processes.
  • Evaluate brine pretreatment, impurity removal, polishing, concentration and lithium-product conversion requirements.
  • Review laboratory, bench, pilot, demonstration and commercial-scale test results.
  • Assess lithium recovery, selectivity, kinetics, sorbent capacity, reagent consumption, water use and energy demand.
  • Evaluate sorbent, membrane or extractant life, degradation, regeneration and replacement assumptions.
  • Review mass, water and chemical balances.
  • Assess scaling, fouling, corrosion, precipitation and brine-compatibility risks.
  • Evaluate spent-brine management, reinjection assumptions and potential effects on reservoir performance.
  • Assess integration between the subsurface brine resource, extraction wells, DLE plant and downstream product-conversion facility.
  • Review equipment selection, process controls, utilities, consumables, waste streams and operating assumptions.
  • Identify data gaps, pilot requirements, scale-up risks and conditions for credible commercial advancement.
  • Contribute to project scopes, terms of reference, budgets, schedules, test programs and technical-risk registers.
  • Prepare or independently review concise, decision-grade technical findings and recommendations.
  • Participate in remote meetings, stakeholder discussions and international site visits when required.

Required Specialized Experience
Applicants must demonstrate meaningful experience in one or more of the following:
  • DLE technology development, evaluation, testing or operation.
  • Lithium-selective adsorbents or ion-sieve materials.
  • Lithium-specific ion-exchange systems.
  • Membrane-based lithium separation or concentration.
  • Solvent extraction for lithium recovery.
  • Electrochemical lithium extraction or recovery.
  • Processing of salar, geothermal, oilfield, produced-water or other lithium-bearing brines.
  • Brine pretreatment and impurity management.
  • DLE pilot-plant design, execution, interpretation or scale-up.
  • Lithium chloride, lithium carbonate or lithium hydroxide product conversion following DLE.
  • DLE equipment selection, commissioning, troubleshooting or process optimization.
  • Independent technical review of DLE projects, technologies or investment claims.

Applicants must distinguish their personal technical contributions from the work performed by the broader project or organization.
Rรฉsumรฉ Evidence Required
DO NOT SUBMIT A GENERAL Rร‰SUMร‰.
The submitted rรฉsumรฉ must clearly identify:
  • At least two directly relevant DLE or lithium-brine-processing projects.
  • The brine source and relevant chemistry.
  • The specific DLE technology or separation mechanism evaluated.
  • The applicant's personal role and technical responsibility.
  • The scale of the work: laboratory, bench, pilot, demonstration or commercial.
  • Relevant sorbents, membranes, extractants, electrochemical systems, reagents or equipment.
  • Recovery, selectivity, kinetics, purity, water-use or reagent-consumption results, where available.
  • Technical reports, test programs, flowsheets, designs, reviews or recommendations personally produced.
  • Scale-up decisions, technical risks or commercial-readiness conclusions supported by the applicant.

A rรฉsumรฉ that merely lists lithium exploration, batteries, brine resources, evaporation ponds or chemical processing without substantiating direct DLE or selective lithium-recovery experience will not be advanced.
Breadth is not rewarded for GCM-4 unless the required DLE depth is first established.
Preferred Qualifications
  • Advanced degree in chemical engineering, hydrometallurgy, extractive metallurgy, materials science, electrochemistry, geochemistry or a closely related discipline.
  • Professional Engineer or comparable technical credential.
  • Experience connecting brine-resource characteristics to DLE-process performance.
  • Experience taking a DLE technology from laboratory testing through pilot, demonstration or commercial deployment.
  • Familiarity with lithium-product specifications and downstream conversion requirements.
  • Experience reviewing process mass balances, water balances, capital costs and operating costs.
  • Experience evaluating projects in emerging markets or water-constrained jurisdictions.
  • Experience preparing independent technical reviews, feasibility-study inputs or lender/investor due diligence.
  • Experience preparing English-language reports for government, financial or executive decision-makers.

Eligibility and Availability
Applicants must:
  • Be a U.S. citizen or a non-U.S. citizen lawfully admitted for permanent residence in the United States.
  • Be potentially available to begin supporting an authorized assignment within approximately 20 days, subject to final scheduling.
  • Be willing and able to travel internationally when an assignment requires it.
  • Identify any country, customer, travel, employment, confidentiality, intellectual-property or conflict-of-interest restrictions.
  • Be able to perform without using or disclosing proprietary information belonging to another employer or client.
  • Authorize Axyde to tailor and reformat the submitted rรฉsumรฉ without materially changing the applicant's qualifications.

Contingent Nature of the Opportunity
This announcement supports proposal and contingent-workforce planning. It does not guarantee employment, contract award, minimum hours or a specific assignment. Any engagement will remain subject to contract award, assignment requirements, final role alignment, eligibility, availability, mutually acceptable compensation and execution of appropriate engagement documentation.
Application Instructions
Submit a rรฉsumรฉ specifically tailored to direct lithium extraction and lithium-bearing brine processing. Include a short statement identifying:
  1. Your strongest DLE or brine-processing subspecialty.
  2. The brine types and lithium-recovery technologies with which you have worked.
  3. Two directly relevant projects and your personal technical contribution.
  4. The testing or operating scale achieved.
  5. Your current location.
  6. Your U.S.-citizen or lawful-permanent-resident status.
  7. Your international-travel availability.
  8. Your anticipated hourly rate or fixed-work-package preference.

Applicants who cannot demonstrate direct depth in DLE technology, selective lithium recovery or lithium-brine processing should not apply to GCM-4.